马兰士MARANTZ SA-12S1音响电路图
分类:电子电工
日期:2023-04-07
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Super Audio CD Player
SA-12S1
413K855010 MIT
3120 785 22750
First Issue 2001.09
TABLE OF CONTENTS
SECTION
PAGE
1. Technical specifi cations................................................................................................................. 1
2. Warnings and laser safety............................................................................................................. 3
3. Service hints, Taking the disc out.................................................................................................. 5
4. Installing the software and entering version.................................................................................. 8
5. Diagnostic software, Trouble shooting and test instructions........................................................ 10
6. Wiring and block diagrams.......................................................................................................... 45
7. Schematic diagram and Parts location........................................................................................ 51
8. Exploded view and Parts list ..................................................................................................... 131
9. Circuit-, IC descriptions and list of abbreviations ...................................................................... 135
10. Electrical parts list ..................................................................................................................... 187
SA12 /F1N, /N1G, /S1G, /U1B
R
SA-12S1
Please use this service manual with referring to the user guide ( D.F.U. ) without fail.
Service
Manual
PL
OPEN/CLOSE
POWER
REPEAT
STOP
PLAY
PAUSE
SOUND MODE
DISPLAY
OFF
STANDBY
VIDEO
OFF
D
SUPER AUDIO CD PLAYER SA-12S1
FTS
MARANTZ DESIGN AND SERVICE
Using superior design and selected high grade components, MARANTZ company has created the ultimate in stereo sound.
Only original MARANTZ parts can insure that your MARANTZ product will continue to perform to the specifi cations for which
it is famous.
Parts for your MARANTZ equipment are generally available to our National Marantz Subsidiary or Agent.
ORDERING PARTS :
Parts can be ordered either by mail or by Fax.. In both cases, the correct part number has to be specifi ed.
The following information must be supplied to eliminate delays in processing your order :
1. Complete address
2. Complete part numbers and quantities required
3. Description of parts
4. Model number for which part is required
5. Way of shipment
6. Signature : any order form or Fax. must be signed, otherwise such part order will be considered as null and void.
SHOCK, FIRE HAZARD SERVICE TEST :
CAUTION : After servicing this appliance and prior to returning to customer, measure the resistance between either primary AC
cord connector pins ( with unit NOT connected to AC mains and its Power switch ON ), and the face or Front Panel of product and
controls and chassis bottom.
Any resistance measurement less than 1 Megohms should cause unit to be repaired or corrected before AC power is applied, and
verifi ed before it is return to the user/customer.
Ref. UL Standard No. 1492.
In case of diffi culties, do not hesitate to contact the Technical
Department at above mentioned address.
010620MIT
USA
MARANTZ AMERICA, INC
MARANTZ AMERICA, INC.
1100 MAPLEWOOD DRIVE
ITASCA, IL. 60143
USA
PHONE : 630 - 741 - 0300
FAX : 630 - 741 - 0301
BRAZIL
PHILIPS DA AMAZONIA IND. ELET. ITDA
CENTRO DE INFORMACOES AO
CEP 04698-970
SAO PAULO, SP, BRAZIL
PHONE : 0800 - 123123(Discagem Direta Gratuita)
FAX : +55 11 534. 8988
JAPAN Technical
MARANTZ JAPAN, INC.
35- 1, 7- CHOME, SAGAMIONO
SAGAMIHARA - SHI, KANAGAWA
JAPAN 228-8505
PHONE : +81 42 748 1013
FAX : +81 42 741 9190
EUROPE / TRADING
MARANTZ EUROPE B.V.
P.O.BOX 80002, BUILDING SFF2
5600 JB EINDHOVEN
THE NETHERLANDS
PHONE : +31 - 40 - 2732241
FAX : +31 - 40 - 2735578
TECHNICAL AUDIO GROUP PTY, LTD
558 DARLING STREET,
BALMAIN, NSW 2041,
AUSTRALIA
PHONE : 61 - 2 - 9810 - 5300
FAX : 61 - 2 - 9810 - 5355
CANADA
LENBROOK INDUSTRIES LIMITED
633 GRANITE COURT,
PICKERING, ONTARIO L1W 3K1
CANADA
PHONE : 905 - 831 - 6333
FAX : 905 - 831 - 6936
AUSTRALIA
QualiFi Pty Ltd,
24 LIONEL ROAD,
MT. WAVERLEY VIC 3149
AUSTRALIA
PHONE : +61 - (0)3 - 9543 - 1522
FAX : +61 - (0)3 - 9543 - 3677
NEW ZEALAND
WILDASH AUDIO SYSTEMS NZ
14 MALVERN ROAD MT ALBERT
AUCKLAND NEW ZEALAND
PHONE : +64 - 9 - 8451958
FAX
: +64 - 9 - 8463554
THAILAND
MRZ STANDARD CO.,LTD
746 - 754 MAHACHAI ROAD.,
WANGBURAPAPIROM, PHRANAKORN,
BANGKOK, 10200 THAILAND
PHONE : +66 - 2 - 222 9181
FAX : +66 - 2 - 224 6795
TAIWAN
PAI- YUING CO., LTD.
6 TH FL NO, 148 SUNG KIANG ROAD,
TAIPEI, 10429, TAIWAN R.O.C.
PHONE : +886 - 2 - 25221304
FAX : +886 - 2 - 25630415
MALAYSIA
WO KEE HONG ELECTRONICS SDN. BHD.
SUITE 8.1, LEVEL 8, MENARA GENESIS,
NO. 33, JALAN SULTAN ISMAIL,
50250 KUALA LUMPUR, MALAYSIA
PHONE : +60 3 - 2457677
FAX : +60 3 - 2458180
AMERICAS
SUPERSCOPE TECHNOLOGIES, INC.
MARANTZ PROFESSIONAL PRODUCTS
2640 WHITE OAK CIRCLE, SUITE A
AURORA, ILLINOIS 60504 USA
PHONE : 630 - 820 - 4800
FAX : 630 - 820 - 8103
AUSTRALIA
KOREA
MK ENTERPRISES LTD.
ROOM 604/605, ELECTRO-OFFICETEL, 16-58,
3GA, HANGANG-RO, YONGSAN-KU, SEOUL
KOREA
PHONE : +822 - 3232 - 155
FAX : +822 - 3232 - 154
SINGAPORE
WO KEE HONG DISTRIBUTION PTE LTD
130 JOO SENG ROAD
#03-02 OLIVINE BUILDING
SINGAPORE 368357
PHONE : +65 858 5535 / +65 381 8621
FAX : +65 858 6078
1
1. Technical specifi cations
SACD/CD
Audio characteristics
Super Audio CD
CD
Channels
6 channels (Max.)
2 channels
Frequency range
2 Hz - 100 kHz
2 Hz - 20 kHz
Frequency characteristics
2 Hz - 50 kHz (-3 dB)
2 Hz - 20 kHz
Dynamic range
114 dB
more than 100 dB
THD (1 kHz)
0.0008 %
0.0013 %
Analog output level
2.0 V
2.0 V
Digital output
Output level (coaxial)
-
0.5 Vp-p (75 ohm)
Output level (optical)
-
-19 dBm
Format
1 bit DSD
16 bit linear PCM
Sampling frequency
2.8224 MHz
44.1 kHz
Optical readout system
Laser type
AlGaAs
AlGaAs
Wavelength
650 nm
780 nm
DVD/VCD
Video
Format
MPEG1 (VCD) / MPEG2 (DVD)
Horizontal
resolution more than 500
Audio
Format
PCM (16/20/24 bit, 48/96 kHz fs) / Dolby Digital / MPEG
Frequency characteristics
2 Hz - 22 kHz (PCM 48 kHz), 2 Hz - 44 kHz (PCM 96 kHz)
Dynamic range
114 dB (PCM 24 bit)
THD (1 kHz)
0.0013 % (PCM 24 bit)
Digital output
PCM, Dolby Digital, DTS, MPEG (F, U version)
Video output
Composite / S / Components
* Audio characteristics are for multi channel output.
Power Supply
N version.................................................................................................................................................AC 115/230 V, 60 Hz
S version.................................................................................................................................................AC 115/230 V, 60 Hz
F version ................................................................................................................................................... AC 100 V 50/60 Hz
U version........................................................................................................................................................ AC 120 V 60 Hz
Power consumption (N version) .......................................................................................................................................33 W
Power consumption (S, F, U version) ...............................................................................................................................30 W
Cabinet
Dimensions .......................................................................................................................... 458 (W) x 126 (H) x 379 (D) mm
Weight.............................................................................................................................................................................11 kg
Operating temperatures..................................................................................................................................+5 °C to +35 °C
Operating humidity.............................................................................................................................5% - 90% (without dew)
Accessories
Remote control unit (RC-12SAS1).........................................................................................................................................1
Battery (AAA).........................................................................................................................................................................2
Stereo audio cable.................................................................................................................................................................3
Audio-Video cable..................................................................................................................................................................1
Remote control cord...............................................................................................................................................................1
Users guide............................................................................................................................................................................1
AC power cord .......................................................................................................................................................................1
Registration card (N, F, U version).........................................................................................................................................1
2
2
SCART CONNECTOR
SCART II (connected to TV)
Pin signals:
1 Output
Audio R
1.8 Vrms
2 Input
Audio R
3 Output
Audio L
1.8 Vrms
4
Audio GND
5
Blue/Chroma GND
6 Input
Audio L
7 Bi-dir
Blue out/Chroma in
0.7 Vpp +/- 0.1 V into 75 Ohm (*)
8 Output
Function switch
< 2 V = TV
> 4.5 V / < 7 V = asp. Ratio 16:9 DVD
> 9.5 V / < 12 V = asp. ratio 4:3 DVD
9
Green GND
10 not connected
11 Output
Green
0.7 Vpp +/- 0.1 V into 75 Ohm (*)
12 not connected
13
Red/Chroma GND
14
fast switch GND
15 Output
Red out/Chroma out
0.7 Vpp +/- 0.1 V into 75 Ohm (*)
+/- 3 dB 0.3 Vpp Chroma (burst)
16 Output
fast switch RGB/CVBS or Y
< 0.4 V into 75 Ohm = CVBS
> 1 V / < 3 V into 75 Ohm = RGB
17
Y/CVBS GND
18
fast switching GND
19 Output
CVBS/Y/RGB sync
1 Vpp +/- 0.1 V into 75 Ohm (*)
20 Input
CVBS/Y
21
Shield
SCART I (connected to AUX)
Pin signals:
1 Output
Audio R
1.8 Vrms
2 Input
Audio R
3 Output
Audio L
1.8 Vrms
4
Audio GND
5
Blue/Chroma GND
6 Input
Audio L
7 Bi-dir
Blue in/Chroma out
+/- 3 dB 0.3 Vpp Chroma (burst)
8 Input
Function switch
9
Green GND
10 not connected
11 Input
Green
12 not connected
13
Red/Chroma GND
14
fast switch GND
15 Output
Red in/Chroma in
16 Input
fast switch RGB/CVBS or Y
17
CVBS GND
18
fast switching GND
19 Output
CVBS/Y/RGB sync
1 Vpp +/- 0.1 V into 75 Ohm (*)
20 Input
CVBS/Y
21
Shield
(*) for 100% white
3
2.
Warnings and laser safety
2.1
Warning and laser safety
SHOCK, FIRE HAZARD SERVICE TEST:
CAUTION: After servicing this appliance and prior to returning to customer, measure the resistance between
either primary AC cord connector pins (with unit NOT connected to AC mains and its Power switch ON), and the
face or Front Panel of product and controls and chassis bottom,
Any resistance measurement less than 1 Megohms should cause unit to be repaired or corrected before AC
power is applied, and verified before return to user/customer.
Ref.UL Standard NO.1492.
NOTE ON SAFETY:
Symbol
: Fire or electrical shock hazard. Only original parts should be used to replace any part with symbol
Any other component substitution(other than original type), may increase risk or fire or electrical shock hazard.
F
ATTENTION
Tous les IC et beaucoup d’autres semi-
conducteurs sont sensibles aux décharges
statiques (ESD).
Leur longévité pourrait être considérablement
écourtée par le fait qu’aucune précaution
n’est prise a leur manipulation.
Lors de réparations, s’assurer de bien être
relié au même potentiel que la masse de
l’appareil et enfiler le bracelet serti d’une
résistance de sécurité.
Veiller a ce que les composants ainsi que les
outils que l’on utilise soient également a ce
potentiel.
D
WARNUNG
Alle IC und viele andere Halbleiter sind
empfindlich gegen elektrostatische
Entladungen (ESD).
Unsorgfältige Behandlung bei der Reparatur
kann die Lebensdauer drastisch vermindern.
Sorgen sie dafür, das Sie im Reparaturfall
über ein Pulsarmband mit Widerstand mit
dem Massepotential des Gerätes verbunden
sind.
Halten Sie Bauteile und Hilfsmittel ebenfalls
auf diesem Potential.
WAARSCHUWING
Alle IC’s en vele andere halfgeleiders zijn
gevoelig voor elektrostatische ontladingen
(ESD).
Onzorgvuldig behandelen tijdens reparatie
kan de levensduur drastisch doen
verminderen.
Zorg ervoor dat u tijdens reparatie via een
polsband met weerstand verbonden bent met
hetzelfde potentiaal als de massa van het
apparaat.
Houd componenten en hulpmiddelen ook op
ditzelfde potentiaal.
AVVERTIMENTO
Tutti IC e parecchi semi-conduttori sono
sensibili alle scariche statiche (ESD).
La loro longevita potrebbe essere fortemente
ridatta in caso di non osservazione della piu
grande cauzione alla loro manipolazione.
Durante le riparazioni occorre quindi essere
collegato allo stesso potenziale che quello
della massa dell’apparecchio tramite un
braccialetto a resistenza.
Assicurarsi che i componenti e anche gli
utensili con quali si lavora siano anche a
questo potenziale.
All ICs and many other semi-conductors are
susceptible to electrostatic discharges (ESD).
Careless handling during repair can reduce
life drastically.
When repairing, make sure that you are
connected with the same potential as the
mass of the set via a wrist wrap with
resistance.
Keep components and tools also at this
potential.
WARNING
Safety regulations require that the set be restored to its original condition
and that parts which are identical with those specified be used.
Veiligheidsbepalingen vereisen, dat het apparaat in zijn oorspronkelijke
toestand wordt terug gebracht en dat onderdelen, identiek aan de
gespecifieerde worden toegepast.
Bei jeder Reparatur sind die geltenden Sicherheitsvorschriften zu beachten.
Der Originalzustand des Gerats darf nicht verandert werden.
Fur Reparaturen sind Original-Ersatzteile zu verwenden.
Le norme di sicurezza esigono che l’apparecchio venga rimesso nelle
condizioni originali e che siano utilizzati pezzi di ricambiago idetici a quelli
specificati.
Les normes de sécurité exigent que l’appareil soit remis a l’état d’origine et
que soient utilisées les pièces de rechange identiques à celles spécifiées.
“Pour votre sécurité, ces documents
doivent être utilisés par des
spécialistes agrées, seuls habilités à
réparer votre appareil en panne.”
GB
NL
I
D
I
F
GB
NL
4
2.2 LASER SAFETY
This unit employs a laser. Only a qualified service person should remove the cover or attempt to service this
device, due to possible eye injury.
LASER DEVICE UNIT
Type:
Semiconductor laser GaAlAs
Wave length:
650 nm (DVD)
780 nm (VCD/CD)
Output Power:
7 mW (DVD)
10 mW (VCD/CD)
Beam divergence:
60 degree
USE OF CONTROLS OR ADJUSTMENTS OR PERFORMANCE OF PROCEDURE OTHER THAN THOSE
SPECIFIED HEREIN MAY RESULT IN HAZARDOUS RADIATION EXPOSURE.
AVOID DIRECT EXPOSURE TO BEAM
WARNING
The use of optical instruments with this product will increase eye hazard.
Repair handling should take place as much as possible with a disc loaded inside the player
WARNING LOCATION: INSIDE ON LASER COVERSHIELD
CAUTION VISIBLE AND INVISIBLE LASER RADIATION WHEN OPEN AVOID EXPOSURE TO BEAM
ADVARSEL SYNLIG OG USYNLIG LASERSTRÅLING VED ÅBNING UNDGÅ UDSÆTTELSE FOR STRÅLING
ADVARSEL SYNLIG OG USYNLIG LASERSTRÅLING NÅR DEKSEL ÅPNES UNNGÅ EKSPONERING FOR STRÅLEN
VARNING SYNLIG OCH OSYNLIG LASERSTRÅLNING NÄR DENNA DEL ÄR ÖPPNAD BETRAKTA EJ STRÅLEN
VARO! AVATT AESSA OLET ALTTIINA NÄKYVÄLLE JA NÄKYMÄTTÖMÄLLE LASER SÄTEILYLLE. ÄLÄ KATSO SÄTEESEEN
VORSICHT SICHTBARE UND UNSICHTBARE LASERSTRAHLUNG WENN ABDECKUNG GEÖFFNET NICHT DEM STRAHL AUSSETSEN
DANGER VISIBLE AND INVISIBLE LASER RADIATION WHEN OPEN AVOID DIRECT EXPOSURE TO BEAM
ATTENTION RAYO NNEMENT LASER VISIBLE ET INVISIBLE EN CAS D'OUVERTURE EXPOSITION DANGEREUSE AU FAISCEAU
Warning for powersupply on position (PH16)
The primary side of the powersupply including the heatsink carries live mains voltage when the
player is connected to the mains even when the player is swiched off !
This primary area is not shielded so it is possible to touch copper tracks and/or components when
servicing the player. Service personnel have to take precautions to prevent touching this area or
components in this area .
The primary side of the powersupply has been indicated with a lightning stroke and a stripe-marked
printed on the printed wiring board
Note:
The screws on the mechanism of the ASD1 module (position 001M in on the exploded view drawing)
may never be touched removed or re-adjusted.
Handle the ASD1 module with care when the unit has to be exchanged!
The mechanism of the ASD1 module is very sensative for dropping or shocks.
5
3.1
Service hints
3.
Service hints, Taking the disc out
3.1.1 Switched Mode Power Supply Unit PZ03
3.1.2 SACD module
2.
The mono board has to be repaired down to component
level. Repair handling of the monoboard requires a
workshop with sophisticated desoldering tools.
3.1.3 Service positions
SACD module
MONO PCB
Figure 3-1
Figure 3-2
DAC PCB
Figure 3-3
AV PCB
Figure 3-4
Figure 3-5
CL 06532152_002.eps
051200
CL 06532152_003.eps
051200
CL 06532152_004.eps
051200
CL 06532152_005.eps
051200
CL 06532152_006.eps
051200
See also dismantling instructions.
After demounting the DAC PCB PP16 and the dust bracket
023M, it is possible to connect the PC connection and to
demount the SACD module to service the MONO PCB. After
remounting the DAC PCB, the SACD module can be placed
on top of the DAC PCB, protected by an insulation plate.
This power supply unit is not repairable and must be exchanged
completely in case of failure. A new power supply can be ordered
with codenumber QW12922150 (3104 129 22150).
This module can be repaired as follows:
1. The loader and DVD-M(echanism) is one assembly
(VAL6011) item 81. This assembly is a not repairable unit
and must be exchanged completely in case of failure.
A new unit can be ordered with codenumber QE02361104
(9305 023 61104).
6
remove 2 screws 005G
(front side Legs 004G)
3.1.4. Mechanical- and dismantling instructions
DISMANTLING INSTRUCTIONS
Front assy(001B+PY16+PY26)
⇒
⇒
⇒
→
Top cover
⇒
A/V board PN16
⇒
⇒
⇒
DAC PCB PP16
⇒
⇒
⇒
Dust Bracket 023M
→
→
⇒
⇒
SACD Mono board PZ01
⇒
⇒
⇒
⇒
SACD MODULE (001M + PZ01)
⇒
⇒
⇒
⇒
⇒
⇒
Loader VAL6011/04 : 001M
⇒
Switched mode power supply unit PZ03
Linear power supply PH16
⇒
⇒
⇒
⇒
⇒
⇒
⇒
⇒
Transformer L001
→
→
→
→
→
Display board PY16
⇒
⇒
→
ON/OFF BOARD PY26
→
⇒
⇒
open the tray and remove
tray front 046B
Remove 2 screws 5128
(board
Remove 2 screws 5128
(mains inled
⇒ Demount the board
⇒ Release the snaps of 2 spacers
012G(board
⇒ Remove 2 screws 5128
(voltage selector
frame)
backplate)
frame)
the
020M
5128
5128
12
(loader 001M frame 020M)
(dust cover on loader 001M)
5128
(mono board PZ01 loader 001M)
backplate)
5129 x 2 and 5126 x 2
→
5110 x 3 and 5128 x 2
Manually opening of tray
When it is not possible to open the tray with the open/ close button,
the tray can manually be opened.
When no disc is loaded, unlock the tray by moving the slide from the left
to the right and pull tray outwards.
Remove 4 screws to remove loader.
Remove 001D and
Side cover 006D
005D x 8 at top
009D x 8 at both side
5128
5110
7
Gear pulley
3.2 Taking the disc out.
1. Remove the top cover with 8 screws.
2. Remove the both side covers with 8 screws.
3. Remove the 8 screws of front panel and unfasten 2 screws of front legs.
4. Pull out the front panel.
5. Turn right the pulley by your finger or nail. (See fig.1)
6. Then the tray is moved a little. Pull the tray with your hand at this time.
Note: Take care of unhurt gear belt.
8
4. Installing the software and entering version.
The kind of CD-ROM (software), and explanation
a) Key reassignment Disc (44444444.016) [Parts No. *SA12KEYCD]
b) Background (PAL) Disc (11111111.008) [Parts No. *SA12PALCD]
c) Background (NTSC) Disc (22222222.008) [Parts No. *SA12NTSCD]
Installing necessary CD-ROM for version.
For /N: Key reassignment Disc (44444444.016) and Background (PAL) Disc (11111111.008)
For /S: Key reassignment Disc (44444444.016) and Background (PAL) Disc (11111111.008)
For /U: Key reassignment Disc (44444444.016) and Background (NTSC) Disc (22222222.008)
For /F: Key reassignment Disc (44444444.016) and Background (NTSC) Disc (22222222.008)
How to installing the software
All software is installed from CD-ROM. These are supplied by another disc, respectively. When disc was put in the player,
software is installed automatically. And disc comes out of the player, after fi nished. The sequence to install is “Key
reassignment” fi rst and, next, is “Background”.
Entering Version and region code
Caution: This information is confi dential and may not be distributed. Only a qualifi ed service person should repro-
gram the mono board.
Reprogramming is limited to 25 times.
When the counter reaches 25, reprogramming is not possible anymore and the region code change counter
must be reset by means of the Diagnostic Software.
Reprogramming will be done by way of the remote control.
Put the player in stop mode, no disc loaded.
Press the following keys on the remote control.
followed by numerical keys <2>, <7>, <4>
The display shows “-----------“
Press now successively the following keys
For /N: <0>, <0>, <1>, <0>, <0>, <0>, <0>, <0>, <0>, <0>, <0>
For /U: <0>, <0>, <2>, <0>, <0>, <0>, <0>, <0>, <0>, <0>, <0>
For /S: <0>, <0>, <3>, <0>, <0>, <0>, <0>, <0>, <0>, <0>, <0>
For /F: <0>, <0>, <4>, <0>, <0>, <0>, <0>, <0>, <0>, <0>, <0>
Press again.
The TV screen will become blue during a short time to confi rm that the digital board has been reprogrammed.
How to confi rm the software and the version.
11111111.008/ 22222222.008: Displayed on TV screen as background of marantz is OK, after entering version.
If a power supply is turned on, with and of a player pushed, a change of NTSC mode
and PAL mode can be performed.
44444444.016:
Worked or of the player is OK, After entered version.
Version:
Looked at “Audio language” or “Subtitle language” in “Personal preferences”.
The contents of “Audio language” or “Subtitle language” are as the following table.
9
/N
/U
/S
/F
English
English
English
Japanese
Español
Español
Español
English
Français
Français
Français
Español
Português
Português
Português
Français
Italiano
Italiano
Russian
Português
Deutsch
Russian
Japanese
Russian
Nederlands
Deutsch
Korean
Korean
Suomeksi
Greek
Chinese
Chinese
Dansk
Japanese
Bahamas Indonesia
Bahamas Indonesia
Norsk
Korean
Khmer
Khmer
Svenska
Chines
Bahamas Malayalam
Bahamas Malayalam
Russian
Quechua
Burmese
Burmese
Greek
Guarani
Nepal
Nepal
TÜrkçe
Aymara
Thai
Thai
Íslensk
Inupiaq
Vietnamese
Vietnamese
Català
Tibetan
Tibetan
Default setting
Reset of Personal preferences
Turned on power of the player, while depressing and button, reset of personal preferences can be
performed.
Setting of menu
TV mode
Black level shift
Remote control code
/N
PAL
ON
DVD1
/U
NTSC
ON
DVD1
/S
PAL
OFF
DVD1
/F
NTSC
OFF
DVD1
Black level shift is in “PICTURE” of “Personal Preferences”. It becomes ON if it resets.
How to change a remote control code is as follows. (CODE DVD1/ CODE DVD2)
By remote controller:
Press and <1> become code DVD1.
Press and <2> become code DVD2.
By player:
Turned on power of the player, while depressing and button.
Position of switches
Voltage Selector (SH02)
Filter (SD71)
RC-6 (SF51)
/N
230V
Position 1
Internal
/U
115V
Position 1
Internal
/S
230V
Position 1
Internal
/F
115V
Position 1
Internal
10
5.
Diagnostic software, trouble shooting and test instructions
Due to the complexity of the SACD player, the time to find a
defect in the player can become long. To reduce this time, the
player has been equipped with Diagnostic and Service
software (DS). The DS offers functionality to diagnose the
SA-12S1 player hardware and tests the following:
•
Interconnections between components
•
Accessibility of components
•
Functionality of the audio and video paths
This functionality can be accessed via several interfaces:
1.
End user/Dealer script interface
2.
Player script interface
3.
Menu and command interface
5.1
END USER/DEALER SCRIPT INTERFACE
5.1.1
Description
The End user/Dealer script interface gives a diagnosis on a
stand alone SACD player; no other equipment is needed.
During this mode, a number of hardware tests (nuclei) are
automatically executed to check if the player is faulty. The
diagnosis is simply a "fail" or "pass" message. If the message
"FAIL" appears on the display, there is apparently a failure in
the player. If the message "PASS" appears, the nuclei in this
mode have been executed successfully. There can be still a
failure in the player because the nuclei in this mode don't
cover the complete functionality of the player.
5.1.2
Contents
The End use/Dealer script executes all diagnostic nuclei that
do not need any user interaction and are meaningful on a
standalone SACD player. The nuclei called in the End user/
Dealer script are the following:
Figure 5-1
5.2
PLAYER SCRIPT INTERFACE
5.2.1
Description
The Player script will give the opportunity to perform a test
that will determine which of the SACD player’s modules are
faulty, to read the error log and to perform an endurance loop
test. To successfully perform the tests, the SACD player
must be connected to a TV set, a multi-channel amplifier, a
set of 6 boxes and an external video source to check the
output of a number of nuclei.
To be able to check results of certain nuclei, the player script
expects some interaction of the user (i.e. to approve a test
picture or a test sound). Some nuclei (e.g. nuclei that test
functionality of the Basic Engine module) require that the
SACD player itself is opened, to enable the user to observe
moving parts and approve their movement visually.
Only tests within the scope of the diagnostic software will be
executed hence only faults within this scope can be detected.
5.2.2
Structure of the Player Script
The player script consists of a set of nuclei testing the
hardware modules in the SACD player: the Display PWB, the
Digital PWB, the Basic Engine, the DAC PWB and the AV
PWB.
Nuclei run by the player test need some user interaction; in
the next table this interaction is described. The player test is
done in two phases:
Interactive tests: this part of the player test depends
strongly on user interaction and input to determine
nucleus results and to progress through the full test.
Reading the error log information can be useful to
determine any errors that occurred recently during
normal operation of the DVD player.
The loop test will perform the same nuclei as the dealer
test, but it will loop through the list of nuclei indefinitely.
Display
Count-
down
Nucleus
number
Nucleus name
7
104
Host Decoder SDRAM Write Read
6
123
Host Decoder I2C NVRAM
5
500
Front Panel Echo
4
601
Basic Engine Echo
3
1200
Furore SDRAM Low Write Read
2
1201
Furore SDRAM High Write Read
1
1300
DAC Board I2C Test
Hold 2 keys
+
simultaneously pressed and
switch player on.
Switch player off.
During the test, the following display
is shown: the counter counts down
from the number of nuclei to be run
before the test finishes. Example:
SET O.K.?
YES
NO
To exit DEALER SCRIPT, switch player off.
CL 06532152_007.eps
051200
11
Remark
In case of failure, the display shows " FAIL 00000 ". The
description of the shown error code can be retrieved in the
survey of Nuclei Error Codes (paragraph 5.4). Once an error
occurs, it is not possible to continue the player script. Switch
off the set and restart the player script. By pressing the NEXT
key, it is possible to jump over the failure and to continue the
player script.
Step
Description
Executing
nucleus
1
Press OPEN/CLOSE and STOP, and turn on the player.
2
2
Display shows "FP SEGMENT". Press PLAY to execute this nucleus. Otherwise press NEXT and go to step 7. 502
3
Starbursts are visible. Press PLAY.
502
4
Horizontal bars are visible. Press PLAY.
502
5
Vertical bars are visible. Press PLAY.
502
6
All segments are visible. Press PLAY.
502
7
Display shows "FP LABEL". Press PLAY to execute this nucleus. Otherwise press NEXT and go to step 13.
503
8
Labels of the first grid are visible. Press PLAY.
503
9
Labels of the second grid are visible. Press PLAY.
503
10
Labels of the third grid are visible. Press PLAY.
503
11
All labels are visible. Press PLAY.
503
12
Standby LED is on. Press PLAY.
503
13
Display shows "FP DIMMER". Press PLAY to execute this nucleus. Otherwise press NEXT and go to step 15. 518
14
Display shows "DIMMING TEST". Wait until it is dimmed, and press than PLAY.
518
15
Display shows "FP KEYBOARD". Press PLAY to execute this nucleus. Otherwise press NEXT and go to step
17.
505
16
Display shows "LKB_0000 N 0". Press all keys at least one time. Press PLAY for a least one-second to exit
this nucleus.
505
17
Display shows "FP REMOTE C". Press PLAY to execute this nucleus. Otherwise press NEXT and go to step
19.
506
18
Display shows "RC C_ N_ 0". Press at least one key of the remote control. Press PLAY to exit this nucleus. 506
19
Display shows "SCART-SW DVD". Press PLAY to execute this nucleus. Otherwise press NEXT.
1408
20
Display shows "COLOUR SETUP". Press PLAY to execute this nucleus. Otherwise press NEXT.
1406
21
Display shows "COLOUR-B ON". Press PLAY to execute this nucleus. Otherwise press NEXT.
120
22
Display shows "PINKNOISE ON". Press PLAY to execute this nucleus. Otherwise press NEXT.
115
23
Display shows "COLOUR-B OFF". Press PLAY to execute this nucleus. Otherwise press NEXT.
121
24
Display shows "PINKNOIS OFF". Press PLAY to execute this nucleus. Otherwise press NEXT.
116
25
Display shows "SINE ON". Press PLAY to execute this nucleus. Otherwise press NEXT and go to step 27.
117
26
Display shows "BUSY". To stop this nucleus, press STOP.
117
27
Display shows "SCART-S PASS". Press PLAY to execute this nucleus. Otherwise press NEXT.
1409
28
Display shows "BE RESET". Press PLAY to execute this nucleus. Otherwise press NEXT.
603
29
Display shows "BE VERSION". Press PLAY to execute this nucleus. Otherwise press NEXT and go to step 31. 602
30
Display shows the version of the basic engine. To stop this nucleus, press PLAY.
602
31
Display shows "BE TRAY OPEN". Press PLAY to execute this nucleus. Otherwise press NEXT.
616
32
Display shows "BE TRAY CLOSE". Press PLAY to execute this nucleus. Otherwise press NEXT.
615
33
Display shows "BE DVD LASER". Press PLAY to execute this nucleus. Otherwise press NEXT.
635
34
Display shows "BE CD LASER". Press PLAY to execute this nucleus. Otherwise press NEXT.
636
35
Display shows "BE LASER OFF". Press PLAY to execute this nucleus. Otherwise press NEXT.
637
36
Display shows "BE FOCUS ON". Press PLAY to execute this nucleus. Otherwise press NEXT.
604
37
Display shows "BE FOCUS OFF". Press PLAY to execute this nucleus. Otherwise press NEXT.
605
38
Display shows "BE DISCM ON". Press PLAY to execute this nucleus. Otherwise press NEXT.
606
39
Display shows "BE DISCM OFF". Press PLAY to execute this nucleus. Otherwise press NEXT.
607
40
Display shows "BE RADIAL ON". Press PLAY to execute this nucleus. Otherwise press NEXT.
608
41
Display shows "BE RADIAL OF". Press PLAY to execute this nucleus. Otherwise press NEXT.
609
42
Display shows "BE SLEDG OUT". Press PLAY to execute this nucleus. Otherwise press NEXT.
611
43
Display shows "BE SLEDGE IN". Press PLAY to execute this nucleus. Otherwise press NEXT.
610
44
Display shows "BE GROOVE IN". Press PLAY to execute this nucleus. Otherwise press NEXT.
612
45
Display shows "BE GROOV MID". Press PLAY to execute this nucleus. Otherwise press NEXT.
613
46
Display shows "BE GROOV OUT". Press PLAY to execute this nucleus. Otherwise press NEXT.
614
47
Display shows "BE RESET". Press PLAY to execute this nucleus. Otherwise press NEXT.
603
48
Display shows "BE TRAY OPEN". Press PLAY to execute this nucleus. Otherwise press NEXT.
616
49
Display shows "BE TRAY CLOSE". Press PLAY to execute this nucleus. Otherwise press NEXT.
615
50
Display shows "ERRORLOG". Press PLAY to execute this nucleus. Otherwise press NEXT and go to step 52. 404
51
Display shows the error codes. With the keys NEXT and PREV it is possible to step through the error codes.
To stop this nucleus, press STOP.
404
52
Display shows "PASS", this means the Player Script is finished and the execution of the User Dealer Script is
started in an endless loop. The execution of the User Dealer Script will only stop, when an error occurs. The
Display shows the error code.
1
12
Figure 5-2
Hold 2 keys
+
simultaneously pressed and
switch player on.
Switch player off.
FRONTPANEL TEST
PRESS
TO START TEST
PRESS IF OK
PRESS TO ABORT
PRESS IF OK
PRESS TO ABORT
PRESS IF OK
PRESS TO ABORT
PRESS IF OK
PRESS TO ABORT
PRESS IF OK
PRESS TO ABORT
PRESS IF OK
PRESS TO ABORT
PRESS IF OK
PRESS TO ABORT
PRESS IF OK
PRESS IF NOT OK
PRESS IF OK
PRESS IF NOT OK
PRESS IF OK
PRESS IF NOT OK
PRESS
TO START TEST
PRESS
TO START TEST
PRESS
TO START TEST
PRESS ALL KEYS AT LEAST ONCE
SEE TABLE FOR KEY CODES
HEXADECIMAL
KEY CODE
XX TIMES
PRESSED
TO EXIT TEST:
PRESS MORE THAN 1S IF TEST IS OK
PRESS MORE THAN 1S IF TEST IS NOT OK
FRONT KEY NAME
PLAY
PAUSE
STOP
OPEN/CLOSE
SOUND MODE
REPEAT
PREV
NEXT
FRONT KEY CODE
0200
0400
0800
0008
1000
4000
0004
0002
LED
PRESS
TO START TEST
PRESS AT LEAST ONE KEY
ON THE REMOTE CONTROL
SEE TABLE FOR RC KEY CODES
TO EXIT TEST: PRESS ONE OF FOLLOWING KEYS
ON THE LOCAL KEYBOARD
PRESS IF TEST IS OK
PRESS IS NOT OK
DIGITAL BOARD
TEST
HEXADECIMAL
RC-KEY-CODE
XX TIMES
PRESSED
RC KEY NAME
TV POWER
SACD POWER
STOP
SOUND MODE
PLAY
REVERSE
PAUSE
SLOW
RC KEY CODE
0C
50
ONLY FOR TV
31
2C
29
30
22
28
21
D7
20
54
0F
58
5A
5B
59
83
5C
F7
85
00
01
02
03
04
05
06
07
08
09
C9
CA
FB
1C
4B
4E
13
48
3B
2A
FORWARD
PREVIOUS
RESUME
NEXT
MENU DISC
MENU SYSTEM
UP
LEFT
RIGHT
DOWN
RETURN
OK
ZOOM
ANGLE
0
1
2
3
4
5
6
7
8
9
T
C
FTS
SHUFFLE
SUBTITLE
AUDIO
DIM
DISPLAY
REPEAT A-B
SCAN
VOL +
VOL -
CH +
CH -
MUTE
ONLY FOR TV
ONLY FOR TV
ONLY FOR TV
ONLY FOR TV
ONLY FOR TV
13
Figure 5-3
press to execute
press to skip
press to execute
press to skip
press to execute
press to skip
press to execute
press to skip
press to execute
press to skip
press to execute
press to skip
press to execute
press to skip
press to execute
press to skip
press to continue
DIGITAL BOARD
TEST
FRONTPANEL
TEST
press to execute
press to skip
press to continue
press to execute
press to execute
press to skip
press to execute
press to skip
press to execute
press to skip
press to execute
press to skip
press to execute
press to skip
press to execute
press to skip
press to execute
press to skip
press to execute
press to skip
press to execute
press to skip
ENDLESS LOOP
ERROR
BASIC ENGINE
TEST
PRESS
TO STEP BACK
PRESS
TO STEP UP
PRESS TO CONTINUE
press to execute
press to skip
press to execute
press to skip
press to execute
press to skip
press to execute
press to skip
press to execute
press to skip
press to execute
press to skip
press to execute
press to skip
press to execute
press to skip
press to execute
press to skip
press to execute
press to skip
press to skip
Switch player off to end test.
14
5.2.3
Errorlog
Explanation:
The application errors will be logged in the NVRAM. The
maximum number of error bytes that will be visible is 16. The
first word (4 digits) of the byte is the component identification;
the last word is the error code.
The diagnostics software will present a combination of this
component identification plus an error code on the local
display (and on the attached terminal). The last reported
error is shown as < 00000000, the oldest visible error as
00000000> and the errors in between as < 00000000 >.
The devices that may report errors are the serial controller
(UART), the basic engine (BE), the slave processor (SLPH),
the SACD Stream Manager (SSM) and the SACD Media
Access (SMA). The identification of these components is as
follows:
The tables in the next chapters list the error code and
corresponding problem. The column ‘Explanation’ holds a
more elaborate description and the most likely reason for the
error.
Some examples:
002E0000 ( SMA reported a timeout error
0016010A ( Engine could not fully close or open the tray
D0010001 ( Flash checksum failed (for other DS errors, see
description of nucleui error codes in paragraph 5.4.
UART error codes
BE errors
SLPH error codes
SSM error codes
Component name
Component identification
Serial controller (UART)
000A
Engine (BE)
0016
Slave Processor (SLPH)
001A
SACD Stream Manager (SSM) 001C
SACD Media Access (SMA)
002E
Diagnostic software (DS)
Dxxx
Error
Number
Error
name
Explanation
0000
BUF_OVE
RFLOW
To many characters were offered in
too little time. Reason: system was
too busy doing other jobs.
0001
COMMU-
NICATION
Usually a protocol error. Reason:
bad connection between engine
and processor.
Error
Number
Error name
Explanation
0101
S2B_ILL_CO
MMAND
Parameter(s) not valid for this
command. Reason: some com-
munication
problem
between
UART and engine.
0102
S2B_ILL_PAR
AM
Command not allowed in this
state or unknown. Reason: see
S2B_ILL_COMMAND error
0103
S2B_SLEDGE Sledge could not be moved to
home position.
0104
S2B_FOCUS
Focus failure
0105
S2B_MOTOR
Motor could not reach speed
within timeout
0106
S2B_RADIAL
Servo didn't get on track after
several retries.
0107
S2B_PLL_LO
CK
PLL could not lock in Accessing
or Tracking state
0108
SBC_HEADE
R_TO
Header timeout
0109
S2B_SBC_NO
T_FOUND
Requested subcode item could
not be found.
010A
S2B_TRAY
Tray could not be opened or
closed completely.
010B
S2B_TOC_RE
AD
TOC could not be read within
timeout period.
010C
S2B_JUMP
Requested seek could not be
performed.
010D
S2B_NON_EX
IST_SES
Attempt to access a non-existing
session.
010E
S2B_NON_EX
IST_BCA
01F0
S2B_OVERR
UN
Too many bytes received over
S2B
Reas
on:
see
S2B_ILL_COMMAND error
01F1
S2B_COMM_
TO
Not enough bytes are received
over
S2B
Reason:
see
S2B_ILL_COMMAND error
01F2
S2B_PARITY
Byte received with parity error.
Reason:
see
S2B_ILL_COMMAND error
01F3
S2B_ILL_PHA
SE
CMD IDC is not valid, transmis-
sion out of sync. Reason: see
S2B_ILL_COMMAND error
01F4
S2B_ILL_NR_
OF_BYTES
Byte count has an illegal value.
Reason:
see
S2B_ILL_COMMAND error
Error
Number
Error name
Explanation
0000
COMMUNI-
CATION
Error in I2C communication.
Reason: bad connection be-
tween slave processor and main
processor.
Error
Code
Error name
Explanation
0006
SP_SYNCER
ROR
System cannot get synchronised
with sectors coming from disc.
Reason: Usually a damaged
disc or the player was dropped/
pushed during operation. If not,
the engine is malfunctioning.
0007
SP_EDCERR
OR
Data coming from disc is dam-
aged.
Reason:
see
SP_SYNCERROR
0008
SP_CONTINU
ITYERROR
Sequence of sectors coming
from disc is incorrect. Reason:
see SP_SYNCERROR
0009
DMX_CONTI
NUITYER-
ROR
Sequence of sectors is incorrect.
Reason: problem with buffer
RAM
000A
LLD_ERROR
An illegal audio format was of-
fered to the decoder. Reason:
unknown audio type on disc or
problem with buffer RAM
000B
BCU_ERROR
Internal problem in Furore chip
Error
Number
Error name
Explanation
15
SMA error codes
5.2.4
Reprogramming of region code
Figure 5-4
5.2.5
Trade mode
Figure 5-5
5.3
MENU AND COMMAND MODE INTERFACE
5.3.1
NUCLEI NUMERATION
Each nucleus has a unique number of four digits. This
number is the input of the command mode.
Figure 5-6
The following groups are defined:
Error
Number
Error name
Explanation
0000
SMA_TIMEO
UTERROR
Data coming from disc not in
time. Reason: damaged disc or
engine problem.
Caution
This information is confidential and may not be distributed. Only a qualified service person should
reprogram the mono board.
After repair of the mono board, all the customer settings and also the region code might be lost (P0).
Reprogramming of the mono board will put the player back in the state in which it has left the factory,
i.e. with the default settings and the allowed region code.
Reprogramming is limited to 25 times.
When the counter reaches 25, reprogramming is not possible anymore and the region code change counter
must be reset by means of the Diagnostic Software.
Reprogramming will be done by way of the remote control.
Put the player in stop mode, no disc loaded.
Press the following keys on the remote control:
followed by numerical keys <2> <7> <4>
The display shows: “- - - - - - - - - - -”
Press now successively the following keys :
for /N(P1): <0><0><1> <0><0><0><0><0><0><0><0><0>
for /U(P2): <0><0><2> <0><0><0><0><0><0><0><0><0>
for /S(P3):
<0><0><4> <0><0><0><0><0><0><0><0><0>
<0><0><3> <0><0><0><0><0><0><0><0><0>
Press again.
The TV screen will become BLUE during a short time to confirm that the digital board has been
reprogrammed.
SWITCH PLAYER OFF
IF TRADE MODE OFF
PRESS 2 KEYS
SIMULTANEOUSLY
SWITCH PLAYER ON
SWITCH PLAYER OFF
IF TRADE MODE ON
PLAYER IS IN NORMAL MODE
WHEN PRESSING FRONT
KEYS, THE PLAYER WILL
RESPOND
PRESS 2 KEYS
SIMULTANEOUSLY
SWITCH PLAYER ON
PLAYER IS IN TRADE MODE
WHEN PRESSING FRONT
KEYS, THE PLAYER
DOESN'T RESPOND
TRADE MODE
When the player is in Trade Mode, the player cannot be
controlled by means of the front key buttons, but only by means
of the remote control.
+
+
CL 06532152_011.eps
051200
Group number
Group name
0
Basic / Scripts
1
Host decoder (Sti5505 and memory)
2
Audio / video encoder (DVDR only)
3
VSM (DVDR only)
4
NVRAM
5
Front Panel
6
Basic Engine
7
Analogue board (DVDR only)
8
DVIO (DVDR only)
9
Loop nuclei (DVDR only)
10
Library sub nuclei (I2C nuclei)
11
User interface
12
Furore (SACD only)
13
DAC (SACD only)
14
Miscellaneous
[ XX YY
]
Nucleus number
Nucleus group number
CL 06532152_012.eps
051200
for /F(P4):
16
5.3.2
ERROR HANDLING
Each nucleus returns an error code. This code contains six
numerals, which means:
Figure 5-7
The nucleus group numbers and nucleus numbers are the
same as above.
5.3.3
COMMAND MODE INTERFACE
Set-up physical interface components
Hardware required:
•
Service PC
•
one free COM port on the Service PC
•
special cable to connect DVD player to Service PC
The service PC must have a terminal emulation program
(e.g. OS2 WarpTerminal or Procomm) installed and must
have a free COM port (e.g. COM1). Activate the terminal
emulation program and check that the port settings for the
free COM port are: 19200 bps, 8 data bits, no parity, 1 stop
bit and no flow control. The free COM port must be connected
via a special cable to the RS232 port of the DVD player. This
special cable will also connect the test pin, which is available
on the connector, to ground (i.e. activate test pin).
Code number of PC interface cable: 3122 785 90017
Activation
Switch the player on and the following text will appear on the
screen of the terminal (program):
Figure 5-8
The first line indicates that the Diagnostic software has been
activated and contains the version number. The next lines
are the successful result of the SDRAM interconnection test
and the basic SDRAM test. The last line allows the user to
choose between the three possible interface forms. If
pressing C has made a choice for Command Interface, the
prompt (“DD>”) will appear. The diagnostic software is now
ready to receive commands. The commands that can be
given are the numbers of the nuclei.
Command overview
The tables below give an overview of the commands.
Startup
Host Decoder Tests [01]
[xx yy]
Number
Nuclei
startup
Test the UART of the host decoder by sending a
string to the UART.
[ XX YY ZZ ]
Error code
Nucleus number
Nucleus group number
CL 06532152_013.eps
051200
CL 06532152_014.eps
051200
[xx yy]
Number
Nuclei
100
Checksum Flash Checks the FLASH checksum.
101
Flash Write Access 1 Checks whether the first
FLASH can be written. Check if Write enable pin
of flash is high. The set must be switched off to
restart DSW.
102
Flash Write Access 2 Checks whether the sec-
ond FLASH can be written. Check if Write enable
pin of flash is high. The set must be switched off
to restart DSW.
103
Flash Write Read Checks whether we can write
to the FLASH. This test is non-destructive. How-
ever, this test should be used with great caution.
Potential danger exists when power loss occurs
when the test is being executed. The contents of
the NVRAM are changed during the test and are
restored after the test. However, power loss may
occur before the original contents are restored.
Therefore, this test is not included in scripts.
Check if Write enable pin of flash is high. The set
must be switched off to restart DSW.
104
SdRam Write Read The following three individual
memory tests will be executed: a data bus test,
an address bus test, and a device test. The first
two test for electrical wiring problems and im-
properly inserted chips, while the third is intend-
ed to detect missing chips and catastrophic
failures. As an unintended consequence, the de-
vice test will also uncover problems with the con-
trol bus wiring.
105
SdRam Write Read Fast The following two indi-
vidual memory tests will be executed: a data bus
test, and an address bus test. The two test for
electrical wiring problems and improperly insert-
ed chips.
106
Dram Write Read The following three individual
memory tests will be executed: a data bus test,
an address bus test, and a device test. The first
two test for electrical wiring problems and im-
properly inserted chips, while the third is intend-
ed to detect missing chips and catastrophic
failures. As an unintended consequence, the de-
vice test will also uncover problems with the con-
trol bus wiring. Because the DRAM is not
mounted in commercial sets, this test will result in
a failure.
107
Dram Write Read Fast The following two individ-
ual memory tests will be executed: a data bus
test, and an address bus test. The two test for
electrical wiring problems and improperly insert-
ed chips. Because the DRAM is not mounted in
commercial sets, this test will result in a failure.
108
Version Displays the version number of the
Sti5505.
109
Mute On Switches the audio mute of the mono-
board on.
110
Mute Off Switches the audio mute of the mono-
board off.
111
De-Emphasis On Switches the audio de-empha-
sis filter in the Sti5505 on.
112
De-Emphasis Off Switches the audio de-empha-
sis filter in the Sti5505 off.
113
Centre-On-Stereo Pin On Sets the PIO-pin
Centre_on_stereo to '1'.
114
Centre-On-Stereo Pin Off Sets the PIO-pin
Centre_on_stereo to '0'.
17
NVRAM Tests [04]
Front Panel Tests [05]
User confirmation is necessary during the front panel tests.
The following keys are used for user feedback:
115
Pink Noise On Generates internally on the
Sti5505 a pink noise audio signal that will be
passed to all the DACs were it is converted to an
analogue audio signal.
116
Pink Noise Off Switches off the pink noise audio
signal generated with DS_HostdPinkNoiseOn.
117
Sine On Generates a sine signal of 1 kHz on the
analogue output. The sine signal digital data are
stored in the audio buffer in SDRAM, passed
through the audio decoder and without any fur-
ther processing to the audio DAC were it is con-
verted to an analogue audio signal. To stop the
sine, press the STOP key on the local keyboard.
118
Sine Burst 1kHz Generates a sine signal of 1 kHz
on the analogue output that lasts about four sec-
onds. The generation of the signal is the same as
in DS_HostdSineOn.
119
Sine Burst 12kHz Generates a sine signal of
12kHz on the analogue output that lasts about
four seconds. The generation of the signal is the
same as in DS_HostdSineOn.
120
Colour-bar On Enables colour bar in the DENC in
the Sti5505. To make the colourbar visible on the
TV screen via the SCART output, the following
commands must also be given: 1406: Colour
Setup Normal 1408: Scart Switch DVD
121
Colour-bar Off Disables colour bar in the DENC
in the Sti5505.
122
NvramWrR Checks the NVRAM by writing and
reading patterns to and from all locations. This
test is non-destructive. However, this test should
be used with great caution. Potential danger ex-
ists when power loss occurs when the test is be-
ing executed. The contents of the NVRAM are
changed during the test and are restored after
the test. However, power loss may occur before
the original contents are restored. Therefore, this
test is not used in script and menu mode.
123
NvramI2c Checks the interconnection between
the I2C controller on the STi5505 and the
NVRAM.
124 125
126 127
128 129
Pink Noise On Channel X Generates internally
on the Sti5505 a pink noise audio signal that will
be passed to the DACs on the DAC board where
it is converted to an analogue audio signal. Only
one channel at the time will generate a pink noise
audio signal. X indicates a channel number. It
can be turned off with the nucleus 116. 124 =
ch1, . . . . ,29 = ch6
[xx yy]
Number
Nuclei
400
Resets the NVRAM. After the reset of the
NVRAM, nucleus 404 will give error 40402:
"NVRAM error log is invalid". Introducing an error
can rectify this. (E.g. playing a disc upside down).
To reset the error log, it is recommended to use
nucleus 407.
404
Line1 Error Log Reads the error log from NVRAM.
The information is displayed on the local display
and is send to the serial port. With the PREV and
NEXT key it is possible to step through the log-
ging information on the local display. The STOP
key is used to exit this nucleus at any time.
[xx yy]
Number
Nuclei
405
Line1 Lifetime Log Ends the lifetime log. The in-
formation is displayed on the local display and is
send to the serial port. The following statistics will
be read from the NVRAM: Power On Time. The
time in hours that the SACD player was turned on.
Playing Time CDDA and VCD. The time in hours
that the disc has been spinning summed up for
both playing CDDA and VCD discs. Playing Time
DVD. Like above but for DVD discs. Times Tray
Open. The total number of times the tray has
been opened. With the PREV and NEXT key it is
possible to step through the logging information
on the local display. The STOP key is used to exit
this nucleus at any time.
406
Line1 Application Version Reads the version of
the application software from a fixed location in
the NVRAM.
407
Line2 Error Log Reset Resets the error log.
408
Line2 Lifetime Log Reset Resets the lifetime log.
409
Line2 Region-Code Reset Resets the region code
change counter of the SACD player.
[xx yy]
Number
Nuclei
500
Echo Checks the interface between the SACD
Monoboard and the slave processor on the front
panel by sending an 'echo' command. The I2C
connection will be tested.
501
Version Returns the ROM software version and
internal ID of the slave processor of the front pan-
el.
502
Segment Checks the local display by lighting four
test patterns. The following test patterns are:
Show a starburst Light all horizontal segments
Light all vertical segments Light all segments
User confirmation is necessary after each test
pattern.
503
Label Checks the local display and LED of the
front panel by lighting all labels and LED in five
steps: Light the first label grid. Light the second
label grid. Light the third label grid. Light all label
grids. Light the LED. User confirmation is neces-
sary after each test pattern.
504
Led Switches the LED on. User confirmation is
necessary.
505
Keyboard Checks the local keyboard. The local
display gives feedback on the keys that are
pressed by showing their code: [LKB_xxxx N_yy].
[xxxx] Means the key-code and is hexadecimal.
[yy] means the number of times this key was
pressed. All keys must be tested. User confirma-
tion is necessary at the end of the test. However,
the PLAY, PREV and NEXT keys are also part of
the keyboard test itself. Therefore it is needed to
press these keys for one second.
506
Remote-Control Checks the interface between
the remote control and the front panel. The local
display gives feedback on the remote key that is
pressed by showing its code: [RC C_xx N_yy].
[xx] Means the RC-key-code and is hexadecimal.
[yy] means the number of times a RC-key was
pressed. At least one key must be tested. User
confirmation is necessary. The PLAY key con-
firms that at least one RC-key is tested.
518
Dimmer Dimming test of Display
[xx yy]
Number
Nuclei
18
PLAY for confirming that the test is correct. PREV when the
test is not ok. NEXT is pressed in order to abort to the
nucleus at any time; the nucleus is not tested successfully.
The confirmation can also be send through the serial port for
automated verification. Character ‘o’ means 'ok'; character ‘n'
means that this nucleus must be aborted; the nucleus is not
tested successfully. Any other key will fail the test.
Basic Engine Tests [06]
Furore Tests [12]
DAC Board Tests [13]
Miscellaneous Tests [14]
[xx yy]
Number
Nuclei
600
S2B Pass Switch the RS232 port and the S2B
port in pass-through mode. The only way to exit
this nucleus is via a power off of the player.
601
S2Bengine Checks the S2B interface with the
Basic Engine by sending an 'echo' command.
602
Version Returns the version number of the Basic
Engine. The version number will also be dis-
played on the local display. The PLAY key is
used to exit this nucleus.
603
Reset Resets the Basic Engine.
604
Focus On Puts the laser of the BE into focus (fo-
cus loop).
605
Focus Off Switches the focus loop off.
606
Disc Motor On Switches the disk motor (= spin-
dle motor) on.
607
Disc Motor Off Switches the disk motor (= spin-
dle motor) off.
608
Radial On Closes the radial loop.
609
Radial Off Opens the radial loop.
610
Sledge In Moves the sledge fully inwards.
611
Sledge Out Moves the sledge fully outwards.
612
Grooves In Lets the laser spot jump to the inside
limit the disc.
613
Grooves Mid Lets the laser spot jump to the mid-
dle of the disc.
614
Grooves Out Let's the laser spot jump to the out-
side of the disc.
615
Tray In Closes the disc tray.
616
Tray Out Opens the disc tray.
635
DVD Laser On Switches the DVD laser of the BE
on.
636
CD Laser On Switches the CD laser of the BE
on.
637
Lasers Off Switches the lasers off.
[xx yy]
Number
Nuclei
1200
Write Read SDRam Low The following three indi-
vidual memory tests will be executed at the lower
FURORE SDRAM: a data bus test, an address
bus test, and a device test. The first two test for
electrical wiring problems and improperly insert-
ed chips, while the third is intended to detect
missing chips and catastrophic failures. As an
unintended consequence, the device test will
also uncover problems with the control bus wir-
ing.
1201
Write Read SDRam High The following three in-
dividual memory tests will be executed at the
higher FURORE SDRAM: a data bus test, an ad-
dress bus test, and a device test. The first two
test for electrical wiring problems and improperly
inserted chips, while the third is intended to de-
tect missing chips and catastrophic failures. As
an unintended consequence, the device test will
also uncover problems with the control bus wir-
ing.
1202
Write Read Fast SDRam Low The following two
individual memory tests will be executed at the
lower FURORE SDRAM: a data bus test, and an
address bus test. The two test for electrical wiring
problems and improperly inserted chips.
1203
Write Read Fast SDRam High The following two
individual memory tests will be executed at the
higher FURORE SDRAM: a data bus test, and an
address bus test. The two test for electrical wiring
problems and improperly inserted chips.
1204
Id Gets the revision ID of the FURORE chip.
[xx yy]
Number
Nuclei
1300
I2C Checks the interface between the I2C con-
troller on the Hostdecoder and the DAC board.
1301
I2C Enable Enables the I2C interface.
1302
I2C Disable Disables the I2C interface.
1303
Reset Resets the DAC board.
1304
Filter SACD Selects the SACD output filters for
the DACs.
1305
Filter Non-SACD Selects the non-SACD output
filters for the DACs.
1306
Clock Internal Selects the internal clock of 384 *
Fs. (in 44.1kHz mode)
1307
Clock External Selects the external clock. (in non
44.1 kHz mode)
1308
Mute On Switches the mute of the DAC board on.
1309
Mute Off Switches the mute of the DAC board off.
1310
Mode CDDA Switches the DACs into CDDA
mode.
1311
Mode DVD48 Switches the DACs into DVD 48
kHz mode.
1312
Mode DVD96 Switches the DACs into DVD96
kHz mode.
1313
Mode DSD Switches the DACs into DSD mode.
1314
Clock Frequency SACD Selects the DAC master
clock MCLK for SACD = 384Fs
1315
Clock Frequency CDDA Selects the DAC master
clock MCLK for CDDA = 192Fs
[xx yy]
Number
Nuclei
1400
Clock 11.289 MHz Switches clock A_CLK from
the microclock to 11.2896 MHz.
1401
Clock 12.288 MHz Switches clock A_CLK from
the microclock to 12.288 MHz.
1402
Clock 24.576 MHz Switches clock A_CLK from
the microclock to 24.576 MHz.
1403
Colour Setup I2C Checks the I2C interface with
the RGB video processor on the Audio/Video.
1404
Colour Setup High Sets the RGB setting to a high
value, changing the intensity.
1405
Colour Setup Low Sets the RGB setting to a low
value, changing the intensity.
1406
Colour Setup Normal Sets the RGB setting to a
normal value, changing the intensity.
1407
Scart Switch I2C Checks the I2C interface with
the scart switch on the Audio/Video board.
1408
Scart Switch Dvd Sets the switch IC on the Audio/
Video board to give DVD signal.
1409
Scart Switch Pass Sets the scart IC on the Audio/
Video board to pass-through the aux. scart input.
[xx yy]
Number
Nuclei
19
5.3.4
MENU MODE INTERFACE
Activation
Switch the player on and the following text will appear on the
screen of the terminal (program):
Figure 5-9
The first line indicates that the Diagnostic software has been
activated and contains the version number. The next lines
are the successful result of the SDRAM interconnection test
and the basic SDRAM test. The last line allows the user to
choose between the three possible interface forms. If
pressing M has made a choice for Menu Interface, the Main
Menu will appear.
Menu structure
The following menu structure is given after starting up the
SA-12S1 player in menu mode. The symbol
→ indicates that the current menu choice will invoke the
display of a submenu. The number between [ ] mean the
nucleus number. These numbers will not be shown on the
screen.
Main Menu
1.
Basic Engine
→
2.
Dac Board
→
3.
Digital Board
→
4.
Front panel
→
5.
Log
→
Basic Engine Menu
1.
Disc Motor
→
2.
Focus
→
3.
Grooves
→
4.
Laser
→
5.
Radial
→
6.
Scripts
→
7.
Tray
→
8.
Reset
[603]
9.
S2B Pass
[600]
10. S2B Echo
[601]
11. Version
[602]
Disc Motor Menu
1.
Motor On
[606]
2.
Motor Off
[607]
Focus Menu
1.
Focus On
[604]
2.
Focus Off
[605]
Grooves Menu
1.
Inside of the Disc
[612]
2.
Middle of the Disc
[613]
3.
Outside of the Disc
[614]
Laser Menu
1.
DVD Laser On
[635]
2.
CD Laser On
[636]
3.
Lasers Off
[637]
Radial Menu
1.
On
[608]
2.
Off
[609]
Sledge Menu
1.
Move Inwards
[610]
2.
Move Outwards
[611]
Tray Menu
1.
Open
[616]
2.
Close
[615]
DAC Board Menu
1.
Clock
→
2.
DAC Mode
→
3.
Filter SACD
→
4.
I2C
→
5.
Mute
→
6.
Reset
[1303]
DAC Clock Menu
1.
Clock Internal
[1306]
2.
Clock External
[1307]
3.
Clock Frequency SACD
[1314]
4.
Clock Frequency CDDA
[1315]
DAC Mode Menu
1.
Mode CDDA
[1310]
2.
Mode DVD48
[1311]
3.
Mode DVD96
[1312]
4.
Mode DSD
[1313]
DAC Filter Menu
1.
Filter SACD
[1304]
2.
Filter Non-SACD
[1305]
DAC IIC Menu
1.
I2C Test
[1300]
2.
I2C Enable Pin On
[1301]
3.
I2C Enable Pin Off
[1302]
DAC Mute Menu
1.
Mute On
[1308]
2.
Mute Off
[1309]
Digital Board Menu
1.
Furore
→
2.
Host Decoder
→
3.
Miscellaneous
→
Furore Menu
1.
SDRAM Write/Read High
[1201]
2.
SDRAM Write/Read Low
[1200]
3.
SDRAM Write/Read Fast High [1203]
4.
SDRAM Write/Read Fast Low
[1202]
5.
Version
[1204]
Host Decoder Menu
1.
Audio Mute
→
2.
Centre On Stereo
→
3.
Colourbar
→
4.
De-Emphasis
→
1410
Scart Low Steers pin 16 on the scart connector
with the value low (0 to 2 V).
1411
Scart Medium Steers pin 16 on the scart connec-
tor with the value medium (4.5 to 7 V).
[xx yy]
Number
Nuclei
CL 06532152_015.eps
181200
20
Script Menu
1.
User/Dealer Script
2.
Player Script
5.
Pink Noise
→
6.
Sine Generate
→
7.
Digital Board Version
[108]
8.
Flash Checksum
[100]
9.
Flash1 Write Access
[101]
10. Flash2 Write Access
[102]
11. Flash Write/Read
[103]
12. Host SDRAM Write/Read
[104]
13. Host SDRAM Write/Read Fast [105]
14. Host DRAM Write/Read
[106]
15. Host DRAM Write/Read Fast
[107]
16. NVRAM I2C
[123]
17. NVRAM Write/Read
[122]
Audio Mute Menu
1.
Audio Mute On
[109]
2.
Audio Mute Off
[110]
Centre On Stereo Menu
1.
Centre-On-Stereo Pin On
[113]
2.
Centre-On-Stereo Pin Off
[114]
Colourbar Menu
1.
Colourbar On
[120]
2.
Colourbar Off
[121]
De-Emphasis Menu
1.
De-Emphasis On
[111]
2.
De-Emphasis Off
[112]
Pink Noise Menu
1.
Pink Noise On
[115]
2.
Pink Noise On Channel 1
[124]
3.
Pink Noise On Channel 2
[125]
4.
Pink Noise On Channel 3
[126]
5.
Pink Noise On Channel 4
[127]
6.
Pink Noise On Channel 5
[128]
7.
Pink Noise On Channel 6
[129]
8.
Pink Noise Off
[116]
Sine Generate Menu
1.
Sine On
[117]
2.
Sine Burst 1kHz
[118]
3.
Sine Burst 12kHz
[119]
Miscellaneous Menu
1.
Clock 11.289 MHz
[1400]
2.
Clock 12.288 MHz
[1401]
3.
Clock 24.576 MHz
[1402]
4.
Colour Setup I2C
[1403]
5.
Colour Setup High
[1404]
6.
Colour Setup Low
[1405]
7.
Colour Setup Normal
[1406]
8.
Scart Pin Low
[1410]
9.
Scart Pin Medium
[1411]
10. Scart Switch I2C
[1407]
11. Scart Switch DVD
[1408]
12. Scart Switch Pass
[1409]
Front Panel Menu
1.
Dim Test
[618]
2.
Echo
[500]
3.
Light Labels
[503]
4.
Led Test
[504]
5.
Keyboard
[506]
6.
Remote Control
[506]
8.
Version
[501]
7.
Segment Test
[502]
Log Menu
1.
Application Version Read
[406]
2.
Error Log Read
[404]
3.
Error Log Reset
[407]
4.
Lifetime Log Read
[405]
5.4
Nuclei Error Codes
In the following tables the error description of the error codes
will be described.
5.4.1
Host Decoder Nuclei
Error code Error description
10000
Test succeeded.
10001
Test failed, checksum is wrong.
10100
Test succeeded.
10101
FLASH 1 Write access test failed.
10200
Test succeeded.
10201
FLASH 2 Write access test failed.
10300
Test succeeded.
10301
FLASH write test failed.
10302
FLASH write command failed.
10303
FLASH write test done max. number of times.
10400
Memory tests succeeded.
10401
Memory databus test goes wrong at wire dy.
10402
Memory addressbus test goes wrong at wire
ay.
10403
Physical memory device test goes wrong at
address 0xYYYYYYYY.
10500
Memory tests succeeded.
10501
Memory databus test goes wrong at wire dy.
10502
Memory addressbus test goes wrong at wire
ay.
10503
Physical memory device test goes wrong at
address 0xYYYYYYYY.
10600
Memory tests succeeded.
10601
Memory databus test goes wrong at wire dy.
10602
Memory addressbus test goes wrong at wire
ay.
10603
Physical memory device test goes wrong at
address 0xYYYYYYYY.
10700
Memory tests succeeded.
10701
Memory databus test goes wrong at wire dy.
10702
Memory addressbus test goes wrong at wire
ay.
10703
Physical memory device test goes wrong at
address 0xYYYYYYYY.
10800
Test succeeded.
10900
Test succeeded.
10901
Muting audio test failed.
11000
Test succeeded.
11001
Demuting audio test failed.
11100
Test succeeded.
11200
Test succeeded.
11300
Test succeeded.
11400
Test succeeded.
21
5.4.2
NVRAM Nuclei
5.4.3
Front Panel Nuclei
11500
Test succeeded.
11501
Set-up of I2C failed.
11502
The selection of the clock source failed.
11504
The demute of the audio failed.
11600
Test succeeded.
11601
Set-up of I2C failed.
11602
The mute of the audio failed.
11700
Test succeeded.
11701
Set-up of I2C failed.
11702
The mute of the audio failed.
11703
The demute of the audio failed.
11704
The selection of the clock source failed.
11707
Set-up of front panel failed.
11708
Front panel keyboard access failed.
11800
Test succeeded.
11801
Set-up of I2C failed.
11802
The mute of the audio failed.
11803
The demute of the audio failed.
11804
The selection of the clock source failed.
11900
Test succeeded.
11901
Set-up of I2C failed.
11902
The mute of the audio failed.
11903
The demute of the audio failed.
11904
The selection of the clock source failed.
12000
Test succeeded.
12100
Test succeeded.
12200
Test succeeded.
12201
I2C bus busy before start.
12202
NVRAM I2C access time-out.
12203
No NVRAM I2C access acknowledge.
12204
NVRAM I2C access time-out.
12205
NVRAM I2C Write/Read back failed.
12300
Test succeeded.
12301
I2C bus busy before start.
12302
NVRAM I2C read access time-out.
12303
No NVRAM I2C read acknowledge.
12304
NVRAM I2C read failed.
12400
Test succeeded.
12401
Test failed.
12500
Test succeeded.
12501
Test failed.
12600
Test succeeded.
12601
Test failed.
12700
Test succeeded.
12701
Test failed.
12800
Test succeeded.
12801
Test failed.
12900
Test succeeded.
12901
Test failed.
Error code Error description
Error code
Error description
40000
Test succeeded.
40001
I2C access failed.
40100
Test succeeded.
40101
I2C access failed.
40102
Invalid input.
40200
Test succeeded.
40201
I2C access failed.
40202
Invalid input.
40400
Test succeeded.
40401
I2C access failed.
40402
Errorlog in NVRAM is corrupt.
40403
Front panel access failed.
40500
Test succeeded.
40501
I2C access failed.
40502
Front panel access failed.
40600
Test succeeded.
40601
I2C access failed.
40700
Test succeeded.
40701
I2C access failed.
40800
Test succeeded.
40801
I2C access failed.
40900
Test succeeded.
40901
I2C access failed.
Error code
Error description
50000
Test succeeded.
50001
I2C bus busy.
50002
I2C read access time-out.
50003
No I2C read acknowledges.
50004
I2C read failed.
50005
I2C write access time-out.
50006
No I2C write acknowledges.
50007
I2C write failed.
50008
No echo response from front panel.
50100
Test succeeded.
50101
I2C connection failed.
50200
Test succeeded.
50201
I2C connection failed.
50202
Test failed.
50300
Test succeeded.
50301
I2C connection failed.
50302
Test failed.
50400
Test succeeded.
50401
I2C connection failed.
50402
Test failed.
50500
Test succeeded.
50501
I2C connection failed.
22
5.4.4
Basic Engine Nuclei
50502
Test failed.
50504
Not all keys were pressed.
50600
Test succeeded.
50601
I2C connection failed.
50602
Test failed.
51800
Test succeeded.
51806
I2C connection failed.
51807
Test failed.
Error code
Error description
60000
Test succeeded.
60100
Test succeeded.
60101
Basic Engine returned error number 0xXX.
60102
Parity error from Basic Engine to Serial.
60103
Communication time-out error.
60104
Unexpected response from Basic Engine.
60105
Echo loop could not be closed.
60106
Wrong echo pattern received.
60200
Test succeeded.
60201
Basic Engine returned error number 0xXX.
60202
Parity error from Basic Engine to Serial.
60203
Communication time-out error.
60204
Unexpected response from Basic Engine.
60300
Test succeeded.
60301
Basic-Engine time-out error.
60400
Test succeeded.
60401
Basic Engine returned error number 0xXX.
60402
Parity error from Basic Engine to Serial.
60403
Communication time-out error.
60404
Unexpected response from Basic Engine.
60405
Focus loop could not be closed.
60500
Test succeeded.
60501
Basic Engine returned error number 0xXX.
60502
Parity error from Basic Engine to Serial.
60503
Communication time-out error.
60504
Unexpected response from Basic Engine.
60600
Test succeeded.
60601
Basic Engine returned error number 0xXX.
60602
Parity error from Basic Engine to Serial.
60603
Communication time-out error.
60604
Unexpected response from Basic Engine.
60700
Test succeeded.
60701
Basic Engine returned error number 0xXX.
60702
Parity error from Basic Engine to Serial.
60703
Communication time-out error.
60704
Unexpected response from Basic Engine.
60800
Test succeeded.
60801
Basic Engine returned error number 0xXX.
60802
Parity error from Basic Engine to Serial.
60803
Communication time-out error.
60804
Unexpected response from Basic Engine.
60805
Radial loop could not be closed.
Error code
Error description
60900
Test succeeded.
60901
Basic Engine returned error number 0xXX.
60902
Parity error from Basic Engine to Serial.
60903
Communication time-out error.
60904
Unexpected response from Basic Engine.
61000
Test succeeded.
61001
Basic Engine returned error number 0xXX.
61002
Parity error from Basic Engine to Serial.
61003
Communication time-out error.
61004
Unexpected response from Basic Engine.
61100
Test succeeded.
61101
Basic Engine returned error number 0xXX.
61102
Parity error from Basic Engine to Serial.
61103
Communication time-out error.
61104
Unexpected response from Basic Engine.
61200
Test succeeded.
61201
Basic Engine returned error number 0xXX.
61202
Parity error from Basic Engine to Serial.
61203
Communication time-out error.
61204
Unexpected response from Basic Engine.
61300
Test succeeded.
61301
Basic Engine returned error number 0xXX.
61302
Parity error from Basic Engine to Serial.
61303
Communication time-out error.
61304
Unexpected response from Basic Engine.
61400
Test succeeded.
61401
Basic Engine returned error number 0xXX.
61402
Parity error from Basic Engine to Serial.
61403
Communication time-out error.
61404
Unexpected response from Basic Engine.
61500
Test succeeded.
61501
Basic Engine returned error number 0xXX.
61502
Parity error from Basic Engine to Serial.
61503
Communication time-out error.
61504
Unexpected response from Basic Engine.
61600
Test succeeded.
61601
Basic Engine returned error number 0xXX.
61602
Parity error from Basic Engine to Serial.
61603
Communication time-out error.
61604
Unexpected response from Basic Engine.
63500
Test succeeded.
63501
Basic Engine returned error number 0xXX.
63502
Parity error from Basic Engine to Serial.
63503
Communication time-out error.
63504
Unexpected response from Basic Engine.
63600
Test succeeded.
63601
Basic Engine returned error number 0xXX.
63602
Parity error from Basic Engine to Serial.
63603
Communication time-out error.
63604
Unexpected response from Basic Engine.
63700
Test succeeded.
63701
Basic Engine returned error number 0xXX.
63702
Parity error from Basic Engine to Serial.
Error code
Error description
23
5.4.5
Furore Nuclei
5.4.6
DAC Nuclei
63703
Communication time-out error.
63704
Unexpected response from Basic Engine.
Error code
Error description
120000
Test succeeded.
120001
Memory databus test goes wrong at wire dy.
120002
Memory addressbus test goes wrong at wire
ay.
120003
Physical memory device test goes wrong at
address 0xYYYYYYYY.
120100
Test succeeded.
120101
Memory databus test goes wrong at wire dy.
120102
Memory addressbus test goes wrong at wire
ay.
120103
Physical memory device test goes wrong at
address 0xYYYYYYYY.
120200
Test succeeded.
120201
Memory databus test goes wrong at wire dy.
120202
Memory addressbus test goes wrong at wire
ay.
120203
Physical memory device test goes wrong at
address 0xYYYYYYYY.
120300
Test succeeded.
120301
Memory databus test goes wrong at wire dy.
120302
Memory addressbus test goes wrong at wire
ay.
120303
Physical memory device test goes wrong at
address 0xYYYYYYYY.
120400
Test succeeded.
Error code
Error description
130000
Test succeeded.
130001
I2C bus busy before start.
130011
I2C I/O expander bus busy.
130012
I2C I/O expander read access time-out.
130013
I2C I/O expander no read acknowledge.
130014
I2C I/O expander read failed.
130015
I2C I/O expander write access time-out.
130016
I2C I/O expander no write acknowledge.
130017
I2C I/O expander write failed.
130018
I2C I/O expander failed.
130021
I2C DAC_LR device bus busy.
130022
I2C DAC_LR device read access time-out.
130023
I2C DAC_LR device no read acknowledge.
130024
I2C DAC_LR device read failed.
130025
I2C DAC_LR device write access time-out.
130026
I2C DAC_LR device no write acknowledge.
130027
I2C DAC_LR device write failed.
130028
I2C DAC_LR device failed.
130031
I2C DAC_LSRS device bus busy.
130032
I2C DAC_LSRS device read access time-
out.
130033
I2C DAC_LSRS device no read acknowl-
edge.
Error code
Error description
130034
I2C DAC_LSRS device read failed.
130035
I2C DAC_LSRS device write access time-
out.
130036
I2C DAC_LSRS device no write acknowl-
edge.
130037
I2C DAC_LSRS device write failed.
130038
I2C DAC_LSRS device failed.
130041
I2C DAC_CLFE device bus busy.
130042
I2C DAC_CLFE device read access time-
out.
130043
I2C DAC_CLFE device no read acknowl-
edge.
130044
I2C DAC_CLFE device read failed.
130045
I2C DAC_CLFE device write access time-
out.
130046
I2C DAC_CLFE device no write acknowl-
edge.
130047
I2C DAC_CLFE device write failed.
130048
I2C DAC_CLFE device failed.
130100
Test succeeded.
130200
Test succeeded.
130300
Test succeeded.
130301
I2C bus busy before start.
130302
I2C access failed.
130400
Test succeeded.
130401
I2C bus busy before start.
130402
I2C access failed.
130500
Test succeeded.
130501
I2C bus busy before start.
130502
I2C access failed.
130600
Test succeeded.
130601
I2C bus busy before start.
130602
I2C access failed.
130700
Test succeeded.
130701
I2C bus busy before start.
130702
I2C access failed.
130800
Test succeeded.
130801
I2C bus busy before start.
130802
I2C access failed.
130900
Test succeeded.
130901
I2C bus busy before start.
130902
I2C access failed.
131000
Test succeeded.
131001
I2C bus busy before start.
131002
I2C access failed.
131100
Test succeeded.
131101
I2C bus busy before start.
131102
I2C access failed.
131200
Test succeeded.
131201
I2C bus busy before start.
131202
I2C access failed.
Error code
Error description
24
5.4.7
Miscellaneous Nuclei
5.5
Test instructions SACD mono board
5.5.1
General
Impedance of measuring-equipment should be > 1MΩ
Most tests have to be done by software commands.
Together with the software command you will find a Ref.#
nbr. This is the number of the diagnostic nucleus used for
this test. More detailed information can be found in the
description of the command mode interface.
Levels: Most measurements are digital measurements.
The high and low levels in this document got to have next
specification: low
: < 0.3V (LVTTL) high : > 3.0V
(LVTTL) LOW : < 0.4V (TTL) HIGH: > 4.5V (TTL)
All voltages marked with “stby” have to stay on during
standby.
Because all clocks are derived from the SACD clock
(384FS_in) from the DAC board, this board should
always be connected to the mono board.
The linear power supply is switched on/off by the
STB_OUT signal from the mono board to the DAC board.
5.5.2
General start-up measurements
Supply check:
1.
Measure the voltages on the pins of the connector 1600
with a multimeter.
2.
Also check the following power supplies:
Testpoint F608: +3V3 (5%. (Check IC7605 in case of failure)
Testpoint F632: +3V3 (5%. (Check IC7622 in case of failure)
Testpoint F101: +9V (5%. (Check IC7109 in case of failure)
1.
Current at the input of the power supply
Check the supply currents to be sure that there are no major
failures on the board.
Measure the currents flowing toward the mono board using a
Tektronix AM503B current probe on the wires between the
switch mode power supply and the connector 1600.
131300
Test succeeded.
131301
I2C bus busy before start.
131302
I2C access failed.
131400
Test succeeded.
131401
I2C bus busy before start.
131402
I2C access failed.
131500
Test succeeded.
131501
I2C bus busy before start.
131502
I2C access failed.
Error code
Error description
140000
Test succeeded.
140001
I2C access failed.
140100
Test succeeded.
140101
I2C access failed.
140200
Test succeeded.
140300
Test succeeded.
140301
I2C bus busy.
140302
I2C device write access time-out.
140303
I2C device no write acknowledge.
140304
I2C device write failed.
140400
Test succeeded.
140401
I2C bus busy before start.
140402
I2C access failed.
140403
Setup of SCART switch failed.
140500
Test succeeded.
140501
I2C bus busy before start.
140502
I2C access failed.
140503
Setup of SCART switch failed.
140600
Test succeeded.
140601
I2C bus busy before start.
140602
I2C access failed.
140603
Setup of SCART switch failed.
140700
Test succeeded.
140701
I2C bus busy.
140702
I2C device read access time-out.
140703
I2C device no read acknowledge.
140704
I2C device read failed.
140800
Test succeeded.
140801
Setup of ColourSetup chip failed.
140802
I2C device write failed.
140900
Test succeeded.
140901
Setup of ColourSetup chip failed.
140902
I2C device write failed.
140903
I2C device read failed.
141000
Test succeeded.
141100
Test succeeded.
Error code
Error description
pin
TP
Signal_name Voltage
1600-1
F604
+3V3
+3V3
1600-2
F604
+3V3
+3V3
1600-3
F631
+5V
+5V (0V during standby)
1600-4
F614
+5Vstby
+5V
1600-5
F615
+6Vstby
+6V
1600-6
F623
GND
0V
1600-7
F623
GND
0V
1600-8
F623
GND
0V
1600-9
F618
-8Vstby
-8V
1600-10 F634
STB_CONT
0V (+5V during standby)
1600-11 F636
+12Vstby
+12V
1600-12 F623
GND
0V
1600-13 F675
PWR_FAIL
+2.1V (1.4V during
standby)
pin
TP
Signal_name measured
1600-1
F605
+3V3
560 mA
1600-2
F605
+3V3
1600-3
F631
+5V
510 mA
1600-4
F614
+5Vstby
2 mA
1600-5
F615
+6Vstby
< 1 mA
1600-6
F623
GND
1600-7
F623
GND
1600-8
F623
GND
1600-9
F618
-8Vstby
54 mA
1600-10
F634
STB_CONT
1600-11
F636
+12Vstby
90 mA
1600-12
F623
GND
1600-13
F675
PWR_FAIL
25
5.5.3
Reset circuitry
Reset of Sti5505:
In power down mode STB_CONT is high; the clock is
disabled in order to reduce the power consumption. When
STB_CONT goes low, STB_CONTD goes high and enables
the 27 MHz clock.
Check that this clock is present and stable before the
RESETn is de-asserted. RESETn is a signal, which allows
initialising the main processor. We check also that when
going from ON mode to stand-by mode, the 27 MHz is held
for a certain moment after RESETn is asserted.
Reset of Servo:
The reset for the Servo circuit is given on Power On to the
MACE IC 7207 with POR via C2215, R3234 and D6200. The
reset signals STB_DALAS for DALAS and PORN for
HD61are generated by MACE IC.
When POR is not working (due to a hang-up situation), an
extra reset signal RSTN, coming from the Sti5505 will wake
up the Servo circuit.
5.5.4
Clock check
The source clock comes from the DAC board. The SACD
CLK is a master clock from which all the other clocks are
derived. If this one is not present the system cannot start and
work.
The SACD power supply, the mono board and the DAC
board should be connected together. On power up the clocks
appear on the board. All clocks to be measured have a 0.02%
tolerance.
Clockname
Test point Frequency / level
384Fs_in
F911
16.9344 MHz / 3V3
SACD_CLK
F903
16.9344 MHz / 5V
27M_CLK
F503
27MHz / 5V
PCMCLK_AV
F640
12.288MHz / 3V3
MACE CLOCK F211
8.46 MHz / 3V3
PM3394B
ch1
ch1: freq= 16.9MHz
CH1 1.00 V~ MTB20.0ns ch1+
1
384FS_IN
CL 06532152_016.eps
051200
PM3394B
ch1
ch1: freq= 16.9MHz
CH1 1.00 V~ MTB20.0ns ch1+
1
SACD CLK
CL 06532152_017.eps
051200
PM3394B
ch1
ch1: freq= 27.0MHz
CH1 1.00 V~ MTB20.0ns ch1+
1
27M_CLK
CL 06532152_018.eps
051200
PM3394B
ch1
ch1: freq= 12.2MHz
CH1 1.00 V~ MTB50.0ns ch1+
1
PCM CLK_AV
CL 06532152_019.eps
051200
26
5.5.5
Tests with diagnostic software program
The SACD diagnostic program is included in the SACD
application software. This program permits to test a lot of
functions of the PCB. We group in this part the memory tests,
the general serial bus tests and the peripheral tests of the
mono board.
Start up
Conditions
The units required are the SACD power supply, the mono
board and the DAC board. This is the minimum set up for the
diagnostic program, when testing memories and peripherals.
When using the Compair serial cable, pin 1602-2 is directly
connected to GND and after powering on, the diagnostic
program will be started.
The other end of the service cable is connected to a PC serial
port. On the PC you need to open an HyperTerminal and
configure it as follows: 19200 b/s, 8 bits data, no parity, 1 stop
bit, no control flow.
Start the diagnostic
When you switch on, the diagnostic checks the serial port in
both directions, followed by few other commands. Those are
done automatically during power up. The following message
is displayed on the HyperTerminal: "SACD1000 Diagnostic
Software version ...". Then the program is waiting that you
select a mode. Getting this screen means the Sti5505 can
boot from flash. The program is running and the service
interface is functioning. Enter the mode you wish to use. You
can use either the Menu mode or the Command mode. In the
first mode, the main menu appears, you can navigate into the
menu system and you can select the individual command,
just type the corresponding number to launch it. In the
second mode, just type the Ref.# number to do the test.
When a Ref.# command is available in the diagnostic
program, it will be explained as follow :
At the end of the test, the diagnostic program will return “OK”
if the test is passed. Otherwise an error message will appear.
System clock
ST_CLK is the system clock and is derived from the 27 MHz
by the internal PLL of the Sti5505 (pin137).
Memories
Flashes
Read flash test:
If you can start the diagnostic that means you are able to read
the flashes and the program is running. Then you can
normally use the diagnostic program. At this moment you can
launch the checksum calculation from the diagnostic
program.
If you don’t encounter any problem during utilisation of the
diagnostic program means the Sti5505 is properly connected
to the flashes.
SDRAM
Use the diagnostic program for a complete software test of
the SDRAM.
I2C bus test
EEprom
To access the EEPROM, the I2C bus is used. So writing and
reading back to the EEPROM check the chip and the bus.
The complete EEPROM can also be checked but it takes a
lot of time to write and read back at all the locations.
Display board
The mono board accesses to the display board through the
I2C bus. You can test this serial bus up to the connector
1501. So connect the display board to the mono board and
launch either the following command :
Ref.#
Command Name
Remark
Name
Test point Frequency
Level
ST_CLK F822
49.95 MHz
TTL
PM3394B
ch1
ch1: freq= 8.50MHz
CH1 1.00 V~ MTB50.0ns ch1+
1
MACE CLK
CL 06532152_020.eps
051200
Ref.#
Command Name
Remark
100
Checksum FLASH
Ref.#
Command Name
Remark
104
SDRAM
Write
Read
Extensive test
Ref.#
Command Name
Remark
123
NVRAM I2C
Quick test - Write and
read back
Ref.#
Command Name
Remark
122
NVRAM write read Extensive test - Write
and read-back
Ref.#
Command Name
Remark
500
Echo
Write and read back
501
version
Software version of the
slave processor rom
PM3394B
ch1
ch1: freq= 50.0MHz
CH1 1.00 V~ MTB20.0ns ch1+
1
ST_CLK
CL 06532152_021.eps
051200
27
S2B bus
The S2B is the interface between the digital part and the front
end. This bus links the STi5505 and the MACE2. The S2B
echo command permits to check the communication
between those devices.
Peripherals
Audio clock select
This clock is derived from the SACD CLOCK by the mono
board system clocks. The audio PCM_CLK can take 3
values. The Sti5505 PIO's permit to select 3 different
frequencies depending on the application. Check those
frequencies on F566
Audio mute
Center on/Mono
Check whether we can switch between the mono mode and
the stereo mode. Measure the level on F633.
I2C DAC
Check whether you can enable or disable the I2C switch.
When driving the I2C_DAC signal measure the
corresponding level at F001.
Slow blanking
An additional part of the video-path is the scart-switching or
slow blanking voltage.
This voltage can be 0V, 6V. Check at F620 the output voltage
with next commands:
PCM Audio on I2S bus
For this test connect the A/V board and the front panel to the
monoboard. Don't forget to power up the front panel. The I2S
audio signals are measured in 3 different situations: no
audio, sine wave is played, pink noise is played.
No audio
Switch ON the power supplies and check these signals
Ref.#
Command Name
Remark
601
S2b Echo
Write and read back
Ref.#
Command
Name
Frequency SEL_AC
LK2
SEL_AC
LK1
1400
Clock
11.289 MHz
11.2896
MHz
0
1
1401
Clock
12.288 MHz
12.288
MHz
1
0
1402
Clock
24.576 MHz
24.576
MHz
1
1
PM3394B
ch1
ch1: freq= 11.4MHz
CH1 1.00 V~ MTB50.0ns ch1+
1
PCM clk 11,298MHz
CL 06532152_022.eps
051200
PM3394B
ch1
ch1: freq= 12.3MHz
CH1 1.00 V~ MTB50.0ns ch1+
1
PCM clk 12.288MHz
CL 06532152_023.eps
051200
Ref.#
Command
Name
MUTE_AV at F625
Remark
109
Mute ON
+4.8V
Audio Mute On
110
Mute OFF
-8V
Audio Mute Off
Ref.#
Command Name
Center on Remark
113
Centre-On-Stereo Pin On
3.3V
Mono
114
Centre-On-Stereo Pin Off
0V
Stereo
Ref.#
Command Name
level
1301
I2C enable
H = 5V
1302
I2C disable
L = 0V
Ref.#
Command Name
Remark
Level
1410
Scart Low
No picture
0V ± 0.5V
1411
Scart Medium
16/9 format
6V ± 10%
Signal
Test
point
type
Level
Frequency
SCLK_AV
F637
Clock
LVTTL 2.82MHz
< 0.02%
LRCLK_AV
F641
Clock
LVTTL 44.1KHz
< 0.02%
PCM_CLK_AV
F640
No signal
LVTTL N/A
PCMOUT_AV
F638
No signal
LVTTL N/A
PM3394B
ch1
ch1: freq= 24.6MHz
CH1 1.00 V~ MTB50.0ns ch1+
1
PCM clk 24.576MHz
CL 06532152_024.eps
051200
28
Sine wave
Generate the sine wave with the following command
Then measure the following signals
Press “STOP” to switch off the sine wave.
Pink noise
Generate the pink noise with the following command
PCM_Ce_Lf_Fu
r
F659
No signal
LVTTL N/A
PCM_LsRs_Fur
F504
No signal
LVTTL N/A
SPDIF
F644
Data
stream
TTL
N/A
Ref.#
Command Name
Remark
117
Sine ON
Play the sine wave at the au-
dio outputs
Signal
Test
point
type
Level
Frequency
SCLK_AV
F637
Clock
LVTTL 3.072MHz
< 0.02%
LRCLK_AV
F641
Clock
LVTTL 48 kHz
< 0.02%
PCMCLK_AV
F640
Clock
LVTTL 12.288 MHz
< 0.02%
PCMOUT_AV
F638
Data
strea
m
LVTTL N/A
PCM_Ce_Lf_Fur
F659
No
signal
LVTTL N/A
Signal
Test
point
type
Level
Frequency
PM3394B
ch1
ch1: freq= 2.79MHz
CH1 1.00 V= MTB 250ns ch1+
1
SCLK_AV
CL 06532152_025.eps
051200
PM3394B
ch1
ch1: freq= 44.3kHz
CH1 1.00 V= MTB10.0us ch1+
1
LRCLK_AV
CL 06532152_026.eps
051200
PCM_LsRs_Fur
F504
No
signal
LVTTL N/A
SPDIF
F644
Data
strea
m
TTL
N/A
Signal
Test
point
type
Level
Frequency
PM3394B
ch1
ch1: freq= 3.09MHz
CH1 2.00 V= MTB 200ns ch1+
1
SCLK_AV 3.072MHz
CL 06532152_027.eps
051200
PM3394B
ch1
ch1: freq= 48.1kHz
CH1 2.00 V= MTB10.0us ch1+
1
LRCLK_AV 48kHz
CL 06532152_028.eps
051200
PM3394B
ch1
ch1: freq= 12.2MHz
CH1 1.00 V~ MTB50.0ns ch1+
1
PCM CLK_AV
CL 06532152_029.eps
051200
29
Then measure the following signals
5.5.6
Video
From the diagnostic program, play the 8 colour bar pattern.
Video Hsync
Measure this output at F656
Video signals
CVBS
Measured at F657
Luminance Y-VID
Measured at F662
Ref.#
Command
Name
Remark
115
Pink Noise ON Play the pink noise at the audio
outputs
Signal
Test
point
type
Level
Frequency
SCLK_AV
F637
Clock
LVTTL 3.072MHz
< 0.02%
LRCLK_AV
F641
Clock
LVTTL 48 kHz
< 0.02%
PCM_CLK_AV
F640
Clock
LVTTL 12.288 MHz
< 0.02%
PCMOUT_AV
F638
Data
stream
LVTTL N/A
PCM_Ce_Lf_Fur
F659
Data
stream
LVTTL N/A
PCM_LsRs_Fur
F504
Data
stream
LVTTL N/A
SPDIF
F644
Data
stream
TTL
N/A
Ref.#
Command Name
Remark
120
Colour bar On
8-color bar pattern
121
Colour bar Off
Disable the pattern
Ref.#
Command
Name
Remark Value
120
Colour bar On
15.625 kHz ± 0.02%
Vpeak-peak > 3V
PM3394B
ch1
CH1 2.00 V~ MTB20.0us ch1+
1
HSYNC
CL 06532152_030.eps
051200
PM3394B
ch1
CH1 200mV~ MTB20.0us ch1+
1
CVBS
CL 06532152_031.eps
051200
PM3394B
ch1
CH1 200mV~ MTB20.0us ch1+
1
Y_VID
CL 06532152_032.eps
051200
30
Chrominance C_VID
Measured at F665
Red R_VID
Measured at F646
Green G_VID
Measured at F649
Blue B_VID
Measured at F653
Switch off the colour bar with the following command:
SACD Processor/Furore
With the following commands, the access of the Furore and
its SDRAM is checked.
RF signal amplitude
This signal is measured at F851 just at the input of the
Furore. When no disc is in the player, we measured 54 mV.
Then a disc is inserted and played, at this moment the RF
signal increases. We measured 1.05 V amplitude and the
level of this input should be between 0.2V and 1.5 V. Then
we can play normally a SACD disc.
DSD outputs
With the diagnostic software, we can partially test the
DSD_PCM bus toward the DAC board. When you play a pink
noise, digital bit stream is coming out of the Furore and is fed
to the DAC board.
Measure the following signals
PM3394B
ch1
CH1 200mV~ MTB20.0us ch1+
1
C_VID
CL 06532152_033.eps
051200
PM3394B
ch1
CH1 200mV~ MTB20.0us ch1+
1
R_VID
CL 06532152_034.eps
051200
PM3394B
ch1
CH1 200mV~ MTB20.0us ch1+
1
G_VID
CL 06532152_035.eps
051200
Ref.#
Command Name
Remark Value
121
Colour bar Off
Disable the pattern
Ref.#
Command Name
Remark
1204
DS_FURORE_Id
Check Furore ID
1200
DS_FURORE_Sdram
WrRLow
Check full speed SDRAM
1201
DS_FURORE_Sdram
WrRHigh
Check full speed SDRAM
1202
DS_FURORE_Sdram
WrRLowFast
Check full speed SDRAM
1203
DS_FURORE_Sdram
WrRHighFast
Check full speed SDRAM
Ref.#
Command Name
Remark
115
Pink Noise ON
Play the pink noise at the
audio outputs
Signal
Test
point
type
Level
Frequency
DSD_PCM(8)
F002
Clock
LVTTL 12.288 MHz
< 0.02%
DSD_PCM(6)
F003
Clock
LVTTL 3.072 MHz
< 0.02%
DSD_PCM(7)
F004
Clock
LVTTL 48 kHz
< 0.02%
DSD_PCM(0)
F005
Data stream LVTTL N/A
PM3394B
ch1
CH1 200mV~ MTB20.0us ch1+
1
B_VID
CL 06532152_036.eps
051200
31
5.5.7
SERVO TESTS
General start-up measurements:
Reset the Basic Engine part
Check Vref
Check I2S interface
DSD_PCM(1)
F006
Signal : High LVTTL N/A
DSD_PCM(4)
F007
Data stream LVTTL N/A
DSD_PCM(5)
F008
Signal : High LVTTL N/A
DSD_PCM(2)
F009
Data stream LVTTL N/A
DSD_PCM(3)
F010
Signal : High LVTTL N/A
Signal
Test
point
type
Level
Frequency
PM3394B
ch1
ch1: freq= 12.3MHz
CH1 2.00 V= MTB 100ns ch1+
1
DSD_PCM8
CL 06532152_037.eps
051200
PM3394B
ch1
ch1: freq= 3.09MHz
CH1 2.00 V= MTB 200ns ch1+
1
DSD_PCM6
CL 06532152_038.eps
051200
PM3394B
ch1
ch1: freq= 48.1kHz
CH1 2.00 V= MTB10.0us ch1+
1
DSD_PCM7
CL 06532152_039.eps
051200
Ref. #
Command Name
Remark
603
BeReset
Reset Basic Engine
Name
Testpoint
Value
Vref
F188
2.5V+/-0.3
Name
Testpoint
Value
B_BCLK
F347
6.0MHz +/-0.1
CL1
F337
12.0MHz +/-0.2
B_WCLK
F343
HIGH
Stopclk
F338
HIGH
B_Sync
F344
HIGH
B_V4
F348
HIGH
PM3394B
ch1
CH1 2.00 V~ MTB50.0ns ch1+
1
B_BCLK
CL 06532152_040.eps
051200
PM3394B
ch1
CH1 2.00 V~ MTB50.0ns ch1+
1
CL1
CL 06532152_041.eps
051200
32
Disc Motor:
Before switching on the disc motor, check the following test
points:
Switch the Discmotor on/off with next commands:
Check the following signals when discmotor has been
switched on:
Switch the discmotor off.
Radial
Swith the radial control on/off with the following commands:
Check the following signals:
Check for pulse density signal RA at testpoint F227
Name
Testpoint
Value
Stby
F357
high
Stby-out
F355
LOW
Moto1
F361
3V±0.3
Ref. #
Command Name
Remark
606
BeDiscmotorOn
Discmotor on
607
BeDiscmotorOff
Discmotor off
Name
Pin nr.
Frequency
Stby
F357
low
Stby-out
F355
HIGH
Moto1
F361
2V±0.5V
A3
F350
see oscillo-
gram
A2
F352
see oscillo-
gram
A1
F353
see oscillo-
gram
T1
F280
see oscillogram
T2
No testpoint present see oscillogram
T3
F371
see oscillogram
PM3394B
ch1
CH1 5.00 V~ MTB20.0ms ch1+
1
A1-A2-A3
CL 06532152_042.eps
051200
VH
F365
3V±0.5V
H1+
F354
see oscillogram
H1-
F359
see oscillogram
H2+
F364
see oscillogram
H2-
F366
see oscillogram
H3+
F367
see oscillogram
H3-
F370
see oscillogram
Ref. #
Command Name
Remark
608
BeRadialOn
Radial control on
609
BeRadialOff
Radial control off
Name
Testpoint
Value
Rad -
F128
4.3V±0.5V
Rad +
F121
4.3V±0.5V
PM3394B
ch1
CH1 2.00 V~ MTB2.00ms ch1+
1
T1-T2-T3
CL 06532152_043.eps
051200
PM3394B
ch1
CH1 200mV~ MTB2.00ms ch1+
1
H1-H2-H3
CL 06532152_044.eps
051200
33
Check if laser is switched on (visual check of laserlight).
Switch the radial control off.
Sledge
Use the following commands to move the sledge:
Check pulse density signal SL at testpoint F221
Measure peak to peak signal on SL- and SL+ while moving
sledge outwards.
Measure input sledge control (sledge in home position)
Tray:
To open and close the tray use the following commands:
Measure the driver outputs of the BA5938FM for the tray
closed.
Measure again the driver outputs while the tray is opening.
Measure again the driver outputs while the tray is closing
Focus
To switch the Focus motor on/off, use the following
commands:
Measure the driver outputs of the BA5938FM for the Focus
off.
Switch the focus on
Measure again the driver outputs
Check for pulse density signal FO at testpoint F234
Ref. #
Command Name
Remark
610
BeSledgeIn
Sledge inwards
611
BeSledgeOut
Sledge outwards
Name
Testpoint
Value
Sl -
F039
4.5V±0.5V
Sl +
F038
4.5V±0.5V
Name
Testpoint
Value
Sl -
F039
10Vptp +/-0.5
Sl +
F038
10Vptp +/-0.5
Name
Testpoint
Value
Sinph
F182
1.5V±0.5V
Cosph
F192
1.5V±0.5V
PM3394B
ch1
CH1 2.00 V~ MTB 500ns ch1+
1
RA
CL 06532152_045.eps
051200
PM3394B
ch1
CH1 2.00 V~ MTB 500ns ch1+
1
SL
CL 06532152_046.eps
051200
Ref. #
Command
Name
Remark
615
BeTrayIn
Tray in
616
BeTrayOut
Tray out
Name
Testpoint
Value
Vo2 -
F116
4.3V±2.0V
Vo2 +
F111
4.3V±2.0V
Name
Testpoint
Value
Vo2 -
F116
6.0V±1.0V
Vo2 +
F111
2.0V±1.0V
Name
Testpoint
Value
Vo2 -
F116
2.0V±1.0V
Vo2 +
F111
6.0V±1.0V
Ref. #
Command Name
Remark
604
BeFocusOn
Focus on
605
BefocusOff
Focus off
Name
Testpoint
Value
foc -
F124
4.3V±0.5V
foc +
F127
4.3V±0.5V
Name
Testpoint
Value
Foc - (sawtooth)
F124
1V±0.2V
Foc + (sawtooth)
F127
1V±0.2V
PM3394B
ch1
CH1 500mV~ MTB 500ms ch1+
1
FOC +
CL 06532152_047.eps
051200
34
Check for laserlight.
Switch the focus off
Hf path
Play DVD test disc.
Measure outputs of diodes A, B, C, D, E, F.
Measure DVDALAS outputs
5.6
Test instructions Display board
5.6.1
Display board
Introduction
These test instructions are written for all versions of the
display PCB.
The contents of the PCB can be split up into next blocks:
Figure 5-10
Functionality description:
The essential component of the display PCB is the uP
(slave). This slave works on an 8MHz resonator and has a
reset circuit that is triggered by the +5Vstby. After the reset
pulse, the standby control line will release the reset of the
host uP. This host uP will then initialise the slave. In addition,
when going to stand-by, the slave will put the host uP in reset.
When the slave receives the right IR or key code to leave the
standby mode, the reset of the host uP will be released.
Other slave functions are:
Square signal generator to generate the filament voltage,
which is required for an AC FTD.
Generates the grid and segment scanning for the FTD.
Generates a scanning grid for the keys (separated from
display scanning).
Has inputs for RC (RC5 and RC6).
General
Oscilloscope measurements have been carried out using
a Philips PM3392A.
Impedance of measuring-equipment should be > 1MΩ.
To do correct measurements we recommend to use
supply 3122 427 21370, which is used in all "second
generation B" DVD-players. Make sure that the main
3.3V has a 0.7A load.
Name
Testpoint
Value
A
F140
2.6V±0.2V
B
F141
2.6V±0.2V
C
F143
2.6V±0.2V
D
F144
2.6V±0.2V
E
F147
2.6V±0.2V
F
F148
2.6V±0.2V
Name
Testpoint
Value
RFO DC
F146
2.5V ± 0.2V, eyepattern 1Vptp
O1
F155
25mV±10mV
O2
F158
25mV±10mV
O3
F168
25mV±10mV
O4
F165
25mV±10mV
S1
F174
25mV±10mV
S2
F175
25mV±10Mv
PM3394B
ch1
CH1 2.00 V~ MTB 500ns ch1+
1
FO
CL 06532152_048.eps
051200
µProcessor
I2C
Display
Key-matrix
RC-Eye
V filament
V filament
Buffer
Supply:
+5Vstby
+12V
-40V
RC-6
I/O
35
Reset
Check next reset timing with an oscilloscope at pin 10 of the
(processor.
Figure 5-11
Timing: 400msec < T1 > 700msec.
CH1: +5Vstby voltage at power on.
CH2: Voltage at pin 10.
Display steering
Check next timing and level for all grid-lines (G1 - G14).
Figure 5-12
1.
Check level A: +4V5 ±10% for grid lines 1 => 11
2.
Check level A: +4V0 ±10% for grid lines 12 => 14
3.
Check level B: -33V ±10%
4.
Check timing and levels of segment-lines P1 - P10:
Figure 5-13
Level A:+4V5 ±10%
Level B:-33V ±10%
The data on these segment lines depend on the characters
that are displayed.
The characters can be set by sending I2C commands to the
display.
See the Slave URS how to send a display command.
Key-matrix
Connect a extra 10k( pull-up to pin 36 en 37 of the uP and
check next matrix scanning at these pins.
Figure 5-14
Level A: 5.0V ±7%
Level B: 0V ±200mV
Check matrix scanning from pin 26 until 33 of the uP.
The results should be the same as the diagram above.
I.R. receiver
Check at pin 23 of the (P if this line switches from low (< 0.3V)
to high (> 4.5V), while pressing a key on a Philips RC5 or
RC6 remote control.
PM3392A
c
h1
c
h2
CH1 2. 00 V=
CH2 2 V= BW
L MTB 100 ms- 1.04d
v ch2+
1
2
T
T1
CL 96532065_073.eps
130799
PM3392A
ch1
ch1: low =-34.2 V
ch1: high= 3.98 V
STOP
CH1 10.0 V= MTB 200us 2324us ch1+
1
T
A
B
CL 96532065_074.eps
130799
PM3392A
ch
1
CH1 10. 0 V=
BWL MTB 500u s- 1.04
dv ch1 +
1
T
A
B
CL 96532065_075.eps
130799
PM3392A
ch1
ch1: low =-46.9mV
ch1: high= 5.09 V
STOP
CH1 2.00 V= MTB10.0ms ch1-
1
B
A
CL 96532065_076.eps
130799
36
5.7
Trouble shooting AV Board
Testing of A/V board can be done using diagnostic software “Player script”.
Mono board is used to generate a sound with the sound tests PINKNOISE ON and SINE ON.
A VIDEO signal is generated with COLOUR-B ON.
Functional control of scart switching is also possible.
Diagnostic Software
DAC UDA1328T
& FILTERING
POWER SUPPLY?
Check DAC IC 7401
Check C2455, C2459, C2461, C2464.
NP0 TYPE?
Check OPAMPS 7403, 7408.
Check ELCO'S 2456, 2462, 2475
Check OPAMPS 7403, 7408.
Check resistors 3455, 3459, 3464, 3448, 3451, 3453
3479, 3475.
Check OPAMPS 7403, 7408.
KILL: -8V DURING PLAY?
Check for analog signal at outputs of DAC IC 7401: pin
1,2,4,5,28,29,31,32 (testpoint 14).
Check DAC IC 7401
Check VREFA on pin 30 of DAC 7401: 1.65V?
Check testpoints 7, 8, 9, 10, 12, 13.
Check flex connection to mono board
Check mono board
Check supply voltages 3V3(IC 7400), +8Vaud(IC 7304),
-8Vstby(R3615), +12Vstby(T7333).
Check flex connection to mono board.
NO
YES
PCM_OUT[0:2]
LRCLK, SCLK
PCM_CLK
?
NO
YES
NO
YES
AUDIO
CINCH OUTPUTS
Testpoint 15?
NO
YES
AUDIO
AT OUTPUTS
OF DAC 7401
?
NO
YES
LEVEL OK?
YES
N0
DISTORTION?
To put set in “Player script”, press keys
STOP+OPEN/CLOSE simultaneously and switch player on.
Proceed until display shows
.
Press PLAY to execute.
During this test, an audio pink noise signal will be
sent to the audio cinches and the audio outputs of the
scarts..
AUDIO PART
" PINKNOISE ON"
DAC & FILTERING
OK
37
PM3392A
ch1
CH1 2 V~ MTB 500ns ch1+
1
PM3392A
ch1
CH1 2 V~ MTB10.0us ch1+
1
PM3392A
ch1
CH1 2 V~ MTB 100ns ch1+
1
PM3392A
ch1
CH1 2 V~ MTB 100ns ch1+
1
PM3392A
ch1
CH1!2.00 V~ MTB 500ns ch1+
1
PM3392A
ch1
CH1!2.00 V~ MTB 500ns ch1+
1
PM3392A
ch1
CH1!2.00 V~ MTB 500ns ch1+
1
PM3392A
ch1
CH1! 200mV~ MTB10.0ms ch1+
1
PM3392A
ch1
CH1!2.00 V~ MTB 500ns ch1+
1
PM3392A
ch1
CH1! 200mV~ MTB10.0ms ch1+
1
PM3392A
ch1
CH1! 200mV~ MTB10.0ms ch1+
1
TP15: ANALOG OUT AUDIO CINCH(PINK NOISE)
CL 06532152_091.eps
131200
38
SOUND OK
Diagnostic Software
NO SOUND ON
AUDIO CINCH 1402
TV- & AUX SCART
HPR?
HPL?
Check SWITCH 7413
Check OPAMP 7414
Check KILL transistors 7415, 7416, 7419, 7420
Check HPR and HPL at conn.1410-1,3 (testpoint 16)
Check OPAMP 7403-C,D
NO
YES
AUDIO
CINCH 1402
?
NO
YES
To put set in “Player script”, press keys
STOP+OPEN/CLOSE simultaneously and switch on.
Proceed until display shows “
Press PLAY to execute test.
”.
DIGITAL OUT OK
Diagnostic Software
NO DIGITAL OUTPUT
DIG_OUT
Testpoint 11?
Check digital trafo L5400
Check flex connection to mono board
Check mono board
NO
YES
DIGITAL OUT
Testpoint 18?
NO
YES
OPTICAL OUT?
Check optical transmitter 6400
AUDIO
TV- & AUX-SCART
?
YES
NO
Check SCART SWITCH IC 7305
Check KILL transistors 7336, 7337
PM3392A
ch1
CH1 1 V~ MTB 500us ch1+
1
TP 16 : ANALOG OUTPUT AUDIO HP_R & HP_L
PM3392A
ch1
CH1 2 V~ MTB 100ns ch1+
1
TP 11: DIG_OUT
PM3392A
ch1
CH1 200mV~ MTB 200ns ch1+
1
SINE ON
Display shows " BUSY ".
To put set in “Player script”, press keys
STOP+OPEN/CLOSE simultaneously and switch on.
Proceed until display shows “
Press PLAY to execute test.
”.
SINE ON
Display shows " BUSY ".
39
VIDEO PART OK
Diagnostic Software
NO PICTURE
CVBS & Y/C OUT
POWER SUPPLY?
Check testpoints 20-21.
Check SCART SWITCH IC 7305.
Check I2C (testpoints 22,23).
Check Y/C VIDEO buffer transistor 7302, 7303.
Check testpoint 19.
Check CVBS VIDEO buffer transistors 7301, 7300, 7310.
Check testpoints 1-6
Check flex connection to mono board
Check mono board
Check supply voltages +8Vstby, –8Vstby, +12Vstby,
+6Vstby.
Check voltage regulator 7304
Check safety resistors 3615, 3516
Check flex connection to mono board.
NO
YES
VIDEO
CONN. 1300
CONN. 1301
?
NO
NO
YES
YES
NO
YES
VIDEO
Y/C OUT
?
VIDEO
CVBS CINCH
?
To put set in “Player script”, press keys
STOP+OPEN/CLOSE simultaneously and switch mains on.
Proceed until display shows “ COLOUR-B ON ".
Press PLAY to execute.
VIDEO PART
40
PM3392A
ch1
CH1 200mV~ MTB20.0us ch1+
1
TP 1 : video B
PM3392A
ch1
CH1 200mV~ MTB20.0us ch1+
1
TP 2 : video G
PM3392A
ch1
CH1 200mV~ MTB20.0us ch1+
1
TP 3 : video R
PM3392A
ch1
CH1 200mV~ MTB20.0us ch1+
1
TP 4 : CVBS
PM3392A
ch1
CH1 200mV~ MTB20.0us ch1+
1
TP 5 : C_ENC
PM3392A
ch1
CH1 200mV~ MTB20.0us ch1+
1
TP 6 : Y_ENC
PM3392A
ch1
CH1 500mV~ MTB20.0us ch1+
1
TP 19 : CVBS_OUT
PM3392A
ch1
CH1 50mV~ MTB20.0us ch1+
1
PM3392A
ch1
CH1 500mV~ MTB20.0us ch1+
1
TP 21: C_OUT
PM3392A
ch1
CH1!5.00 V~ MTB20.0us ch1+
1
TP24: HSYNC
41
SCART SWITCHING
OK
Diagnostic Software
NO PICTURE SCART
SCART SWITCHING
PICTURE TV?
Check RGB at testpoints 1-3
Check HSYNC at pin 14 of IC 7316 (testpoint 24).
Check RGB at output of RGB video processor 7316
testpoints 25. 26. 27.
Check SCART SWITCH IC 7305
Check “SLB_TV: 10V, “FBOUT_TV: 5V, BC_TV: 1,2V
Check video buffer transistors 7306, 7307, 7308, 7309 for
TV scart and 7325 for AUX scart.
NO
YES
NO
YES
PICTURE
AUX/VCR IN
ON TV?
Diagnostic Software
Proceed until display shows: " SCART-S PASS ".
Check “SLB_TV = 0V, “FBOUT_TV = 0V, BC_TV: -0.3V.
Check video buffers.
To put set in “Player script”, press keys
STOP+OPEN/CLOSE simultaneously and switch mains on.
Proceed until display shows “ COLOUR-B ON ".
Press PLAY to execute.
42
5.8
Trouble shooting DAC Board
TROUBLESHOOTING DAC BOARD
Testing of DAC board can be done using diagnostic software “Player script”.
Mono board is used to generate a sound with the sound test SINE ON.
Diagnostic Software
DAC''s
& Filters
POWER SUPPLY?
Check filters.
Check mute circuits
Check relays
Check for analog signal at outputs of DAC's: see oscillogram
Check for analog signal at cinch outputs: see oscillogram
Check power supply voltages +12VA, -12VA
Check voltage on TP01 (pin 25 of DAC): 2.26V?
BCK = 3, 072MHz, LRCK = 48 kHz
SDT[3:1] = DATA, SEL[3:1] = High
See test instructions mono board.
Check supply voltages 12VA, -12VA, +5VA, +3.3VD,
+12VR, +3.3VOSC (QD23)
Check connection to Linear power supply
Check flex connection to mono board.
Master Clock at pin2 of conn. JD01(16.9344 MHz)
Check flex connection to mono board.
NO
YES
BCK, LRCK
SDT[3:1]
SEL[3:1]
?
NO
YES
NO
YES
AUDIO
CINCH OUTPUTS
NO
YES
AUDIO
AT OUTPUTS
OF DAC's
?
?
To put set in “Player script”, press keys
STOP+OPEN/CLOSE simultaneously and switch player on.
Press NEXT until display shows " SINE ON "
Press PLAY to execute.
During this test, an audio sine signal will be
sent to the audio cinches.
DAC & FILTERING
OK
PM3392A
ch1
CH1 1 V~ MTB 500us ch1+
1
ANALOG OUTPUT DAC
PM3392A
ch1
CH1 1 V~ MTB 500us ch1+
1
ANALOG OUTPUT AUDIO CINCH
43
Testing of I2C communication to DAC board can be done using diagnostic software.
Diagnostic Software
DAC BOARD
I2C COMMUNICATION
Clock Internal
Clock External
Clock Freq. SACD
Clock Freq. CDDA
DAC MODE
MENU
DAC FILTER
MENU
DAC MUTE
MENU
Mute ON: AMUTE = H
Mute OFF: AMUTE = L
Check QD21, QD32, DAC's
Filter SACD: SACD ACT = H
Filter Non-SACD: SACD ACT = L
In this menu, I2C Communication to DAC's is tested
Check DAC's QD41, QD51, QD61.
SACD: CLK FRQSEL = L
DDA: CLK FRQSEL = H
Internal : CLK SEL = H
External: CLK SEL = L (0V)
Check QD21, QD04, QD03
Check QD21, QD02, QD05
Check QD21, filter control circuit FILT1, FILT2
NO
YES
NO
YES
NO
YES
NO
YES
NO
YES
See MENU MODE INTERFACE to put set in DSW mode
Select 2: Dac Board menu
I2C OK
44
Personal notes:
WY04
1
+5Vstb
2
GND
3
RC_IN
4
RC_OUT
6.
Wiring and block diagram
A/V PCB
SACD MONO BOARD
LOADER
SWITCHED MODE
POWER SUPPLY UNIT
LINEAR POWER SUPPLY
POWER SUPPLY
INPUT
MAINS TRAFO
DAC PCB
DISPLAY BOARD
ON/OFF
4
1
4
1
1
5
JY02
1
4
TRAY
1100
JY03
JY01
1
6
1
6
1
12
1
16
1
22
16
24
1
1
1
8
1
22
1
12
1
7
1
5
SERVICE
8006
8007
8003
8009
WY03
8004
8005
0208
0205
8001
W802
1602
1501
1604
1104
OPU
SLEDGE
1106
1603
1
24
1001
1600
1300
24
1
,
1301
MAINS
1
11
1106
TTM
JD02
,*
JH04
J801
J802
CL 06532152_052.eps
121200
8003
1001
JD01
1
1
DGND
2
2
384 Fs
3
3
DGND
4
4
SEL_PCM/DSD_LFE
5
5
DGND
6
6
DATA_CL/DSD_CENTER
7
7
DGND
8
8
SEL_PCM/DSD_Rs
9
9
DGND
10
10
DATA_LsRs/DSD_Ls
11
11
DGND
12
12
SEL_PCM/DSDRIGHT
13
13
DGND
14
14
DATALR/DSDLEFT
15
15
DGND
16
16
WORDCLK/SEL_DSD
17
17
DGND
18
18
BITCLK/DSDCLK
19
19
DGND
20
20
256Fs
21
21
DGND
22
22
SCL_DAC
23
23
SDA_DAC
24
24
STB_OUT
8004
1
SCL
2
GND
3
SDA
4
STB_CONT
5
N.C.
8005
1
+12V
2
GND
3
+5Vstb
4
-40V
5
on/offA
6
on/offB
8001
1
+3V3
2
+3V3
3
+5V
4
+5Vstby
5
+6Vstby
6
GND
7
GND
8
GND
9
-8Vstby
10
STB_CONT
11
+12Vstby
12
GND
13
PWR_FAIL
W802
1
AGND
2
AGND
3
+12VA
4
-12VA
5
DAGND
6
+5VA
7
+3.3VD
8
GND
9
GND
10
RELAY
11
AMUTE
12
RGND
13
+12R
14
STANDBY
8006
1
P50
2
B
3
G
4
GND
5
R
6
CVBS
7
GND
8
0/6/12V
9
-8Vstby
10
+5V
11
+5V
12
KILL
13
GND
14
PCM_OUT0
15
LRCLK
16
SCLK
17
GND
18
PCM_CLK
19
CENTER
20
STEREO MUTE
21
DIG OUT
22
GND
8007
1
GND
2
HSYNC
3
GND
4
PCM_OUT2
5
GND
6
PCM_OUT1
7
NC
8
SCL
9
12Vstby
10
SDA
11
+6Vstby
12
NC
13
GND
14
Cr
15
GND
16
Y
WY03
1
LED_A
2
LED_B
3
on/offA
4
on/offB
WN92 (N only)
1
+12Vstb
2
+5V
3
kill
Wiring diagram
N only
(PZ02)
(PN16)
(PZ01)
(PZ03)
(PH16)
(PP16)
(PY16)
(PF16)
(PY26)
MUTE PCB
1
4
JY04
1
4
JF51
RC-6
J613
W612
J612
1 2
J653
W652
J652
1 2
J623
W622
J622
1 2
J603
W602
J602
1 2
J633
W632
J632
1 2
J643
W642
J642
1 2
JD01
1 4 7
1410
1 4
JN91
WN92
WY04
1
3
45
46
General block diagram
DISK MOTOR
SLEDGE MOTOR
TRAY MOTOR
6 MHz
8.46 MHz
LM833D
uP (8051 CORE)
ADC
7207
SAA7399
MACE2
SERVO
B_V4
B_SYNC
B_FLAG
B_DATA
B_BCLK
B_WCLK
6
SAA7335HL/E/M2
HD61
DECODER
HF-IN
3
7304
BA6856FP
MOTOR-IC
HALL-FEEDBACK
DRIVE
MOTO-IN
TACHO-OUT
LOADER
CDM
OPU
DVD-LASER
CD-LASER
RADIAL
FOCUS
M
HALL
M
HALL
M
END-SWITCH
FLEX 24P
FLEX 11P
FLEX 8P
PCS-PRE-AMPL
DRIVERS
7104
7103
4
2
4
4
4
2
4
+5 GND
PCS
PHI-INPUT
REF
BA5938FM
SERVO OUTPUTS
TRAY-SWITCH
SLEDGE
RADIAL
FOCUS
TRAY1
TRAY2
5
2
2
CONTROL
LINES
1104
1106
1301
1100
1
1
7311
CONTROL BUS
DATA/ADDRESS BUS
AD[0:7]
AD[0:7]
A[8:15]
A[16:17]
A[0:17]
A[0:7]
AD[0:7]
AD[0:7]
FLASH ROM
ADDRESS
LATCH
7202
7201
7204
MC33464N
MEMORY
132K
S-RAM
DATA
ADDRESS
CONTROL
8
15
1
SERVO
SIGNALS
DVD
CD
D1-D6
CALF_MACE
O_CENTRAL
Land
Header
SILD
SICL
SIDA
4
6
4
6
DVDALAS2+
TZA1033
RFo
STB_DALAS
SACD MAINBOARD
7310
7102
CY7C199-15C
AM29F002
74HCT573D
TXD_BE
RXT_BE
CFR
SUR
4
S2B
I2S
HPSW
EQUALIZER
7110-7111
7100-7106-7101
POR
1
3
2
SDRAM
FURORE
FLASH
FLASH
SDRAM
STi5505
SEEPROM
CLOCK
GENERATOR
(PLL )
VIDEO
FILTERS
DAC
PCB
AUDIO/VIDEO
PCB
7700
7800
7503
7404
7405
7505
PCM CLK
AUDIO PCM
SPDIF
27 MHz
7401
7451
RFP
EMI
2C
I
2C
I
ANALOG
AUDIO PCM
AUDIO DSD - PCM
VIDEO
FRONT
FRONT
REAR
REAR
L
L
R
R
C
LFE
Y/C
S-VIDEO
VIDEO
L
L
CVBS
DIG_OUT
Y
V
U
R
R
DIG
DIGITAL
AUDIO
STEREO
OPT
TV
AUX
2
FRONT PCB
CENTER
LEFT
RIGHT
LEFT SURR
RIGHT SURR
SUBWOOFER
INPUT
LINEAR
POWER
SUPPLY
SMPS
MAINS
SACD_CLK
I2C_DAC
STB_CONTD
STB_OUT
SPDIF
OR
4
S2B
6
I2S
6
I2S
resetn
STB_CONTD
STB_CONTD
STB_CONT
TO SMPS
SDRAM
FLEX 16P
FLEX 22P
FLEX 24P
POWER SUPPLY
7
4
5
7
6
10
8
9
6
1600
1001
1604
1603
12
Y/C VID
RGB
CVBS
9
2 C
I
2
5
1501
P50
SERIAL
INTERFACE
LASER
CONTROLE
DIODE
AMPLIFIERS
SERVO
CONTROLE
MUX
MUX
VAR GAIN
RESET
TXD_BE
RXT_BE
CFR
SUR
RSTN
2 C
I
3V3
+5V
+5Vstby
+6Vstby
-8Vstby
+12Vstby
PWR_FAIL
STB_CONT
TO DAC PCB
RC-6
PCB
RC_6 OUT
RC_6 IN
47
48
MONO BOARD
IIC BUS
SWITCHING
POWER SUPPLY
LFE
SEL_PCM/DSDLFE
SDT_CL/DSDC
QD21
PCF8574T
MUTING
CKT
FILTER
FILTER
FILTER
FILTER
QD02
384Fs
256Fs
1/2
192Fs
384Fs
1
2
3
4
5
SD71
(SPSU)
GAIN
CONTROL
28 VREF
VY01
ZY01
KEYS
uCOM
PLAY, STOP, etc
DISPLAY DRIVER, KEY SENS, IR SENS
XY01
8MHz
KEY SENS BUS
DISPLAY
CONTROL BUS
CONTROL BUS
STBY
SCL, SDA
P1-P16
G1-G15
AIN12-13
AIN1-6
IR
AV BOARD
SY40
RC-BUS
INPUT
RC-BUS
OUTPUT
VIDEO OFF, DISPLAY OFF,
INDICATOR
P04-7
CONTROLL BUS
INDICATORES
Dolby, etc
INT
ENT
SF51
L001
SEL_PCM/DSDLFE
SDT_CL/DSDC
SEL_PCM/DSDRs
SDT_LsRs/DSDLs
LRCK/SEL_DSD
BCK/BCK
SEL_PCM/DSDR
SDT_LR/DSDL
SDL
SDA
256Fs
384Fs
STANDBYN
D/A Converter
QD41 CS4397
11
12
13
19
18
24
23
10 MCLK
14
LRCK/SEL_DSD
BCK/BCK
SEL_PCM/DSDR
SDT_LR/DSDL
4
5
1 RST
17 MUTE
IIC BUS
28 VREF
D/A Converter
QD51 CS4397
11
12
13
19
18
24
23
10 MCLK
14
LRCK/SEL_DSD
BCK/BCK
SEL_PCM/DSDRs
SDT_LsRs/DSDLs
4
5
1 RST
17 MUTE
IIC BUS
28 VREF
D/A Converter
QD61 CS4397
11
12
13
19
18
24
23
10 MCLK
14
LRCK/SEL_DSD
BCK/BCK
4
5
1 RST
17 MUTE
Ls
Rs
CENTER
AUDIO BLOCK
AUDIO BLOCK
L
R
AUDIO BLOCK
RELAY
FILT2
RELAY
FILT2
SACDACT
FILT1
FILT2
RELAY
FILT1
FILTER
CONTROL1
Pos.1(normal)
Pos.2(L,R wide)
Pos.3(All wide)
FILTER
CONTROL2
GND
SEC.
PRI.
VOLTAGE FAILLING
DETECT
MUTING
CONTROL
POWER SUPPLY
VOLTAGE REGULATOR
+12VA, -12VA
+5VA,+3.3VD
+12VR
+12VA
-12VA
+5VA
+3.3VD
+12VR
POWER INPUT
STDBYN
LH02
RELAY
AMUTE
STDBYN
CLKSEL
AMUTE
SACDACT
CLKFREQSEL
CLKSEL
CLKFRQSEL
STDBYN
Block diagram DAC PCB
49
50
1
2
3
4
5
6
7
8
9
10
1
2
3
4
5
6
7
8
9
10
2
B
A
B
C
D
E
F
G
A
B
C
D
E
F
G
FIL1
FIL2
To MONO BOARD
SDA
SCL
STBY control
GND
on|offB
on|offA
-40V
+5Vstb
+12V
GND
RY27 10
RY25 10
RY26 10
RY28
4.7k
RY67
10k
RY61
4.7k
RY62
4.7k
RY63
4.7k
RY64
4.7k
RY65
4.7k
CY11
0.1
CY12
0.1
CY25
NC
CY26
NC
CY27
NC
CY28
NC
GND
GND
GND
GNDGND
GND
VKK
+5Vstb
+5Vstb
+5Vstb
SY01
SY02
SY03
SY04
SY05
SY06
SY07
SY08
SY09
SY10
+5Vstb
GND
+12V
VKK
+5Vstby
1
2
3
ZY01
GND
+5Vstby
GND
CY51
0.1
3
2
1
QY71
2SC4116
+5Vstb
NC
LLM
NEXT
PREV.
O/C
PLAY
PAUSE
STOP
S-MODE
REPEAT
CY50
100/10
RY50
330
PY16
GND
F11
1
F12
2
15G
31
14G
32
13G
33
12G
34
11G
35
10G
36
9G
37
8G
38
7G
39
6G
40
5G
41
F22
48
F21
49
4G
42
3G
43
2G
44
1G
45
P1
5
P2
6
P3
7
P4
8
P5
9
P6
10
P7
11
P8
12
P9
13
P10
14
P11
15
P12
16
P13
17
P14
18
P15
19
P16
20
VY01
G1
G2
G3
G4
G5
G6
G7
G8
G9
G10
G11
G12
G13
G14
G15
P1
P2
P3
P4
P5
P6
P7
P8
P9
P10
P11
P12
P13
P14
P15
P16
1
2
Dolby D
3
Dolby PL
4
DISPLED
5
VIDLED
6
VSS
7
XOUT
8
XIN
9
RESETIN
10
OUT_P50
11
12
TEST1
13
STBLED
14
INT0
15
INT1
16
17
18
TC4
19
IN_P50
20
STBY_CTRL
21
IR
22
SCL
23
SDA
24
41
P13
64
P14
63
P15
62
P16
61
60
59
58
57
SI1
80
SCK1
79
VKK
78
77
P1
76
P2
75
P3
74
P4
73
P5
72
P6
71
P7
70
P8
69
P9
68
P10
67
P11
66
P12
65
25
AIN0
26
AIN1
27
AIN2
28
AIN3
29
AIN4
30
AIN5
31
AIN6
32
AIN7
33
AIN10
34
AIN11
35
AIN12
36
AIN13
37
VASS
38
VAREF
39
VDD
40
G1
42
G2
43
G3
44
G4
45
G5
46
G6
47
G7
48
G8
49
G9
50
G10
51
G11
52
G12
53
G13
54
G14
55
G15
56
QY10
TMP87CH74F
G1
G2
G3
G4
G5
G6
G7
G8
G9
G10
G11
G12
P1
P2
P3
P4
P5
P6
P7
P8
P9
P10
P11
P12
P13
P14
P15
P16
V13
V14
V15
VID_OFF
DISP_OFF
RY60
4.7k
RY71
82k
VKK
V14
3
2
1
QY72
2SC4116
+5Vstb
RY72
82k
VKK
V15
3
2
1
QY70
2SC4116
+5Vstb
RY70
82k
VKK
V13
RC-6 IN
RC-6 OUT
LF01
FB
CF52
470p
CF51
0.1
RF51
22
GND
GND
RF54
10k
+5Vstb
GND
+5Vstb
GND
GND
3
1
2
QF01
2SA1586
RF03
100
RF02
47K
RF01
4.7K
RF52
10k
RF53
2.2k
CF03
10/16
3
2
1
QF51
2SC4116
1
2
3
4
5
6
SF51
INT
EXT
INT/EXT SW
1
2
3
4
JF51
GND
+5Vstb
+5Vstb
GND
RC_OUT
RC_IN
LRC
CF02
NC
CF01
100/10
PF16
041L
1
2
3
4
5
6
SY40
GND
+5Vstb
3
1
2
QY40
2SA1586
RY41
10k
RY42
330
RY43
120
+5Vstb
1
2
3
4
5
JY02
1
2
3
4
5
6
JY01
RY45
10k
+5Vstb
From PSU BOARD
+5Vstb
RY23
1k
3
2
1
QY20
2SC4116
RY21
10k
GND
CY22
0.033
CY23
1000p
CY21
1000p
CY20
10/16
1
3
2
DY20
DAN202U
GND
GND
GND
GND
GND
RY20
100k
+5Vstb
GND
3
1
2
QY51
2SA1586
RY52
100k
RY51
47k
RY53
4.7k
3
2
1
QY52
2SC4116
RY54
10k
RY55
10k
GND
+5Vstb
1
2
3
4
JY04
GND
+5Vstb
RY40
10
RED:STANDBY
on/offA
on/offB
LLM
PY26
+12V
RY38
470
RY31
10k
RY39
470
RY30
4.7k
GND
3
2
1
QY30
2SC4116
GND
GND
CY32
22p
GND
CY33
22/50
CY34
22/50
CY30
47/16
1
2
DY11
GND
RY15
270
+5Vstb
RY14
10k
VID_OFF
H:video active
L: video off
RY13
330
CY31
0.033
GNDGND
CY02
0.1
CY04
0.1
CY03
47/50
3
1
2 IN
OUT
COM
QY01
NJM79L24
RY01
10k
GND
GND
GNDGND
CY05
22p
CY06
22p
GNDGND
RY03
10k
GND
+5Vstb
+5Vstb
LY01
FB
CY01
47/16
GND
1
2
DY10
GND
RY12
270
RY11
10k
DISPLAY_OFF
RY10
330
G13
G14
G15
CY72
100p
CY71
100p
CY70
100p
G5
G10
G11
VKK
1
3
2
DF01
DAN202U
POWER ON
POWER OFF
1
2
3
4
JY03
1
2
3
4
WY03
1
2
DY40
RY44
120
FIL1
FIL2
RY35
1k
RY36
1k
RY37
1k
RY34
1k
RY33
1k
RY32
1k
H:display on
L: display off
1
2
3
4
JF52
GND
1
2
DY81
GND
RY85
270
+5Vstb
RY84
10k
Dolby PL
RY83
330
+5Vstb
1
2
DY80
GND
RY82
270
RY81
10k
Dolby D
RY80
330
H: Dolby PL inactive
L: Dolby PL active
H: Dolby D inactive
L: Dolby D active
1
2
3
XY01
8MHz
+5Vstb
+5Vstb
+5Vstb
+5Vstb
3
1
2
QY80
2SA1586
3
1
2
QY81
2SA1586
3
1
2
QY11
2SA1586
3
1
2
QY12
2SA1586
2
1
DY01
10V
DY02
8.2V
RY66
4.7k
RY56
330
RY57
330
3
2
1
QY31
2SD999
3
1
2
QY32
2SB798
LED_A
LED_B
GND
GND
3
1
2
QN91
2SA1586
RN93
10k
RN91
(1k)
RN92
1.5k
CN91
(1000/10)
LMU PN16
2
1
DN92
4.7V
1
3
2
DN93
DAN202U
1
2
3
4
JN91
GND
1
2
3
WN92
+12V
+5V
kill
(to AV BOARD)
(for N)
From 1410 pin 4-7
(AV BOARD)
(7
4)
1
3
2
DN91
(1SS302)
WY04
NC
NC
NC
Mute PCB
RC-6 PCB
Power SW PCB
Front Display PCB
7. Schematic diagram and Parts loocation
Front Display and Power SW, RC-6, Mute (N only)
51
52
CF01
D8
CF02
D8
CF03
C9
CF51
D10
CF52
D9
CY01
F3
CY02
G2
CY03
G3
CY04
G3
CY05
F2
CY06
F2
CY11
C5
CY12
C3
CY20
E2
CY21
E3
CY22
E3
CY23
E3
CY25
D3
CY26
D3
CY27
E2
CY28
E2
CY30
F4
CY31
F4
CY32
F5
CY33
F4
CY34
F4
CY50
D6
CY51
D6
CY70
B6
CY71
B6
CY72
B6
DF01
C9
DN91
B9
DN92
A9
DN93
A9
DY01
D1
DY01
G3
DY02
F3
DY10
D2
DY20
E2
DY40
F8
DY80
C2
DY81
C1
JF51
D8
JF52
D10
JN91
B9
JY01
F1
JY02
E1
JY03
F7
JY04
D7
LF01
D9
LY01
F2
QF01
C9
QF51
D9
QN91
A9
QY01
F3
QY10
C4
QY11
D2
QY12
D1
QY20
E3
QY30
F5
QY31
F5
QY32
F5
QY40
F7
QY51
D6
QY52
E7
QY70
A2
QY71
B2
QY72
B2
QY80
C2
QY81
C1
RF01
C9
RF02
C9
RF03
C9
RF51
D9
RF52
D9
RF53
D9
RF54
D9
RN91
A8
RN92
A8
RN93
A9
RY01
F3
RY03
F3
RY11
D2
RY12
D2
RY13
D2
RY14
D2
RY15
D1
RY20
E3
RY21
E3
RY23
E3
RY25
D4
RY26
D4
RY27
D4
RY28
E3
RY30
F5
RY31
F5
RY32
F5
RY33
F5
RY34
F5
RY35
F5
RY36
F5
RY37
F5
RY38
F4
RY39
F4
RY40
D4
RY41
F6
RY42
F6
RY43
F7
RY44
F8
RY45
D5
RY50
D6
RY51
D6
RY52
D6
RY53
E6
RY54
E6
RY55
D7
RY56
D6
RY57
D6
RY60
B5
RY61
B6
RY62
B6
RY63
B6
RY64
B7
RY65
B7
RY66
B7
RY67
C6
RY70
A2
RY71
B2
RY72
B2
RY80
C2
RY81
C2
RY82
C2
RY83
C2
RY84
C2
RY85
C1
SF51
D10
SY01
B5
SY02
B6
SY03
B6
SY04
B7
SY05
C5
SY06
C6
SY07
C6
SY08
C6
SY09
C7
SY10
C7
SY40
F8
VY01
A3
WN92
A8
WY03
F8
XY01
D3
ZY01
D6
Layout Front Display and Power SW, RC-6, Mute (N only) (bottom view)
(QY01)
QY10
A
B
C
A
B
C
1
2
3
4
5
6
7
8
9
1
2
3
4
5
6
7
8
9
(N only)
53
54
CF01B
C21
CF02
C2
CF03
C2
CF51
C2
CF52
C2
CN91
C6
CY01
A8
CY02
A8
CY03
A8
CY04
A8
CY05
A8
CY06
A8
CY11
A4
CY12
A5
CY20
A7
CY21
A5
CY22
A5
CY23
A5
CY25
A5
CY26
A5
CY27
B1
CY28
B1
CY30
A7
CY31
A7
CY32
A7
CY33
A7
CY34
A7
CY50
A7
CY51
A7
CY70
A4
CY71
A4
CY72
A4
DF01
C2
DN91
C6
DN92
C6
DN93
C6
DY01
A8
DY02
A8
DY10
A2
DY11
A2
DY20
A5
DY40
C5
DY80
A3
DY81
A3
JF52
C2
JN91
C6
JN92
C6
JY02
B2
JY03
A1
JY04
B1
LY01
A8
QF01
C2
QF51
C2
QN91
C6
QY01
A8
QY10
A4
QY11
A2
QY12
A1
QY20
A5
QY30
A7
QY31
A7
QY32
A7
QY40
A1
QY51
A7
QY52
A7
QY70
A4
QY71
A4
QY72
A4
QY81
A3
RF01
C2
RF02
C2
RF03
C2
RF51
C2
RF52
C2
RF53
C2
RF54
C2
RN91
C6
RN92
C6
RN93
C6
RY01
A8
RY03
A8
RY10
A2
RY11
A2
RY12
A2
RY13
A1
RY14
A1
RY15
A1
RY20
A5
RY21
A5
RY25
B1
RY26
B2
RY27
B2
RY28
B2
RY30
A7
RY31
A7
RY32
A7
RY33
A7
RY34
A7
RY35
A7
RY36
A7
RY37
A7
RY38
A7
RY39
A7
RY40
A4
RY41
A1
RY42
A1
RY43
A1
RY44
C5
RY45
A4
RY50
A7
RY51
A7
RY52
A7
RY53
A7
RY54
A7
RY55
A7
RY56
A7
RY57
A7
RY60
A8
RY61
A9
RY62
A9
RY63
A8
RY64
A8
RY65
A1
RY65
A4
RY67
A5
RY70
A4
RY71
A4
RY72
A4
RY73
A4
RY80
A3
RY81
A3
RY82
A3
RY83
A3
RY84
A3
RY85
A3
SF51
C3
SY01
A9
SY02
A9
SY03
B8
SY04
A1
SY05
A8
SY06
A9
SY07
A9
SY08
A8
SY09
A8
SY10
A2
SY40
C4
VY01
A6
WY03
C4
XY01
A5
ZY01
A7
Switched mode power supply
SWITCHED MODE POWER SUPPLY UNIT (PZ03)
FOR ORIENTATION ONLY
CL 06532152_058.eps
121200
55
56
1
2
3
1
2
3
4
5
6
7
8
9
1
2
3
1
2
3
2
4
1
3
IN
OUT
GND
IN
OUT
GND
IN
OUT
GND
IN OUT
ADJ
GND
GND
GND
GND
GND
GND
GND
DAGND
DAGND
AGND
GND
AGND
DAGND
+12VR
RGND
RGND
RGND
RGND
RGND
AGND
DAGND
GND
GND
GND
GND
GND
AGND
GND
DAGND
+12VA
-12VA
+5VA
+3.3VD
+12VR
RGND
AGND
+12VA
-12VA
GND
DAGND
+3.3VD
+5VA
GND
SGND
SGND
FG1
SGND
FG2
+12VA
-12VA
DAGND
GND
+5VA
GND
+3.3VD
RELAY
+12VR
AMUTE
AGND
AGND
AC13VAP
AC13VAN
AC6VP
AC6VN
AC13VRP
AC13VRN
0V
RGND
STANDBY
T1A 250V
FH01
ARA for F,U
ARA for U,F
5.5V
ARA
for U,N,S
for F
W001
AC_CORD
D821
11EQS10
D822
11EQS10
D823
11EQS10
D824
11EQS10
DN02
11EQS10
DN01
11EQS10
DN04
11EQS10
DN03
11EQS10
RN01
1k
RN02
3.9M
RN03
18k
RN04
47k
RN05
10k
RN07
10k
RN08
4.7k
DN06
DN08
5.6V
CN03
470/25
QN01
2SC4116
QN02
2SC4116
QN03
2SC4116
QN04
2SC1586
J821
J823
J803
J822
J824
J804
LPS
LMU
D801
11EQS10
D802
11EQS10
C803
4700/16
C804
0.1
CN01
1/50
CN02
2.2/50
C802
NC
C822
NC
GH05
0.01uF AC250V
115V
230V
T800mA L 250V
F822
JH05
DH01
11EQS10
CH01
NC
CH02
NC
UH02
NC
UH01
NC
C821
NC
D804
11EQS10
D803
11EQS10
J841 J842
D841
11EQS10
D842
11EQS10
C843
1000/25
C844
0.1
C845
220/16
C846
0.1
Q841
78M12
C842
NC
C841
NC
D844
11EQS10
D843
11EQS10
J801
C801
NC
QN20
TA7317P
RN21
3.3k RN22
3.3k
RN23
100k
RN24
47k
RN25
33k
CN21
4.7/50
CN22
0.47/50
DN20
DAN202U
DN07
RN06
2.2k
QN05
2SC4116
RN09
4.7k
RN10
22k
T800mA L 250V
F821
T2A L 250V
F801
T400mA L 250V
F841
SH02
LPT
PH16
LMU
DN05
11EQS10
R822
0
R821
0
R824
680
R823
680
C824
3300/25
C823
3300/25
C827
100/25
C828
100/25
D828
D827
D826
13V
D825
13V
C830
1000/16
C829
1000/16
J802
RN26
10k
RN27
100k
CN23
0.022
L001
JH04
UH03
NC
JH02
JH03
C814
0.1
C815
220/16
C816
0.1
Q811
78M05
C817
100/10 RA2 for F,U
Q812
BA033FP
C818
0.1 for F,U
Q822
2SD1415
Q821
2SB1020
LH02
L
N
JH01
C806
4700/16
C805
220/16
R801
1.2k F
R804
2.2k F
R803
NC
R802
1.2k F
Q801
PQ15RW11
LD81
C851
0.01
C852
0.01
C853
0.01
C854
0.01
L001
R825
1k 1W
R826
1k 1W
for N,S
for N,S
470/25 ARS for N,S
470/25 ARS for N,S
100/10 ARA for N,S
RA2 for F,U
NC for N,S
100/10 ARA for N,S
UH05
UH04
for N,S
T2A 250V for F,U
A
B
C
D
E
F
A
B
C
D
E
F
1
2
3
4
5
6
7
8
9
1
2
3
4
5
6
7
8
9
1
2
5
3
6
5
4
3
2
1
AC13.7V
AC13.7V
AC8.7V
AC13.2V
16.7V
11.2V
-16.7V
-11.2V
10.0V
5.0V
3.3V
16.1V
12.0V
15.5V
5.6V
1
2
3
4
5
6
7
4
3
2
1
1
2
3
4
5
6
7
8
9
10
11
12
13
14
Power supply
57
58
C801
D6
C802
D6
C803
D7
C804
D7
C805
D8
C806
D7
C814
D7
C815
D8
C816
D8
C817
D8
C818
D8
C821
B6
C822
A6
C823
B7
C824
A7
C827
B7
C828
B7
C829
B8
C830
A8
C841
E6
C842
E6
C843
E7
C844
E7
C845
E8
C846
E8
C851
E9
C852
E9
C853
E9
C854
E9
CH01
D2
CH02
D3
CN01
F6
CN02
F6
CN03
F6
CN21
C8
CN22
C8
CN23
C9
D801
D7
D802
D7
D803
D6
D804
D6
D821
B6
D822
B6
D823
B6
D824
A6
D825
B7
D826
B7
D827
B7
D828
B7
D841
E7
D842
E7
D843
E6
D844
E6
DH01
E2
DN01
F6
DN02
E7
DN03
E7
DN03
F6
DN04
E6
DN06
F6
DN07
F8
DN08
F8
DN20
C9
F801
D6
F821
B6
F822
A6
F841
E6
FH00
D2
GH05
D2
J801
D5
JH01
D1
JH04
D3
JH05
C3
L001
C4
L001
D4
LD81
B9
LH02
E2
Q801
D7
Q811
D7
Q812
D8
Q821
B8
Q822
A8
Q841
E7
QN01
F6
QN02
F8
QN03
F8
QN04
F8
QN05
F8
QN20
C7
R801
D8
R802
D8
R803
D8
R804
D8
R821
B7
R822
A7
R823
B7
R824
A7
R825
B7
R826
A7
RN01
F6
RN02
F6
RN03
F6
RN04
F6
RN05
F8
RN06
F8
RN07
F8
RN08
F8
RN09
F8
RN10
E9
RN21
C7
RN22
C7
RN23
C8
RN24
C7
RN25
C8
RN26
C9
RN27
C9
SH02
D3
W001
D1
1
2
3
4
5
A
B
C
D
E
1
2
3
4
5
F
G
H
I
A
B
C
D
E
F
G
H
I
CN01 F2
CN02 F3
CN03 F2
CN21 F5
CN22 F4
CN23 F4
CH01 H4
CH02 H3
C801 D2
C802 E2
C803 D2
C804 D3
C805 D5
C806 E3
C814 E3
C815 E4
C816 E5
C817 D5
C818 D5
C821 B2
C822 B2
C823 A2
C824 C2
C825 A3
C826 C3
C827 B4
C828 C4
C829 B5
C830 C5
C841 E2
C842 E2
C843 E3
C844 E3
C845 E4
C846 E5
C851 F5
C852 F5
C853 B5
C854 A5
DN01 F2
DN02 F2
DN03 F2
DN04 F2
DN05 F2
DN06 F3
DN07 F3
DN08 F4
DN20 F4
DH01 G5
D801 D2
D802 D2
D803 E2
D804 E2
D821 B2
D822 B2
D823 C2
D824 C2
D825 A4
D826 C4
D827 A4
D828 C4
D841 E2
D842 E2
D843 E2
D844 E2
FH01 G3
F801
D1
F821
C1
F822
B1
F841
F1
GH05 H4
JH01 I4
JH02 G4
JH03 G3
JH04 G1
JH05 H4
J801
B1
J802
C5
J803
D1
J804
E1
J821
C1
J822
B2
J823
B2
J824
A1
J841
E1
J842
F1
LH01 H3
LH02 G4
LD81 D5
QN01 F3
QN02 F3
QN03 F3
QN04 F3
QN05 F3
QN20 F4
Q801 D4
Q811 E4
Q812 D4
Q821 B4
Q822 C4
Q841 E4
RN01 F2
RN02 F3
RN03 F3
RN04 F3
RN05 F3
RN06 F3
RN07 F3
RN08 F3
RN09 F3
RN10 F4
RN21 F5
RN22 F4
RN23 F5
RN24 F5
RN25 F4
RN26 F4
RN27 F4
R801 D4
R802 D4
R803 D4
R804 D4
R821 A4
R822 C4
R823 A4
R824 C4
SH02 I1
UH01 H2
UH02 I2
UH03 H1
Layout Power supply Board
59
60
AV Board (N:Europe): Video control & SCART switch
I2C
B
G
R
BUFFER
OUTPUT
OUTPUT
BUFFER
OUTPUT
BUFFER
ADJUST
LIMITING
PEAK DRIVE
LIMITING
PEAK BEAM
GAMMA
BRIGHTNESS
ADJUST
CONTRAST
ADJUST
SATURATION
LEAKAGE AND
CUT-OFF
CONTROL
BLACK
ADAPTIVE
SYNC
INPUT
SOURCE
SWITCH
Y- MATRIX
Y-CD/
2370 G3
2372 G13
2373 G14
2361 D11
2362 D11
2380 C6
2381 C7
2384 C3
2398 D3
2400 E4
2401 E9
2403 E9
2405 F6
2406 F7
2407 F8
H
1300-1 A1
2386 C9
2387 C3
2388 D9
2389 C3
2390 D4
2391 D3
2392 D9
2393 D4
2412 H4
2415 E1
2416 E11
2
3
3321 D10
3322 D10
3331 B8
2365 E15
2367 F12
5
6
2417 D15
2419 B3
9
10
11
12
13
14
15
1
3420 F8
3424 F4
4
5
6
7
8
9
10
11
2374 G3
2379 C5
14
15
1301-8 D1
1301-9 E1
2351 C12
2352 C13
2354 H3
2360 D10
D
E
2363 E15
2364 E15
H
A
B
C
D
E
F
G
7316 C4
7322 F4
1300-2 C1
1300-3 C1
1300-5 C1
1300-6 G1
1300-8 A1
1300-9 A1
1301-10 D1
1301-13 D1
2394 D9
2397 D4
1301-16 E1
1301-2 D1
OPTIONAL
OPTIONAL
1
2
3
4
3352 B5
3353 C5
7
8
3403 D3
3404 D3
3405 D3
3406 E3
3414 E4
3415 E4
3418 F6
3419 F6
F136 C15
F138 D1
3433 H4
3610 H6
3611 H6
3612 H7
3613 H6
3614 H7
3615 A3
3616 B2
12
13
3619 B2
3620 E3
OPTIONAL
VIDEO CONTROL & SCART SWITCH
PROCESS CHIPS
A
B
C
3627 E2
3628 F2
F
G
4305 F13
4307 A8
4308 A8
4309 A8
6302 B1
6303 B1
7304 H3
7305 C11
F200 C5
F201 C5
7329 H6
7330 H7
7331 A2
7332 B2
7333 F2
7334 F2
7335 G1
7999 H10
1301-14 G1
1301-15 E1
F109 C1
F110 C1
3334 C8
3338 H13
3339 H13
3340 H14
3341 H14
3350 C7
F120 H4
F121 H5
3400 D3
3401 D3
F124 C14
F125 C14
F128 D1
F129 C15
F130 D1
F131 C10
F132 C15
F135 E1
F267 H7
F268 H6
F139 D11
F141 D11
F142 D1
F143 D15
F144 G1
F146 C15
F150 E1
F151 E11
3617 B1
3618 B2
F156 C15
F158 E11
3621 F2
3622 F1
3623 F2
3624 F1
3625 G1
3626 A2
F170 F12
F172 F12
3999 H9
4304 F13
F177 G14
F180 G14
F181 G13
F182 G3
F185 A10
F188 A10
F191 A10
F196 C5
F233 E9
F237 E6
F202 C6
F203 C6
F204 C7
F211 C4
F213 C9
F214 C4
F215 D9
F217 C4
F105 A1
F106 C1
F224 D9
F225 D4
F112 G2
F113 A1
F116 C13
F117 C12
F118 C12
F119 C13
F274 B1
F275 E2
F122 C13
F123 C14
F244 F4
F249 F4
F260 A1
F261 E15
F262 E2
F263 E11
F265 H7
F266 H7
F276 E3
F277 F2
F278 F1
F173 F12
F176 G13
F281 G1
F298 C14
F301 B1
F226 D9
F227 D4
F153 E11
F154 C15
F279 F2
F280 F2
F159 E15
F160 E11
F161 E15
F162 E11
F168 F13
F169 F13
F168
F228 D4
F230 E4
F231 E9
F221 D4
F223 D4
F238 E7
F242 E7
F243 E8
F269 A2
F270 A3
F271 B2
F272 B2
F273 B2
3627
F141
F242
4307
1K
3618
F204
BC337-25
7331
F151
470n
2386
3628
1K5
47u
2419
2417
100n
F211
F143
3625
1K
F185
3321
100R
3340
2389
470n
100R
F221
2362
100n
F266
F301
F176
F180
470n
2401
BC847B
7335
3620
52030
1301-10
10
F215
3613
2K7
4u7
2372
50
4K3
3334
F260
3999
2360
3403
75R
47p
-8Vstby
+8VSTBY
F113
F129
F170
F275
F227
4304
2354
220n
3404
75R
F130
F213
3405
75R
F188
F109
F217
4K7
3331
F106
+5V
F249
+8VSTBY
F135
F153
F181
F112
3341
10K
F233
F173
1K5
3623
F231
100R
3419
3406
75R
2416
100n
+8VSTBY
2405
47p
F177
F270
22n
2365
F131
3617
10K
F150
F139
F223
3612
10K
+8VSTBY
F159
47u
2412
3322
100R
VCCA
33
VCCV1
16
VCCV2
12
VCCV3
9
VOUT-RF
51
VREF
24 YCVBSIN-AUX
YCVBSIN-ENC
36
YCVBSIN-TV 52
50
YCVBSIN-VCR
15
YCVBSOUT-AUX
3
YCVBSOUT-TV
7
YCVBSOUT-VCR
YIN-AUX
26
YIN-ENC
38
37
RIN-AUX
43
RIN-ENC
39
RIN-STB
56
RIN-TV
47
RIN-VCR
4
ROUT-AUX
58
ROUT-CINCH
64
ROUT-TV
60
ROUT-VCR
SCL
21
22 SDA
31 SLB-AUX
25 SLB-TV
27 SLB-VCR
23 VCC12
55
14
GNDV2
10
GNDV3
63
GOUT-TV
35
LIN-AUX
45
LIN-ENC
41
LIN-STB
53
LIN-TV
49
LIN-VCR
6
LOUT-AUX
59
LOUT-CINCH
LOUT-TV
2
62
LOUT-VCR
28 RCIN-AUX
42
RCIN-ENC
1
RCOUT-TV
61
BOUT-TV
40
CIN-ENC
54
CIN-TV
48
CIN-VCR
COUT-AUX
13
COUT-VCR
5
34
CVBSIN-STB
18 FBIN-AUX
FBIN-ENC
19
17 FBOUT-TV
11
FILTER
30 GIN-AUX
44
GIN-ENC
57
GNDA
GNDV1
29
7305
STV6410A
ADD
20
8
AOUT-RF
32 BIN-AUX
46
BIN-ENC
+6V
6302
BAS216
4305
F158
F225
+8Vstby
F243
F279
F156
F238
2394
220n
1300-9
52030
9
3616
4K7
10
2364
100u
50
2373
4u7
100n
2351
+12Vstby
F224
3352
5K6
52030
2
F230
F191
F123
1301-2
47p
2406
2388
220n
1300-3
3
52030
1300-5
5
3418
100R
52030
2393
10n
2384
470n
1301-8
52030
8
3400
75R
F269
F278
2380
100n
10n
F128
3415
22K
2398
+8VSTBY
3414
4K7
+8VSTBY
2400
10n
3353
1K
7322
BC847B
52030
1301-13
13
3433
F228
100n
2363
1301-14
52030 14
F274
3420
82K
F272
3610
4K7
F110
F182
F273
+8VAud
F237
F244
F265
F202
2352
100n
F119
F117
F226
2407
330n
2387
470n
52030
1300-6
6
F160
F261
F262
F268
100n
2379
10n
2391
1301-15
52030 15
F142
3424
22K
F122
F116
52030
9
F214
F132
1301-9
BC847B
7329
3611
4K7
F276
4308
52030
1300-1
1
2397
10n
2392
470n
F144
3624
10K
3622
10K
+12Vstby
BC327-25
7333
4309
47p
3626
+8VSTBY
F161
2361
3350
10K
6303
BAS216
F200
F203
F201
2403
220n
F124
7330
BC847B
F125
7334
BC847B
3338
10K
SDA
5
VCC
8
Y
y|HUE
26
100R
3339
16
CPDL
18
CPDST
11
G1
3
G2
9
GND
22
GO
7
R-Y
10
R1
2
R2
13
RGB1
1
RGB2
24
RO
14
SC
28
SCL
27
TDA4780
7316
17
19
6
B-Y
12
B1
4
B2
15
BCL
20
BO
25
CLAMP1
23
CLAMP2
21
CLAMP3
75R
3401
7999
BC847B
F105
F118
3615
4R7
100n
OUT
3
2367
7304
LF80C
GND
2
IN
1
F281
F280
F146
220n
25
2374
F162
F298
50
2370
10u
F138
F263
F121
3614
10K
+12Vstby
F120
100n
2381
2390
10n
4K7
3621
F267
2
F136
2415
10u
1300-2
52030
F196
F154
52030
1301-16
16
3619
10K
F277
+8VSTBY
F271
F172
F169
52030
1300-8
8
BC857B
7332
0|6V
BCTV
LIN_TV
ROUT_TV
GOUT_TV
RIN_TV
BOUT_TV
BC_TV
+8VSTBY
P50
B
GO
BO
GO
RO
{RO,BO,GO}
{RO,BO,GO}
RO
COUT_AUX
BO
Y_ENC
STEREO_L
SDA
SCL
STEREO_R
YCVBSIN
YCVBSIN_TV
SLB_VCR
SLB_TV
DC_OFF
CVBS
CVBS
HSYNC
G
R
SDA
SCL
HSYNC
Y_ENC
+6V_ON
DC_OFF
SLB_VCR
DC_OFF
CL 06532152_061.eps
121200
FROM MONO PCB
V
ELECTRONIC
VOLTMETER
DC VOLTAGES MEASURED IN STOP MODE
TP1
TP2
TP3
TP6
TP4
TP6
C-ENC
TP24
TP25
TP26
TP27
TP22
TP23
-9.5V
-9.2V
-8.6V
-0.16V
-1.2V
-0.7V
0V
11.2 V
10.8V
11V
0.16V
0.7V
0V
1.6V
0.7V
10.8V
8V
0.7V
0.7V
0V
FROM MONO PCB
FROM MONO PCB
61
62
AV Board (N:Europe): Video out
3427 G7
3429 I11
3431 I11
3435 C10
3436 D11
3437 D10
3438 D10
3439 C4
3440 D3
3441 I10
3515 C7
3600 E3
3601 F2
3602 F3
3603 F4
3604 F2
3605 F1
3606 F4
3356 H3
3357 H4
3359 F12
3607 F4
3608 H5
3363 F11
3364 I7
3365 I4
3366 F12
3367 A12
3368 A11
3378 I2
3394 F11
3395 I5
3397 G11
3398 I3
3399 I4
3402 I6
3407 H11
3408 H11
3409 G11
3410 F5
3411 F7
3413 H12
3416 F7
CVBS-OUT
TV-SCART
3417 F6
3421 H1
3422 F5
3423 G7
3425 I12
3307 C3
3308 C3
3309 C3
3432 I13
3434 B10
3313 B12
3314 A12
3315 A11
3316 A12
3318 A11
3319 A11
3320 A12
3323 B11
3325 B11
3327 C11
3329 C11
3330 C12
3332 D11
3333 D11
3335 D11
3336 E12
3342 E11
3343 D13
3345 B5
3347 B4
OPTION
VIDEO OUT
3348 E12
3349 F13
3351 F12
3354 H7
3355 H7
2359 B10
2366 C12
2368 C12
3360 H6
3362 H7
2375 E12
2376 E11
2377 B5
2378 E11
2382 F11
2383 F11
2385 F10
2395 G12
2396 H10
2399 H10
2402 H11
2404 H13
2408 I12
2409 I13
2410 I12
2411 I11
2413 C13
2414 H12
2418 D4
3300 A3
Y/C OUT
3301 B3
3302 B3
3303 D4
3304 B3
3305 B3
3306 D5
7
8
9
3310 D5
3312 D3
12
13
1
2
3
4
5
6
7
8
9
10
11
12
13
A
B
C
D
E
AUX-SCART
2314 C3
2337 D5
2353 A11
2355 A10
2357 A10
2358 A13
7328 F2
7336 A12
7337 B11
2369 C13
2371 D13
F
G
H
I
A
B
C
D
E
F
G
H
I
1303 D6
1304-1 A13
1304-2 F13
1304-3 E13
1350 A13
1402-A B6
2308 D6
OPTION
1
2
3
4
5
6
F175 D10
F178 E12
F183 E12
10
11
3609 D4
4301 C11
6300 C3
6301 H1
6305 B11
6306 B7
6307 C8
7300 B3
7301 B2
7302 C5
7303 D3
7306 B10
7307 C11
7308 D10
7309 D11
7310 B4
7311 H6
7312 H4
7313 I3
7314 I6
7315 I7
7320 F6
7321 F6
7324 G7
7325 I11
7326 F4
7327 F3
F240 H7
F241 H5
F245 I2
7417 C8
F100 B2
F101 B3
F102 B4
F103 B3
F104 B4
F107 B3
F108 B5
F111 C3
F114 A12
F115 A11
F127 A11
F133 B11
F134 A13
F137 A13
F140 B13
F145 B12
F148 B12
F149 B13
F152 B10
F155 C11
F157 C12
F163 C11
F164 C12
F165 C12
F166 D11
F167 D10
F171 D12
F174 D12
F481 B7
F482 B8
F483 C7
F184 C4
F186 D3
F187 D5
F189 D4
F190 D5
F192 D5
F193 E12
F194 F3
F195 F12
F197 F2
F198 F4
F199 F7
F205 F11
F207 F2
F208 F6
F209 F4
F210 F5
F212 F11
F216 G13
F218 G12
F219 G13
F220 G7
F222 G13
F229 H12
F232 H1
F234 H11
F235 H7
F236 H4
F239 H3
+8Vstby
F246 I3
F247 I11
F248 I6
F252 I5
F253 I5
F254 I7
F255 I7
F256 I10
F257 I11
F258 I12
F259 I12
F264 D4
F297 F3
F299 F4
F300 G7
3421
270R
3423
56R
F171
F175
F149
F145
470R
3410
1350 EH-B
1
2
F229
F218
F178
3360
470R
F167
7311
BC847B
2366
220p
220p
2369
3357
4K7
BC817-25
7324
2
1
3439
100R
-8Vstby
+8Vstby
YKC21-3930
1402-A
F115
F140
3607
+8Vstby
F297
5K6
F192
F300
F184
7303
+6Vstby
6K8
3304
BC847B
33R
3416
820R
680R
3308
3305
4K7
3395
F127
4K7
3398
F247
2408
220p
2402
220p
F222
F212
F240
F104
F235
F190
F245
F232
+6Vstby
3342
470R
220p
2368
7308
BC847B
F210
F197
F198
F264
470R
3306
75R
3310
3359
47K
2410
470R
3351
3425
75R
2409
220p
220p
3432
75R
F133
+6Vstby
F174
+8Vstby
+8Vstby
50
3600
4K7
47K
3349
4u7
2382
16B
17B
18B
19B
2B
20B
21B
3B
4B
5B
6B
7B
8B
9B
1304-2
1B
10B
11B
12B
13B
14B
15B
4K7
4K7
3307
100K
F259
3605
F256
F257
3608
F258
470R
+6Vstby
7314
3347
3332
6301
BAS216
BC817-25
3330
75R
470R
F114
F137
33R
3355
2413
100p
BC817-25
7315
+6Vstby
F183
4A
5A
6A
7A
8A
9A
3329
470R
10A
11A
12A
13A
14A
15A
16A
17A
18A
19A
2A
20A
21A
3A
50
1304-1
1A
F166
2399
10u
F164
F165
F163
F155
8K2
F157
470R
75R
3303
3609
4u7
2357
50
3323
3413
47K
390R
3313
470R
3315
2404
220p
47K
3316
220p
2375
BC847B
7302
+6Vstby
-8Vstby
-8Vstby
7300
BC857B
7325
BC847B
47K
3325
+6Vstby
3436
100p
2414
100R
3441
150R
100R
3438
3437
100R
F234
3435
100R
75R
3407
F194
150R
50
10u
2396
+6Vstby
3333
2383
4u7
50
470R
3394
BC847B
1K
3378
7313
75R
3336
50
10u
2376
470R
3362
3402
4K7
560R
3365
3399
5K6
5
6
7
1
3
4
2
7306
BC847B
2358
220p
1303
TCS79
3348
1K
2308
220p
2377
2378
4u7
50
F152
+8Vstby
220p
Vref
F148
50
4u7
2355
Vref
BZX384-C5V6
6300
47K
3318
150R
3300
3429
50
10u
2411
F248
75R
F241
F253
220R
3343
75R
6305
4301
3312
3431
470R
BAT254
3408
7309
BC847B
3302
100R
75R
100R
3301
BC847B
7301
BC817-25
7336
220p
2337
Vref
Vref
3422
4K7
BC847B
3345
75R
2K7
3368
7310
BC847B
7307
BC857B
3327
75R
3606
560R
7326
F205
F195
F216
BC857B
F189
50
4u7
4K7
3356
7312
50
2359
4u7
2385
75R
3411
56R
3364
7320
BC847B
3417
470R
3354
75R
+8Vstby
BC817-25
7321
F100
-8Vstby
100R
3440
F107
F103
100R
3434
F108
2353
50
4u7
1K
3314
3335
470R
F134
4K7
3427
3602
F111
F255
4K7
F252
F102
F101
F239
2418
330n
F246
470R
1304-3
0350808190
MT1MT2
7337
BC817-25
3409
6306
RB501V-40
F482
F483
F481
100K
3515
3366
47K
6307
RB501V-40
3363
1K
3367
2K7
3309
150R
100u
2314
2371
2395
220p
F219
F193
220p
Vref
+8Vstby
F187
F186
3320
47K
47K
3397
1K
3319
3601
4K7
F199
F209
+8Vstby
F207
7328
BC847B
3604
2K2
7417
BC857B
100K
3603
7327
BC847B
F220
+8Vstby
F208
F299
F254
SLB_VCR
KILL
F236
KILL_SCART
KILL_SCART
KILL_SCART
FBOUT_TV
BOUT_TV
COUT_AUX
FBIN_AUX
CVBS
SLB_TV
P50
P50
SLB_AUX
{C_OUT,Y_OUT}
C_OUT
Y_OUT
0|6V
TO SCART DATA
FILTER PCB
TP19
TP20
TP21
-0.3V
-1V
7.4V
1.8V
5.6V
1.1V
2.5V
1.7V
1V
1.8V
0.7V
0V
8V
-7.6V
-7.7V
-0.8V
1.4V
0.8V
-7.7V
0.8V
-0.8V
-0.8V
0V
8V
8V
-7.6V
2.3 V
-7.7V
-0.8V
2.3V
1.7V
-7.7V
1.7V
-0.8V
1.3V
0.7V
1.3V
0.7V
4V
3.3V
1.7V
1V
1.7V
1V
B/C SWITCHING
V
ELECTRONIC
VOLTMETER
DC VOLTAGES MEASURED IN STOP MODE
CL 06532152_062.eps
121200
63
64
AV Board (N:Europe): Audio
DRIVER
CONTROL
INTERFACE
DAC’S
VOL/MUTE/DEEMPH
INTERPOL FILTER
NOISE SHAPER
NC
DIGITAL
INTERFACE
F
G
H
I
1300-10 E1
1300-11 E1
1300-12 E1
1300-13 E1
1300-22 G1
1300-4 D1
1300-7 E1
1301-1 H1
AUDIO
SUBW
1
F433 C6
F430 C1
F432 C1
F415 B5
F416 B7
F417 B9
F418 B5
F419 B1
F420 B7
F421 B6
11
12
13
1
2
3
4
5
F422 B1
F423 C7
F424 C8
F425 C1
F428 C1
OPTIONAL
CENTER
E
A
B
C
D
LEFT REAR
1301-11 I1
1301-12 I1
F
G
H
I
A
B
C
D
E
1402-C D13
1405 I13
1410 A13
2450 B6
2452 A2
2453 A3
2455 B4
2456 B7
1300-14 F1
1300-15 F1
1300-16 F1
1300-17 F1
1300-18 G1
1300-19 G1
1300-20 G1
1300-21 G1
2465 D6
2466 D7
2467 D8
2468 E6
OPTION
2469 E2
2470 D11
2
3
4
5
6
7
8
9
10
2480 F5
2481 G6
2482 G8
2483 F11
2484 G5
2485 H6
2486 H8
2487 H5
6
7
8
9
10
11
12
13
RIGHT FRONT
3444 C4
3445 C10
3446 C7
3447 C8
3448 C4
3451 C4
1301-3 H1
1301-4 H1
1301-5 H1
1301-6 I1
1301-7 I1
1400-A A11
1400-B D9
1400-C G9
1402-B D13
3461 A10
3462 A7
3463 A8
3464 A6
3466 D7
3468 D4
3469 D8
3470 E7
2457 C10
2458 C6
2459 A4
2460 B2
2461 C6
2462 A7
2463 A10
2464 A6
3V
3480 F7
3481 F13
3482 F5
3483 F8
3484 F7
3486 G4
2471 E2
2472 E3
2473 D10
2474 D11
2475 F6
2476 E12
2477 E6
2478 F8
2479 E11
3496 H7
3497 H7
3498 H5
3499 H8
3502 H5
3505 I8
3506 F3
3507 I8
2488 H13
2489 I12
2490 D7
2491 I2
2493 I8
2494 I11
2495 I9
3442 B7
LEFT FRONT
3517 B7
3518 B3
3519 B3
3520 I2
3521 I3
3522 I2
3452 B2
3453 C6
3454 A4
3455 A4
3456 A7
3457 A8
3458 C3
3459 B4
3460 C3
6400 I13
7400 A2
7401 B2
7402 A3
7403-A A6
7403-B B6
7403-C A11
7403-D C11
3471 E5
3472 E1
3473 E2
3475 E6
3476 E12
3477 E13
3478 E4
3479 F4
RIGHT REAR
2.8VRMS
OPTIONAL
7409 E7
7410 F7
7411 G7
7412 H7
3487 G7
3488 G7
3489 G4
3490 G8
3491 F12
3492 F13
3493 G5
3494 G13
3495 H4
7421 G3
7422 I3
7423 I3
F400 A12
F401 A3
F403 A5
F404 A6
F405 A7
3508 I10
3509 G2
3510 C6
3511 C1
3512 C1
3513 F12
3514 G12
3516 H2
F434 D4
F435 D7
F436 D8
F437 D3
F438 D7
F439 E2
F440 D10
3523 H3
3524 H13
3525 F1
3527 G2
4400 F10
4401 E10
5400 I9
6308 H12
6309 H11
F450 F6
F451 F6
F452 F8
F453 E12
F454 F13
F455 E1
F456 E10
F457 F7
7404 C7
7405 C8
7406 A9
7407 A7
7408-A E5
7408-B D6
7408-C G5
7408-D F5
F466 F12
F467 F13
F468 F13
F469 G10
F470 G13
F471 G1
F472 G4
7413-A D10
7413-B F9
7413-C G9
7414-A E11
7414-B F11
7415 E13
7416 G12
7419 F13
7420 G13
F486 I8
F487 I8
F488 I10
F489 I10
F490 I10
F491 G2
F497 H1
F498 G12
F406 A8
F408 A5
F409 A7
F410 A7
F411 A8
F412 B4
F413 C12
F414 B2
F499 A3
F500 H3
F501 I2
F502 I3
F503 I2
F600 I9
F601 E1
F441 E6
F442 E6
F443 E4
F444 E11
F445 E12
F446 E13
F447 E13
F448 E1
F449 E5
F458 F10
F459 F4
F460 F5
F461 F6
F462 F7
F463 G4
F464 G7
F465 F11
F473 G1
F474 H6
F475 H6
F476 H8
F477 H5
F478 G1
F479 H7
F480 G12
F485 I2
6308
RB501V-40
+12VAUD
-8Vstby
F454
52030
1301-7
7
2471
100n
F491
-8Vstby
22n
2469
F473
+12VAUD
2K7
3494
3460
10K
3483
F447
F438
F445
F458
3457
100R
3
2
1
4
11
3
52030
1301-1
1
MC33079
7408-A
1301-12
52030 12
1301-3
52030
47u
2474
10K
3454
7403-A
MC33079
3
2
1
4
11
6309
BZX284-C5V1
2488
100n
1300-12
52030 12
1300-18
18
+8VAud
F436
52030
1300-17
17
52030
F423
100u
2462
Vdd
7
Vee
8
Vss
12 Y0
13 Y1
14
Z
F465
7413-A
HEF4053BT
6
E
11
S
16
52030
1300-11
11
-8Vstby
F466
F452
BC817-25
7409
2
BC817-25
7411
GP1F32T
6400
3
1
3492
BC817-25
7419
4K7
3520
100R
+5V
-8Vstby
7402
BC817-25
6
E
10
S
16
Vdd
7
Vee
8
Vss
2 Y0
1 Y1
15
Z
F448
2K7
7413-B
HEF4053BT
4
F444
3462
3V3A
LM833D
7414-B
5
6
7
8
F411
F446
100R
3491
F453
3444
10K
2489
100n
1300-14
14
1300-16
52030 16
7403-B
5
6
7
4
11
+5V
52030
10K
3511
MC33079
220R
3487
F403
F474
+5V
F467
3459
10K
100p
2459
-8Vstby
10K
3448
3484
2K7
+6V
F501
F500
+12VStby
+8VAud
F463
2470
22n
F600
2K7
3447
100u
2483
100R
3476
2476
100u
1301-5
52030
5
F502
F503
7403-C
10
9
8
4
11
22n
2468
F480
MC33079
47u
+12VAUD
100R
2466
2K7
3497
3456
2460
F489
2K7
3488
22n
3
1
2
1n
2467
12
13
14
4
11
YKC21-4040
1400-A
F470
7403-D
MC33079
100p
2461
F476
7414-A
LM833D
3
2
1
8
4
2485
47u
3481
2K7
10K
3506
10K
F456
3482
2465
22n
1300-10
52030 10
1300-7
52030
7
YKC21-4040
1400-C
9
7
8
BC817-25
7415
4R7
3510
1
2
3
4
6
7
8
2452
220n
7CHA
5400
7412
BC817-25
F419
2K7
3518
F499
F439
F437
F442
F435
F420
3499
10K
3471
1400-B
YKC21-4040
6
4
5
BC817-25
7406
5K6
4400
F432
F479
1300-22
52030 22
+8VAud
F478
2453
47u
6
4401
7
52030
1301-4
4
52030
1301-6
EH-B
1410
1
2
3
4
5
6
6
5
F433
7408-C
MC33079
10
9
8
4
11
1402-C
YKC21-3930
5K6
F468
3461
10K
3498
F490
F406
3489
3477
100R
2456
100u
5K6
YKC21-3930
4
3
2493
47p
3V3
1402-B
100p
2484
1
3
2
2494
100n
1405
YKC21-3416
100p
2455
OUT
2
+5V
LD1117
7400
1
GND
IN
3
3525
10K
3508
68R
52030
1300-13
13
F417
F459
F443
52030
1301-11
11
10K
3469
3514
2K7
22n
2479
F410
F477
1300-21
21
22n
2458
20
52030
1300-19
19
52030
1300-20
52030
F425
7420
3517
100R
BC817-25
1n
F455
3472
2482
3V3
+8VAud
4R7
2K7
F401
22n
2473
+8VAud
3446
10K
3493
3502
10K
F430
3463
2K7
F451
220R
F404
F422
3466
100p
10K
3453
100p
2487
2464
F464
100K
3478
-8Vstby
3451
10K
+8VAud
7416
F441
BC817-25
-8Vstby
+5Va
2463
1n
F475
7410
BC817-25
F414
F408
F412
BC847B
7423
100K
3468
BC817-25
7405
2478
1n
47u
2475
220R
3480
F485
F449
F418
-8Vstby
100K
3495
100R
3505
+8VAud
F472
10u
F488
F434
2495
F487
F486
11
3522
1K
MC33079
7408-B
5
6
7
4
BC817-25
7421
F428
F416
2457
1n
2490
47u
F450
3507
100R
F421
+5Va
7408-D
12
13
14
4
11
3527
47K
3464
10K
MC33079
7404
BC817-25
F462
3458
F415
F469
10K
3445
2K7
3470
F498
3524
1K
3521
BC557B
7422
6
E
9
S
16
Vdd
7
Vee
8
Vss
5 Y0
3 Y1
4
Z
F457
7413-C
HEF4053BT
-8Vstby
F601
47K
3509
2486
1n
-8Vstby
F400
3442
100R
+5V
3512
10K
3V3A
47u
2472
+12VAUD
3473
3486
100K
52030
1300-4
4
3516
4R7
F424
+6Vstby
F497
3523
2480
100p
-8Vstby
52030
1300-15
15
100p
2477
-8Vstby
3496
220R
F409
F461
22n
-8Vstby
F460
F405
2450
3452
10K
3455
F471
+8VAud
F413
3V3
3475
5K6
3519
BC817-25
10K
22
6
VDDA
21
VDDD
VO1N
29
VO1P
28
VO2N 31
VO2P 32
VO3
1
VO4 2
VO5
4
VO6 5
VREFA
30
VSSA
3
VSSD
20
WS
11
7407
24
DI12
12
13 DI34
DI56
14
DS 26
18
L3CLK
L3DATA 19
L3MODE 17
MUTE 23
7
8
15
STATIC 9
SYSCLK
16
TST1
27
TST2
7401
UDA1328T
BCK
10
DEEM0 25
DEEM1
47u
2481
5K6
3479
3490
10K
2K7
3513
F440
2491
100u
ST_R
ST_L
STEREO_L
STEREO_R
KILL
-8Vstby
+5Va
DIG_OUT
STEREO_MUTE
CENTER_ON
KILL
KILL
STEREO_L
KILL
STEREO_R
DIG_OUT
+6V_ON
KILL
HP_R
HP_L
HP_R
HP_R
HP_L
CENTER
ST_L
KILL
KILL
KILL
KILL
KILL
KILL
KILL
KILL
ST_R
CENTER
HP_L
TO HEADPHONE PCB
NOT USED IN SACD1000
NOT USED IN SACD1000
NOT USED IN SACD1000
NOT USED IN SACD1000
NOT USED IN SACD1000
CL 06532152_063.eps
121200
V
ELECTRONIC
VOLTMETER
DC VOLTAGES MEASURED IN STOP MODE
KILL: -5V DURING PLAY
+5V DURING STOP, NEXT, PREVIOUS
TP7
TP8
TP9
TP10
TP12
TP13
TP11
TP14
TP14
TP14
TP14
TP14
TP14
TP14
TP14
TP15
TP15
TP15
TP15
TP15
TP15
TP16
TP16
TP16
TP16
8V
3V3
1.65V
0.6V
0V
5V
0.7V
0V
5.5V
5.5V
TP18
FROM MONO PCB
STEREO
OUT_L
STEREO
OUT_R
DIG_OUT
OPT.
OUT
65
66
Layout AV Board (N:Europe) (top view)
CL 06532152_064.eps
121200
67
68
Layout AV Board (N:Europe) (bottom view)
CL 06532152_065.eps
121200
69
70
AV Board (F, S, U): Video
I196
F1 : AV PCB
6001
7017
BC848B
I246 E6
I247 F7
I248 B12
I249 C12
I251 F4
F224 C1
F225 C1
I189 B6
I191 B6
0R
I266 G13
I267 G13
I268 H13
I269 I13
I121 B3
I122 B4
I123 A4
I124 A5
I126 E2
I170 A6
I201 B13
I232 D7
I234 B11
I235 B12
VGND
VGND
I236 B9
I237 E12
I238 E12
I221 D6
I225 A9
I227 A9
I229 A10
I231 D13
7018 B11
7019 F9
7116-A I9
VGND
VGND
Y
VGND
I239 E5
I241 F4
I242 E4
0R
7013 F4
7014 E6
7015 A10
7016 A9
I253 F5
I260 B13
I264 F13
I244 B10
I245 F5
CR
VGND
F227 D1
F228 D1
F229 A3
F231 B1
F232 C1
5006 G12
5007 I12
6001 F7
6002 B11
I265 F13
6004 F11
6005 G11
6006 I11
VGND
OPTION
VGND
VGND
I196 C5
I198 B13
I200 C4
470R
I208 D8
I209 C6
I210 C6
I211 C5
I214 D7
I215 D7
I219 D7
I220 A10
7002 B4
7006 B6
S-VIDEO
7008 C5
7009 C6
7010 D6
7011 D7
7012 F5
3136 G8
3137 G8
3138 G8
3139 H8
7017 A11
3141 H9
3142 H9
3143 I9
VGND
VGND
750R
VGND
AD 8073
VGND
VGND
3145 I9
7116-B G10
7117 A5
F218 B1
F219 B1
F220 B1
F221 B1
F222 C1
F223 C1
4108 A4
4109 F11
F226 D1
4111 H11
4112 A6
5003 A13
5004 B12
5005 F12
3049 D8
3050 D7
3051 D6
3052 D6
6003 C12
3055 E6
3056 E4
3058 E4
OPTION
OPTION
3059 E6
3060 F4
VGND
0R
560R
3064 F4
0R
0R
VGND
6007 B3
6008 B3
6010 D8
7000 F2
7001 A5
3073 B11
3074 B9
7007 C5
3076 B10
3077 C12
3078 C11
3080 C2
3135 G8
A
B
C
D
3140 H8
F
G
H
OPTION
2130 G9
2131 G9
3005 E1
AD 8073
0R
3144 I8
3009 A4
3146 I8
3147 I9
3148 I9
3150 F11
3153 F9
3154 G11
3157 I11
3158 F9
3041 B7
3042 C6
4110 G11
3044 C4
3045 C6
3046 D7
3047 D6
3048 D6
(BC858B)
VGND
3054 E5
0R
1
2
3
4
5
6
3061 F5
3062 F7
3063 F6
2128 G11
3065 F5
3066 A10
3067 G5
3068 A9
3069 A9
3070 B9
3071 B10
3072 B11
6
7
3075 B10
9
10
11
12
13
CB
I
A
B
E
2
3
4
5
1003 D13
1006-A F13
1006-B G13
C
D
E
F
3010 B4
3011 A4
3012 A5
3013 A5
3036 B6
3038 B5
3039 C5
3040 C5
1006-C H13
1007 B1
3043 C6
1002-A B13
3006 E1
3007 F1
3008 A3
(Reserved)
2123 E12
2127 F11
2006 A5
2007 A6
2008 A6
2009 A7
2029 C2
2032 D8
2033 E12
2036 D7
2040 G5
2041 B10
VGND
12
13
1
2129 I11
(Reserved)
(Reserved)
(BC 848B)
7
8
9
10
11
8
3062
75R
+5VVID
G
H
I
I198
3074
4K7
I227
F231
F232
I220
I251
I253
I242
3076
3051
4K7
+5VVID
3058
100R
DSS306
2
1
3
BC858B
7012
75R
3154
5006
I209
I211
I239
I269
6K8
3047
-5V
6003
BZX284-C15
220p
2033
3077
75R
2123
220p
3070
6K8
470n
820R
3071
BZX284-C15
6006
2032
F228
3
1
2
3066
F227
820R
3048
YKC21-3866
1002-A
BC848B
7016
3069
3068
270R
16
2041
100u
100R
I231
I247
220p
2128
6004
3158
2K2
BZX284-C15
-5V
I245
+5VVID
+5VVID
+5VVID
BC858B
BZX284-C15
7015
I200
7007
I191
22K
3038
BC848B
BC848B
7006
3055
-5V
3136
680R
3075
3140
2K2
6005
BZX284-C15
1K
2K2
3073
I241
YKC21-3930
1006-A
2
1
4111
1K2
3147
1K
3143
3145
5K6
F224
F220
F221
3157
75R
F219
5005
DSS306
2
1
3
I264
3041
I265
3080
4R7
8K2
13
14
15
16
2
3
4
5
6
7
8
9
-5V
0|6|12
FMN
1007
1
10
11
12
F223
F226
I232
I215
I210
I219
5004
DSS306
2
1
3
-5V
I214
2K2
3063
I189
I208
I248
I238
22n
2130
22n
2131
F218
1K5
3138
GND
IN
OUT
10R
3137
MC79M05
7117
7019
3012
4R7
220p
+5VVID
BC848B
2127
I266
5
6
7
1
3
4
2
YKC21-3930
1006-B
4
3
TCS79
1003
1K
3142
I249
BAS216
6008
I235
F222
3141
1K
3135
3056
270R
1K
2129
220p
I260
2040
16
100u
YKC21-3930
6
5
I267
4109
1006-C
DSS306
5007
2
1
3
+5VVID
F225
BC848B
7014
3064
4K7
I221
3059
100R
15K
3040
7008
BC848B
-5V
22K
3039
47u
2029
7011
BC848B
100R
3045
75R
3072
-5V
3042
I237
4K7
3006
I268
3146
I225
+5VVID
I234
10
100u
2008
3139
3153
100R
5
6
7
4
11
1K
3148
I123
7116-A
I121
I122
3150
75R
2009
100u
10
3054
3065
680R
3044
10K
6007
BAS216
3010
4K7
7001
BC817-25
4K7
3011
10K
3008
3007
3144
3005
4K7
2K7
+5VVID
+5VVID
16
2036
100u
4K7
100R
3046
-5VA
4108
3009
1
3
3060
6K8
-5V
4110
5003
DSS306
2
3049
75R
BC848B
7010
3067
BC858B
10
+5VVID
+5VVID
7009
4R7
3013
2007
100u
BZX284-C15
6010
7013
3050
I229
22u
2006
BC848B
I244
+3V3
2K2
I236
3078
BC847B
7000
BC857B
7002
I170
F229
+5VVID
4112
3052
-5V
BC848B
7018
I246
680R
7116-B
10
9
8
4
11
I124
I126
-5V
3061
820R
I201
270R
3043
2K2
3036
DC_OFF
DGND
BZX284-C15
6002
C
Yout
Y
-5v
Vout
DC_OFF
+5V
+6Vstby
+5VVID
R
G
B
B
G
R
-5V
+5VVID
Uout
DGND
CVBS
Y
C
+6Vstby
SDA
SCL
PCM_OUT1
DGND
PCM_OUT2
DGND
DGND
H_SYNC
CL 06532152_103.eps
141200
VIDEO
OUT
(VIDEO)
(DIGTAL AUDIO)
71
72
AV Board (F, S, U): Audio
DRIVER
CONTROL
INTERFACE
DAC’S
VOL/MUTE/DEEMPH
INTERPOL FILTER
NOISE SHAPER
NC
DIGITAL
INTERFACE
3002
7020
GP1F32T
2039 E2
2101 D6
I175 F7
I176 G8
I177 G9
I178 G9
I179 G10
I180 F11
I181 G5
I182 G7
I183 G10
I205 G12
I207 H11
I217 E12
I223 E11
I261 G12
I262 B12
I263 E12
F2 : AV PCB
12
I270 A12
A
I271 A12
* LEFT/RIGHT SWAP FOR CUT 2.1 uP
# NO SWAP FOR CUT 3.1
COIL 100u
C
D
E
F
G
H
A
B
C
D
E
F
G
H
1002-B G13
1002-C E13
1004 C1
1005 B12
1405 A12
2000 B7
2001 B11
2002 B7
2004 B11
2030 F2
2038 D2
3003 C3
2100 B4
3014 E9
2103 D9
0R
0R
100R
1
2
3
4
5
6
7
8
9
10
11
12
13
1
2
3
4
5
6
7
8
9
10
11
3127 H11
13
3130 E10
B
2104 E11
2106 E8
2107 F6
VGND
*
RIGHT
0R
*
2108 E4
2109 E5
2110 E5
2112 G9
2113 G11
2115 G8
2119 H11
2121 E11
2124 C12
2125 D8
2126 E8
2132 F8
2133 F8
2134 F2
2135 A11
2136 A12
3000 B7
3001 B9
3002 B3
7115-B F8
3004 C3
F201 C1
3015 F9
3016 G9
3017 H9
3057 D2
#
3100 C10
3101 B6
3102 B6
3103 B3
3105 D6
3106 D6
3107 D9
3108 F2
3109 D2
3110 E11
3112 E9
3113 E10
3114 E8
3115 F6
3116 F6
3117 D3
3118 G9
3119 G10
3120 G6
3121 G11
3122 G9
3123 G10
3124 G8
3126 G10
I128 B4
3129 H11
I141 H9
3131 E10
3132 F11
3159 D10
3160 E6
#
LEFT
100R
RIGHT
LEFT
3161 A10
3162 A10
4100 B4
4105 E4
5000 B8
6009 A5
7004 F9
7005 H10
7020 C12
7103 B4
7104 E9
7105 E10
7108 G9
7109 G10
7110 F2
7112 H12
7114 F12
7115-A D8
I172 E4
F200 C1
I174 F5
F202 C1
F203 C1
F204 D1
F205 D1
F206 D1
F207 C1
F208 D1
F209 D1
F210 D1
F211 E1
F212 E1
F213 E1
F214 E1
F215 F1
F216 F1
F230 E1
F233 E1
I101 B7
I102 B8
I103 B8
I105 B3
I106 B10
I108 C3
I109 B10
I110 B8
I112 C3
I115 A6
I120 C11
I127 E10
I140 C5
I142 H10
I143 E9
I145 D7
I153 D8
I154 D9
I155 E10
I156 D11
I157 D7
I159 E10
I161 E12
I162 G12
I163 D5
I165 D5
I166 E5
I167 E4
I171 E9
3004
2112
100U
3131
3003
3000
10K
3127
10K
3115
10K
100R
I165
I163
I183
22n
2108
GND
1
IN
3
OUT
4105
I159
LF33CV
7110
2
+5VA
I155
2
100p
2106
3
1
2
1005
YKC21-3416
1
3
4R7
3108
I177
1n
2104
3119
100R
100R
3118
F208
2K7
3112
I176
I175
I182
10K
3109
4R7
10K
3160
3116
I179
7114
BC817-25
I141
I178
3V3A
10K
3106
3117
3126
22n
2100
+3V3
10K
VSSA
20
VSSD
11 WS
10K
3120
16 SYSCLK
27 TST1
22
TST2
6
VDDA
21
VDDD
29 VO1N
28 VO1P
VO2N 31
32
VO2P
1 VO3
2
VO4
4 VO5
5
VO6
30
VREFA
3
10 BCK
25
DEEM0
24
DEEM1
12 DI12
13 DI34
14 DI56
26
DS
18
L3CLK
19
L3DATA
17
L3MODE
23
MUTE
7
8
15
9
STATIC
I115
7103
UDA1328T
2107
I171
I153
100p
BAS216
6009
+3V3
I180
I207
F216
2030
470n
47p
2002
68R
3001
2000
10u
1
2
3
4
6
7
8
-5VA
5000
2038
100u
I142
3
4
5
6
7
8
9
1
10
11
12
13
14
15
16
17
18
19
2
20
21
22
1004
F207
I262
2004
47p
LM833D
7115-B
5
6
7
8
4
100n
2001
LM833D
3
2
1
8
4
2K7
3122
7115-A
3123
2K7
I161
I162
F209
+5V
F206
-5VA
10K
3114
F204
F205
F203
I172
4R7
3057
F211
I181
4100
F212
+3V3
100R
3014
1n
2121
2K7
3132
3130
1n
2119
I263
10K
I261
3100
100R
3103
3102
10K
4K7
3101
2134
10u
I174
I112
I128
I223
BC817-25
7005
I205
I217
I110
F233
+5V
F230
+5VA
1000u
2039
+5VVID
F214
47u
2110
100n
2109
I108
6
4
5
I105
2124
100n
1002-B
YKC21-3866
+5VA
7105
BC817-25
F201
F202
0|6|12
F200
F215
I145
I157
7004
BC817-25
I101
3015
2K7
I154
I120
10K
I166
I167
3121
BC817-25
7112
3129
2K7
F213
I156
I140
3110
2K7
3017
10K
100R
3016
I127
I143
I106
I109
I102
I103
2133
100U
100p
2115
100U
2132
7109
2101
100p
7108
BC817-25
BC817-25
1002-C
YKC21-3866
9
7
8
100U
100R
3107
2126
22n
2103
22n
2125
BC817-25
7104
100R
2K7
3113
3159
F210
3124
10K
1n
2113
10K
3105
KILL
KILL
KILL
DGND
P50
KILL
DGND
DATA
SCLK
DGND
B
DIG_OUT
G
R
CVBS
DGND
DGND
DGND
KILL
KILL
DGND
KILL
KILL
DGND
DGND
KILL
KILL
DGND
DGND
DGND
LRCLK
DGND
DGND
DIG_OUT
DGND
DGND
DGND
PCM_CLK
DGND
DGND
CL 06532152_066.eps
121200
DIG
OPT_OUT
DIG_OUT
(VIDEO)
(SUPPLY)
(DIGTAL AUDIO)
73
74
Layout AV Board (F, S, U): (top view)
CL 06532152_105.eps
151200
75
76
Layout AV Board (F, S, U): (bottom view)
CL 06532152_104.eps
181200
77
78
LDA
PP16
1
2
3
4
13
14
15
16
5
6
7
8
9
10
11
12
A0
A1
A2
P0
P1
P2
P3
P4
P5
P6
P7
INT
SCL
SDA
VDD
VSS
QD21
PCF8574
GND
+3.3VD
CD21
0.1
GND
SDA
SCL
DGND
SDA
SCL
256Fs
BCK/BCK
LRCK/SEL_DSD
SDT_LR/DSDL
SEL_PCM/DSDR
SDT_CL/DSDC
SEL_PCM/DSDLF
SDTS/DSDLS
SEL_PCM/DSDRS
384Fs
STDBYN
DGND
DGND
DGND
DGND
DGND
DGND
DGND
BCK
SDT1
SEL1
SDT2
SEL2
SDT3
SEL3
RD21 22k
RD22 22k
+3.3VD
RD27 22k
AOUTLs-
AOUTLs+
AOUTRs+
AOUTRs-
FILT2
RELAY
AOUTC-
AOUTC+
AOUTLFE+
AOUTLFE-
Audio
AUDIO2.sch
QD74
2SC4116
QD73
2SC4116
QD72
2SC4116
DGND
+12VR
DGND
+12VR
RD71
22k
RD73
22k
RD74
22k
RD75
22k
RD77
22k
RD76
100
RD78
1k
RD79
22
RD80
220k
+3.3VD
FILT1
MUTE
CLKFRQSEL
SACDACT
CLKFRQSEL
MUTE
SACDACT
SACDACT
DGND
DGND
Pos.1 (STANDARD ALL)
Pos.2 (CUSTOM ST)
AMUTE
H:mute ON
L:mute OFF
L:CD
H:SACD
(for SACD)
MUTE
SACDACT
L:CD
H:SACD
BCK
SDT1
SEL1
SDT2
SEL2
SDT3
SEL3
+12VA
-12VA
DAGND
GND
+5VA
GND
+3.3VD
RELAY
+12VR
AMUTE
AGND
AGND
RGND
AGND
GND
DAGND
+12VA
-12VA
+5VA
+3.3VD
+12VR
RGND
AMUTE
RELAY
AGND
GND DAGND
RGND
1
2
3
4
5
6
7
8
9
10
11
12
13
14
JD02
STANDBY
DGND
CD06
0.1
CLKSEL
+3.3VD
LRCK
LRCK
RD18
33
RD17
33
RD16
33
RD15
33
RD14
33
RD13
33
RD12
33
RD11
33
BCKO
LRCKO
SDT1O
SEL1O
SDT2O
SEL2O
SDT3O
SEL3O
DAC_reset
1
2
3
4
13
14
15
16
5
6
7
8
9
10
11
12
17
18
19
20
21
22
23
24
25
26
27
28
RST
M4
M3
M2
M0
DGND
VD
VD
DGND
MCLK
SCLK
VREF
FILT+
FILT-
CMOUT
AOUTL-
AOUTL+
VA
AGND
AOUTR+
AOUTR-
AGND
MUTEC
C/H
MUTE
LRCK
SDATA
M1
QD41
CS4397
AGND
AGND
DGND
DGND
+5VA
CD42
0.1
CD44
0.1
CD41
220/10 RA2 for F,U
CD43
100/10 ARA for F,U
SCL
SDA
RD41
0
RD42
0
DGND
CD45
0.1
CD47
0.1
CD49
0.1
CD46
100/10 ARA for F,U
RD43
22k
1
2
3
4
13
14
15
16
5
6
7
8
9
10
11
12
17
18
19
20
21
22
23
24
25
26
27
28
RST
M4
M3
M2
M0
DGND
VD
VD
DGND
MCLK
SCLK
VREF
FILT+
FILT-
CMOUT
AOUTL-
AOUTL+
VA
AGND
AOUTR+
AOUTR-
AGND
MUTEC
C/H
MUTE
LRCK
SDATA
M1
QD51
CS4397
AGND
AGND
DGND
DGND
+5VA
CD52
0.1
CD54
0.1
CD51
220/10 RA2 for F,U
CD53
100/10 ARA for F,U
SCL
SDA
RD51
0
RD52
22k
DGND
CD55
0.1
CD57
0.1
CD59
CD56
100/10 ARA for F,U
1
2
3
4
13
14
15
16
5
6
7
8
9
10
11
12
17
18
19
20
21
22
23
24
25
26
27
28
RST
M4
M3
M2
M0
DGND
VD
VD
DGND
MCLK
SCLK
VREF
FILT+
FILT-
CMOUT
AOUTL-
AOUTL+
VA
AGND
AOUTR+
AOUTR-
AGND
MUTEC
C/H
MUTE
LRCK
SDATA
M1
QD61
CS4397
AGND
AGND
DGND
DGND
+5VA
CD62
0.1
CD64
0.1
CD61
220/10 RA2 for F,U
CD63
100/10 ARA for F,U
SCL
SDA
RD61
22k
RD62
0
DGND
CD65
0.1
CD67
0.1
CD69
CD66
100/10 ARA for F,U
RD53
22k
RD63
22k
FILT2
RELAY
BCKO
BCKO
BCKO
LRCKO
LRCKO
LRCKO
SDT2O
SDT3O
SDT1O
SEL2O
SEL3O
SEL1O
LD61
LD51
LD41
RD44 NC
RD45 NC
RD54 NC
RD55 NC
RD64 NC
RD65 NC
(Add 0)
(Add 2)
(Add 1)
+3.3VD
+3.3VD
+3.3VD
DGND
1
2
3
4
5
SD71
Pos.3 (CUSTOM ALL)
CD72
0.1
CD71
0.1
DGND
QD71
2SA1586
RD72
22k
SACDACT
QD78
2SC4116
QD77
2SC4116
QD76
2SC4116
DGND
+12VR
DGND
+12VR
RD81
22k
RD83
22k
RD84
22k
RD85
22k
RD87
22k
RD86
100
RD88
1k
RD89
22
RD90
220k
+3.3VD
FILT2
DGND
QD75
2SA1586
RD82
22k
H:internal
L:external
AOUTL-
AOUTL+
AOUTR+
AOUTR-
FILT1
RELAY
Audio
AUDIO1.sch
FILT1
RELAY
RESET
DAC_reset
H:nomal
L:reset
RESET
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
JD01
DGND
DGND
DGND
DGND
SDA
SCL
XD01
16.9344MHz
CD03
22p
CD04
22p
DGND
DGND
RD02
1.2k
RD01
1M
+3.3VD
LD01
DGND
CD01
100/10 ARA for F,U
DGND
7
1
QD01A
TC7WHU04
5
3
QD01B
TC7WHU04
4
8
2
6
QD01C
TC7WHU04
DGND
QD32
2SC4116
RD33
56k
RD34
4.7k
DGND
AMUTE
+3.3VD
CLKSEL
CLKSEL
CLKSEL
H:internal
L:external
RD28 22k
CLKSEL
RD04
47
RD05
47
RD03
0
CD05
0.1
DGND
DGND
+3.3VCL
RD26 22k
DAC_reset
STDBYN
H: normal
L: stand-by
QD22
2SC4116
DGND
+3.3VD
RD29
22k
RD30
22k
DD21
DAN202U
031L
DGND
1
2
3
QD03A
TC74VHC00FT
4
5
6
QD03B
TC74VHC00FT
9
10
8
QD03C
TC74VHC00FT
12
13
11
14
7
QD03D
TC74VHC00FT
QD04
2SC4116
DGND
+3.3VCL
RD07
22k
RD08
22k
RD06
47
LD02
6
5
3
7
2
1
DPR
Q
Q
CLR
8
Vcc
GND
4
QD05
TC7WH74FU
DGND
CD07
0.1
DGND
384Fs
192Fs
256Fs
RD09
47
H:384Fs
L:192Fs
384Fs
CD08
20p
DGND
CD40
NC
CD50
NC
CD60
NC
DGND
FGD1
CD91
0.01
CD92
0.01
CD93
0.01
DGND
FGD2
CD94
0.01
CD95
0.01
CD96
0.01
DGND
FGD3
CD11150p
CD12150p
CD17150p
CD18150p
DGND
1
2
3
QD02A
TC74VHC00FT
4
5
6
QD02B
TC74VHC00FT
9
10
8
QD02C
TC74VHC00FT
12
13
11
14
7
QD02D
TC74VHC00FT
CLKFRQSEL
CLKFRQSEL
CLKFRQSEL
H:384Fs
L:192Fs
CD48
10/16 ARA for F,U
CD58
10/16 ARA for F,U
CD68
10/16 ARA for F,U
CD23
220/16 ARA
+3.3VOSC
CD24
47/16
1
2
3
IN
OUT
GND
QD23
BA033FP
DGND
DD23
11EQS10
for F,U
ARA for F,U
+3.3VOSC
CD02
0.1
7
1
QD06A
TC7WHU04
5
3
QD06B
TC7WHU04
4
8
2
6
QD06C
TC7WHU04
DGND
DGND
DGND
CD09
0.1
LAU
RD66
1k
RD56
1k
RD46
1k
TP01
Vcm
VREF
VREF
VREF
QD37
2SC2878
QD38
2SC4116
QD36
2SC4116
AGND
AGND
RD31
3.3 1/10W
RD35
1.5k
RD36
4.7k
RD37
1.15k F
RD39
4.7k
RD38
3.01k F
+5VA
AGND
QD35
2SA1586
RD32
10k
CD32
10/16
AGND
VREF
SACD_GAIN
L:CD
H:SACD
(5.5V/3.3V)
CD31
100/10
AGND
CD33
100/10
AGND
CD10
NC
RD23 22k
SACD_GAIN
SACD_GAIN
L:CD
H:SACD
SACD_GAIN SACD_GAIN
RD20 22k
+3.3VD
032L
47/16 ARS for N,S
ARS
for N,S
ARS for N,S
4716 ARS for N,S
47/16 ARS for N,S
47/16 ARS for N,S
47/16 ARS for N,S
47/16 ARS for N,S
10/35 ARS for N,S
47/16 ARS for N,S
47/16 ARS for N,S
10/35 ARS for N,S
47/16 ARS for N,S
47/16 ARS for N,S
10/35 ARS for N,S
11.4V
3.3V
5.5V (SACD)
3.3V (non SACD)
STANDARD (Pos.1)
CUSTOM (Pos.3 )
(for SACD)
3.3V
1.8V
3.3V
0V
0V
3.3V
0.7V
0V
0V
1.3V
12.0V
0V
3.3V
0V
12.0V
0V
0V
3.3V
0.7V
0V
0V
1.3V
5.5V
during STOP
2.75V (SACD)
1.65V (non SACD)
5.5V
during STOP
2.75V (SACD)
1.65V (non SACD)
5.5V
during STOP
2.75V (SACD)
1.65V (non SACD)
0.1
0.1
1
2
3
4
5
6
7
8
9
10
A
B
C
D
E
F
G
A
B
C
D
E
F
G
1
2
3
4
5
6
7
8
9
10
SACD-DAC
79
80
CD01
C2
CD02
C2
CD03
D2
CD04
D2
CD05
E2
CD06
D4
CD07
D3
CD08
E2
CD09
D2
CD11
C2
CD12
C2
CD17
C2
CD18
C2
CD21
F3
CD23
A2
CD24
A3
CD31
B8
CD32
B9
CD33
B10
CD40
A6
CD41
A6
CD42
A6
CD43
A6
CD44
A6
CD45
A6
CD46
A7
CD47
A6
CD48
A7
CD49
A6
CD50
C6
CD51
C6
CD52
C6
CD54
C6
CD55
C6
CD56
C7
CD57
C6
CD58
C7
CD59
C6
CD60
D6
CD61
D6
CD63
D6
CD64
D6
CD65
D6
CD66
E7
CD67
D6
CD68
E7
CD69
E6
CD71
G6
CD72
G7
CD91
D9
CD92
D9
CD93
D9
CD94
D9
CD95
D9
CD96
D9
DD21
B2
DD23
A2
JD01
D1
JD02
A1
LD01
C2
LD02
D4
LD41
A6
LD51
C6
LD61
D6
QD01A D2
QD01B D2
QD01C D2
QD02A E2
QD02B D3
QD02C D3
QD02D E2
QD03A C4
QD03B D4
QD03C D4
QD03D D4
QD04
E3
QD05
D3
QD06A E2
QD06B E2
QD06C E2
QD21
F3
QD22
B1
QD23
A3
QD32
E4
QD35
B9
QD36
B9
QD37
B9
QD38
B10
QD41
B6
QD51
C6
QD61
E6
QD71
F6
QD72
G6
QD73
G7
QD74
F7
QD75
F8
QD76
F8
QD77
F9
QD78
F9
RD01
D2
RD02
D2
RD03
D4
RD04
D4
RD05
D4
RD06
D4
RD07
E3
RD08
E3
RD09
E2
RD11
C2
RD12
C2
RD13
C2
RD14
C2
RD15
C2
RD16
C2
RD17
C2
RD18
C2
RD20
F2
RD23
B1
RD30
B2
RD31
A8
RD32
B8
RD33
E4
RD33
E4
RD34
E4
RD35
B8
RD36
B8
RD37
B8
RD38
B9
RD39
B8
RD41
A5
RD42
A5
RD43
B6
RD44
B6
RD45
B6
RD46
B6
RD51
C5
RD52
C5
RD54
C6
RD55
C6
RD61
D5
RD62
E5
RD63
E6
RD64
E6
RD65
E6
RD66
E6
RD71
F5
RD72
F5
RD73
G6
RD74
G6
RD75
F6
RD76
F6
RD77
F7
RD78
F7
RD79
G7
RD80
F7
RD81
F8
RD82
F8
RD83
G8
RD84
F8
RD85
F9
RD86
F9
RD87
F9
RD88
F9
RD89
G9
SD71
G7
XD01
D2
AGND
AGND
AGND
AGND
+12VA
-12VA
AGND
AGND
+12VA
AGND
AGND
-12VA
AGND
AGND
AGND
AGND
AGND
AGND
AGND
AGND
AGND
AGND
+12VR
RELAY
+12VR
FILT1
AOUTL+
AOUTL-
AGND
AGND
+12VA
AGND
AGND
AOUTR+
AOUTR-
-12VA
AGND
AGND
AGND
AGND
+12VA
-12VA
AGND
AGND
GR,BL
ARA for F,U
GR,BL
GR,BL
GR,BL
031G
031G
032G
032G
220/16 ARS for N,S
ARA for F,U
220/16
ARS for N,S
ARA for F,U
220/16
ARS for N,S
ARA for F,U
220/16 ARS for N,S
ARA for F,U
220/16 ARS for N,S
ARA for F,U
220/16 ARS for N,S
ARA for F,U
220/16 ARS for N,S
ARA for F,U
220/16 ARS for N,S
NC for F
NC for F
LAU
PP16
R301
1.00k
R314
10.0
R313
10.0
LFC
R315
10.0k
C302
150p
C301
560p
R302
2.61k
R303
6.65k
R316
1.00k
R317
1.00k
C322
220/25
C321
220/25
C318
NC
C317
560p
Q101
2SK389
R104
120
R105
120
R106
68
R107
2.2
R108
2.2
R111
1k
R110
1k
R109
33K
R112
100
Q102
2SC2873 Y
Q105
2SC3324 B
Q103
2SA1312 B
Q104
2SA1312 B
D101
D103
1SS302
D102
1SS302
C104
47p
R114
10.0
R113
10.0
C112
220/25
C111
220/25
R102
1.00k
C103
470p
R103
1.00k
C102
1000p
C101
1800p
R101
1.00k
R601
33.2
R603
100K
C603
NC
C601
220/16 ARS
C602
220/16 ARS
R611
33.2
R613
100K
C611
220/16 ARS
C612
220/16 ARS
C613
NC
ANALOG OUT
L
R
R602
10k
R612
10k
LN31
ED2-12
DN31
L602
ED2-12
D601
C162
220/25
C161
220/25
C153
470p
R153
1.00k
C152
1000p
R152
1.00k
C151
1800p
R151
1.00k
LFB
Q307
2SJ74 V
Q107
2SJ74 V
Q106
2SK170 V
Q306
2SK170 V
Q151
2SK389
R154
120
R155
120
R156
68
R157
2.2
R158
2.2
R161
1k
R160
1k
R159
33K
R162
100
Q152
2SC2873 Y
Q155
2SC3324 B
Q153
2SA1312 B
Q154
2SA1312 B
D151
D153
1SS302
D152
1SS302
C154
47p
R164
10.0
R163
10.0
Q157
2SJ74 V
Q156
2SK170 V
Q301
2SK389
R304
120
R305
120
R306
68
R307
2.2
R308
2.2
R311
1k
R310
1k
R309
33K
R312
100
Q302
2SC2873 Y
Q305
2SC3324 B
Q303
2SA1312 B
Q304
2SA1312 B
D301
D303
1SS302
D302
1SS302
C303
47p
C105
NC
R351
1.00k
R364
10.0
R363
10.0
R365
10.0k
C352
150p
C351
560p
R352
2.61k
R353
6.65k
R366
1.00k
R367
1.00k
C372
220/25
C371
220/25
C368
NC
C367
560p
Q357
2SJ74 V
Q356
2SK170 V
Q351
2SK389
R354
120
R355
120
R356
68
R357
2.2
R358
2.2
R361
1k
R360
1k
R359
33K
R362
100
Q352
2SC2873 Y
Q355
2SC3324 B
Q353
2SA1312 B
Q354
2SA1312 B
D351
D353
1SS302
D352
1SS302
C353
47p
C155
NC
LMU
J601
NC
J611
NC
J602
J612
C604
100p for U,N,S
C614
100p for U,N,S
W602
J603
J613
W612
APS for F,U
nH for N,S
APS for F,U
nH for N,S
APS for F,U
nH for N,S
C301,C302,C317
APS for F,U
nH for N,S
C351,C352,C367
A
B
C
D
E
A
B
C
D
E
12
1
10
3
8
5
9
4
12
1
10
3
8
5
9
4
1
2
1
2
1
2
3
4
5
6
7
8
9
1
2
3
4
5
6
7
8
9
2.75V (SACD)
1.65V (non SACD)
2.75V (SACD)
1.65V (non SACD)
during STOP
during STOP
0V
0V
0V
0V
Audio1
81
82
C101
B5
C102
B5
C103
B5
C105
B5
C111
B7
C112
B7
C151
D5
C152
D5
C153
D5
C154
D6
C155
D5
C161
D7
C162
D7
C301
B1
C302
B4
C303
B3
C317
B1
C318
B1
C321
B4
C322
B4
C351
D2
C352
D4
C353
D3
C367
D2
C368
D2
C371
D4
C372
D4
C601
B8
C602
B8
C603
C9
C604
C9
C611
D8
C612
D8
C613
C9
C614
C9
D101
B6
D102
B6
D103
B6
D151
D6
D152
D6
D153
D6
D301
B3
D302
B3
D303
B3
D351
D3
D352
D3
D353
D3
D601
C7
DN31
C8
J601
B9
J602
C9
J603
C9
J611
D9
J612
C9
J613
C9
L602
C7
LN31
C9
Q101
B5
Q102
B6
Q103
B6
Q104
B7
Q105
B7
Q106
B7
Q107
B7
Q151
D5
Q152
D6
Q153
D6
Q154
D7
Q155
D7
Q156
D7
Q157
D7
Q301
B1
Q302
B3
Q303
B3
Q304
B4
Q305
B4
Q306
B4
Q307
B4
Q351
D2
Q353
D3
Q354
D4
Q355
D4
Q356
D4
Q357
D4
R101
B5
R102
B5
R103
B5
R104
B5
R105
B6
R106
B6
R107
B6
R108
B7
R109
B6
R110
B6
R111
B7
R112
B6
R113
B7
R114
B7
R151
D5
R152
D5
R153
D5
R154
D6
R155
D6
R156
D6
R157
D6
R158
D7
R159
D6
R160
D6
R161
D7
R162
D6
R163
D7
R164
D7
R301
B1
R302
B1
R303
B1
R304
B1
R305
B3
R306
B1
R307
B3
R308
B3
R309
B3
R310
B3
R311
B4
R312
B3
R313
B4
R314
B4
R315
B4
R316
B1
R317
B1
R351
D2
R352
D2
R353
D2
R354
D2
R355
D3
R356
D2
R357
D3
R358
D3
R359
D3
R360
D3
R361
D4
R362
D3
R363
D4
R364
D4
R365
D4
R366
D2
R367
D2
R601
B8
R602
C8
R603
C8
R611
D8
R612
C8
R613
C8
AGND
AGND
AGND
AGND
+12VA
-12VA
AGND
AGND
+12VA
AGND
AGND
-12VA
AGND
AGND
AGND
AGND
AGND
AGND
AGND
AGND
AGND
AGND
+12VR
RELAY
+12VR
FILT2
AOUTC+
AOUTC-
AGND
AGND
+12VA
AGND
AGND
AOUTLFE+
AOUTLFE-
-12VA
AGND
AGND
AGND
AGND
+12VA
-12VA
AGND
AGND
AGND
AGND
+12VA
-12VA
AGND
AGND
+12VA
AGND
AGND
-12VA
AGND
AGND
AGND
AGND
AGND
AGND
AGND
AGND
AGND
AGND
+12VR
RELAY
+12VR
FILT2
AOUTLs+
AOUTLs-
AGND
AGND
+12VA
AGND
AGND
AOUTRs+
AOUTRs-
-12VA
AGND
AGND
AGND
AGND
+12VA
-12VA
AGND
AGND
AGND
AGND
GR,BL
GR,BL
GR,BL
GR,BL
GR,BL
GR,BL
GR,BL
GR,BL
031G
031G
031G
031G
032G
032G
032G
032G
ARA for F,U
220/16 ARS for N,S
ARA for F,U
220/16 ARS for N,S
ARA for F,U
220/16
ARS for N,S
ARA for F,U
220/16
ARS for N,S
ARA for F,U
220/16 ARS for N,S
ARA for F,U
220/16 ARS for N,S
ARA for F,U
220/16 ARS for N,S
ARA for F,U
220/16 ARS for N,S
ARA for F,U
220/16 ARS for N,S
ARA for F,U
220/16 ARS for N,S
ARA for F,U
220/16 ARS for N,S
ARA for F,U
220/16 ARS for N,S
ARA for F,U
220/16
ARS for N,S
ARA for F,U
220/16 ARS for N,S
ARA for F,U
220/16
ARS for N,S
ARA for F,U
220/16 ARS for N,S
NC for F
NC for F
NC for F
NC for F
PP16
R501
1.00k
R514
10.0
R513
10.0
R515
10.0k
C502
150p
C501
560p
R502
2.61k
R503
6.65k
R516
1.00k
R517
1.00k
C522
220/25
C521
220/25
C518
NC
C517
560p
Q701
2SK389
R704
120
R705
120
R706
68
R707
2.2
R708
2.2
R711
1k
R710
1k
R709
33K
R712
100
Q702
2SC2873 Y
Q705
2SC3324 B
Q703
2SA1312 B
Q704
2SA1312 B
D701
D703
1SS302
D702
1SS302
C704
47p
R714
10.0
R713
10.0
C712
220/25
C711
220/25
R702
1.00k
C703
470p
R703
1.00k
C702
1000p
C701
1800p
R701
1.00k
R641
33.2
R643
100K
C643
NC
C641
220/16 ARS
C642
220/16 ARS
R651
33.2
R653
100K
C651
220/16 ARS
C652
220/16 ARS
C653
NC
ANALOG OUT
R642
10k
R652
10k
LN33
ED2-12
DN33
L642
ED2-12
D641
C762
220/25
C761
220/25
C753
470p
R753
1.00k
C752
1000p
R752
1.00k
C751
1800p
R751
1.00k
Q507
2SJ74 V
Q707
2SJ74 V
Q706
2SK170 V
Q506
2SK170 V
Q751
2SK389
R754
120
R755
120
R756
68
R757
2.2
R758
2.2
R761
1k
R760
1k
R759
33K
R762
100
Q752
2SC2873 Y
Q755
2SC3324 B
Q753
2SA1312 B
Q754
2SA1312 B
D751
D753
1SS302
D752
1SS302
C754
47p
R764
10.0
R763
10.0
Q757
2SJ74 V
Q756
2SK170 V
Q501
2SK389
R504
120
R505
120
R506
68
R507
2.2
R508
2.2
R511
1k
R510
1k
R509
33K
R512
100
Q502
2SC2873 Y
Q505
2SC3324 B
Q503
2SA1312 B
Q504
2SA1312 B
D501
D503
1SS302
D502
1SS302
C503
47p
C705
NC
R551
1.00k
R564
10.0
R563
10.0
R565
10.0k
C552
150p
C551
560p
R552
2.61k
R553
6.65k
R566
1.00k
R567
1.00k
C572
220/25
C571
220/25
C568
NC
C567
560p
Q557
2SJ74 V
Q556
2SK170 V
Q551
2SK389
R554
120
R555
120
R556
68
R557
2.2
R558
2.2
R561
1k
R560
1k
R559
33K
R562
100
Q552
2SC2873 Y
Q555
2SC3324 B
Q553
2SA1312 B
Q554
2SA1312 B
D551
D553
1SS302
D552
1SS302
C553
47p
C755
NC
LAU
R401
1.00k
R414
10.0
R413
10.0
LFC
R415
10.0k
C402
150p
C401
560p
R402
2.61k
R403
6.65k
R416
1.00k
R417
1.00k
C422
220/16
C421
220/25
C418
NC
C417
560p
Q201
2SK389
R204
120
R205
120
R206
68
R207
2.2
R208
2.2
R211
1k
R210
1k
R209
33K
R212
100
Q202
2SC2873 Y
Q205
2SC3324 B
Q203
2SA1312 B
Q204
2SA1312 B
D201
D203
1SS302
D202
1SS302
C204
47p
R214
10.0
R213
10.0
C212
220/25
C211
220/25
R202
1.00k
C203
470p
R203
1.00k
C202
1000p
C201
1800p
R201
1.00k
R621
33.2
R623
100K
C623
NC
C621
220/16 ARS
C622
220/16 ARS
R631
33.2
R633
100K
C631
220/16 ARS
C632
220/16 ARS
C633
NC
ANALOG OUT
Rs
R622
10k
R632
10k
LN32
ED2-12
DN32
L622
ED2-12
D621
C262
220/25
C261
220/25
C253
470p
R253
1.00k
C252
1000p
R252
1.00k
C251
1800p
R251
1.00k
LFB
Q407
2SJ74 V
Q207
2SJ74 V
Q206
2SK170 V
Q406
2SK170 V
Q251
2SK389
R254
120
R255
120
R256
68
R257
2.2
R258
2.2
R261
1k
R260
1k
R259
33K
R262
100
Q252
2SC2873 Y
Q255
2SC3324 B
Q253
2SA1312 B
Q254
2SA1312 B
D251
D253
1SS302
D252
1SS302
C254
47p
R264
10.0
R263
10.0
Q257
2SJ74 V
Q256
2SK170 V
Q401
2SK389
R404
120
R405
120
R406
68
R407
2.2
R408
2.2
R411
1k
R410
1k
R409
33K
R412
100
Q402
2SC2873 Y
Q405
2SC3324 B
Q403
2SA1312 B
Q404
2SA1312 B
D401
D403
1SS302
D402
1SS302
C403
47p
C205
NC
R451
1.00k
R464
10.0
R463
10.0
R465
10.0k
C452
150p
C451
560p
R452
2.61k
R453
6.65k
R466
1.00k
R467
1.00k
C472
220/25
C471
220/25
C468
NC
C467
560p
Q457
2SJ74 V
Q456
2SK170 V
Q451
2SK389
R454
120
R455
120
R456
68
R457
2.2
R458
2.2
R461
1k
R460
1k
R459
33K
R462
100
Q452
2SC2873 Y
Q455
2SC3324 B
Q453
2SA1312 B
Q454
2SA1312 B
D451
D453
1SS302
D452
1SS302
C453
47p
C255
NC
LMU
LMU
J631
NC
J621
NC
J641
NC
J651
NC
J622
J632
J642
J652
C624
100p for U,N,S
C634
100p for U,N,S
C644
100p for U,N,S
C654
100p for U,N,S
Ls
W622
J623
J633
W632
LFE
C
W642
J643
J653
W652
APS for F,U
nH for N,S
APS for F,U
nH for N,S
APS for F,U
nH for N,S
APS for F,U
nH for N,S
APS for F,U
nH for N,S
C401,C402,C417
APS for F,U
nH for N,S
C451,C452,C467
APS for F,U
nH for N,S
C501,C502,C517
APS for F,U
nH for N,S
C551,C552,C567
A
B
C
D
E
F
G
A
B
C
D
E
F
G
12
1
10
3
8
5
9
4
12
1
10
3
8
5
9
4
12
1
10
3
8
5
9
4
12
1
10
3
8
5
9
4
1
2
1
2
1
2
1
2
1
2
3
4
5
6
7
8
9
1
2
3
4
5
6
7
8
9
2.75V (SACD)
1.65V (non SACD)
during STOP
2.75V (SACD)
1.65V (non SACD)
during STOP
2.75V (SACD)
1.65V (non SACD)
during STOP
2.75V (SACD)
1.65V (non SACD)
during STOP
0V
0V
0V
0V
0V
0V
0V
0V
Audio2
83
84
C201
A5
C202
B5
C203
A5
C204
B6
C205
A5
C211
A7
C212
B7
C251
C5
C251
D4
C252
D5
C253
C5
C254
D6
C255
C5
C261
C7
C262
D7
C401
A2
C402
A4
C403
B3
C417
B1
C418
B2
C421
A4
C422
B4
C451
C2
C452
C4
C453
D3
C467
D1
C468
C2
C471
C4
C472
D4
C501
E2
C502
E4
C503
E3
C517
E1
C522
E4
C551
G2
C552
G4
C553
G3
C567
G1
C568
G2
C571
G4
C572
G4
C621
B8
C622
B8
C623
B8
C631
C8
C632
C8
C633
C8
C634
C8
C641
E8
C642
E8
C643
E8
C644
E8
C651
F8
C652
F8
C653
F8
C654
F8
C701
E5
C702
E5
C703
E5
C704
E6
C711
D7
C712
E7
C751
G5
C752
G5
C753
G5
C754
G6
C755
G5
C761
G7
C762
G7
C924
B8
D201
B6
D202
A6
D203
B6
D251
D6
D252
C6
D253
D6
D401
B3
D402
A3
D403
B3
D451
D3
D452
C3
D453
D3
D461
F7
D502
E3
D503
E3
D551
G3
D552
G3
D553
G3
D621
B7
D701
E6
D702
E6
D703
E6
D751
G6
D752
G6
D753
G6
DN32
B8
DN33
F8
J621
B9
J622
B9
J623
B9
J631
C9
J632
C9
J633
C9
J641
E9
J642
F9
J651
F9
J652
F9
J653
F9
L462
F7
L622
B7
LN32
B8
LN33
F8
Q201
A5
Q202
B5
Q203
A6
Q204
A6
Q205
B6
Q206
A7
Q207
B7
Q251
C5
Q252
D5
Q253
C6
Q254
C6
Q255
D6
Q256
C7
Q257
D7
Q401
A2
Q402
B2
Q403
A3
Q404
A3
Q405
B3
Q406
A4
Q407
B4
Q451
C2
Q452
D2
Q453
C3
Q454
C3
Q455
D3
Q456
C4
Q457
D4
Q501
E2
Q502
E2
Q503
E3
Q504
E3
Q505
E3
Q506
E4
Q507
E4
Q551
G2
Q552
G2
Q553
G3
Q554
G3
Q555
G3
Q556
G4
Q557
G4
Q701
E5
Q702
E5
Q703
E6
Q704
E6
Q705
E6
Q706
E7
Q707
E7
Q751
G5
Q752
G5
Q753
G6
Q754
G6
Q755
G6
Q756
G7
Q757
G7
R201
A5
R202
A5
R203
A5
R204
A5
R205
A5
R206
B5
R207
A6
R208
A6
R209
A6
R210
B6
R211
B6
R212
B6
R213
A7
R214
B7
R251
C5
R252
C5
R253
C5
R254
C5
R255
C5
R256
D5
R257
C6
R258
C6
R259
C6
R260
D6
R261
D6
R262
D6
R263
C7
R264
D7
R401
A2
R402
A2
R403
B2
R404
A2
R405
A2
R406
B2
R407
A3
R408
A3
R409
B3
R410
B3
R411
B3
R412
B3
R413
A4
R414
B4
R415
A4
R415
C2
R416
A1
R417
B1
R452
C2
R453
D2
R454
C2
R455
C2
R456
D2
R457
C3
R458
C3
R459
C3
R460
D3
R461
D3
R462
D3
R463
C4
R464
D4
R465
C4
R466
C1
R467
D1
R501
E2
R502
E2
R503
E2
R504
E2
R505
E2
R506
E2
R507
E3
R508
E3
R509
E3
R510
E3
R511
E3
R512
E3
R513
E4
R514
E4
R515
E4
R516
E1
R517
E1
R551
G2
R552
G2
R553
G2
R554
G2
R555
G2
R556
G2
R557
G3
R558
G3
R559
G3
R560
G3
R561
G3
R562
G3
R563
G4
R564
G4
R565
G4
R566
G1
R567
G1
R621
B8
R622
B8
R623
B8
R631
C8
R632
C8
R633
C8
R641
E8
R642
E8
R643
E8
R651
F8
R652
F8
R653
F8
R701
E5
R702
E5
R703
E5
R704
E5
R705
E5
R706
E5
R707
E6
R708
E6
R709
E6
R710
E6
R711
E6
R712
E6
R713
E7
R714
E7
R751
G5
R752
G5
R753
G5
R754
G5
R755
G5
R756
G5
R757
G6
R758
G6
R759
G6
R760
G6
R761
G6
R762
G6
R763
G7
R764
G7
1
2
3
4
5
6
7
A
B
C
D
E
8
9
1
2
3
4
5
6
7
8
9
F
G
H
I
J
A
B
C
D
E
F
G
H
I
J
CD11 H9
CD12 I9
CD17 H8
CD18 I9
CD21
CD01 J9
CD02 J8
CD03 J8
CD04 J9
CD05 I9
CD06 G9
CD07 J9
CD08 I9
CD09 I8
CD10 J9
B9
CD23 J8
CD24 I8
CD31 A7
CD32 A8
CD33 B8
CD40 C8
CD41 B8
CD42 B8
CD43 C7
CD44 C8
CD45 C8
CD46 D8
CD47 C8
CD48 C7
CD49 C8
CD50 F8
CD51 E8
CD52 E8
CD53 F8
CD54 F8
CD55 F8
CD56 F8
CD57 F8
CD58 F8
CD59 F8
CD60 I8
CD61 H8
CD62 H8
CD63 H7
CD64 H8
CD65 I8
CD66 I8
CD67 I8
CD68 I7
CD69 I8
CD71 A2
CD72 A2
CD91 J9
CD92 J9
CD93 A8
CD94 A9
CD95 A5
CD96 A5
C101 C5
C102 D5
C103 D5
C104 C3
C105 D4
C111
D2
C112
C2
C151 B5
C152 C5
C153 C5
C154 B3
C155 C4
C161 C2
C162 B2
C201 F5
C202 G5
C203 G5
C204 F3
C205 G4
C211
G3
C212 F2
C251 E5
C252 F5
C253 F5
C254 E3
C255 E4
C261 E2
C262 E2
C301 D7
C302 D7
C303 C6
C317 C7
C318 D7
C321 D5
C322 C5
C351 B7
C352 C7
C353 B6
C367 B7
C368 C7
C371 C5
C372 B5
C401 G7
C402 G7
C403 F6
C417 F7
C418 G7
C421 G5
C422 F5
C451 E7
C452 E7
C453 E6
C467 E8
C468 E7
C471 F5
C472 E5
C501 J7
C502 J7
C503 I6
C517 I7
C518 I7
C521 J5
C522 I5
C551 H7
C552 H7
C553 G6
C567 H7
C568 H7
C571 H5
C572 G5
C601 D2
C602 C2
C603 C2
C604 D2
C611
B2
C612 C2
C613 B2
C614 C1
C621 G2
C622 F2
C623 F2
C624 F2
C631 E2
C632 E2
C633 E2
C634 E2
C641 J2
C642 I2
C643 I2
C644 I2
C651 H2
C652 H2
C653 H2
C654 H2
C701 I5
C702 J5
C703 J5
C704 I3
C705 I4
C711
J3
C712 I3
C751 G5
C752 H5
C753 H5
C754 G3
C755 H4
C761 H2
C762 G2
DD21 B9
DD23 J8
DN31 C2
DN32 F2
DN33 H2
D101 C4
D102 C4
D103 C4
D151 B4
D152 B4
D153 B4
D201 F3
D202 F4
D203 F4
D251 E4
D252 E4
D253 E4
D301 C6
D302 C6
D303 C6
D351 B6
D352 B6
D353 B6
D401 F6
D402 F6
D403 F6
D451 E6
D452 E6
D453 E6
D501 I6
D502 I6
D503 I6
D551 G6
D552 G6
D553 G6
D601 C2
D621 F2
D641 I2
D701 I4
D702 I4
D703 I4
D751 G4
D752 G4
D753 G4
JD01 I9
JD02 A3
J601
D1
J602
C2
J611
C2
J612
B2
J621
G2
J622
F2
J631
E1
J632
E2
J641
J1
J642
I2
J651
H1
J652
G2
LD01 J9
LD02 G9
LD41 B8
LD51 E8
LD61 H8
LN31 C2
LN32 F2
LN33 H2
L601
D2
L602
C3
L611
B2
L621
G2
L622
F2
L631
E2
L641
I2
L642
I3
L651
H2
QD01 J8
QD02 I9
QD03 G9
QD04 G9
QD05 J9
QD06 I8
QD21 B9
QD22 B9
QD23 J8
QD32 B8
QD35 A8
QD36 A8
QD37 B7
QD38 B8
QD41 C8
QD51 F8
QD61 H8
QD71 A4
QD72 A4
QD73 A5
QD74 A5
QD75 A6
QD76 A6
QD77 A6
QD78 A6
Q101 D4
Q102 C4
RD28 C9
RD29 B9
RD30 B9
RD31 A7
RD32 A8
RD33 B8
RD34 B8
RD35 A8
RD36 A8
RD37 B8
RD38 A8
RD39 B8
RD41 C9
RD42 C9
RD43 B8
RD44 D8
RD45 D8
RD46 C8
RD51 F9
RD52 F9
RD53 E8
RD54 F8
RD55 F8
RD56 E8
RD61 I9
RD62 I9
RD63 H8
RD64 I8
RD65 I8
RD66 H8
RD71 A4
RD72 A4
RD73 A4
RD74 A4
RD75 A4
RD76 A4
RD77 A5
RD78 A5
RD79 A5
RD80 A5
RD81 A6
RD82 A6
RD83 A6
RD84 A6
RD85 A6
RD86 A6
RD87 A6
RD88 A6
RD89 A6
RD90 A6
R101 D5
R102 D5
R103 D5
R104 D4
R105 D4
R106 C4
R107 D4
R108 D4
R109 C4
R110
C4
R111
C3
R112
D3
R113
D3
R114
D3
R151 B5
R152 B5
R153 B5
R154 B4
R155 B4
R156 B4
R157 B4
R158 B4
R159 B4
R160 B4
R161 B3
R162 B3
R163 B3
R164 B3
R201 F5
R202 F5
R203 F5
R204 F4
R205 F4
R206 F4
R207 F4
R208 F4
R209 F4
R210 F4
R211
F3
R212 F3
R213 F3
R214 F3
R251 E5
R252 E5
R253 E5
R254 E4
R255 E4
R256 E4
R257 E4
R258 E4
R259 E4
R260 E4
R261 E3
R262 E3
R263 E3
R264 E3
R301 D7
R302 D7
R303 D7
R304 D6
R305 D6
R306 C7
R307 D6
R308 D6
R309 C6
R310 C6
R311
C6
R312 D6
R313 D5
R314 D5
R315 D7
R316 C7
R317 C7
R351 B7
Q103 D4
Q104 D4
Q105 D3
Q106 D3
Q107 C3
Q151 B4
Q152 B4
Q153 B3
Q154 B4
Q155 B3
Q156 C3
Q157 B3
Q201 F4
Q202 F4
Q203 F4
Q204 F4
Q205 G3
Q206 G3
Q207 F3
Q251 E4
Q252 E4
Q253 E4
Q254 E4
Q255 E3
Q256 E3
Q257 E3
Q301 D7
Q302 C7
Q303 D6
Q304 D6
Q305 D6
Q306 D5
Q307 C5
Q351 B7
Q352 B7
Q353 B6
Q354 B6
Q355 B6
Q356 C5
Q357 B5
Q401 F7
Q402 F7
Q403 G6
Q404 G6
Q405 G6
Q406 G5
Q407 F5
Q451 E7
Q452 E7
Q453 E6
Q454 E6
Q455 E6
Q456 F5
Q457 E5
Q501 I7
Q502 I7
Q503 I6
Q504 I6
Q505 I6
Q506 J5
Q507 I5
Q551 H7
Q552 H7
Q553 H6
Q554 H6
Q555 H6
Q556 H5
Q557 G5
Q701 I4
Q702 I4
Q703 I4
Q704 I4
Q705 I3
Q706 J3
Q707 I3
Q751 H4
Q752 H4
Q753 H4
Q754 H4
Q755 H3
Q756 H3
Q757 H3
RD01 J8
RD02 J9
RD03 I9
RD04 G9
RD05 G9
RD06 G9
RD07 G9
RD08 G9
RD09 I9
RD11 H9
RD12 H9
RD13 H9
RD14 H9
RD15 H9
RD16 H9
RD17 H9
RD18 H9
RD20 B9
RD21 B9
RD22 B9
RD23 B9
RD26 C9
RD27 C9
R352 B7
R353 B7
R354 B6
R355 B6
R356 B7
R357 B6
R358 B6
R359 B6
R360 B6
R361 B6
R362 B6
R363 B5
R364 B5
R365 C7
R366 C7
R367 C8
R401 F7
R402 G7
R403 F7
R404 F6
R405 F6
R406 F7
R407 F6
R408 F6
R409 F6
R410 F6
R411
F6
R412 F6
R413 F5
R414 F5
R415 G7
R416 F7
R417 F7
R451 E7
R452 E7
R453 E7
R454 E6
R455 E6
R456 E7
R457 E6
R458 E6
R459 E6
R460 E6
R461 E6
R462 E6
R463 E5
R464 E5
R465 E7
R466 E7
R467 E8
R501 I7
R502 I7
R503 I7
R504 I6
R505 I6
R506 I7
R507 I6
R508 I6
R509 I6
R510 I6
R511
I6
R512 I6
R513 I5
R514 I5
R515 J7
R516 I7
R517 I7
R551 H7
R552 H7
R553 H7
R554 H6
R555 H6
R556 G7
R557 H6
R558 H6
R559 H6
R560 G6
R561 H6
R562 H6
R563 H5
R564 H5
R565 H7
R566 H7
R567 H8
R601 C2
R602 D2
R603 D2
R611
C2
R612 B2
R613 C2
R621 F2
R622 F2
R623 G2
R631 E2
R632 E2
R633 E2
R641 I2
R642 I2
R643 J2
R651 H2
R652 H2
R653 H2
R701 I5
R702 I5
R703 I5
R704 I4
R705 I4
R706 I4
R707 I4
R708 I4
R709 I4
R710 I4
R711
I3
R712 I3
R713 I3
R714 I3
R751 H5
R752 H5
R753 H5
R754 H4
R755 H4
R756 G4
R757 H4
R758 H4
R759 H4
R760 G4
R761 H3
R762 H3
R763 H3
R764 H3
SD71 A2
XD01 J8
031L
B2
032L
J2
Layout DAC board (top view)
85
86
A
B
C
D
E
F
G
H
I
J
A
B
C
D
E
F
G
H
I
J
CD11 H9
CD12 I9
CD17 H8
CD18 I9
CD21
CD01 J9
CD02 J8
CD03 J8
CD04 J9
CD05 I9
CD06 G9
CD07 J9
CD08 I9
CD09 I8
CD10 J9
B9
CD23 J8
CD24 I8
CD31 A7
CD32 A8
CD33 B8
CD40 C8
CD41 B8
CD42 B8
CD43 C7
CD44 C8
CD45 C8
CD46 D8
CD47 C8
CD48 C7
CD49 C8
CD50 F8
CD51 E8
CD52 E8
CD53 F8
CD54 F8
CD55 F8
CD56 F8
CD57 F8
CD58 F8
CD59 F8
CD60 I8
CD61 H8
CD62 H8
CD63 H7
CD64 H8
CD65 I8
CD66 I8
CD67 I8
CD68 I7
CD69 I8
CD71 A2
CD72 A2
CD91 J9
CD92 J9
CD93 A8
CD94 A9
CD95 A5
CD96 A5
C101 C5
C102 D5
C103 D5
C104 C3
C105 D4
C111
D2
C112
C2
C151 B5
C152 C5
C153 C5
C154 B3
C155 C4
C161 C2
C162 B2
C201 F5
C202 G5
C203 G5
C204 F3
C205 G4
C211
G3
C212 F2
C251 E5
C252 F5
C253 F5
C254 E3
C255 E4
C261 E2
C262 E2
C301 D7
C302 D7
C303 C6
C317 C7
C318 D7
C321 D5
C322 C5
C351 B7
C352 C7
C353 B6
C367 B7
C368 C7
C371 C5
C372 B5
C401 G7
C402 G7
C403 F6
C417 F7
C418 G7
C421 G5
C422 F5
C451 E7
C452 E7
C453 E6
C467 E8
C468 E7
C471 F5
C472 E5
C501 J7
C502 J7
C503 I6
C517 I7
C518 I7
C521 J5
C522 I5
C551 H7
C552 H7
C553 G6
C567 H7
C568 H7
C571 H5
C572 G5
C601 D2
C602 C2
C603 C2
C604 D2
C611
B2
C612 C2
C613 B2
C614 C1
C621 G2
C622 F2
C623 F2
C624 F2
C631 E2
C632 E2
C633 E2
C634 E2
C641 J2
C642 I2
C643 I2
C644 I2
C651 H2
C652 H2
C653 H2
C654 H2
C701 I5
C702 J5
C703 J5
C704 I3
C705 I4
C711
J3
C712 I3
C751 G5
C752 H5
C753 H5
C754 G3
C755 H4
C761 H2
C762 G2
DD21 B9
DD23 J8
DN31 C2
DN32 F2
DN33 H2
D101 C4
D102 C4
D103 C4
D151 B4
D152 B4
D153 B4
D201 F3
D202 F4
D203 F4
D251 E4
D252 E4
D253 E4
D301 C6
D302 C6
D303 C6
D351 B6
D352 B6
D353 B6
D401 F6
D402 F6
D403 F6
D451 E6
D452 E6
D453 E6
D501 I6
D502 I6
D503 I6
D551 G6
D552 G6
D553 G6
D601 C2
D621 F2
D641 I2
D701 I4
D702 I4
D703 I4
D751 G4
D752 G4
D753 G4
JD01 I9
JD02 A3
J601
D1
J602
C2
J611
C2
J612
B2
J621
G2
J622
F2
J631
E1
J632
E2
J641
J1
J642
I2
J651
H1
J652
G2
LD01 J9
LD02 G9
LD41 B8
LD51 E8
LD61 H8
LN31 C2
LN32 F2
LN33 H2
L601
D2
L602
C3
L611
B2
L621
G2
L622
F2
L631
E2
L641
I2
L642
I3
L651
H2
QD01 J8
QD02 I9
QD03 G9
QD04 G9
QD05 J9
QD06 I8
QD21 B9
QD22 B9
QD23 J8
QD32 B8
QD35 A8
QD36 A8
QD37 B7
QD38 B8
QD41 C8
QD51 F8
QD61 H8
QD71 A4
QD72 A4
QD73 A5
QD74 A5
QD75 A6
QD76 A6
QD77 A6
QD78 A6
Q101 D4
Q102 C4
RD28 C9
RD29 B9
RD30 B9
RD31 A7
RD32 A8
RD33 B8
RD34 B8
RD35 A8
RD36 A8
RD37 B8
RD38 A8
RD39 B8
RD41 C9
RD42 C9
RD43 B8
RD44 D8
RD45 D8
RD46 C8
RD51 F9
RD52 F9
RD53 E8
RD54 F8
RD55 F8
RD56 E8
RD61 I9
RD62 I9
RD63 H8
RD64 I8
RD65 I8
RD66 H8
RD71 A4
RD72 A4
RD73 A4
RD74 A4
RD75 A4
RD76 A4
RD77 A5
RD78 A5
RD79 A5
RD80 A5
RD81 A6
RD82 A6
RD83 A6
RD84 A6
RD85 A6
RD86 A6
RD87 A6
RD88 A6
RD89 A6
RD90 A6
R101 D5
R102 D5
R103 D5
R104 D4
R105 D4
R106 C4
R107 D4
R108 D4
R109 C4
R110
C4
R111
C3
R112
D3
R113
D3
R114
D3
R151 B5
R152 B5
R153 B5
R154 B4
R155 B4
R156 B4
R157 B4
R158 B4
R159 B4
R160 B4
R161 B3
R162 B3
R163 B3
R164 B3
R201 F5
R202 F5
R203 F5
R204 F4
R205 F4
R206 F4
R207 F4
R208 F4
R209 F4
R210 F4
R211
F3
R212 F3
R213 F3
R214 F3
R251 E5
R252 E5
R253 E5
R254 E4
R255 E4
R256 E4
R257 E4
R258 E4
R259 E4
R260 E4
R261 E3
R262 E3
R263 E3
R264 E3
R301 D7
R302 D7
R303 D7
R304 D6
R305 D6
R306 C7
R307 D6
R308 D6
R309 C6
R310 C6
R311
C6
R312 D6
R313 D5
R314 D5
R315 D7
R316 C7
R317 C7
R351 B7
Q103 D4
Q104 D4
Q105 D3
Q106 D3
Q107 C3
Q151 B4
Q152 B4
Q153 B3
Q154 B4
Q155 B3
Q156 C3
Q157 B3
Q201 F4
Q202 F4
Q203 F4
Q204 F4
Q205 G3
Q206 G3
Q207 F3
Q251 E4
Q252 E4
Q253 E4
Q254 E4
Q255 E3
Q256 E3
Q257 E3
Q301 D7
Q302 C7
Q303 D6
Q304 D6
Q305 D6
Q306 D5
Q307 C5
Q351 B7
Q352 B7
Q353 B6
Q354 B6
Q355 B6
Q356 C5
Q357 B5
Q401 F7
Q402 F7
Q403 G6
Q404 G6
Q405 G6
Q406 G5
Q407 F5
Q451 E7
Q452 E7
Q453 E6
Q454 E6
Q455 E6
Q456 F5
Q457 E5
Q501 I7
Q502 I7
Q503 I6
Q504 I6
Q505 I6
Q506 J5
Q507 I5
Q551 H7
Q552 H7
Q553 H6
Q554 H6
Q555 H6
Q556 H5
Q557 G5
Q701 I4
Q702 I4
Q703 I4
Q704 I4
Q705 I3
Q706 J3
Q707 I3
Q751 H4
Q752 H4
Q753 H4
Q754 H4
Q755 H3
Q756 H3
Q757 H3
RD01 J8
RD02 J9
RD03 I9
RD04 G9
RD05 G9
RD06 G9
RD07 G9
RD08 G9
RD09 I9
RD11 H9
RD12 H9
RD13 H9
RD14 H9
RD15 H9
RD16 H9
RD17 H9
RD18 H9
RD20 B9
RD21 B9
RD22 B9
RD23 B9
RD26 C9
RD27 C9
R352 B7
R353 B7
R354 B6
R355 B6
R356 B7
R357 B6
R358 B6
R359 B6
R360 B6
R361 B6
R362 B6
R363 B5
R364 B5
R365 C7
R366 C7
R367 C8
R401 F7
R402 G7
R403 F7
R404 F6
R405 F6
R406 F7
R407 F6
R408 F6
R409 F6
R410 F6
R411
F6
R412 F6
R413 F5
R414 F5
R415 G7
R416 F7
R417 F7
R451 E7
R452 E7
R453 E7
R454 E6
R455 E6
R456 E7
R457 E6
R458 E6
R459 E6
R460 E6
R461 E6
R462 E6
R463 E5
R464 E5
R465 E7
R466 E7
R467 E8
R501 I7
R502 I7
R503 I7
R504 I6
R505 I6
R506 I7
R507 I6
R508 I6
R509 I6
R510 I6
R511
I6
R512 I6
R513 I5
R514 I5
R515 J7
R516 I7
R517 I7
R551 H7
R552 H7
R553 H7
R554 H6
R555 H6
R556 G7
R557 H6
R558 H6
R559 H6
R560 G6
R561 H6
R562 H6
R563 H5
R564 H5
R565 H7
R566 H7
R567 H8
R601 C2
R602 D2
R603 D2
R611
C2
R612 B2
R613 C2
R621 F2
R622 F2
R623 G2
R631 E2
R632 E2
R633 E2
R641 I2
R642 I2
R643 J2
R651 H2
R652 H2
R653 H2
R701 I5
R702 I5
R703 I5
R704 I4
R705 I4
R706 I4
R707 I4
R708 I4
R709 I4
R710 I4
R711
I3
R712 I3
R713 I3
R714 I3
R751 H5
R752 H5
R753 H5
R754 H4
R755 H4
R756 G4
R757 H4
R758 H4
R759 H4
R760 G4
R761 H3
R762 H3
R763 H3
R764 H3
SD71 A2
XD01 J8
031L
B2
032L
J2
9
8
7
6
5
4
3
2
1
9
8
7
6
5
4
3
2
1
Layout DAC board (Bottom view)
87
88
Mono board: DVD ALAS
MUX
VAR GAIN
LAND/
GROOVE
SWAP
MUTE
LAND
MUX
DPD
PUSH PULL
OFFSET
COMPENS.
3 BEAM
TRACKING
DIODE
AMPLIFIERS
PROCESSING
HEADER
X2
+
+
+
+
-
X2
X2
MT
X2
X2
X2
X2
X2
MUTE
VOLTAGE
CONTROL
LOGIC
TRAY
-
-
-
GND
F185 G4
F141 D2
F142 D12
F143 D2
F144 D2
F145 D7
F146 D8
F147 D2
F148 D2
F149 E2
F150 E1
F151 E6
F152 D6
F153 E3
F199 I7
F917 E1
F918 F2
F919 F1
F167 F4
F171 F4
F172 H10
F173 F4
F174 F8
F175 F8
F176 G8
F177 G1
F178 G8
F179 I10
F180 G4
F181 G2
F109 A7
F110 A2
F111 A2
F112 A6
F113 A7
F114 A8
F115 B12
F116 A2
F117 B3
F118 B9
F119 B10
F120 B12
F121 B2
F186 G4
F187 G2
F188 G4
F189 G8
F190 H2
F182 G3
F183 G4
F184 G2
F194 I6
F195 I5
F196 I6
F197 G12
F198 H13
F135 C1
F136 C2
F137 C12
F138 C3
F139 C7
F140 C2
7113 E10
7114 E10
7115 E11
7116 E12
7117 F2
F038 I2
F039 I2
F040 I2
F041 B4
F042 E5
F043 E5
F044 D6
F045 D6
F154 E3
F155 E8
F156 E8
F157 G10
F158 E8
F168 F7
F169 F8
F170 F2
F162 E4
F163 H10
F164 F4
F165 F7
F166 F8
F103 A4
F104 A8
F105 A1
F106 A6
F107 A4
F108 A12
3186 I7
3187 I2
3188 A8
3189 A4
3190 A4
3191 B9
3192 B13
3193 C13
3194 H8
3195 I8
3196 B9
3197 C9
3198 D10
F122 B5
F123 B12
F124 B2
F125 B7
F126 B10
F191 H7
F192 H3
F193 H6
F130 C1
F131 C4
F132 C4
F133 C12
F134 C4
7107 E1
7108 F2
7109 A10
7110 C4
7111 C5
7112 E10
3154 F4
3155 F8
3156 F3
3157 F8
3158 H10
3159 F8
3160 F3
3161 F8
3162 F4
3163 G2
3164 F3
3165 I10
3166 G8
F046 F8
F047 G12
F048 H5
F049 H6
F050 E10
F159 E8
F160 E3
F161 E4
F054 E11
F055 E11
F056 E4
F101 A10
F102 A7
3180 I2
3181 I8
3182 F10
3183 F10
3184 I6
3185 I5
3122 B12
3123 B5
3124 B12
3125 C4
3126 C4
3127 C12
3128 C2
3129 C5
3130 C12
3131 C13
3132 D12
3133 D13
3134 D7
3199 E9
3207 F2
3216 F1
4100 F1
7100 A5
F127 B2
F128 C2
F129 C5
7104-A G2
7104-B H2
7105-A G12
7105-B G11
7106 A7
3148 G10
3149 E8
3150 E4
3151 E3
3152 E8
3153 H9
C
D
E
F
G
H
I
A
B
C
D
E
F
3167 G4
3168 I10
3169 G3
3170 G4
3171 G3
F051 E10
F052 E10
F053 F4
3175 H6
3176 H8
3177 H8
3178 I5
3179 E11
3116 B4
3117 B5
3118 B8
3119 B7
3120 F12
3121 B12
7
8
9
10
11
12
13
1
2
3
4
5
6
3135 D5
3136 D6
3137 D6
3138 G10
3139 E4
7101 A8
7102 E4
7103 A10
3143 G10
3144 E2
3145 E7
3146 E8
3147 E8
TO LOADER
11
12
13
A
B
2116 E4
2117 E6
2118 G9
2119 G10
2120 D1
2121 D2
2122 F4
2123 H10
2124 F7
2125 G4
2126 G2
2127 I10
2128 G8
G
H
I
1100-1 A1
1100-2 A1
3172 G2
3173 F12
3174 G12
1105 D8
1106 G1
2100 A9
2101 A10
2102 A4
1
2
3
4
5
6
2147 G1
3100 A5
3101 A6
3102 A5
3103 A4
3104 A7
3105 A2
3106 A7
3107 A12
3108 A12
3109 F2
3110 A8
3111 A6
7
8
9
10
TO / FROM LOADER
3140 E6
3141 E2
3142 E5
2105 A7
2106 B4
2107 B7
2108 B6
2109 B4
2110 C3
2111 B12
2112 C4
2113 D8
2114 D7
2115 E5
3112 A6
3113 B4
3114 B12
3115 B12
2129 G8
2130 H2
2131 H3
2132 H3
DVD ALAS
2133 H4
2134 H4
2135 H4
2136 H5
2137 G12
2138 H7
2139 I8
2140 I6
2141 I2
1100-3 A1
1100-4 A1
1104 B1
OPTION
OPTION
OPTION 1
OPTION
OPTION
OPTION
OPTION
OPTION
OPTION
OPTION
OPTION
OPTION
OPTION
2142 F11
2143 B2
2144 B2
2145 B2
2146 F1
TO / FROM LOADER
2103 A6
2104 A6
F156
OPTION
7
8
9
1100-3
3
F040
14
15
16
17
18
19
2
20
21
22
23
24
3
4
5
6
1104
1
10
11
12
13
F168
390R
3104
3113
8K2
BC847B
7111
2131
22n
+5V
F102
7104-B
5
6
7
8
4
3135
2R2
2112
1n
LM833D
10n
2142
+3V3S
47R
3110
47p
2102
F172
470R
3124
7109
L78M09
GND
2
IN
1
OUT
3
+5V
26
1100-4
4
3132
2R2
31
TD1 35
TD2 37
TDO 34
TM
19
VDDA1
8
VDDA2
59
VDDA3
53
VDDA4 44
VDDD3
22
VDDD5
30
VDDL
63
VSSA1
9
VSSA2
58
VSSA3
57
VSSA4 43
VSSD
NC8
52
O-A 48
O-B 47
O-C 46
O-CENTRAL 40
O-D 45
R-EXT
60
RF-REF
54
RFN
56
RFP
55
S1 42
S2 41
SICL
24
SIDA
23
SILD
25
STB
16
FTC 33
FTC-REF 36
HEADER
21
LAND
20
LPF-DPD1 38
LPF-DPD2 39
NC1
11
NC2
17
NC3
18
NC4
32
NC5
49
NC6
50
NC7
51
CD-D
4
CD-E
6
CD-F
7
CD-LO
61
CD-MI
62
CD-REF
5
COM
28
COO
29
COP
27
DVD-A
12
DVD-B
13
DVD-C
14
DVD-D
15
DVD-LO
64
DVD-MI
10
DVD-REF
7102
TZA1033
CD-A
1
CD-B
2
CD-C
3
F116
1.5V
27K
3163
F047
3159
12K
F113
F176
F043
+5V
390R
3119
1K
3182
BFS20
7106
F178
F115
F119
2129
7116
BC847B
180p
100R
3158
3194
3122
470R
100R
3183
220p
2143
F127
F049
4R7
3100
2105
22p
220R
3179
47R
3140
F189
F175
2123
100n
15p
2133
F131
+5V
F056
3120
1K
3147
100K
3173
F103
10K
39K
3166
2140
330p
2144
220p
3154
100R
+3V3S
22K
3148
F153
3191
91R
10K
3123
7113
BC847B
3128
F038
F183
F148
100R
F122
F181
3160
F173
F041
3192
2R2
3137
150R
3111
+3V3S
F186
3181
2107
68p
F044
560R
3133
2R2
15K
3176
470R
3198
3152
100R
3171
27K
3121
12K
15p
2132
F187
F170
3149
F135
100n
+5V
12K
3131
2111
F120
2R2
3164
2R2
BC847B
7114
3114
2R2
6K8
3138
F141
3145
12K
F138
F055
F154
F048
VO4+
26
27
VO4-
2
VOL+
1
VOL-
19
VREF
10K
3125
NC2
9
NC3
11
NC5
15
REV
22
VCC1
10
VCC2
21
VCC3
3
VIN1
4
VIN2
VIN3
20
24
VIN4
25
VIN5
12
VO2+
13
VO2-
18
VO3+
17
VO3-
7103
23
BIAS
16
FWD
8
GND1
14
GND2
28
GND3
29
MT1
30
MT2
MUTE
7
5
NC1
6
680R
3118
10M
3186
BA5938FM
F146
1.5V
F147
F194
F162
100R
3151
F196
1K5
3102
2134
15p
+5V
F129
+5V
F142
220p
2145
47R
3136
+5V
1105
2126
100n
F152
2139
100n
4R7
3141
3146
3101
47R
3193
2110
2n2
10K
2127
100n
F161
F111
47R
3106
F169
2108
390p
+5V
4R7
3174
F136
F171
F126
3126
10K
F039
22p
2106
22p
2130
F190
F114
+3V3S
2101
100n
3K9
3116
10K
F132
2114
100p
3157
3127
22K
220R
3143
F054
F157
3162
100R
F192
91R
3144
F177
2117
100n
2.0V
100n
3K9
3199
F180
2120
7104-A
3
2
1
8
4
3190
2115
100n
LM833D
F117
330R
3134
F150
F143
+5V
F050
3196
F121
3115
2R2
180R
3117
3184
120K
7110
BST82
F042
F053
2R2
3175
+9V
+5V
F104
F112
2137
100n
100R
3169
BC857B
7115
2116
100n
F166
3161
2R2
+5V
F188
2119
22n
F193
F195
F182
+5Vx
2118
22n
F134
2100
330n
+5V
F108
F106
+5V
F101
3108
2R2
F124
220n
F110
2121
4100
F145
100K
3109
4n7
2104
7108
BC807-25
27K
3187
100n
2146
2135
15p
F137
F130
F109
F123
F165
3180
100K
F160
+5V
F167
F128
100R
3150
F139
F107
F191
F184
7101
BFS20
F198
1R
3178
F163
F144
+12Vstby
F118
2.5V
2.5V
2128
180p
22p
2141
F185
100n
2138
22R
3153
3172
100K
2124
100n
100n
F164
+12Vstby
4K7
3207
2125
+5Vx
100n
2147
1
2
3
4
5
6
7
8
BC847B
7112
3167
100R
1106
52271-XX90
1.5V
+5V
3107
2R2
+12Vstby
F125
3156
100R
3129
3K9
2R2
3130
3197
F140
F159
100R
3170
3189
3188
F197
2109
1n5
F174
330R
3168
10K
3155
3112
7100
BFS20
1R
3139
47R
7107
MC78L05
2
6
7
3
IN 8
NC1 4
NC2
5
OUT
1
F918
F919
1100-2
2
F917
1100-1
1
+9V
100n
2136
F105
2.0V
3195
1K5
3103
68K
3177
+5V
F158
120R
3165
3216
4K7
+3V3S
F199
+5V
7117
BC817-25
F179
F045
2122
22n
F133
F051
F149
F052
2103
47u
3185
1R
7105-A
3
2
1
8
4
2113
100n
MC34072
3142
12K
F046
3105
F151
7105-B
MC34072
5
6
7
8
4
10K
F155
V-REF
FOC-
MON2
LD-DVD
FOC+
RAD-
MON1
LDCD
TRAYSW
VO2+
VO2-
SL-
SL+
DVD_LDn
A1_MACE
RAD+
Ax
B
C
D
F
E
RFP
S1
S2
SICL
SIDA
SILD
RAC-SW
RFP
ALPHA0
CALF_MACE
LDCD
MON1
O-CENTRAL
LD-DVD
HPSW
COSPH
SINPH
V-REF
F
E
RFo
B
C
B
V-REF
MON2
FO
RA
VO2+
REFCOS
REFSIN
SL
FOC-
FOC+
RAD+
RAD-
SL-
SL+
VO2-
TRAY2
TRAY1
03
04
Ax
D
Ax
D
V-REF
STB_DALAS
O1
O2
C
SL-
SL+
VO2-
VO2+
V-REF
RAD-
RAD+
FOC-
FOC+
CL 06532152_075.eps
141200
89
90
Mono board: MACE controller
core
8051
SFR
RAM
ROM
ref.
AGC
ADC/
Laser
control
control
Slegde
control
Port 5
Port 3
Port
Port 1
GEN.
TEST
DEBUG
4
Port
2
0
Port
System
interface
P6
CLOCK
PCS
counter
Radial
Focus
Track
Defect
Signal
cond.
Ex
Dx
OPC
control
detector
EN
C1
1D
NC
3234 I11
3235 I12
3236 H10
8
9
10
11
12
13
14
1
2
3237 H2
3238 I8
3239 F10
3240 B10
3241 B1
3242 C1
3243 C2
3203 A4
3204 A4
3205 B2
3206 B2
3208 C2
3209 C2
3210 C2
3200 A4
3201 A6
3202 A7
B
C
D
E
F
G
H
I
1201 H13
3211 D2
3212 D13
3213 D14
3214 D2
3215 D2
3219 F1
3220 F10
3221 F2
3222 F1
3223 F1
3224 H3
3225 H5
3226 H4
3227 H13
3228 I8
3229 H13
3230 H8
3231 H6
3232 H12
3233 H13
H
I
A
F206 A5
F207 A6
F208 A5
F209 A6
F210 A5
F211 A4
F212 B10
F213 B2
F214 B10
3
4
5
6
7
8
9
10
11
12
13
14
A
B
2214 H13
2215 H11
2216 H12
2226 A4
2227 A6
2228 A7
3250 G2
3251 H8
3252 H8
F238 D13
F239 D10
F240 D13
F241 E10
F242 E13
F243 E10
F244 E13
F245 E10
F246 E13
6200 H12
7201 D12
7202 D13
7203 H12
7204 I13
7207 A3
F060 D13
F061 D14
F062 G2
F063 G2
F064 G2
F065 H4
F066 H5
F067 H8
MACE CONTROLLER
C
D
E
F
G
F203 A6
F204 A4
F205 A7
F270 H9
F271 H8
F272 H9
F273 H5
F274 H5
F275 H5
F276 H6
F277 H6
F278 H4
F215 B2
F216 B10
F217 B2
F218 C10
F219 C10
F220 C2
F221 C2
F222 C11
F223 C11
F224 C2
F225 C11
F226 C1
F227 C2
F228 C11
3244 C2
3245 A5
3246 C2
3247 F10
3248 G2
3249 G2
F235 D11
F236 D2
F237 D10
F293 I8
F294 I12
F295 I7
F296 I7
F297 A4
F298 A10
F299 B2
F261 F2
F262 F10
F247 E10
F248 E13
F249 E10
F250 E2
F251 E13
F252 E10
F253 E13
F254 F10
F255 F10
F256 F10
F257 F11
F258 F2
F259 F11
F260 F14
F068 I8
F069 I8
F070 I13
F200 A5
F201 A5
F202 A9
3257 I8
3258 I12
3259 A6
3260 A7
F263 G2
F264 H4
F265 H3
F266 H9
F267 H8
F268 H8
F269 H7
F279 H4
F280 H6
F281 H14
F282 H7
F283 H7
F284 H8
F285 H13
F286 H12
F287 H11
F288 H12
F289 I7
F290 I7
F291 I6
F292 I6
F229 D11
F230 D2
F231 D11
F232 D11
F233 D1
F234 D2
OPTION
OPTION
1205 A4
2200 A7
2201 A8
2202 A9
2203 A10
2204 B2
2205 B2
2206 C1
2207 D1
2208 D13
2209 D14
2210 D1
2212 H3
2213 H4
5200 A9
1
2
3
4
5
6
7
3253 H5
3254 H8
3255 I7
3256 I7
3212
OPTION
OPTION
OPTION
OPTION
+3A
4R7
F214
F279
F202
F218
+3A
10K
3240
F265
10K
3231
+3A
3219
10K
3243
F247
3251
10K
3226
1R
3201
4R7
3213
F060
+3V3S
F282
F209
3253
F228
+3V3S
F276
22K
3241
F243
F240
11K
3223
100n
2213
+3A
F269
F231
3239
F210
100n
2203
2212
100n
3244
22K
F267
F215
3255
3238 10K
F208
3237
10K
F260
F229
F289
+3V3S
2207
1n
F270
F293
F061
F067
22n
2200
F271
+3V3S
F294
F241
69
VddDp6
119
VssAop
109
VssAs
82
VssDc1
21
VssDc2
VssDp1
56
95
VssDp2
43
VssDp3
31
VssDp4
11
VssDp5
68
VssDp6
WRN
41
19
WRNH
XDET
127
7
XTLI
6
XXTLO
TS2
103
TS3
34
TXD1
40
TXD2
118
Uopb
Uopt
117
105
VRH
120
VddAop
110
VddAs
83
VddDc1
22
VddDc2
VddDp1
57
96
VddDp2
44
VddDp3
32
VddDp4
12
VddDp5
8
80
RP
98
RSTI
33
RXD1
RXD2
39
112
S1
113
S2
5
SELPLL
SINPHI
125
72
SL
89
SRV_INT_LGR
85
TEN
81
TL_FTL
TPWM
84
99
TS1
102
NC7
101
NC8
OPC_INT
88
79
OTD
104
P6
53
PSENn
124
PW
17
PXT0
18
PXT1
PXT2
16
15
PXT2en
70
RA
10
RAC_SW
42
RDN
RDNH
20
REFCOS
9
REFSIN
INT0_PWD
35
38
INT1
13
INT2
14
INT3|ALEh
114
IREFT
97
LDON
94
LLP
74
MON_A
73
MON_D
NC1
2
NC2
3
36
NC3
37
NC4
NC5
67
NC6
100
78
DSDen
55
EAn
71
FO
87
FOK
115
FTCH
116
FTCL
23
H0|A16
H1|A17
24
25
H2|CSDN
26
H3|CSBN
27
H4
H5
28
29
H6
30
H7
90
I2CSCL
91
I2CSDA
AD6
65
AD7
54
ALE
4
ALPHAO
77
ATIPin
123
CALF
76
CLKOUT
86
CLO
COSPHI
126
106
D1|MIRN
D2|TLN
107
108
D3|REN
D4|FEN
111
75
DEB_OUT
92
DEFIn
93
DEFOn
50
A13
51
A14
A15
52
122
A2
45
A8
46
A9
ACT_EMFN
1
ACT_EMFP
128
58
AD0
59
AD1
60
AD2
61
AD3
62
AD4
63
AD5
64
SAA7399HL
7207
121
A1
47
A10
48
A11
49
A12
F063
F250
3230
10K
F235
+5V
22
G_ 24
1
RP_NC
VCC
32
VSS
16
W_ 31
10
A3
9
A4
8
A5
7
A6
6
A7
5
A8
27
26 A9
DQ0 13
DQ1 14
DQ2 15
DQ3 17
DQ4 18
19
DQ5
20
DQ6
DQ7 21
E_
M29F002
7202
A0
12
A1
11
A10
23
25 A11
A12
4
A13
28
A14
29
A15
3
A16
2
A17
30
A2
3250
F216
F266
F263
+3A
F297
3246
33n
2206
3228 10K
F257
F211
F255
+3V3S
F283
+5VC
F224
F234
1M
3203
3202
1R
1n
2210
F277
F262
22n
2202
F249
2201
22n
3K9
3214
F065
3256
F291
F225
2209
100n
3225
200K
4K7
3211
F066
F213
10K
3215
3242
3247
+3V3S
F252
+3A
F227
F244
3249
F069
F219
2205
100n
F236
F280
F258
F212
+3A
2208
100n
+3V3S
+3V3S
F246
+5V
F237
+3V3S
+3V3S
F242
F274
F220
F288
F281
F299
F295
3258
F278
2228
100n
F284
F272
3257
F256
CSTCC
1205
3254
3248
F217
F204
1201
F287
F200
10K
3221
F222
F201
F233
F226
3245
F286
+3V3S
+5VC
F290
F239
F223
F273
100n
2226
F264
3K9
3210
3232
2R2
F296
F064
F259
3220
10K
3206
10K
+5V
1R
3259
F245
100n
2227
4K7
3236
7203
BC857B
2216
1n
3235
100K
3234
8K2
5200
+3V3S
100MHZ
F062
F207
F068
F254
+3V3S
10K
3200
3252
+5V
F298
22u
2215
100n
2204
150R
3224
F261
3227
4K7
3229
12K
15
7
14
8
13
9
12
11
GND
10
1
Vcc
20
7201
74HCT573
2
19
3
18
4
17
5
16
6
+3A
F232
BAS316
6200
22n
2214
F275
F205
F268
F206
2K7
3208
+3A
F230
3260
1R
10K
3205
+3V3S
330R
3204
F238
4K7
3209
3233
1K
F221
F292
F251
+5V
F248
+3A
3222
11K
F285
F253
F070
F203
RSTN
DVD_LDn
MC33464N
7204
3
GND
2 IN
4
5
1
RESET_
AM(3)
AM(4)
AM(5)
AM(6)
AM(7)
RAD-
RAD+
PSENn
WE
A1_MACE
{ALE,PSENn,RDI,WRI,CSI,WE,OTD-HD61,POR,PORN,RSTN,INT,MOTO1,RFo}
T1
POR
AM(11)
AM(10)
RAC-SW
ALPHA0
ATIP_IN
S1
S2
AM(0)
AM(1)
AM(2)
CALF_MACE
ALE
AMD(7)
AMD(6)
AMD(5)
AMD(4)
AMD(3)
AMD(2)
AMD(1)
AMD(0)
AM(9)
AM(8)
AM(15)
AM(14)
AM(13)
AM(12)
SILD
SICL
OTD-HD61
TRAYSW
CSI
AM(17)
STBY
p93-89
04
03
O2
O1
COSPH
PORN
SUR
TXD_BE
POR
HPSW
STB_DALAS
ATIP_IN
INT
O-CENTRAL
AM(17:0)
AM(17:0)
AMD(0:7)
+3A
p93-89
SIDA
CFR
RXD_BE
TRAY2
TRAY1
p93-89
SINPH
AMD(7)
AMD(6)
AMD(5)
AMD(4)
AMD(3)
AMD(2)
AMD(1)
AMD(0)
AMD(0)
AMD(1)
AMD(2)
AMD(3)
AMD(4)
AMD(5)
AMD(6)
AMD(7)
{CFR,SUR,RXD_BE,TXD_BE}
FO
RA
SL
REFCOS
REFSIN
+5V
PSENn
WRI
RDI
WE
RFo
AM(17)
ALE
AM(0)
AM(1)
AM(10)
AM(11)
AM(12)
AM(13)
AM(14)
AM(15)
AM(16)
AM(2)
AM(3)
AM(4)
AM(5)
AM(6)
AM(7)
AM(8)
AM(9)
CL 06532152_076.eps
141200
91
92
Mono board: CD - DVD decoder
- +
REV
PS
-
+
H BIAS
CONTROL
GAIN
DRIVER
+
-
+
-
+
-
+
-
+
-
+
-
CLOCK
GENERATION
CONTROL
ANALOG
DATA
CAPTURE
SUB-CPU
INTERFACE
MOTOR
INTERFACE
TACHO
BLOCK
SERIAL OUT
INTERFACE
DETECTOR
BIT
DETECTOR
DEMOD
F354 H13
F355 H10
F356 H14
F357 H7
F358 H7
F359 H13
F360 H8
F361 H10
F362 H8
F363 H10
F364 H13
F365 I13
F366 I13
F367 I13
F368 I10
F371 I10
1300 A7
1301 G14
2300 A12
2301 A9
2302 A6
2303 A6
2304 B6
2305 C6
2306 C3
2307 C3
2308 A7
2309 F7
2310 G11
2311 H12
2312 H13
F372 I13
F373 I12
F339 F6
F340 F7
F341 F7
F342 F10
F343 F9
F344 F9
F345 F9
F346 F9
F347 F9
F348 F8
F349 G10
F350 G12
F351 G10
F352 G13
F353 G13
1
2
3
4
5
6
7
8
9
10
11
12
13
14
A
F369 I13
F370 I13
E
F
G
H
I
A
B
C
D
E
F
G
H
I
3309 C6
3310 E6
3311 F8
3312 F6
3313 F7
3316 G10
3317 G10
3318 H8
3319 H13
3320 H7
3321 H13
3322 H9
3323 H9
3324 I9
3325 I13
2313 H13
2314 H8
1
2
3
4
5
6
7
8
9
10
11
12
13
14
3340 H9
5300 A8
5301 A5
6301 G9
6302 G9
6303 G8
7304 G12
7310 A11
7311 A6
7312 I13
7315 H8
F300 A11
F301 A9
F302 A7
F303 A5
B
C
D
2315 I10
CD - DVD DECODER
2316 A8
2317 A8
2318 B4
2319 C5
2320 A9
3300 A11
3301 A7
3302 A7
3303 F7
3304 B3
3305 C4
3306 F10
F321 C10
F322 C6
F323 C10
F324 D10
F325 D10
F326 D10
F327 D10
F328 D10
F329 D10
F330 D10
F331 E10
F332 E10
F333 E10
F334 E10
F335 E10
3326 I14
3327 I13
3328 I13
3329 I13
TO LOADER
3330 B5
3331 B5
3332 C5
3333 F8
3334 F9
3335 F9
3336 F9
3337 F9
3338 F9
3339 C6
NOT MOUNTED
F336 B4
F337 F7
F338 F8
F304 A7
F305 B10
F306 B6
F307 B10
F308 B10
F309 B5
F310 B10
F311 B10
F312 F8
F313 B10
F314 B6
F315 C10
F316 C6
F317 C10
F318 C10
F319 C6
F320 C10
11
2
3
4
5
6
7
8
9
52271-1190
1301
1
10
3338
100R
F353
3334
100R
7315
BC847B
F364
F367
33R
3336
3303
100R
100R
3306
100n
2315
6303
S1D
3318
F358
4K7
F344
F365
1300
CSTCC
6301
S1D
F362
+5V
100n
100n
2312
2313
3337
2314
100n
33R
2303
47u
22K
3328
3324
100K
F359
2K7
3305
F366
3304
2K7
F373
F319
F328
F326
F349
F355
F300
F301
F304
3320
F302
F306
4K7
F356
F369
F350
F309
F352
2300
100n
F315
3333
100R
F322
3331
3K3
100n
2309
F347
6302
F360
3310
22K
S1D
2310
100n
6K8
3309
10K
F323
3321
100n
2311
4K7
3323
F320
+5V
+5V
22K
3329
F311
+5VA
BC857B
7312
F354
+5V
47R
3319
27p
2319
F370
F332
F343
F330
F325
F372
F351
+5VB
5300
3311
22K
F324
100MHZ
F303
F368
F357
1M
3301
F312
F314
2301
100n
F339
+5V
+5V
F340
F348
+5VA
F318
F345
F305
3302
220R
3330
22K
F335
+12Vstby
F308
F333
+5V
3300
+5VB
+5VB
6K8
3325
4R7
F313
3340
F341
+5VA
F307
+5V
+5V
F334
2307
22n
2318
120p
F331
F337
F329
F363
F361
4K7
+5V
+5VB
F316
3322
10u
2306
4K7
3313
3339
+5VB
F317
+5VB
F310
3K3
3332
3316
1R
+5V
VSSA1
1
VSSA2
7
VSSD1
11
VSSD2
20
32
VSSD3
VSSD4
45
VSSD5
60
VSSD6
73
VSSD7
82
VSSD8
93
VSSD9
99
58
WCLK
WRI
46
+5VB
17
TEST1
21
TEST2
22
V4
52
100
VDDA1
VDDA2
9
VDDD1
10
VDDD2
19
VDDD3
31
VDDD4
44
VDDD5
59
VDDD6
72
VDDD7
81
VDDD8
92
VDDD9
98
VREF
5
RDA2 68
RDA3 67
RDA4 66
65
RDA5
RDA6 64
RDA7 63
RDI
47
REFHI
4
REFLO
3
RRW 61
SCL
29
SDA
28
STOPCLK
50
SYNC
54
T1
18
T2
RAD10 87
RAD11 88
89
RAD12
RAD13 90
RAD14 91
RAD2 76
RAD3 77
RAD4 78
RAD5 79
RAD6 80
RAD7 83
RAD8 84
RAD9 85
RDA0 71
RDA1 70
MUXSW
24
NC1
14
NC10
86
NC2
16
NC3
25
NC4
36
38
NC5
NC6
42
NC7
51
NC8
62
NC9
69
OTD
12
PORE
23
RAD0 74
RAD1 75
DA1
41
DA2
40
DA3
39
DA4
37
DA5
35
DA6
34
DA7
33
DATA
56
EBUOUT
53
FLAG
55
HFIN
6
INT
30
2 IREF
MEAS1
97
MOTO1
13
MOTO2|T3
15
AGCOUT
8
ALE
48
27
BCAIN
BCLK
57
CFLG
96
CL1
26
94
CRIN
CROUT
95
CSI
49
DA0
43
6
15
NC5
23
PS
24
REV
28
RNF
25
VCC
19
VH
26
VM1
27
VM2
+5V
7311
SAA7335HL
FG1
17
FG2
16
FG3
8
GND
9
H1+
10
H1-
11
H2+
12
H2-
13
H3+
14
H3-
29
MT1
30
MT2
1
NC1
2
NC2
4
NC3
NC4
BA6856FB
7304
7
A1
5
A2
3
A3
20
CNF
22
EC
ECR
21
18
+5VB
+5VB
6K8
3327
F346
100R
3335
3317
1R
+5VA
2302
100n
3326
47R
5301
100MHZ
F371
3312
4K7
2305
22n
22n
2308
F327
22n
2316
22n
F321
2304
F342
F336
11
I|O0
12
I|O1
13
I|O2
15
I|O3
16
I|O4
17
I|O5
18
I|O6
19
I|O7
22
OE_
VCC
28
27
WE_
F338
6 A10
7 A11
8
A12
9
A13
10
A14
24
A2
25
A3
26
A4
1
A5
2
A6
3
A7
4
A8
5
A9
20
CE_
14
GND
2320
22n
7310
CY7C199
21
A0
23
A1
T1
AMD(7:0)
22n
2317
RAMAD141
RAMAD131
RAMAD121
RAMAD111
RAMAD101
RAMAD11
RAMAD01
T3
INT
RFo
CFLG
{MOTO1,T1,T2,T3}
T1
T2
T3
MOTO1
{ALE,PSENn,RDI,WRI,CSI,OTD-HD61,POR,PORN,CFR,SUR,TXD_BE,RXD_BE,RSTN,INT,RFo,WE}
T1
RAMAD61
RAMAD71
RAMAD81
RAMAD91
RAMAD11
RAMAD01
OTD-HD61
T2
T1
RAMRW
RAMDA71
RAMDA61
RAMDA51
RAMDA41
RAMDA31
RAMDA21
RAMDA11
RAMDA01
RAMAD91
RAMAD81
RAMAD71
RAMAD61
RAMAD51
RAMAD41
RAMAD31
RAMAD21
RAMDA41
RAMDA51
RAMDA61
RAMDA71
RAMDA21
RAMDA11
RAMDA01
RAMAD101
RAMAD111
RAMAD121
RAMAD131
RAMAD141
RAMAD41
RAMAD31
RAMAD21
RAMAD51
AMD(1)
AMD(0)
ALE
RDI
WRI
B_WCLK
B_BCLK
B_DATA
B_FLAG
B_SYNC
B_V4
STBY
CSI
MOTO1
RAMRW
RAMDA31
MEAS1
AMD(7)
AMD(6)
AMD(5)
AMD(4)
AMD(3)
AMD(2)
CL 06532152_077.eps
141200
93
94
Mono board: Program memories
NC
7400-B I3
7400-C H3
7400-D I2
7401 C3
7402 G9
7450 C10
7451 C6
7452 G13
7453 H11
7454 I10
7455 I13
F419 I7
F450 E13
F451 E4
F452 E7
F453 G12
F454 G7
B
C
D
E
F
G
H
I
A
B
C
D
E
F
G
H
I
OPTION
SYSTEM ADDRESS Bus
OPTION
SYSTEM DATA Bus
OPTION
OPTION
OPTION
4451 G4
4452 H13
4453 H1
4454 H2
5402 I6
5450 G6
5451 H6
7400-A G2
3460 I9
3461 G2
4450 F4
1
2
3
4
5
6
7
8
9
10
11
12
13
14
1
2
3
4
5
6
7
8
9
10
11
12
13
14
A
F469 I2
F470 H10
F471 H11
OPTION
OPTION
PROGRAM MEMORIES
RAM/ROM Interface
2405 B3
2414 I4
2418 I6
2450 B11
2451 B11
2452 B7
2453 B11
2454 G13
2455 G13
2456 H6
2457 I10
2458 I13
2459 H7
2460 H9
2461 H9
3450 F5
3451 G12
3452 G12
3453 H11
3454 H10
3455 I12
3456 H10
3457 I9
3458 I12
3459 I11
VDD_MEM
F455 H7
F456 H11
F457 I9
F458 I12
F459 G14
F460 I14
F461 H13
F462 F5
F463 F2
F464 E12
F465 E12
F466 E12
F467 F12
F468 F12
3457
10K
3460
4K7
100MHZ
5450
5402
BC847B
7454
F470
F471
100MHZ
4452
100u
2418
3450
10K
F464
BC847B
7453
VDD_MEM
100K
3451
1u
2459
2455
100n
VDD_MEM
4450
F455
5451
100MHZ
31
LCAS_
11 NC1
12 NC2
32 NC3
29
OE_
14
RAS_
30
UCAS_
1
VCC1
6
VCC2
21
VCC3
22
VSS1
37
VSS2
42
VSS3
13
WE_
2
I|O0
3
I|O1
I|O10 35
36
I|O11
38
I|O12
39
I|O13
40
I|O14
41
I|O15
4
I|O2
5
I|O3
7
I|O4
8
I|O5
9
I|O6
10
I|O7
33
I|O8
34
I|O9
17 A0
18 A1
16 A10
15 A11
19 A2
20 A3
23 A4
24 A5
25 A6
26 A7
27 A8
28 A9
100n
2405
GM71V18163CJ
7450
10K
3461
F457
22K
3458
3455
22K
3452
22K
F468
F452
2458
470n
F419
F451
F467
2452
100n
DQ8
32
DQ9
NC1 10
13
NC2
14
NC3
28 OE_
12 RESET_
15
RY|BY_
37
VCC
27
VSS1
46
VSS2
11 WE_
BYTE_
26 CE_
29
DQ0
31
DQ1
34
DQ10
36
DQ11
39
DQ12
41
DQ13
43
DQ14
45
DQ15|A-1
33
DQ2
35
DQ3
38
DQ4
40
DQ5
42
DQ6
44
DQ7
30
A12
3 A13
2 A14
1 A15
48 A16
17 A17
16 A18
9 A19
23 A2
22 A3
21 A4
20 A5
19 A6
18 A7
8 A8
7 A9
47
7451
AM29LV160DT
25 A0
24 A1
6 A10
5 A11
4
2414
100n
74LVC00AD
7400-A
1
2
7
14
3
VDD_MEM
42
DQ6
44
DQ7
30
DQ8
32
DQ9
NC1 10
13
NC2
14
NC3
OE_
28
RESET_
12
RY|BY_ 15
37
VCC
27
VSS1
46
VSS2
WE_
11
8 A8
7 A9
47 BYTE_
CE_
26
29
DQ0
31
DQ1
34
DQ10
36
DQ11
39
DQ12
41
DQ13
43
DQ14
45
DQ15|A-1
33
DQ2
35
DQ3
38
DQ4
40
DQ5
5 A11
4 A12
3 A13
2 A14
1 A15
A16
48
17 A17
16 A18
9 A19
23 A2
22 A3
21 A4
20 A5
19 A6
18 A7
7401
AM29LV160DT
25 A0
24 A1
6 A10
F450
3453
2K2
2450
100n
22K
3459
4453
4454
74LVC00AD
7400-B
4
5
7
14
6
F469
11
VDD_MEM
7400-D
74LVC00AD
13
12
7
14
F456
F458
2457
10u
F463
F453
F462
BC857B
7455
2453
100n
BC847B
7452
100n
2454
2451
100n
F461
F454
4451
3454
22K
10K
3456
F459
F460
8
7400-C
74LVC00AD
9
10
7
14
+3V3
2456
100u
2461
470n
GND
3
IN
2
4
5
RESET_
1
2460
470n
7402
MC33464N
F465
F466
VDD_STI
VDD_STI
FLASH_OEN
CE_ROM1N
STB_CONTD
VCC_LVC00
VCC_LVC00
VCC_LVC00
VCC_LVC00
VCC_LVC00
{RAS1ND,RWN,BE0n_Fur,BE1n_Fur,CAS0ND,CAS1ND,CSL_Fur,CSH_Fur,CE_ROMN,RAS0ND,OEND}
VDD_DRAM
VDD_DRAM
STB_CONT
RESETn
VDD_STI
VDD_STI
VDD_STI
VDD_STI
CE_ROM2N
FLASH_OEN
CE_ROM2N
CE_ROM1N
CL 06532152_078.eps
141200
95
96
Mono board: CPU & MPEG decoder
LPCM
AUDIO
IRQ
PORT 0 I/O
PORT 1 I/O
Subpicture
Video
Audio
SDRAM CONTROLLER
SYSTEM USE
JTAG
PORT 2 I/O
PORT 3 I/O
PORT 4 I/O
FRONT-END
uP ST20cpu
A/V/Sub
demultiplexer
MPEG
DECODER
Subpicture
decoder
TEST
2
I S
ADDRESS
DATA
Interface
MEMORY interface
VIDEO
ENCODER
DECODER
AC3
MPEG1/2
F541 C12
F542 C9
F543 C7
F544 C9
F555 C6
F556 C12
F557 C12
F558 D14
F559 E14
F560 E14
F562 E14
F564 E14
F503 I13
F504 C7
F576 G14
F578 G2
F579 G2
F580 G2
F581 G2
F582 G2
F583 G2
F585 H11
F586 H11
F507 F14
F508 C7
F509 C8
F511 A1
F587 H13
F588 H12
F589 H12
F590 H13
F592 I8
F593 I8
F594 I8
F595 I8
F520 C8
F521 C10
F522 C11
F524 C10
F525 C11
F526 C7
F527 C7
F528 C11
F596 I8
F597 I8
F598 I8
F599 I8
F535 C5
F536 C6
F537 C11
F538 C6
A
B
F539 C7
F540 C6
E
F
G
H
F545 C9
F546 C9
F547 C9
F548 C9
F549 C9
F552 C7
F553 C8
F554 C8
H
I
1501-1 A1
1501-2 B1
1501-3 B1
1501-4 B1
1501-5 B1
2500 A3
F566 F14
F567 F14
F568 F2
F569 F13
F573 F14
F574 G14
F501 A11
F502 C7
3
4
F505 C12
F506 D14
7
8
9
10
F512 B1
F513 B11
F514 B8
F515 B1
F516 B1
F517 B11
F518 B6
F519 A9
5
6
7
8
9
10
11
12
F529 C8
F530 C10
F531 C10
F532 C10
F533 C10
F534 C10
TO/FROM DISPLAY
14
2511 H3
2512 H4
C
D
2515 H4
2516 H5
2517 H5
2518 H5
I
A
B
C
D
E
F
G
2528 I11
2529 I11
2530 I11
2531 I11
2532 A1
2533 A1
2534 B1
2535 B1
2504 C11
2505 B12
2506 D14
2507 D14
2508 E14
2509 E14
1
2
3506 B9
3507 F14
5
6
3511 C6
3512 C6
3513 A10
3514 C6
11
12
13
14
1
2
3
4
3524 D14
3525 E14
3526 F2
3534 I12
3535 I13
3537 I12
3538 I13
3540 C9
13
FRONT END
SYSTEM ADDRESS Bus
RAM/ROM Interface
I2C Bus
CPU & MPEG DECODER
SDRAM Interface
2510 H3
3553 A11
3562 C7
2513 H4
2514 H4
4500 A9
4501 A9
4502 B7
4503 C8
2519 H9
2520 H9
2521 H9
2522 H10
2523 H10
2524 H10
2525 H11
2526 H11
4504 C10
4505 C6
4506 C7
4507 B10
5501 I11
5502 I12
5503 A1
5504 B1
3500 B4
BASIC ENGINE INTERFACE Bus
SYSTEM DATA Bus
3501 B4
3502 B9
3503 B11
3504 A11
3505 A11
7503 D2
7505 A3
3508 B11
3509 B11
OPTION
OPTION
OPTION
OPTION
3515 C6
3516 C6
3517 C12
3519 C9
3520 C11
3521 C12
3522 C12
3523 C12
3541 B7
3542 B8
3545 D14
3546 C7
3547 B6
3548 A10
3550 B10
3551 B10
3563 C7
3564 C8
3566 C7
3568 C8
3570 F14
3571 A2
3572 B2
F519
OPTION
OPTION
OPTION
OPTION
OPTION
OPTION
OPTION
OPTION
OPTION
F554
4507
F599
4506
F529
2506
10u
+5Vstby
VDD_STI
F524
3521
10K
VDD_STI
3535
15K
3540
4K7
F583
F569
4503
3546
100R
F544
F543
100R
3550
5502
2u2
F592
100n
2515
VDD_STI
3509
10K
100n
2528
F527
VDD_STI
4505
3564
F588
3K3
3500
F511
3548
5503
F556
F574
F549
1501-5 5
F594
F580
F513
VDD_STI
F598
4504
2532
47p
VDD_STI
F525
VDD_STI
F597
3514
10K
3563
VDD_STI
F558
100n
2520
100n
2525
10K
3513
F535
VDD_STI
F541
F576
3562
VDD_STI
10K
3519
VDD_STI
100n
2516
3503
10K
F509
F504
2505
22n
F542
1501-4 4
3K3
3517
3520
10K
F539
1501-1 1
100n
2518
10K
3526
F590
3524
100R
4502
4501
3522
10K
F548
F515
F581
10K
3504
F537
F582
VDD_STI
100p
VDD_STI
F505
VDD_STI
2504
100n
100n
2514
5501
VDD_STI
2512
100n
2521
2u2
3K3
3501
3n3
2508
F530
3541
47R
F533
F579
3538
680R
F514
68R
3572
F546
F595
100n
2507
F516
10K
3525
330R
3537
F560
2535
1n
VDD_STI
2522
100n
F521
F555
100R
3551
VDD_STI
F564
F567
220R
F506
100R
3553
3545
F517
F552
3K3
3512
100n
2529
F501
3568
F526
VDD_STI
3516
F596
10K
1n
2534
F585
VDD_STI
F578
VDD_STI
F559
F532
+5Vstby
F589
100n
2523
100n
3K3
3523
2526
F531
+5Vstby
F512
3547
3K3
100n
2513
F534
VDD_STI
VDD_STI
F522
F586
2530
4u7
3542
47R
VDD_STI
F520
F545
F566
VDD_STI
F540
VDD_STI
2509
330p
F547
3511
3K3
F503
5504
VDD_STI
F587
2510
F518
100n
F538
F528
VDD_STI
3508
68R
2517
100n
10K
3566
3502
F502
100n
47p
2533
F593
2524
F568
F508
VDD_STI
3507
560R
F562
3506
10K
3534
10K
1
E0
2
E1
3
E2
6
SCL
5
SDA
8
VCC
4
VSS
7
WC_
3515
10K
M24C32
7505
F573
F536
100n
2511
4500
F507
2531
4u7
VDD9
110
VDDA1
53
VDDA2
60
VDDA_PCM
48
VREF_PCM
49
VSSA1
54
VSSA2
61
VSSA_PCM
50
V_REF_DAC_RGB
58
V_REF_DAC_YCC
65
WE0n
121
WE1n
122
Y_OUT
62
VDD10
119
VDD11
130
VDD12
139
VDD13
149
VDD14
159
VDD15
171
VDD16
184
VDD17
208
VDD2
18
VDD3
34
VDD4
67
VDD5
75
VDD6
86
VDD7
95
VDD8
102
SDCS0n
84
SDCS1n
85
SDRASn
88
SDWEn
90
SPDIF_OUT
47
TCK
188
TDI
186
TDO
189
TEST1
30
TEST2
31
32
TEST3
TEST4
33
TEST5
41
TMS
187
TRSTn
190
VDD1
1
PIO-4|3
194
PIO-4|4
195
PIO-4|5
196
PIO-4|6
197
PIO-4|7
14
PIXCLK_27MHz
118
PPC_CLK
137
PPCn_MODE
138
RAS0n_OR_CE4n
127
RAS1n_OR_HOLDREQ
128
136
READY
RSTn
29
R_OUT
57
133
R|W_|DMAACK
SCLK
43
SDCASn
89
PIO-2|0
3
PIO-2|3
5
PIO-2|4
6
PIO-2|5
7
PIO-2|7
8
PIO-3|0
201
PIO-3|1
202
PIO-3|2
203
PIO-3|3
204
PIO-3|4
205
PIO-3|5
206
PIO-3|6
207
2
PIO-3|7
PIO-4|0
191
PIO-4|1
192
PIO-4|2
193
24
PCM-OUT1
21
PCM-OUT2|PIO-0|6
PCM_CLK
45
PCM_OUTO
44
PIO-0|0
15
PIO-0|3
16
PIO-0|4
17
PIO-0|5
20
PIO-0|7
22
PIO-1|0
9
PIO-1|2
10
PIO-1|3
198
199
PIO-1|4
PIO-1|5
11
PIO-1|6
12
PIO-1|7
13
GND7
96
103
GND8
GND9
111
G_OUT
56
HSYNCn
51
IRQ0
23
IRQ1
25
I_REF_DAC_RGB
59
I_REF_DAC_YCC
66
LRCLK
46
MEMCLKIN
104
MEMCLKOUT
76
ODD_OR_EVEN
52
OEn
123
OSD_ACTIVE
117
91
DQMU
105
GND1
4
GND10
120
GND11
131
GND12
140
GND13
150
GND14
160
GND15
172
GND16
185
GND17
200
GND2
19
GND3
35
GND4
68
GND5
77
GND6
87
92
DQ1
93
DQ10
108
DQ11
109
DQ12
112
DQ13
113
DQ14
114
DQ15
115
DQ2
94
DQ3
97
DQ4
98
DQ5
99
DQ6
100
DQ7
101
DQ8
106
DQ9
107
DQML
153
DATA11
154
DATA12
155
DATA13
156
DATA14
157
DATA15
158
DATA2
143
DATA3
144
DATA4
145
DATA5
146
DATA6
147
DATA7
148
DATA8
151
DATA9
152
DMAXFER
134
DQ0
36
B_FLAG
38
B_OUT
55
B_SYNC
39
B_V4
42
B_WCLK
40
CAS0n_OR_HOLDACK
129
CAS1n_OR_DMAREQn
132
CE1n
124
CE2n
125
CE3n
126
CSn
135
CVBS_OUT
64
C_OUT
63
DATA0
141
DATA1
142
DATA10
181
ADR2
162
ADR20
182
ADR21
183
ADR3
163
ADR4
164
ADR5
165
ADR6
166
ADR7
167
ADR8
168
ADR9
169
AUXCLK
116
BRM0_OR_OSLINK_SEL
26
BRM1_OR_BOOTFROMROM
27
BRM2
28
B_BCLK
37
B_DATA
69
AD5
70
AD6
71
AD7
72
AD8
73
AD9
74
ADR1
161
ADR10
170
ADR11
173
ADR12
174
ADR13
175
ADR14
176
ADR15
177
ADR16
178
ADR17
179
ADR18
180
ADR19
7503
STi5505
AD0
78
AD1
79
AD10
82
AD11
83
AD2
80
AD3
81
AD4
3505
10K
VDD_STI
F553
F557
68R
3571
100n
3570
100R
1501-2 2
1501-3 3
2500
FLASH_OEN
2519
100n
EMI_IRQn
SERVICE
SEL_ACLK1
RESET_I2C
SEL_ACLK1
STB_CONT
P50
OS_BOOT
MUTE
MUTE
CPUreset
CPUanalyse
PCM_CLK_ST
RESETn
ST_CLK
27M_CLK
27M_CLK
27M_CLK
LRCLKo
TMS
TMS
ST_TDI
ST_TDI
I2C_DAC
RTS_SER
SEL_ACLK2
SEL_ACLK2
SDA
SDA
SCL
SCL
B_BCLK
B_FLAG
CSH_Fur
TCK
TCK
PCM_CeLf_Fur
PCM_LsRs_Fur
SDA
CSL_Fur
centre_on
kar_by_pass
SERVICE
SPDIF_OUT
P50
RXD_SER
HSYNC
OSLINKIN
VSYNC
TXD_SER
SCART0
{SCLKo,PCM_OUTO,LRCLKo,SPDIF_OUT,R_OUT,G_OUT,B_OUT,C_OUT,CVBS_OUT,Y_OUT}
WAIT
AUXCLK
B_SYNC
B_V4
AD1
AD0
SCL
SDA
CTS_SER
SUR
B_DATA
B_WCLK
OSLINKOUT
ErrorOUT
FLASH_OEN
centre_on
kar_by_pass
SCART1
DQ11
DQ10
DQ9
DQ8
DQ7
DQ6
DQ5
DQ4
DQ3
DQ2
DQ1
DQ0
AD11
AD10
AD9
AD8
AD7
AD6
AD5
AD4
AD3
AD2
TDO
PCM_OUTO
SCLKo
G_OUT
B_OUT
DQMU
DQML
WEN
RASN
CASN
CSN2
CSN1
DQ15
DQ14
DQ13
DQ12
BE1n_Fur
A(20)
A(19)
A(18)
A(17)
A(16)
A(15)
A(14)
A(13)
A(12)
A(11)
A(10)
A(9)
A(8)
A(7)
A(6)
A(5)
A(4)
A(3)
A(2)
A(1)
D(8)
D(9)
D(10)
D(11)
D(12)
D(13)
D(14)
D(15)
TDO
D(6)
D(7)
CLK
OEND
SCL
TXD_BE
RXD_BE
CFR
RSTN
RAS0ND
RAS1ND
RWN
BE0n_Fur
CVBS_OUT
C_OUT
Y_OUT
R_OUT
TRST
TRST
A(21)
CAS0ND
CAS1ND
CE_ROMN
D(0)
D(1)
D(2)
D(3)
D(4)
D(5)
CL 06532152_079.eps
141200
97
98
Mono board: Power supply & output interfaces
F644 E11
F646 F11
F647 F9
F648 F10
F649 F11
F656 H13
F657 H11
F658 H13
F659 H13
F660 I8
F661 I9
F662 I10
F663 I8
F664 I9
7614 G10
7615 H10
7617 I10
F665 I12
F669 C11
F670 E2
F671 I1
F672 I2
F673 I2
F674 I3
F675 F2
F921 A13
F922 A13
F923 A13
F924 A13
F625 C12
F626 D10
F627 F3
F611 B13
F612 B12
F613 B12
F614 D2
F615 D2
F925 B13
F926 B13
F927 G2
F928 G2
F929 H2
F621 C6
F622 C10
F623 E2
F624 C9
3690 I3
3691 D5
4602 E5
F628 E7
F629 D9
F630 D12
F631 D2
F632 B3
F633 E12
F634 E3
F635 E11
F636 E2
F637 E11
F638 E11
F639 E8
F640 E11
F641 E11
F643 F10
7600-B B11
7600-C A11
7600-D B11
7600-E A9
7600-F A8
F651 G9
F652 G9
F653 G11
F654 H8
F655 H9
7610 D10
7611 F6
7612 F10
7613 F10
3629 C10
3630 B7
3631 F9
7618 I9
7620 H2
7621 I3
7622 B2
F600 A13
F601 A13
F602 A13
F603 A12
F604 B3
F605 C1
F606 A12
F607 A13
F608 C3
F609 B6
F610 B7
3660 H10
3661 G9
3662 G10
3663 G10
3664 G10
F616 B13
F617 B7
F618 E2
F619 C10
F620 C12
3686 H1
3687 I1
3688 I2
3689 I3
G
H
I
4603 E5
4604 E5
5600 A12
5601 E6
5602 F9
5604 F9
5605 G9
5606 H9
5607 I9
5608 I9
5609 B2
5610 F2
5611 D3
6600 C9
7600-A A11
1602-6 B13
1602-7 A13
1603-1 E13
1603-10 C13
1603-11 C13
7604 B7
7605 C2
7607 B6
7608 C10
7609 C10
3625 E11
3626 F10
3627 B7
3628 B7
4
5
6
3632 F10
3633 G8
3635 A12
3636 B12
3637 C11
3642 B6
3647 G8
3648 H8
3651 I8
3654 I8
3655 I9
3656 I9
3657 H9
3658 I10
3659 I10
9
10
11
12
13
3665 E10
3667 E10
3672 E3
3674 D10
3676 E7
BLM31
TO/FROM PC INTERFACE
SERIAL PC INTERFACE
F
1603-19 E13
1603-2 F13
1603-20 D13
A
B
C
D
E
F
G
H
I
1600 C1
1602-1 A13
1602-2 A13
1602-3 A13
1602-4 B13
1602-5 B13
2601 A12
2602 B12
2603 B1
2604 D3
2605 C8
1603-12 D13
1603-13 D13
1603-14 E13
1603-15 E13
1603-16 E13
PWR SUPPLY + OUTPUT INTERFACES
1
2
3
2616 G9
2617 G9
2620 G9
7
8
9
10
11
12
13
1
2
3
4
5
6
7
8
2640 F11
2641 F11
2642 F12
2643 F12
2644 F12
A
B
C
D
E
TO AUDIO / VIDEO MUX. BOARD
TO AUDIO/VIDEO MUX. BOARD
1603-17 D13
1603-18 E13
2648 H12
2649 B2
BLM31
1603-21 E13
1603-22 D13
1603-3 F13
1603-4 D13
1603-5 F13
1603-6 G13
1603-7 D13
1603-8 C13
1603-9 C13
1604 G13
1605 G1
1606 G1
1607 G1
1608 H1
2600 A11
3620 A12
3621 B12
3622 C9
3623 E10
3624 E10
2606 C9
2607 E2
2608 C3
2609 D1
2610 E7
FROM SUPPLY
2611 G2
2614 F9
2615 F9
2645 F13
2646 B3
2647 H11
2621 G9
2622 H8
2623 H9
2624 I8
2625 I9
2626 I8
2627 I9
2632 C8
2633 C8
2634 D2
2635 D2
2636 D3
2637 E2
2638 E3
2639 E4
OPTION
OPTION
OPTION
OPTION
OPTION
2650 C2
3606 C10
3607 A12
3608 B11
3609 B12
3610 A12
3611 B12
3612 B6
3613 B6
3614 C6
3615 C10
3616 D12
3617 D11
3618 D8
3619 D9
6600
7609
BC857B
430R
3654
1PS76SB10
F617
2604
100u
F614
F626
F619
2639
100n
F633
F673
F624
F665
F600
BC857B
7608
1K
3651
430R
3659
+5Vstby
3676
F644
F672
2627
47p
F657
F643
F653
F662
100R
+5V
430R
3656
3620
10u
2608
3690
BC847B
7618
+5V
3
4
5
6
7
8
9
+5V
1600
1
10
11
12
13
2
3616
10K
F669
3630
220R
470R
F621
1603-20
20
3628
1
2
14
7
33R
3625
1603-4
4
7600-A
74HCT14D
2606
100u
47p
2625
100n
2638
-Vvid
F623
VDD_STI
2648
22p
2649
100n
F605
F622
VDD_STI
9
F610
VDD_STI
1603-9
-Vvid
3614
10K
100u
2632
F606
22p
2645
+5V
F615
2643
22p
1603-16
16
+3V3S
100n
2635
6
+3V3
7621
BC817-25
3
1603-2
2
1603-6
F616
1602-6
6
1603-3
1603-13
13
10K
3613
2622
47p
+5V
2623
47p
74HCT14D
7600-E
11
10
14
7
3658
1K
1608
+5V
2642
22p
-Vvid
15u
5607
1603-1
1
2624
47p
5600
100R
1n5
2601
10u
2646
3621
21
1603-5
5
+12Vstby
18
1603-15
15
1603-21
5606
+5V
1603-18
15u
F627
470R
3627
F601
1603-14
14
F634
1603-11
11
4604
100u
2611
F618
+5V
BC847B
7607
7600-D
9
8
14
7
-8Vstby
1603-17
17
74HCT14D
1603-7
7
1603-12
12
1602-5
5
1603-10
10
1K
1602-4
4
3663
22K
3687
3689
22K
-Vvid
10K
3615
430R
3633
3
2
1602-1
1
1602-3
10K
3642
1602-7
7
1602-2
F604
F635
3657
430R
+5V
F638
-Vvid
+5V
2650
100n
F612
+3V3
3691
33R
F675
F646
1607
47u
2609
2634
100n
3655
430R
+5V
19
F625
430R
3661
1603-19
430R
3647
1K
3662
F671
1n5
2602
1603-22
22
F602
F674
F629
5608
15u
2626
47p
7613
2614
47p
+5V
BC847B
2615
47p
3617
10K
F631
F636
1606
22p
2640
6K8
3635
7612
BC847B
15u
5602
+5V
5605
15u
-Vvid
-8Vstby
7614
BC847B
2644
22p
3624
33R
BC847B
7617
-8Vstby
F659
1605
430R
3631
F664
100MHZ
5610
2
1
5
3
4
7615
BC847B
+5V
7611
74HCT1G125
2637
100n
7620
BC857B
F647
15u
5604
F648
2617
47p
430R
47p
2616
LD1117
7605
1
GND
3
IN
2
OUT
3664
F603
F656
F640
10K
BC847B
7604
100K
3607
F658
3610
F649
-Vvid
FMN
1603-8
8
7600-C
74HCT14D
5
6
14
7
22n
2600
3674
F661
F660
+5V
F655
100n
2603
22K
3686
22K
F637
3619
F630
3622
100R
47p
2647
F632
+3V3
74HCT14D
7600-F
13
12
14
7
F652
+5V
-8Vstby
F654
F607
F651
F611
+5Vstby
2
3
4
5
6
7
8
9
1604 FMN
1
10
11
12
13
14
15
16
+5Vstby
+12Vstby
F609
3688
4K7
-8Vstby
430R
3648
+5V
2605
22n
F628
47R
3672
4602
4603
22p
2641
100K
3609
-8Vstby
F620
100n
2636
-8Vstby
+12Vstby
+5V
7610
BC847B
F670
1K
3626
F663
3632
430R
7600-B
74HCT14D
3
4
14
7
33R
3623
VDD_STI
2633
100u
1K
3660
+5V
F608
3608
100K
F639
+6Vstby
3637
3K3
F613
+5V
F641
100MHZ
5601
4K7
3629
F929
F927
F928
F926
F924
F925
F922
F923
F921
3611
10K
6K8
2607
100u
+5V
3636
LD1117
GND
1
IN
3
OUT
2
22K
3618
2621
47p
7622
5611
100MHZ
47p
2620
47K
3606
+6Vstby
3612
10K
100MHZ
5609
33R
3667
100n
2610
3665
22R
Y_VID
Y_OUT
C_VID
C_OUT
CVBS
CVBS_OUT
B_VID
B_OUT
PWR_FAIL
LRCLK_Fur
LRCLKo
PCM_OUTO
SCLKo
{SCLKo,PCM_OUTO,LRCLKo,SPDIF_OUT,R_OUT,G_OUT,B_OUT,C_OUT,CVBS_OUT,Y_OUT}
SPDIF_OUT
SPDIF_Fur
SPDIF_AV
VCC3V3
PCM_CeLf_Fur
STB_MUTE
R_VID
R_OUT
G_VID
G_OUT
LRCLK
CFLG
B_FLAG
MEAS1
centre_on
P50
VCC5V
MUTE
SCLK_AV
PCMOUT_AV
LRCLK_AV
PCMCLK_AV
SCLK_Fur
PCM_LeRi_Fur
SCL
SDA
kar_by_pass
RTS_SER
HSYNC
STB_CONT
SCLK
RXD_SER
CTS_SER
SERVICE
TXD_SER
SCART0
SCART1
0_6_12V
0_6_12V
MUTE_AV
CL 06532152_080.eps
141200
99
100
Mono board: SD RAM’s
VDDQ
LCBR
DATA INPUT
REGISTER
PROGRAMMING
LRAS
LCBR
512Kx16
BANK
SELECT
OUTPUT BUFFER
VSS
VSSQ
TIMING REGISTER
NC
512Kx16
ADDRESS REGISTER
LCKE
BURST LENGTH
LATENCY &
DECODER
COLUMN
LWCBR
LCAS
LWE
REGISTER
COL. BUFFER
LQDM
ROW DECODER
REFRESH COUNTER
ROW BUFFER
LDQM
LWE
I/O CONTROL
SENSE AMP
LRAS
VDD
VDDQ
LCBR
DATA INPUT
REGISTER
PROGRAMMING
LRAS
LCBR
512Kx16
BANK
SELECT
OUTPUT BUFFER
VSS
VSSQ
TIMING REGISTER
NC
512Kx16
ADDRESS REGISTER
LCKE
BURST LENGTH
LATENCY &
DECODER
COLUMN
LWCBR
LCAS
LWE
REGISTER
COL. BUFFER
LQDM
ROW DECODER
REFRESH COUNTER
ROW BUFFER
LDQM
LWE
I/O CONTROL
SENSE AMP
LRAS
VDD
DQMH
SENSE AMPLIFIERS
COMMAND
DECODE
CTRL
LOGIC
MODE REG
ADDRESS REGISTER
ROW
ADDR
MUX
LOGIC
CTRL
BANK
COLUMN
ADDR
COUNTER/
I/O GATING
DQM DATA LOGIC
READ DATA LATCH
WRITE DRIVERS
DATA INPUT REGISTER
DATA OUTPUT REGISTER
DQML
VDDQ
VDD
NC
VSSQ
VSS
LATCH
REFRESH
COUNTER
BANK0
ROW-
ADDR
LATCH &
DECODER
COLUMN
DEDCODER
BANK0
MEMORY
ARRAY
(4,096x256x16)
ST SDRAM
FURORE SDRAM
SDRAM Interface
TOP
2702 D11
3403 F1
3404 F4
3702 E10
5403 I2
5700 C12
7404 D2
7405 D5
7700 D11
F415 F1
F416 F4
SDRAMs
1
2
3
4
F420 I3
F700 E10
F701 E10
F702 E10
F703 C11
10
11
12
13
14
1
2
3
4
5
6
7
8
9
10
11
12
13
14
A
B
C
H
I
A
B
C
2703 D13
2704 D11
2705 D13
2706 D13
2707 C12
D
E
F
G
H
I
2401 C2
2402 C3
2403 C5
2404 C6
2406 C2
2407 C3
2408 C5
2409 C6
2410 C2
2411 C3
2412 C5
2413 C6
2419 I2
2420 I3
2700 C11
2701 C13
100n
2410
5
6
7
8
9
BOTTOM
D
E
F
G
F415
2705
100n
VDD_MEM2
F701
2704
100n
2419
47u
F700
100n
2706
F703
10K
3404
100n
2404
41
47
WE_
15
40
DQ9
DQMH
36
14 DQML
33
37
RAS_
17
1
25
7
13
38
44
26
50
4
10
18 CS_
DQ0 2
DQ1 3
42
DQ10
43
DQ11
45
DQ12
46
DQ13
48
DQ14
49
DQ15
DQ2 5
DQ3 6
DQ4 8
DQ5 9
DQ6 11
DQ7 12
39
DQ8
21 A0
22 A1
A10
20
23 A2
24 A3
27 A4
28 A5
29 A6
30 A7
31 A8
32 A9
BA
19
CAS_
16
34 CKE
35 CLK
MT48LC1M16A1TG
7405
2402
100n
10K
3403
100n
2702
F702
2700
100n
+3V3
2707
47u
2411
100n
100n
2703
7
13
38
44
26
50
4
10
41
47
15 WE_
49
5
DQ2
6
DQ3
8
DQ4
9
DQ5
11
DQ6
12
DQ7
DQ8 39
DQ9 40
36 DQMH
DQML
14
33
37
17 RAS_
1
25
29
A7
30
A8
31
A9
32
19 BA
16 CAS_
CKE
34
CLK
35
CS_
18
2
DQ0
3
DQ1
DQ10 42
DQ11 43
DQ12 45
DQ13 46
DQ14 48
DQ15
7404
MT48LC1M16A1TG
A0
21
A1
22
20 A10
A2
23
A3
24
A4
27
A5
28
A6
3702
1K
2406
100n
2412
100n
100n
2401
2403
100n
100n
2408
VDD_MEM2
100MHZ
5700
VDD_MEM2
47u
2420
VDD_MEM2
VDD_MEM2
F420
100n
2407
2409
100n
100n
2413
9
43
49
28
41
54
6
12
46
52
WE_
16
2701
100n
DQ3 7
DQ4 8
DQ5 10
DQ6 11
DQ7 13
DQ8 42
DQ9 44
DQMH 39
DQML 15
36
40
RAS_
18
1
14
27
3
A9
34
BA0
20
BA1
21
CAS_
17
CKE
37
CLK
38
CS_
19
DQ0 2
DQ1 4
DQ10 45
DQ11 47
DQ12 48
DQ13 50
DQ14 51
DQ15 53
DQ2 5
MT48LC4M16A2TG
7700
A0
23
A1
24
A10
22
A11
35
A2
25
A3
26
A4
29
A5
30
A6
31
A7
32
A8
33
F416
5403
100MHZ
VCC3V3
Fur_CKE
Fur_WEn
Fur_CASn
Fur_RASn
Fur_DQML
Fur_DQMH
Fur_AD(13:0)
Fur_DQ(15:0)
Fur_CLK
AD11
CASN
CLK
CSN2
DQML
DQMU
RASN
WEN
DQMU
DQML
RASN
WEN
AD0
AD1
AD10
AD2
AD3
AD4
AD5
AD6
AD7
AD8
AD9
AD0
AD1
AD2
AD3
AD4
AD5
AD6
AD7
AD8
AD9
AD10
AD11
CASN
CLK
CSN1
CL 06532152_081.eps
141200
101
102
Mono board: SACD decoder
F814 F5
F815 F6
F816 F6
F817 G6
F818 G6
F819 G6
OPTION
OPTION
F820 G6
F821 H7
F822 E5
F823 E4
F824 E4
F825 E4
F826 E4
3809 I2
3810 I2
3811 I2
3812 F2
3813 G2
3814 G2
OPTION
3815 E11
3816 H2
4801 D12
4802 D11
4803 F13
5800 A2
5801 E2
5802 E2
F850 B8
F851 G5
F852 E11
F855 F2
F920 F4
F802 B9
F803 B9
F804 B10
F805 B10
F806 B10
F807 B10
F808 B10
F809 B10
F810 D11
F811 D11
F812 E11
F813 F5
14
A
B
C
D
E
FRONT END
2817 A5
2818 A5
2819 A5
2820 A5
2821 A5
2822 A5
2823 E2
2824 E2
F827 E2
F828 E2
F829 A5
F830 I10
F831 I10
2830 H7
2831 I7
2832 F1
2833 F5
2834 E14
3800 B8
3801 E5
3802 F4
3805 G2
3806 G4
3807 H4
3808 H2
2814 A4
2815 A4
2816 A4
1
2
3
SYSTEM ADDRESS Bus
SYSTEM DATA Bus
4
5
6
7
8
9
10
7800 C6
7801 F2
7802 E13
F800 B9
F801 B9
2
3
4
5
6
7
8
9
10
11
12
13
F
G
H
I
A
B
C
D
E
F
G
H
I
2800 A2
2801 A2
2825 E2
2826 E2
2827 G5
2828 G4
2829 H7
2802 A2
2803 A3
2804 A3
2805 A3
2806 A3
2807 A3
2808 A3
2809 A3
2810 A4
2811 A4
2812 A4
2813 A4
F819
F842 F3
F843 H8
F845 H7
F846 H7
F847 H7
F848 G6
F849 G4
F832 I10
F833 I10
F834 I10
F835 G3
F836 D11
F837 D11
F838 D11
F839 D11
F840 F3
F841 F3
11
12
13
14
1
SACD DECODER
RAM/ROM Interface
3815
560R
3805
47R
3811
3K3
3816
100R
3K3
3808
F852
F821
2831
100n
3K3
3810
100n
2829
F848
100n
2815
2823
10u
F833
F834
F832
F836
2805
100n
F849
4801
100n
2817
3K9
3813
3814
33R
F803
F802
F804
2820
100n
F815
100n
2804
100n
2821
110
VCC-IO7
123
VCC-IO8
132
VCC-IO9
55
VDDAADC
47
VDDAAGC
206
VSS-IO12
VSSAAGCADC
54
59
VSSREFADC
F845
13
VCC-CORE1
39
VCC-CORE2
65
VCC-CORE3
91
VCC-CORE4
117
VCC-CORE5
143
VCC-CORE6
170
VCC-CORE7
195
VCC-CORE8
3
VCC-IO1
148
VCC-IO10
158
VCC-IO11
19
VCC-IO2
75
VCC-IO3
82
VCC-IO4
95
VCC-IO5
100
VCC-IO6
136
PCM-WCLK-OUT
166
PLAY
157
PLL-LOCK
161
PLL-SYNC
156
PROG-CLK384
155
PROG-CLKSYS
162
PSP-ENABLE
140
RESET_
164
SSM-ACT
177
TCK
175
TDI
178
TDO
176
TMS
179
TRST
174
TST0
173
TST1
23
H-RW_
22
H-WAIT
146
IEC958-IN
147
IEC958-OUT
165
LLD-MUTE
167
MUTE-DET
138
MUTE-TOT
61
PCM-CELF-IN
142
PCM-CLK-OUT
64
PCM-DCLK-IN
172
PCM-DCLK-OUT
60
PCM-LERI-IN
135
PCM-LERI-OUT
62
PCM-LSRS-IN
145
PCM-MUTE-IN
63
PCM-WCLK-IN
6
H-DQ10
5
H-DQ11
2
H-DQ12
1
H-DQ13
208
H-DQ14
207
H-DQ15
16
H-DQ2
15
H-DQ3
12
H-DQ4
11
H-DQ5
10
H-DQ6
9
H-DQ7
8
H-DQ8
7
H-DQ9
181
H-IRQ_
20
H-PROCCLOCK
184
H-A20
183
H-A21
182
H-A22
203
H-A3
202
H-A4
201
H-A5
200
H-A6
199
H-A7
198
H-A8
197
H-A9
26
H-BEN0
27
H-BEN1
25
H-CSH_
24
H-CSL_
18
H-DQ0
17
H-DQ1
151
GP-OUT-PIN0
152
GP-OUT-PIN1
153
GP-OUT-PIN2
154
GP-OUT-PIN3
205
H-A1
194
H-A10
193
H-A11
192
H-A12
191
H-A13
190
H-A14
189
H-A15
188
H-A16
187
H-A17
186
H-A18
185
H-A19
204
H-A2
134
GND-IO10
150
GND-IO11
160
GND-IO12
180
GND-IO13
21
GND-IO2
70
GND-IO3
77
GND-IO4
83
GND-IO5
86
GND-IO6
101
GND-IO7
111
GND-IO8
124
GND-IO9
34
GP-IN-PIN0
35
GP-IN-PIN1
45
GP-IN-PIN2
67
GP-IN-PIN3
128
DSD-PCM7
129
DSD-PCM8
130
DSD-STR0
131
DSD-STR1
168
FADE-BUSY
139
FS-256-DVD
137
FS-256-SACD
14
GND-CORE1
40
GND-CORE2
66
GND-CORE3
92
GND-CORE4
118
GND-CORE5
144
GND-CORE6
171
GND-CORE7
196
GND-CORE8
4
GND-IO1
104
D-DQ7
105
D-DQ8
106
D-DQ9
90
D-LDQM
93
D-UDQM
89
D-WEN
169
DO-GRAB
87
DRAS_
133
DSD-CLK
119
DSD-PCM0
120
DSD-PCM1
121
DSD-PCM2
122
DSD-PCM3
125
DSD-PCM4
126
DSD-PCM5
127
DSD-PCM6
88
D-CAS_
141
D-CKE
76
D-CLK
94
D-DQ0
96
D-DQ1
107
D-DQ10
108
D-DQ11
109
D-DQ12
112
D-DQ13
113
D-DQ14
114
D-DQ15
97
D-DQ2
98
D-DQ3
99
D-DQ4
102
D-DQ5
103
D-DQ6
149
CLK
159
CLK-384
78
D-ADDR0
79
D-ADDR1
84
D-ADDR10
85
D-ADDR11
115
D-ADDR12
116
D-ADDR13
80
D-ADDR2
81
D-ADDR3
68
D-ADDR4
69
D-ADDR5
71
D-ADDR6
72
D-ADDR7
73
D-ADDR8
74
D-ADDR9
56
ADCREFH
58
ADCREFL
57
ADCREFM
53
AGCADCTSTN
48
AGCADCTSTP
52
AGCCAPN
49
AGCCAPP
51
AGCINN
50
AGCINP
31
B-BCLK
33
B-DATA
30
B-FLAG
29
B-SYNC
28
B-V4
32
B-WCLK
46
BIASIN
SACD
7800
163
75HZ-PULSE
44
AD0
43
AD1
42
AD2
41
AD3
38
AD4
37
AD5
36
AD6
F809
F808
F920
F843
5
4
F818
2814
100n
7802
74HC1GU04
2
3
1
NC
2816
100n
2810
2830
100n
6K8
3807
100n
F806
F829
100n
F817
2809
F826
F823
5801
100MHz
2822
100n
2811
100n
F842
F830
F811
100n
2813
F822
F813
F814
10u
2825
F838
100n
2808
2807
100n
100n
2819
2818
100n
F810
2832
2n2
F824
F839
F840
3809
3K3
10n
2827
100n
2826
56p
2828
F816
33R
3801
15K
3806
BFS20
7801
F805
F835
F825
4802
100MHz
5802
2801
10u
F851
F820
F850
F831
100n
2806
3812
3K9
2824
100n
F847
100MHz
5800
10u
2800
F812
F837
2812
100n
F846
F801
F800
330R
3802
F827
F828
F841
F855
2834
100n
4803
2803
100n
F807
100n
2802
3800
47R
Ssm_act
Pll_sync
GP_in_pin(3:0)
GP_in_pin(2)
LRCLK_AV
VCC3V3
PCM_CLK_Fur
DSD_PCM(8:0)
2833
10n
D(15:0)
ST_CLK
VDDA_AGC
GP_out_pin(0)
Fur_TDI
+5V
RFP
Prog_clksys
Prog_clk384
Fade_busy
mute_det
Lld_mute
SPDIF_AV
27M_CLK
GP_in_pin(0)
GP_in_pin(1)
GP_in_pin(2)
GP_in_pin(3)
VCC_Fur
VCC_Fur
VCC_Fur
VCC_Fur
A(21:1)
ST_TDI
Play
Psp_enable
SACD_CLK
VCC3V3
VDDA_AGC
VCC3V3
VDDA_ADC
VCC_Fur
DSD_str0
DSD_str1
DSD_CLK
PCMCLK_AV
RESETn
Fur_CKE
SPDIF_Fur
VCC_Fur
Fur_DQ(15:0)
VCC_Fur
VCC3V3
Fur_DQML
Fur_DQMH
VCC_Fur
VCC_Fur
VCC_Fur
VCC_Fur
VCC_Fur
VCC_Fur
VCC_Fur
VCC_Fur
VCC_Fur
VCC_Fur
VCC_Fur
VCC_Fur
VCC_Fur
VCC_Fur
VCC_Fur
VCC_Fur
VCC_Fur
VCC_Fur
VDDA_ADC
PCM_LeRi_Fur
PCM_CeLf_Fur
PCM_LsRs_Fur
LRCLK_Fur
SCLK_Fur
Fur_AD(5)
Fur_AD(4)
Fur_AD(13:0)
Fur_CLK
Fur_CASn
B_SYNC
B_FLAG
B_BCLK
B_WCLK
B_DATA
VCC_Fur
WAIT
RWN
CSL_Fur
CSH_Fur
BE1n_Fur
BE0n_Fur
B_V4
D(2)
D(3)
D(4)
D(5)
D(6)
D(7)
D(8)
D(9)
EMI_IRQn
SCLK_AV
PCMOUT_AV
Pll_lock
TCK
Fur_TMS
Fur_TRST
GP_out_pin(2)
GP_out_pin(3)
A(1)
A(10)
A(11)
A(12)
A(13)
A(14)
A(15)
A(16)
A(17)
A(18)
A(19)
A(2)
A(20)
A(21)
A(3)
A(4)
A(5)
A(6)
A(7)
A(8)
A(9)
D(0)
D(1)
D(10)
D(11)
D(12)
D(13)
Do_grab
Fur_RASn
DSD_PCM(0)
DSD_PCM(1)
DSD_PCM(2)
DSD_PCM(3)
DSD_PCM(4)
DSD_PCM(5)
DSD_PCM(6)
DSD_PCM(7)
DSD_PCM(8)
GP_in_pin(0)
GP_in_pin(1)
GP_in_pin(3)
GP_out_pin(1)
75Hz_pulse
Fur_AD(0)
Fur_AD(1)
Fur_AD(10)
Fur_AD(11)
Fur_AD(12)
Fur_AD(13)
Fur_AD(2)
Fur_AD(3)
Fur_AD(6)
Fur_AD(7)
Fur_AD(8)
Fur_AD(9)
Fur_DQ(0)
Fur_DQ(1)
Fur_DQ(10)
Fur_DQ(11)
Fur_DQ(12)
Fur_DQ(13)
Fur_DQ(14)
Fur_DQ(15)
Fur_DQ(2)
Fur_DQ(3)
Fur_DQ(4)
Fur_DQ(5)
Fur_DQ(6)
Fur_DQ(7)
Fur_DQ(8)
Fur_DQ(9)
Fur_WEn
FURORE
CL 06532152_082.eps
141200
103
104
Mono board: System clocks
OSC
VCO
ROM BASED
MULTIPLIERS
OSC
REF
DIV
PHASE
COMP
CHARGE
PUMP
LOOP
FILTER
VCO
DIV
OUTP
BUFFER
OUTP
BUFFER
VDD
GND
OSC
CRYSTAL
PLL
OUTPUT
BUFFER
CTRL CIRC.
CLK SYNTHESIS
AND
OUTPUT
BUFFER
7904 E8
7905 C10
F900 C12
F901 C12
F903 F5
F904 C10
F909 B11
F911 F3
F912 C8
F915 C5
F916 E4
B
C
D
OPTION
OPTION
SYSTEM CLOCKS
OPTION
3901 C10
3902 C10
3903 D6
3904 F2
3906 F5
3907 C12
3908 C12
3909 D10
3910 C12
4900 C9
4901 E3
4902 E4
5900 B11
5901 B8
5902 B5
5903 E3
5904 E8
7900-A E3
7900-B E4
7900-C H5
7900-D H4
7900-E F4
7900-F H6
7902 C7
7903 C4
2907 D12
2908 B12
3900 C10
OPTION
OPTION
1
2
3
4
5
6
7
8
9
10
11
12
13
1
2
3
4
5
6
7
8
9
10
11
12
13
A
OPTION
E
F
G
H
A
B
C
D
E
F
G
H
2901 B11
2902 C9
2903 C5
2904 E8
2905 E4
2906 C12
2
GND
3
OUT
1 TS
4
VDD
5904
100MHZ
74HCT04D
7900-D
9
7
14
8
FXO-31FT
7904
100MHz
5901
1
7
14
2
33R
3902
7900-A
74HCT04D
2907
22p
11
7
14
10
2906
22p
74HCT04D
7900-B
3
7
14
4
7900-E
74HCT04D
47R
3908
F904
3907
56R
100n
2904
6 DC
1
GND1
3
GND2
8 ICLK
7 PDTS_
4
REF
2
VDD
3900
10K
33R
3903
ICS302M-38
7902
5
CLK
33R
3904
4900
3909
3K3
4901
F912
F911
10K
3901
7 S1
9 S2
10 S3
3
4
5
8 X1
6 X2
F903
ICS601M-01
7903
1
CLK
14
15
16
12
OE
2
REFEN
13
REFO
11 S0
5900
100MHz
2908
22p
F901
3910
56R
F916
F909
F900
7905
MK2703S
27M 4
CLK 5
GND
3
S0
7
S1
6
VDD
2
X1
1
X2
8
2905
100n
12
3906
33R
5
7
14
6
74HCT04D
7900-F
13
7
14
100MHZ
5903
7900-C
74HCT04D
F915
4902
10n
2901
100n
2903
5902
100MHz
2902
100n
VCC5V
VCC5V
STB_CONTD
VCC5V
384Fs_in
VCC5V
SACD_CLK
SEL_ACLK1
VCC5V
SEL_ACLK2
PCM_CLK_Fur
27M_CLK
PCM_CLK_ST
OTP
ROM
WITH PLL
DIVIDER
VALUES
PLL
CLK
SYNTH.
AND CTRL
CIRC.
OUTPUT
BUFFER
OSC.
CRISTAL
DIVIDE
LOGIC AND
OUTPUT
BUFFER
CL 06532152_083.eps
141200
105
106
Mono board: DAC interface
1000-12 D8
1000-2 B8
1000-3 B8
1000-4 B8
1000-5 C8
1000-6 C8
1000-7 C8
2002 G9
2003 G9
2004 G9
2005 H9
2
3
4
5
6
OPTION
7
8
9
10
11
12
1
2
3
4
5
JTAG
OPTION
IF BSCAN MOUNT POS. 4000 AND REMOVE POS. 4001
E
F
G
H
A
B
C
D
I
1000-1 B8
1000-10 D8
1000-11 D8
I
A
B
C
D
BSCAN OR DCU
OPTION
OPTION
2009 G6
2010 D6
2011 D2
2012 D6
2013 A5
3000 F8
3001 F8
3002 G8
3003 C10
1000-8 C8
1000-9 D8
1001 I10
1002 H1
1003 H1
2000 F9
2001 F9
3011 G2
3012 D4
3013 D2
3014 D4
2006 H9
2007 H9
2008 H9
1
3019 D4
3020 H2
3021 E2
3022 B2
3023 B1
OPTION
3024 B2
3025 B10
3026 C10
3027 A6
3028 A4
3029 B5
3030 B3
3031 B4
3033 H5
4000 C9
4001 C9
6
7
8
9
10
11
12
6002 D5
7000-A G3
7000-B H3
7000-C G5
E
F
G
H
7004 B3
7005 B2
7006 B6
7007 B4
F001 G2
F002 F10
F003 F10
F004 G10
F005 G10
F006 G10
F007 G10
F008 H10
F009 H10
F010 H10
F011 C10
F012 F4
F014 H3
3004 G8
3005 G8
3006 G8
3007 H8
3008 H8
3009 H8
3010 G4
OPTION
F015 F3
F016 H3
F017 D5
3015 D3
3016 D1
3017 D5
3018 H4
F022 B2
F023 B2
F024 D2
F025 F8
F026 F8
F027 G8
F028 G8
F029 G8
F030 G8
F031 H8
F032 H8
F033 H8
F034 B5
F035 B5
F036 B4
F037 F6
F099 A6
EMC Holes
4002 F3
4003 H3
4004 B9
4005 C9
4006 A6
6000 D5
BIT_CLK / DSD_CLK
WORD_CLK / SEL_DSD
DATA_LR / DSD_LEFT
SEL_PCM / DSD_RIGHT
7000-D H5
7001 D5
7002 D4
7003 D2
DATA_LsRs / DSD_Ls
SEL_PCM / DSD_Rs
DATA_CL / DSD_CENTRE
SEL_PCM / DSD_LFE
384Fs
STANDBYn
256Fs
DAC INTERFACE
IF DCU MOUNT POS. 4001 AND REMOVE POS. 4000
OPTION
DCU
F018 D5
F019 D4
F020 D4
F021 D2
3K3
3030
10K
3027
3014
10K
2
F024
F012
1000-2
5
6
7
8
9
12
13
14
15
16
17
18
19
2
20
21
22
23
24
3
4
1001
1
10
11
4001
3012
4K7
F037
F005
F006
7003
BC847B
3017
10K
11
10
6
7
14
8
9
7000-D
74HCT4066D
12
7
14
7000-B
74HCT4066D
5
7
14
4
3
74HCT4066D
7000-C
74HCT4066D
7000-A
13
7
14
1
2
3008
33R
1003
10K
3013
1002
F003
7007
BC847B
F017
10K
3031
33R
3005
BC847B
7006
F032
3004
33R
1000-8
8
2009
100n
1000-6
6
1000-7
7
F010
1000-5
5
3001
33R
2013
1u
F029
33R
3000
F026
F025
F027
2005
22p
6002
BAS316
4006
F011
10K
3019
4003
1K
3033
10K
3025
33R
3020
F034
F004
3006
33R
F033
F031
22p
2006
F028
22p
2008
2007
22p
33R
3009
F007
F008
F014
3011
33R
3021
4K7
2001
22p
10K
3026
3022
4K7
F020
33R
3007
100n
2010
1000-1
1
10K
3028
4K7
3029
3010
47K
33R
3002
1000-9
9
7004
BC847B
4005
F023
F002
F035
3024
2K2
3023
10K
F019
F018
7001
BC857B
1000-3
3
1000-4
4
22p
2000
F009
3K3
3015
BAS316
6000
22p
2004
4004
2012
100n
11
F001
22p
2002
1000-11
F015
2003
22p
F030
BC847B
7002
12
2011
100n
F022
1000-12
F099
F036
10
47K
3018
4002
1000-10
4000
F016
3016
10K
F021
10K
3003
BC847B
7005
VCC5V
VCC5V
PWR_FAI L
STB_MUTE
VDD_STI
384FS_in
VCC5V
+5Vstby
+5Vstby
SDA_DAC
SCL_DAC
+5Vstby
VCC5V
TDO
ST_TDI
RESETn
Fur_TDI
TDI
VCC_Fur
TRST
Fur_TRST
TMS
Fur_TMS
+5Vstby
TCK
VCC_Fur
SCL
SDA
I2C_DAC
STB_OUT
DSD_PCM(8:0)
VCC5V
STB_CONT
+12Vstby
CL 06532152_084.eps
141200
107
108
Layout Mono board: (overview top side)
PART 1
CL 06532152_85a.eps
PART 2
CL 06532152_85b.eps
PART 3
CL 06532152_85c.eps
CL 06532152_085.eps
141200
109
110
Layout Mono board: (Part 1 top side)
CL 06532152_85a.eps
121200
111
112
Layout Mono board: (Part 2 top side)
Cl 06532152_85b.eps
121200
113
114
Layout Mono board: (Part 3 top side)
CL 06532152_85c.eps
121200
115
116
Layout Mono board: (overview bottom side)
PART 1
CL 06532152_86a.eps
PART2
CL 06532152_86b.eps
PART3
CL 06532152_86c.eps
CL 06532152_086.eps
141200
117
118
Layout Mono board: (Part 1 bottom side)
CL 06532152_86a.eps
121200
119
120
Layout Mono board: (Part 2 bottom side)
CL 06532152_86b.eps
121200
121
122
Layout Mono board: (Part 3 bottom side)
CL 06532152_86c.eps
121200
123
124
Layout Mono board: (overview testpoints)
CL 06532152_087.eps
141200
PART 1
CL 06532152_87a.eps
PART 2
CL 06532152_87b.eps
125
126
Layout Mono board: (Part 1 Test points)
PART 1
CL 06532152_087a.eps
141200
H3-
VH
SINPH
COSPH
STBY
H3-
SL-
SL
+5V
G_VID
R_VID
STOPCLK
B_WCLK
B_BCLK
B_V4
B_SYNC
RFO
MACE CLK
RAD+
RAD-
FOC+
A
C
F
+3V3
Y_VID
PCM_Ce_Lf_Fur
MUTE_AV
0_6_12V
HSYNC
C_VID
LRCLK_AV
PCMOUT_AV PCMCLK_AV
SCLK_AV
SPDIF
CENTER_ON
+3V3
+2.5V
PCM_CLK
B_VID
VO2+
VO2-
PCM_Ls_Rs_Fur
E
D
B
S1
S2
O1
+9V
FOC-
O2
O3
O4
CVBS
T1
CL1
GND
+5VSTBY +6VSTBY
STB_CONT
+12VSTBY
-8VSTBY
RA
FO
SL+
H1+
H2+
A1
A2
A3
H2-
H1-
STB-OUT
MOTO 1
T3
127
128
Layout Mono board: (Part 2 Test points)
27M_CLK
RFP
ST_CLK
SACD_CLK
I2C_DAC
+3V3
PWR_FAIL
DSD_PCM8
DSD_PCM6
DSD_PCM7
DSD_PCM0
DSD_PCM1
DSD_PCM4
DSD_PCM5
DSD_PCM2
DSD_PCM3
384Fs_IN
PART 2
CL 06532152_087b.eps
141200
129
130
131
132
( 0 0 3 B)
5 1 2 8
3 X8 ( M)
x 1 2
( 5 1 2 8 )
3 X6 ( M)
x 2
( 5 1 2 8 )
3 X6 ( M)
x 2
5 1 0 4
3 X8 ( M)
x 4
F RONT
PANEL
ASSY.
0 0 1 B
( 0 0 3 B)
( 0 0 5 B)
x 2
0 0 8 B
0 2 6 B
0 2 8 Bx 2
VY0 1
0 7 8 B
0 2 4 Bx 3
( 0 0 2 B)
0 5 8 Bx 2
5 1 2 8
3 X6 ( M)
0 1 0 B
5 1 2 8
3 X5 ( M)
x 4
5 1 2 8
3 X5 ( M)
x 6
5 1 2 8
3 X8 ( M)
5 1 2 8
3 X8 ( M)
5 1 2 6
3 X6 ( M)
5 1 2 8
3 X8 ( M)
x 3
0 2 8 Bx 4
5 1 2 8
3 X8 ( M)
x 3
0 3 4 B
0 2 6 Bx 2
0 2 0 Bx 3
0 3 8 B
0 4 0 B
5 1 2 8
3 X8 ( M)
x 2
0 5 2 B
5 1 2 8
3 X6 ( M)
5 1 2 8
3 X6 ( M)
0 5 4 B
0 5 0 B
0 6 4 B
0 4 4 B
PY2 6
5 1 2 8
3 X8 ( M)
x 2
( 0 0 6 B)
PY1 6
0 7 4 Bx 2
5 1 2 7
3 X8 ( M)
x 4
5 1 2 8
3 X8 ( M)
x 1
0 8 0 B
0 7 6 B
0 8 2 B
0 7 2 B
0 7 3 B
0 6 2 B
0 8 4 B
0 8 6 B
5 1 9 2
1 . 7 X9 (U)
x 2
0 0 1 M
L OADER
ASSY.
0 4 6 B
5 1 2 8
3 X8 ( M)
x 4
0 3 0 B
023M
5 4 0 5
3 ( M)
5 1 1 0
3 X6 ( M)
0 7 2 G
022M
0 1 2 D
0 9 4 G
PZ01
0 9 0 G
A U DI O
CD
S U P E R
9 0 1 G
5 1 2 9
3 X8 ( M)
5 1 1 0
3 X6 ( M)
x 2
5 1 2 7
3 X8 ( M)
5 1 2 7
3 X8 ( M
x 2
PF16
PZ02
W 0 0 1
PP1 6
5 1 2 8
3 X8 ( M)
x 4
0 3 1 Gx 6
9 2 0 G
0 3 2 Gx 6
0 7 6 Gx 2
0 6 4 G
0 6 0 G
0 9 2 G
PN1 6
0 1 3 G
U
ONL Y
0 0 6 D
0 0 5 Dx 8
0 0 6 D
0 0 1 D
0 0 9 Dx 4
5 4 0 2
3 ( U)
x 4
0 0 4 Gx 4
0 1 9 L , 0 2 0 L , 0 2 1 L
0 2 3 L , 0 2 4 K
PH1 6
5 1 2 8
3 X8 ( M)
x 2
0 3 5 Gx 5
5 1 1 0
3 X6 ( M)
x 5
N, S
ONL Y
0 4 1 G
0 4 1 G
U
ONL Y
0 0 5 Gx 4
0 1 0 Dx 7
0 0 2 Dx 8
0 1 3 G
N, S
ONL Y
0 7 8 G
0 8 0 G
5 1 2 9
3 X8 ( M)
x 2
0 8 4 G
0 8 6 G
N, S
ONL Y
0 0 9 Dx 4
5 1 2 9
3 X8 ( M)
x 2
020M
0 4 0 G
0 4 0 G
F OR
USA
F OR
N, S
021M
5 1 2 8
3 X8 ( M)
L 0 1 6
0 6 6 Gx 4
5 1 2 6
3 X6 ( M)
x 2
0 5 0 Gx 2
L001
5 4 0 4
5 ( A)
T 1 0 0
0 4 2 G
U
ONL Y
0 4 2 G
N, S
ONL Y
5 1 2 7
3 X8 ( M)
5 1 1 0
3 X6 ( M)
x 3
PZ03
0 1 2 Gx 2
5 1 2 7
3 X8 ( M)
0 1 0 G
5 1 1 0
3 X6 ( M)
x 2
MARK MATER I AL / FI N I S H
( M)
( U)
( A) STEEL / CHROMATE
STEEL / BL ACK
STEEL / COPPER
SYMBOL
STYL E
PARTS
NAME
5 1 0 4
+B. H. M. SCREW
5 1 2 7
5 1 2 8
5 1 5 0
+F. H. TAP
T I TE
SCREW( B T YPE)
+B. H. TAP
T I TE
SCREW( B TYPE)
+B. H. TAP
T I TE
SCREW( W/ )
5 1 9 2
5 1 2 5
+ B. H. T AP
T I TE
SC RE W( P TYPE)
5 1 2 6
+ B. H. T AP
T I TE
SC RE W W/ W AS HER
F L AT
WASHERS
5 4 0 2
5 1 1 0
5 1 2 9
+ F . H. M. SCREW
+ B. H. T AP
T I TE
SC RE W( W / T. L. WASHER)
S P RI NG WASHERS
5 4 0 4
+ P. H. T AP
T I TE
SC RE W( MI NUT E)
A UD I O
CD
S U P E R
J654
J623
J633
J603
J613
J643
0 0 2 G
5 1 2 8
4 X8 ( M
x 2
5 1 1 0
3 X8 ( M)
x 3
5 1 2 7
3 X8 (M)
x 2
0 6 2 G
8. Exploded view and Parts list
133
NOTE : "nsp" PART IS LISTED FOR REFERENCE ONLY, MARANTZ WILL NOT SUPPLY THESE PARTS.
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
002B
F
FRONT PANEL GOLD HAIR
413K248120
002B
N, S
9965 000 10828 FRONT PANEL GOLD BLAST
413K248110
002B
U
FRONT PANEL BLACK BLAST 413K248010
003B
GOLD
9965 000 10825 ESCUTCHEON
SIDE CORNER GOLD
413K063110
003B
BLACK
ESCUTCHEON
SIDE CORNER BLACK
413K063010
005B
4822 381 11893 LENS FOR LED
269J355010
006B
9965 000 10823 LENS FOR STANDBY
230K355010
008B
GOLD
9965 000 01554 MARANTZ BADGE GOLD
313J251110
008B
BLACK
9965 000 01553 MARANTZ BADGE BLACK
313J251010
010B
GOLD
9965 000 10829 FRONT PANEL
SUB PANEL AL GL
413K248130
010B
BLACK
FRONT PANEL
SUB PANEL AL BL
413K248030
020B
GOLD
9965 000 10832 BUSHING PLAY BUTTON GL 413K259110
020B
BLACK
BUSHING BUTTON BL
413K259010
024B
GOLD
9965 000 10835 BUTTON PLAY GL
413K270110
024B
BLACK
BUTTON PLAY BL
413K270010
026B
GOLD
BUSHING
NEXT/PREV. BUTTON GL
413K259130
026B
BLACK
BUSHING
NEXT/PREV. BUTTON BL
413K259030
028B
GOLD
9965 000 10837 BUTTON NEXT/PREV.GL
413K270130
028B
BLACK
BUTTON NEXT/PREV.BL
413K270030
030B
9965 000 06862 ESCUTCHEON (SACD LOGO)
392K063160
034B
GOLD
9965 000 10833 BUSHING
OPEN/CLOSE BUTTON GL
413K259120
034B
BLACK
BUSHING
OPEN/CLOSE BUTTON BL
413K259020
038B
GOLD
9965 000 10836 BUTTON OPEN/CLOSE GL
413K270120
038B
BLACK
BUTTON OPEN/CLOSE BL
413K270020
040B
GOLD
9965 000 10834 BUSHING POWER GL
413K259140
040B
BLACK
BUSHING POWER BL
413K259040
044B
GOLD
4822 410 11276 BUTTON POWER GL
176J270150
044B
BLACK
4822 410 11275 BUTTON POWER BL
176J270050
046B
GOLD
9965 000 10826 TRAY ESCUTCHEON GL
413K063120
046B
BLACK
TRAY ESCUTCHEON BL
413K063020
076B
GOLD
9965 000 10827 WINDOW FOR GL
413K158110
076B
BLACK
WINDOW FOR BL
413K158010
001D
GOLD
9965 000 10831 TOP LID GOLD
413K257110
001D
BLACK
TOP LID BLACK
413K257010
005D
GOLD
4822 502 14462 SCR.THINHEAD 3X5NI
318K010020
005D
BLACK
4822 502 14461 SCR.THINHEAD 3X4BL
318K010030
006D
GOLD
9965 000 10830 SIDE PANEL GOLD
413K249110
006D
BLACK
SIDE PANEL BLACK
413K249010
009D
GOLD
4822 502 14425 SCR.THINHED 3X8NI
323S010020
009D
BLACK
4822 502 21693 SCR.THINHED 3X7BL
323S010030
010D
INSULATOR FOR TOP LID
256J120010
004G
4822 462 11116 LEG GOLD BLAST
163J057410
005G
9965 000 10824 SCREW FOR LEG
413K010010
001M
9305 023 61104 VAL6011/04
LOADER COMPLETE
QE02361104
022M
3104 126 25210 DUST CAP
QW12625210
J603
9965 000 10849 TERMINAL EW-2560T-LH-W
L-CH
YT02011290
J613
9965 000 10848 TERMINAL EW-2560T-LH-R
R-CH
YT02011280
J623
9965 000 10849 TERMINAL EW-2560T-LH-W
LS-CH
YT02011290
J633
9965 000 10848 TERMINAL EW-2560T-LH-R
RS-CH
YT02011280
J643
9965 000 10850 TERMINAL EW-2560T-LH-B
C-CH
YT02011300
J653
9965 000 10850 TERMINAL EW-2560T-LH-B
LEE-CH
YT02011300
L001 F
MAINS TRANSF. 100V 50/60Hz TS58001020
L001 N, S, U
3104 128 70230 MAINS TRANSF. 115/230V
TS58001010
L011
9965 000 10839 FERRITE CORE
TRCN-16-8-13 FOR JH05-SPSU
FC50160040
L012
9965 000 10840 FERRITE CORE
USB-4 FOR L001PRI.
FC50270040
L013
4822 526 10691 FERRITE CORE
TFCK-16-8-13 FOR L001 SEC.
FC50160030
L014
4822 526 10691 FERRITE CORE
TFCK-1608013 CN202 MONO
FC50160030
L015
9965 000 06824 FERRITE CORE
HF70SH28X2X10 FOR FFC
FC90280010
L016
4822 526 10691 FERRITE CORE
TFCK16-8-13 FOR WY04
FC50160030
PZ03
3104 129 22150 POWER SUPPLY UNIT
QW12922150
0025
8204 056 06810 FUSE 2A GMD-2
FOR POWER SUPPLY UNIT
QC05606810
PACKING
001T F
USER GUIDE
413K851110
001T N
9965 000 10838 USER GUIDE
413K851310
001T S
USER GUIDE
413K851350
001T U
USER GUIDE
413K851250
T100
9965 000 10851 REMOTE CONTROLLER
RC-12S1SA
ZK413K0010
W001 F
4822 321 11337 MAINS CORD
MITY DC-302-J 125V 12A
ZC01802080
W001 N
4822 321 11033 MAINS CORD
2P 10A 250V CLASS2
ZC01803080
W001 S
MAINS CORD
250V 10A FOR UK
ZC01804100
W001 U
MAINS CORD
10A 125V UL/CSA
ZC01803100
NOT STANDARD
SPEAR PARTS
001S
PACKING CASE
413K801010
002S
CUSHION
413K809010
008S
ACCESSORY BOX
413K801210
134
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
9305 023 61104 VAL6011/04
LOADER COMPLETE
QE02361104
1
nsp
MECH. UNIT,
GENEVA LP LOADER ASSY
nsp
2
nsp
VAM6001/01
nsp
3
3139 194 00710 SUSPENSION (YELLOW)
QT19400710
4
3139 194 00710 SUSPENSION (YELLOW)
QT19400710
5
3139 194 00620 SUSPENSION (BLUE)
QT19400620
6
3139 194 00620 SUSPENSION (BLUE)
QT19400620
7
3139 197 60060 CLAMPER ASSY
QT19760060
001M
0 0 1 M
NOTE : "nsp" PART IS LISTED FOR REFERENCE ONLY, MARANTZ WILL NOT SUPPLY THESE PARTS.
135
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
4
4822 358 10266
BELT, DRIVING
QP35810266
9
3139 198 80010
SWITCH, OTHERS
QT19880010
10
4822 532 13097
RING, RUBBER
QP53213097
11
3139 194 00270
TRAY, PLASTIC
QT19400270
12
3139 197 50060
MOTOR ASSY DC <=37.5W
QT19750060
NOTE : "nsp" PART IS LISTED FOR REFERENCE ONLY, MARANTZ WILL NOT SUPPLY THESE PARTS.
136
9.
Circuit-, IC descriptions and list of abbreviations
9.1
SAA7399 (MACE2) General.
Mace2 is a name used for the successor of the ACE1 IC. The
term MACE (mini-ACE) is used because MACE2 does not
have a decoder on board. Application area's: Mainly CD-
R(W) and prototyping of DVD(-ROM) or high speed CD-
ROM.
Functions implemented on-board of MACE2:
A further improved digital servo module. Derived from the
ACE1 servo module, but with improvements (make the input
switchable between diode signal and error signal processing,
improved brake).
The 80C51 micro-controller with external ROM.
The OPC. Optimum Power calibration, used for CDR.
The PCS. Position Control Sledge. A way to speed up sledge
movement using hall sensors.
Figure 9-1 Overall block diagram MACE2.
9.2
Features
•
Focus and Radial servo loop.
•
Built-in access procedure.
•
Selectable servo error or servo diode inputs.
•
Focus noise performance equivalent to DSICS
•
Automatic closed loop gain control available for focus
and radial loops
•
High speed track crossing velocity measurement > 350
kHz.
•
Fast Radial Brake circuitry.
•
Sledge motor servo loop, with pulsed sledge support and
PCS
•
Incorporated micro-controller equivalent to 80C51
--> 66MHz.
•
Programmable wait state controller.
•
Two embedded RAM's of 416 bytes and 1.5 kB res.
•
Optimum Power Calibration Hardware support up to
write at N=8.
•
Debug facilities.
•
Memory mapped interface to sub-modules.
•
Programmable clock multiplier.
•
8 Multipurpose I/O lines.
•
5 external interrupt lines.
•
External Flash ROM support.
•
Sledge stepper motor support.
9.3
The Digital Servo block.
In a CD system, there are some 12 control loops active.
About six of them are needed to adjust the servo error
signals, that is once per disc rotation offsets, signal
amplitudes and loop gains (AGC's) are adjusted to enlarge
system robustness and to avoid expensive potentiometer
adjustments in production. The other six loops determine the
laser spot position on the disc in the radial, axial (focus) and
tangential directions. The servo in MACE2 takes care of
these controls.
The servo inside Mace2 also has to take care that the spot
accesses a required position as fast as possible. This access
system consists of two parts, namely the actuator and the
sled, which are within a certain range, mechanically and
electrically independent. So during an access the servo has
to control as well the actuator as the sled.
9.4
Functional description servo
Figure 9-2 Mace2 servo block diagram.
The following functions can be distinguished:
–
A to D conversion: a direct AD-conversion of the diode/
error currents.
–
Pulse density D to A conversion: Noise shaper output
stages.
–
Control unit: Provides mainly the communication and on/
off functions.
–
Focus normaliser: A partial division of focus and sum
signal. Special saturating provisions are included when
dividing through very small numbers.
–
Initialisation control: Includes the radial normaliser,
automatic radial offset compensation and level
initialisation for the Track Position Indicator (TPI) for both
diode and error input signals.
–
TPI/TL generation and adaptive debounce: Generates
Track loss (TL) which is protected against disc defects.
The TL is made out of the unprotected TPI signal. The
debouncer (with improved debounce times) minimises
the disturbing effect of HF on the TL and Rp crossovers
for the track count circuitry.
137
–
Defect detector: Holds the focus and/or radial control
signal on disc dropouts.
–
Speed control: Used during access. With radial actuator
feed forward.
–
Focus control: PID controller with wide range adjustable
characteristics.
–
Radial control: PID controller with wide range adjustable
characteristics.
–
Sledge control: PID controller with wide range adjustable
characteristics and a pulsed sledge controller.
–
Laser Low Power: Switches the laser from write back to
read power whenever the device tends to go off-track.
9.5
Input circuits servo
Five out of six of the MACE2 servo inputs can be switched
between diode current inputs (for audio and data application)
and error signal inputs (for recordable applications).
The analogue signals from the diode pre processor are
converted into a digital representation using A/D converters.
9.6
Focus control.
9.6.1
Focus start-up.
To bring the actuator in focus position a triangular shaped
voltage is applied to the actuator to perform a search
movement. When the lens moves from or to the disc, CA
(central aperture) is monitored to reach a certain
programmable absolute level. When this value is CA level is
reached, the FOK signal becomes true and FEn is passed to
the FEn level detector.
At the moment this FEn level is reached the wait for the focus
mode is entered and the focus control loop is enabled to
detect a sign inversion in the FEn signal.
When this zero crossing in this FEn signal is detected, the
loop is closed to function as PID controlled loop and is
switched to the PID mode.
During focus start-up a dither signal is added to the output
signal of the integrator. It prevents the actuator from hitting its
natural resonance. With this technique quantisation, effects
are compensated for during start-up.
9.6.2
Focus Position Control loop.
The focus control loop contains a digital PID controller that
has 5 parameters available to the user. These coefficients
influence the integrating, proportional and differential action
of this PID and a digital low pass filter following the PID. The
fifth coefficient influences the loop gain.
9.6.3
Dropout detection.
This detector can be influenced by one parameter. The FOK
signal will become false and the integrator of the PID will hold
if the CA signal drops below this programmable absolute CA
level. When the FOK signal becomes false, it is assumed as
caused by a black dot in the first place.
9.6.4
Focus Loss detection and Fast restart.
Whenever FOK is false longer than about 2 ms, it is assumed
that the focus point is lost. A fast restart procedure is initiated
which is capable of restarting the focus loop within 200 to 300
ms depending on the uP-programmed coefficients.
9.6.5
Focus Automatic Gain Control loop.
The loop gain of the focus control loop can be corrected
automatically to eliminate tolerances in the focus loop. This
gain control injects a signal into the loop that is used to
correct the loop gain. Since this decreases the optimal
performance, the gain control should only activated shortly
(for instance when starting a new disc).
9.7
Radial control.
The MACE2 digital controller includes the following radial
servo functions:
9.7.1
Level initialisation:
During start-up an automatic adjustment procedure is
activated to set the values of the radial error gain, offset and
satellite sum/MIRN signal gain for TPI level generation. The
initialisation procedure runs in a radial open loop situation
and is < 200 ms. This start-up time period may coincide with
the last part of the turntable motor start-up time period.
9.7.2
Automatic gain adjustment:
Because of this initialisation the amplitude of the RE signal is
adjusted within _10% around the nominal RE amplitude.
Offset adjustment: The additional offset in RE due to the
limited accuracy of the start-up procedure is less than +/-
50nm.
9.7.3
TPI level generation:
The accuracy of the initialisation procedure is such that the
duty cycle range of TPI becomes 0.4 < duty cycle < 0.6.
Sledge home:
Sledge moves to reference position at the inner side of the
disc with user defined voltage.
Tracking control:
The actuator is controlled using a PID loop filter with user
defined coefficients.
Access:
In Mace2 there are two fundamentally different ways to
perform an access:
Using the PCS
A more detailed description of this access method is given in
an other section.
Using the servo controlled access:
The way it was done in the predecessors of Mace2.This
access procedure is divided into 3 different modes,
depending on the requested jump size:
access type size access speed
Actuator jump decreasing velocity
Sledge jump maximum power to sledge 1
Controlled sl. jump controlled brake power
The access procedure makes use of a track counting
mechanism, a velocity signal based upon the number of
tracks passed within a fixed time interval, a velocity setpoint
calculated from the number of tracks to go and a user
programmable parameter indicating the maximum sledge
performance.
If the number of tracks to jump is too large, then the Sledge
jump mode is activated, else the actuator jump is performed.
The requested jump size together with the required sledge
braking distance at maximum access speed defines the
value of the maximum numbers of tracks.
During the actuator jump mode, velocity control with a PI
controller is used for the actuator. The sledge is then
continuously controlled using the filtered value of the
integrator contents of the actuator. All filter parameters (for
actuator and sledge) are user programmable.
138
In the sledge jump mode maximum power (user
programmable) is applied to the sledge in the correct
direction, while the actuator becomes idle.
Radial Automatic Gain Control loop:
The loop gain of the radial control loop can be corrected
automatically to eliminate tolerances in the radial loop. This
gain control injects a signal into the loop which is used to
correct the loop gain. Since this decreases the optimal
performance the gain control should only be activated shortly
(for instance when starting a new disc). This gain control
differs from the earlier mentioned level initialisation. This
level initialisation should be done first. The level initialisation
without the gain control reduces tolerances from the front-
end only.
9.8
The radial PID.
Since we are dealing with a big variety of applications and
drives, the servo controllers in MACE2 should be adjustable
within a large frequency range.
In order to read out the track properly -a track consists of
sequential ordered data pit's which hold audio, video or ROM
data - the focus and radial position controls must follow the
moving track within some tenths of a micrometer, despite of
disc imperfections and external disturbances.
For instance, a rotating disc causes, due to track eccentricity,
track unroundness, or disc skew, track movements up to
some millimetres. The control loop reduces this to about one
tenth of a micrometer.
9.9
Initialisation control.
Due to optical, electrical and mechanical tolerances in CD
players, properties of the servo signals such as offset and
gain can vary. In general, without proper signal processing, a
simple PID controller function cannot cope with this relatively
large offset and gain spreads. Therefore, gain and offset
adjustments during manufacture or active control, to
compensate for these signal imperfections, become
inevitable.
Adjustment procedures in the factory are expensive. So,
automatic adjustment procedures have been implemented in
order to avoid most of the potentiometer adjustments. In the
MACE2 servo automatic adjustments are applied to the
radial error signal only.
9.10
The AGC.
The Automatic Gain Control is used in the MACE2 digital
servo to adjust the radial and focus bandwidths to a nominal
value. Injecting a signal in the loop and measuring the phase
of its resulting signal (wobble method) does this.
Principle of the Automatic Gain Control.
The principle of the Automatic Gain Control (AGC) circuit, as
used in MACE2, is drawn in the next figure.
Figure 9-3 Principle of the automatic gain control.
A sine wave signal with a certain frequency is injected in the
control loop at the summation point. The resulting signal is
measured before the injection point. The injected signal is
shaped by H/1+H . This measured signal is multiplied by a
phase shifted version of the injected signal. The result of the
multiplication is low pass filtered and integrated. (The
integrator is started at the nominal gain of the control loop).
The result of the integration is fed to the adjustable loop gain.
This principle, synchronous detection, is also known as
'wobble method'.
9.11
The Fast brake.
The fast brake is an aid to speed up radial capture after a
high-speed jump. It is a separate radial control with a much
higher bandwidth. The radial control output can be switched
between fast brake mode and original radial control mode.
The fast brake helps the radial actuator at the end of a jump
to "stick" to the right track. In fast brake mode, the actuator
starts to follow the track movements. It's a bit like jumping on
a moving train. If you run as fast as the train, you can just step
in. After a radial open loop jump the tracks are moving (as a
result of eccentricity) at a very high speed underneath the
radial actuator. This speed is too high for a normal radial
control loop to do radial capture. When the radial control is
switched over to fast brake mode for a short term, this moving
of the tracks underneath the actuator becomes much slower,
(because the actuator follows the track movement), so when
you switch back to original radial control, it's much easier to
do radial capture.
9.12
The Defect Detector.
Because of the possible earlier mentioned defects
(fingerprints, etc) a defect detection circuit is incorporated
into the MACE2 servo. If a defect is detected, the radial and
focus error signals may be zeroed, resulting in better
playability.
9.12.1 Operation:
The defect detector prevents the light spot from going out of
focus and going off track due to disc dropout excitations. The
defect detector can be switched on and off under software
control and can be applied to the focus control only, or both
to the focus and radial control.
Whenever this circuit detects a defect, it will hold all radial
and focus controls.
The hold signal is generated whenever the reflected light
intensity drops rapidly (< 1:5 ms) down to roughly 75% of the
actual intensity level. In that case the output of the
comparator becomes active and controls the focus and radial
signal switch.
This circuit improves the playability of the application (black
dot performance, etc) and is programmable to optimise it for
specific disc defects. The actions of this circuit can be
monitored on the DEFO pin (active high).
An external defect detection circuit can be added by
removing the connection between DEFO and DEFI (normal
operation) and inserting the external circuitry.
These signals are afflicted with some uncertainties caused
by:
–
Disc defects like scratches and fingerprints
–
The HF information on the disc, which is considered as
noise by the detector signals.
9.13
Laser Drive On.
The LDON pin is used to switch the laser drive off and on. It
is an open drain output. In case the laser is on, the output has
a high impedance. The pin will be automatically driven if the
focus control loop is switched on.
139
9.14
Laser Low Power (LLP).
The LLP output can be used by write-able systems to switch
the laser back to read power when the light spot goes off-
track while writing discs. To prevent that the neighbour tracks
are damaged when the spot goes off-track the laser has to be
switched very fast to the safe read power. The laser is not
switched off (like LDON does), so the system can carry on
reading.
The tracking (radial) and focus error signals are used to
disable the laser write power. This is done through the LLPn,
active low Laser Low Power, signal. Note that LLPn is a servo
output, which is inverted before it is output via the LLP pin, so
the LLP pin is active high.
So, if any of the following conditions is true, the laser write
power is disabled by the MACE2 servo.
–
Off Track, more than a quarter off a track away from the
correct one
–
ORD, radial error signal too large. Larger than the given
setpoint, which should be chosen at a critical write failure
level. An adjustable band pass filter first processes the
radial error signal.
–
OFD, focus error signal too large. Larger than the given
setpoint, which should also be chosen with care. An
adjustable band pass filter also first processes the focus
error signal. All settings of the focus and radial part are
independent.
–
OTR, prot stat flag which becomes active if ORD
becomes active during an actual laser write ( LWR)
action. This flag is reset only by a status read ( RSTAT)
command. So until then LLPN stays active.
–
OFO, prot stat flag that becomes active if OFD becomes
active during an actual laser write action. Same idea as
OTR.
This error detection circuit can be switched off (apart from the
Off Track detection) by raising the setpoint levels to its
maximum value.
9.15
The OPC.
The OPC block in Mace2 is used for the following functions:
During write actions, it stores Pw samples, which can be
evaluated by the microprocessor.
During OPC read actions, it stores A1, A2 and CALF
samples, which are used for calculating the asymmetry
and the modulation index.
The OPC block is used for EFM detection.
During reading of a disc, it stores A1 and CALF samples,
which can be monitored.
Although the OPC block is used for multiple functions, it got
it's name from the OPC procedure, which is it's main task.
The OPC (Optimum Power Calibration) procedure is used in
CD-R/CD-RW/DVD-RAM applications. It is used to
"calibrate" the laser write power in writable systems.
It reads in 3 analogue signals from an analogue pre-
processor like AEGER-2 (A1, A2, and CALF) and the actual
write power (Pw) from the laser controller and feeds an
analogue output signal Alpha0 back to AEGER-2. A1, A2 and
CALF represent the max, min and average value of the EFM
signal respectively. Alpha0 controls the laser write power. All
analogue signals are converted to an 8 bit digital signal.
Conversion frequency at 16.9MHz base clock is 88kHz (each
channel).
Figure 9-4 Definition of the A1, A2 and CALF signals.
9.16
Definition of terms.
The asymmetry ( and modulation index m of the EFM signal
are calculated from the analogue inputs:
9.17
Rough description of the OPC procedure
Basically the OPC procedure tries to find out the optimum
laser power to be used on a specific disc. The OPC
procedure uses about 15 ATIP frames. These frames are
located in the "PCA" area. This is a special part of the disc
used only for power calibration. The drive first checks
whether there are 15 frames "empty" in the PCA. Next the
OPC is performed in these 15 frames.
The OPC operation consists of two stages: A "write" and a
"read" stage. First 15 ATIP frames are written (during which
the OPC block stores Pw samples), and then the same 15
ATIP frames are read back again, (during which the OPC
block stores A1, A2 and CALF samples). During the write
stage, random EFMis written in a test area located on the
inner side of the disc. During this recording the write power is
increased stepwise from a low to a high power level.
Figure 9-5 Figure 5: OPC write profile.
First during 3 ATIP frames the power is increased in rather
big steps (rough OPC). During this action Pw samples are
stored into memory. During the rough OPC, the OPC makes
7 steps per ATIP frame. This gives 21 samples into the OPC
memory. From these samples, the microprocessor can
calculate what's roughly the best alpha0 setting for this
typical disc.
After 2 frames of calculations, another 10 ATIP frames are
written using smaller steps (fine OPC) around the alpha0
setting, which gave the best result during the rough OPC.
The second stage of the OPC procedure is the "read" phase
A1- A2
A1+A2
m
A1+ A2
A1+CALF
140
in which the pattern recorded in the previous stage is read
back.
During this read phase the OPC block stores A1, A2 and
CALF samples from exact the same location where during
the OPC write phase the Pw samples where stored. The
samples for A1, A2, CALF and Pw are listed side by side into
memory. After the read back phase the processor calculates
at which setting of alpha0 the least jitter is encountered.
This setting will be used to write the disc with.
9.18
The OPC top level.
The OPC block as a whole has 5 possible modes:
–
Recording mode: This can be either OPC writing (writing
EFM test patterns to disc and Alpha0 stepping) or
standard write mode (i.e. alpha0 is constant).
–
OPC reading: Reading back OPC test patterns from disc.
–
Normal read mode: detects the presence of EFM.
–
DVD read mode: used for DVD-RAM experiments.
–
EFMD only mode: no data being written to the AUX RAM,
but the EFM detector and the PW monitor still running.
Contents of the QUX RAM remain unchanged.
All actions in the OPC hardware are synchronised to the
ATIP frame sync, which can be either generated internally or
received from the encoder/decoder during writing. The
microprocessor writes data asynchronously to the OPC
hardware. The OPC block synchronises this data to the sync
either internally generated, or obtained from CDR60.
9.19
The Analogue to Digital converter.
The analogue to digital converter of the OPC is shared with
the ADC required by the PCS.
9.20
The digital input filters.
The combined ADC for the OPC and the PCS delivers a
multiplexed stream of 8 bit words. A sequential low-pass filter
filters this multiplexed stream. The 4 analogue multiplexed
input signals from the OPC (A1, A2, CALF and Pw) are
filtered by 4 identical LPF's. (One for each channel). This
filters can be adapted to various speeds by changing the
subsampling factor (i.e. the sample rate of the filter), the cut
off frequency scales with the sample frequency. The sample
frequency of the filter is equivalent to the OPC timebase
frequency, which is the output of the pre-scaler.
9.21
OPC demux.
The OPC demux block demultiplexes the stream supplied by
the LPF. This same block also changes the format of the
digital data from signed (representation inside the filter) to
unsigned (representation in the rest of the OPC). The
demultiplexing process introduces one baseclock delay.
9.22
The sequencer.
The OPC sequencer controls the timing of all the hardware
actions in the OPC hardware. It generates the OPC timebase
and locks it to the ATIP pulse. A programmable pre-scaler
generates the OPC timebase.
Dividing the ADC sample clock by 8 derives the input clock of
this pre-scaler. (= Identical to the sample rate per channel).
The pre-scaler can divide this clock by a number in the range
from 1-16. The division factor can be programmed via the
OPC ctrl register. The OPC timebase is locked to the
selected ATIP source, which can be either an external
ATI P sync or an internally generated sync. (Programmable).
The OPC timebase clock supplies the sample frequency for
the input LPF's, the OPC pre-processor and the EFM
detector.
The sequencer controls the timing of all the hardware actions
in the OPC hardware. The sequencer is started either by an
external ATIP sync or an internally generated sync
(programmable).
All data acquisition and alpha0 settings change synchronised
to this sync signal (rising edge of the ATIP sync). An
exception on this is the switching of the ATIP input itself,
which is immediately changed whenever the bit in the OPC
ctrl register is changed. When this was latched on the ATIP
source itself, it would create a deadlock when there was no
ATIPin from CDR-60.
9.23
The Pw monitor
The Pw monitor is used during the "OPC write" and normal
write mode. The comparator compares the incoming Pw with
two programmable thresholds PW MAX and PW MIN. Both
these thresholds can be programmed via the OPC PW
register, which contains 4 bits for each threshold.
Internally both 4-bit thresholds PW MAX and PW MIN are
extended to 8 bit values. The compare function performs an
unsigned compare.
The first threshold is used to detect fingerprints. The second
is used to check the correct operation of the laser driver.
Figure 9-6 OPC PW monitor.
141
DVDALAS2plus Advanced Analogue
DVD Signal Processor and Laser Supply
TZA1033
FEATURES
Operates with DVD-ROM,DVD-RAM, DVD+RW,
DVD-RW, CD-ROM and CD-RW media
Operates up to 64x CD-ROM and 8x DVD-ROM
Support for Dual Light pen DVD systems (DVD/CDRW)
DVD-RAM (C) playback capability
DVD-RAM Land-Groove servo polarity switching
3 different tracking servo strategies:
Conventional 3 beam tracking for CD
Differential Phase Detection (DPD) for DVD-ROM
(including option to emulate traditional drop out
detection; drop out concealment)
Advanced Push Pull with dynamic offset compensation
for DVD-RAM (recorded and unrecorded areas)
Radial error signal for fast track counting (FTC)
2 different strategies to read header data:
- Full bandwidth Push Pull signal
- Left and Right side signal
Universal photo diode IC interface using internal
conversion resistors and offset cancelation
Flexible adaption to different light pen configurations
Input buffer amplifiers with low-pass filtering
RF data amplifier with wide (programmable) bandwidth
equivalent to 64xCD / 8x DVD when using equaliser
function
Built-in equalisers cover CAV inner-outer disc range at
highest speed.
Programmable RF gain for DVD-ROM / DVD-RAM /
CD-RW / CDROM applications(approx 50dB range)
Balanced RF-Data signal transfer (single ended still
supported)
Fully automatic laser control including stabilization and
an ON/OFF switch, plus a separate supplypin for power
efficiency
Automatic monitor diode polarity selection.
3 and 5 V compatible digital interface
Enhanced signal conditioning in DPD circuit for optimal
tracking performance under noisy conditions.
GENERAL DESCRIPTION
The DVDALAS2 is an analogue preprocessor and laser
supply circuit for DVD / CD read only players. The device
contains data amplifiers, several options for radial tracking
and focus control. The preamplifier forms a versatile,
programmable interface between dual, voltage output
CD/DVD mechanisms to Philips' digital signal processor
family for CD and DVD (Gecko, HDR65, Iguano, etc..)
The device contains serval options for radial tracking:
Conventional 3 beam tracking for CD;
Differential Phase Detector (DPD) for DVD;
Push Pull for DVD-RAM with flexible L/R weighing to
compensate dynamic offsets e.g. beamlanding offset.
A radial error signal is generated to allow fast track count
(FTC) during track jumps.
The dynamic range of this preamp/processor combination
can be optimized for the LF servo and RF data paths. The
gain in both channels can be programmed separately. This
will guarantee an optimal playability for all kind of discs.
Several functions are included to allow playback of
DVD-RAM(C) discs:
The header information can be read via the data output
path (RF)
DC offset compensation techniques provide a fast
settling after disc errors.
Radial servo Polarity switch for land/groove
two settings for focus offset correction for land and
groove
The device can accommodate astigmatic, single foucault
and double foucault detectors and can be used with P-type
lasers with N- or P-sub monitor diodes. After an initial
adjustment, the circuit will maintain control over the laser
diode current. With an on-chip reference voltage
generator, a constant and stabilized output power is
ensured independent of ageing. A separate power supply
connection allows the internal power dissipation to be
reduced by connecting a low voltage supply.
ORDERING INFORMATION
TYPE
NUMBER
PACKAGE
NAME
DESCRIPTION
VERSION
TZA1023
LQFP64
Plastic low profile QFP64; body 10 x 10 x 1.4 mm
SOT314-2
142
DVDALAS2plus Advanced Analogue DVD
Signal Processor and Laser Supply
TZA1033
DEVICE BLOCK DIAGRAM
Laser#1
Laser#2
Diode
Ampli?ers
Processing
DPD
Land/Groove
Swap
Dual Laser
Supply
Serial
I/Face
Push Pull
3 Beam
Tracking
Var Gain
Balanced
HF
Servo
Signals
OPU
Interface
Control
Interface
DVD
CD
D1-D6
MUX
FTC
Land
V & I references
Rext
Header
Offset
Data & header
Mute
compensations
MUX
FTC comp.
143
DVDALAS2plus Advanced Analogue DVD
Signal Processor and Laser Supply
TZA1033
PINNING
Name
Pin
Description
CD-A
1
CD pick up input A
CD-B
2
CD pick up input B
CD-C
3
CD pick up input C
CD-D
4
CD pick up input D
CD-REF
5
CD pick up reference voltage
CD-E
6
CD pick up input E
CD-F
7
CD pick up input F
DVD-A
12
DVD pick up input A
DVD-B
13
DVD pick up input B
DVD-C
14
DVD pick up input C
DVD-D
15
DVD pick up input D
DVD-ref
16
DVD pick up reference voltage
O-A
48
Servo current output for Focus-A
O-B
47
Servo current output for Focus-B
O-C
46
Servo current output for Focus-C
O-D
45
Servo current output for Focus-D
O-central
40
Testpin for offset cancelation
TD2
37
Internally connected
FTC-ref
36
Servo output voltage reference input
S1
42
Servo current output for radial tracking
S2
41
Servo current output for radial tracking
TD1
35
Internally connected
FTC
33
Fast track count voltage output
RFP
55
pos. RF output signal
RFN
56
neg. RF output signal
RF-REF
54
DC Reference signal input RF
LPF-DPD1
38
DPD Low pass bandwidth capacitor, channel pos
LPF-DPD2
39
DPD Low passbandwidth capacitor, channel neg
Land
20
Land/groove toggle input
HEADER
21
Header detector window input
CD-MI
62
CD laser monitor input
DVD-MI
10
DVD laser monitor input
CD-LO
61
CD laser output
DVD-LO
64
DVD laser output
COP
27
Positive inputFTC comparator
COM
28
Inverting inputFTC comparator
COO
29
FTC comparator output
144
DVDALAS2plus Advanced Analogue DVD
Signal Processor and Laser Supply
TZA1033
SIDA
23
Serial host interface data input
SICL
24
Serial host interface clock input
SILD
25
Serial host interface load
VDDA1
8
Analog Supply voltage 1 (RF input)
VDDA2
59
Analog Supply voltage 2 (RF internal)
VDDA3
53
Analog Supply voltage 3 (RF output stage)
VDDA4
44
Analog Supply voltage 4 (Servo)
VDDD5
30
Digital Supply voltage (5V dig core)
VDDD3
22
Digital Supply voltage (3V I/O pads and FTC comp.)
VDDL
63
Supply voltage for laser
VSSA1
9
Analog Ground 1
VSSA2
58
Analog Ground 2
VSSA3
57
Analog Ground 3
VSSA4
43
Analog Ground 4
VSSD
26
Digital ground
Rext
60
Reference current input (Connect 12k1 to VSSA4)
STB
31
Standby input
TM
19
Testmode input
TDO
34
test data out
Name
Pin
Description
145
DVDALAS2plus Advanced Analogue DVD
Signal Processor and Laser Supply
TZA1033
PINNING
Fig.2 Pin configuration.
handbook, full pagewidth
XXX
MXXxxx
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
48
47
46
45
44
43
42
41
40
39
38
37
36
35
34
33
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
64
63
62
61
60
59
58
57
56
55
54
53
52
51
50
49
NEW
CD-A
CD-C
CD-B
CD-D
CD-REF
CD-E
CD-F
VDDA1
VSSA1
DVD-MI
-
DVD-A
DVD-B
DVD-C
DVD-D
DVD-REF
TM
VSSD
COP
COM
COO
VDDD5
STB
-
LAND
HEADER
VDDD3
SIDA
SICL
SILD
-
-
FTC
TDO
TD1
FTC-REF
TD2
LPF-DPD1
LPF-DPD2
O-CENTRAL
S2
S1
VSSA4
VDDA4
O-D
O-C
O-B
O-A
VDDA3
VSSA3
CD-LO
R-EXT
VDDA2
VSSA2
DVD-LO
RFN
RFP
RF-REF
VDDL
CD-MI
-
-
-
-
TZA1023
146
BA6856FP: 3 PHASE MOTOR DRIVER FOR DVD PLAYERS
Features
/3-phase, full-wave pseudo linear driving system
built-in power save
built-in therma shut down circuit
built-in current limit circuit
built in Hall bias circuit
built in FG-output (3-phase parallel output)
with switching function of regular/ reverse rotations
blockdiagram
-
+
REV
PS
-
+
H BIAS
CONTROL
GAIN
DRIVER
+
-
+
-
+
-
+
-
+
-
+
-
MT1
29
MT2
30
NC1
NC2
NC3
NC4
NC5
PS
23
REV
24
RNF
28
VCC
25
VH
19
VM1
26
VM2
27
A1
A2
A3
CNF
20
EC
22
21
ECR
FG1
18
FG2
17
FG3
16
GND
8
H1+
H1-
H2+
H2-
H3+
H3-
BA6856FB
3
5
7
1
2
9
10
4
6
11
12
15
13
14
147
pin description
PIN No
PIN NAME
DESCRIPTION
1
N.C.
Not connected
2
N.C.
Not connected
3
A3
Output 3 for motor
4
N.C.
Not connected
5
A2
Output 2 for motor
6
N.C.
Not connected
7
A1
Output 1 for motor
8
GND
Ground
9
H1
+
Hall input Amp1. positive input
10
H1
-
Hall input Amp1. negative input
11
H2
+
Hall input Amp2. positive input
12
H2
-
Hall input Amp2. negative input
13
H3
+
Hall input Amp3. positive input
14
H3
-
Hall input Amp3. negative input
15
N.C.
Not connected
16
FG3
FG3 signal output terminal
17
FG2
FG2 signal output terminal
18
FG1
FG1 signal output terminal
19
VH
Hall Bias
20
CNF
Capacitor connection pin for phase compensation
21
ECR
Torque control standard voltage input terminal
22
EC
Torque control voltage input terminal
23
PS
POWER SAVE switch
24
REV
Reverse terminal
25
VCC
Power supply for sinal division
26
VM2
Power supply 2 for driver
27
VM1
Power supply 2 for driver
28
RNF
Power supply for driver division
FIN
FIN
GND
Terminal lay-out
VM2
VCC
REV
PS
EC
ECR
CNF
VH
FG1
FG2
N.C.
A2
A1
GND
H1+
H1-
H2+
H2-
RNF
VM1
FG3
N.C.
H3+
H3-
N.C.
N.C.
N.C.
A3
148
DSP for CD and DVD-ROM systems
SAA7335
FEATURES
Compatibility with CD-I, CD-ROM, MPEG-video
DVD-ROM and DVD-video applications
Designed for very high playback speeds
Typical CD-ROM operation up to n = 12, DVD-ROM to
n = 1.9, maximum rates (tbf)
Matched filtering, quad-pass error correction
(C1-C2-C1-C2), overspeed audio playback function
included (up to 3 kbytes buffer)
Lock-to-disc playback, Constant Angular Velocity
(CAV), pseudo-Constant Linear Velocity (CLV) and CLV
motor control loops
Interface to 32 kbytes SRAM for DVD error correction
and de-interleave
Sub-code/ header processing for DVD and CD formats
Programmable HF equalizer
In DVD mode it is still compatible with Philips block
decoders
Sub-CPU interface can be parallel or fast I2C-bus
On-chip clock multiplier.
GENERAL DESCRIPTION
This device is a high-end combined Compact Disc (CD)
and Digital Versatile Disc (DVD) compatible decoding
device. The device operates with an external 32 kbytes
S-RAM memory for de-interleaving operations. The device
provides quad-pass error correction for CD-ROM
applications (C1-C2-C1-C2) and operates in lock-to-disk,
CAV, pseudo CLV and CLV modes.
In DVD modes double-pass C1-C2 error correction is used
which is capable of correcting up to 5 C1 frame errors and
16 C2 frame errors.
The SAA7335 contains all the functions required to
decode an EFM or EFM+ HF signal directly from the laser
pre-amplifier, including analog front-end, PLL data
recovery, demodulation and error correction. The spindle
motor interface provides both motor control signals from
the demodulator and, in addition, contains a tachometer
loop that accepts tachometer pulses from the motor unit.
The SAA7335 has two independent microcontroller
interfaces. The first is a serial I2C-bus and the second is a
standard 8-bit multiplexed parallel interface. Both of these
interfaces provide access to a total of 32 x 8-bit registers
for control and status.
This data sheet contains an descriptive overview of the
device together with electrical and timing characteristics.
For a detailed description of the device refer to the user
guide “SAU/UM96018”.
Supply of this CD/DVD IC does not convey an implied
license under any patent right to use this IC in any CD or
DVD application.
QUICK REFERENCE DATA
SYMBOL
PARAMETER
MIN.
TYP.
MAX.
UNIT
VDDD
digital supply voltage
4.5
5.0
5.5
V
IDDD
digital supply current
70
300
mA
VDDA
analog supply voltage
4.5
5.0
5.5
V
IDDA
analog supply current
70
300
mA
fxtal
crystal input frequency
4
25
tbt
MHz
Tamb
operating ambient temperature
-20
+70
ºC
Tstg
storage temperature
-55
+125
ºC
−
−
−
−
149
DSP for CD and DVD-ROM systems
SAA7335
ORDERING INFORMATION
BLOCK DIAGRAM
TYPE
NUMBER
PACKAGE
NAME
DESCRIPTION
VERSION
SAA7335GP
LQFP100
plastic low profile quad flat package; 100 leads; body 14 x 14 x 1.4 mm
SOT407-1
Fig.1 Simplified block diagram.
handbook, full pagewidth
MGK242
DEMODULATOR
EFM/EFM
PLL BIT
DETECTOR
SRAM
32 KBYTES
SPINDLE
MOTOR CONTROL
motor control
SAA7335
CLOCK
GENERATOR
SUB-CPU
INTERFACE
ADC
HF input
clock input
DECODER
block
decoder
output
I2S-BUS
OUTPUT
INTERFACE
150
DSP for CD and DVD-ROM systems
SAA7335
PINNING
SYMBOL
PIN
TYPE
DESCRIPTION
VSSA1
1
supply
analog ground 1
Iref
2
I
analog current reference input for ADC
REFLo
3
I
analog low reference input for ADC
REFHi
4
I
analog high reference input for ADC
VREF
5
I
analog negative input
HFIN
6
I
analog positive input
VSSA2
7
supply
analog ground 2
AGCOUT
8
O
analog test pin output
VDDA2
9
supply
analog supply voltage 2
VDDD1
10
supply
digital supply voltage 1
VSSD1
11
supply
digital ground 1
OTD
12
I
off track detect input
MOTO1
13
O
3-state motor control output
n.c.
14
−
not connected, reserved
MOTO2/T3
15
I/O
motor control output/tachometer 3 input
n.c.
16
−
not connected, reserved
T1
17
I
tachometer 1 input
T2
18
I
tachometer 2 input
VDDD2
19
supply
digital supply voltage 2
VSSD2
20
supply
digital ground 2
TEST1
21
I
test input 1
TEST2
22
I
test input 2
POR
23
I
power-on reset input
MUXSWICH
24
I
use clock multiplier input
n.c.
25
−
not connected, reserved
CL1
26
O
divided clock output
BCAIN
27
I
BCA input
SDA
28
I/O
sub-CPU I2C-bus serial data input/output
SCL
29
I
sub-CPU I2C-bus serial clock input
INT
30
O
sub-CPU interrupt output (open-drain)
VDDD3
31
supply
digital supply voltage 3
VSSD3
32
supply
digital ground 3
da7
33
I/O
sub-CPU data bus bit 7 input/output (parallel)
da6
34
I/O
sub-CPU data bus bit 6 input/output (parallel)
da5
35
I/O
sub-CPU data bus bit 5 input/output (parallel)
n.c.
36
−
not connected, reserved
da4
37
I/O
sub-CPU data bus bit 4 input/output (parallel)
n.c.
38
−
not connected, reserved
da3
39
I/O
sub-CPU data bus bit 3 input/output (parallel)
da2
40
I/O
sub-CPU data bus bit 2 input/output (parallel)
151
DSP for CD and DVD-ROM systems
SAA7335
da1
41
I/O
sub-CPU data bus bit 1 input/output (parallel)
n.c.
42
−
not connected, reserved
da0
43
I/O
sub-CPU data bus bit 0 input/output (parallel)
VDDD4
44
supply
digital supply voltage 4
VSSD4
45
supply
digital ground 4
WRi
46
I
sub-CPU write enable input (active LOW)
RDi
47
I
sub-CPU read enable input (active LOW)
ALE
48
I
sub-CPU address latch enable input
CSi
49
I
sub-CPU chip select input (active HIGH)
STOPCLOCK
50
O
stop clock output
n.c.
51
−
not connected, reserved
V4
52
O
serial subcode output (for CD)
EBUOUT
53
O
digital audio output
SYNC
54
O
I2S-bus sector sync output
FLAG
55
O
I2S-bus correction ?ag output
DATA
56
O
I2S-bus serial data output
BCLK
57
I/O
I2S-bus bit serial clock input/output
WCLK
58
I/O
I2S-bus word clock input/output
VDDD5
59
supply
digital supply voltage 5
VSSD5
60
supply
digital ground 5
RAMRW
61
O
RAM read/write control output
n.c.
62
−
not connected, reserved
RAMDA7
63
I/O
RAM data bus bit 7 input/output
RAMDA6
64
I/O
RAM data bus bit 6 input/output
RAMDA5
65
I/O
RAM data bus bit 5 input/output
RAMDA4
66
I/O
RAM data bus bit 4 input/output
RAMDA3
67
I/O
RAM data bus bit 3 input/output
RAMDA2
68
I/O
RAM data bus bit 2 input/output
n.c.
69
−
not connected, reserved
RAMDA1
70
I/O
RAM data bus bit 1 input/output
RAMDA0
71
I/O
RAM data bus bit 0 input/output
VDDD6
72
supply
digital supply voltage 6
VSSD6
73
supply
digital ground 6
RAMAD0
74
O
RAM address bit 0 output
RAMAD1
75
O
RAM address bit 1 output
RAMAD2
76
O
RAM address bit 2 output
RAMAD3
77
O
RAM address bit 3 output
RAMAD4
78
O
RAM address bit 4 output
RAMAD5
79
O
RAM address bit 5 output
RAMAD6
80
O
RAM address bit 6 output
VDDD7
81
supply
digital supply voltage 7
SYMBOL
PIN
TYPE
DESCRIPTION
152
DSP for CD and DVD-ROM systems
SAA7335
VSSD7
82
supply
digital ground 7
RAMAD7
83
O
RAM address bit 7 output
RAMAD8
84
O
RAM address bit 8 output
RAMAD9
85
O
RAM address bit 9 output
n.c.
86
−
not connected, reserved
RAMAD10
87
O
RAM address bit 10 output
RAMAD11
88
O
RAM address bit 11 output
RAMAD12
89
O
RAM address bit 12 output
RAMAD13
90
O
RAM address bit 13 output
RAMAD14
91
O
RAM address bit 14 output
VDDD8
92
supply
digital supply voltage 8
VSSD8
93
supply
digital ground 8
CRIN
94
I
analog crystal input
CROUT
95
O
analog crystal output
CFLG
96
O
correction statistics output
MEAS1
97
O
front-end telemetry output
VDDD9
98
supply
digital supply voltage 9
VSSD9
99
supply
digital ground 9
VDDA1
100
supply
analog supply voltage 1
SYMBOL
PIN
TYPE
DESCRIPTION
153
DSP for CD and DVD-ROM systems
SAA7335
Fig.2 Pin configuration.
handbook, full pagewidth
75
74
73
72
71
70
69
68
67
66
65
64
63
62
61
60
59
58
57
56
55
54
53
52
51
80
79
78
77
76
RAMAD1
RAMAD0
VSSD6
VDDD6
RAMDA0
RAMDA1
n.c.
RAMDA2
RAMDA3
RAMDA4
RAMDA5
RAMDA6
RAMDA7
n.c.
RAMRW
VSSD5
VDDD5
WCLK
BCLK
DATA
FLAG
SYNC
EBUOUT
V4
n.c.
MGK241
VSSA1
Iref
REFLo
REFHi
VREF
HFIN
VSSA2
AGCOUT
VDDA2
VDDD1
VSSD1
OTD
MOTO1
n.c.
MOTO2/T3
n.c.
T1
T2
VDDD2
VSSD2
TEST1
TEST2
POR
MUXSWICH
n.c.
RAMAD6
RAMAD5
RAMAD4
RAMAD3
RAMAD2
VDDA1
VSSD9
VDDD9
MEAS1
CFLG
CROUT
CRIN
VSSD8
VDDD8
RAMAD14
RAMAD13
RAMAD12
RAMAD11
RAMAD10
n.c.
RAMAD9
RAMAD8
RAMAD7
VSSD7
VDDD7
VDDD3
VSSD3
da7
da6
da5
n.c.
da4
n.c.
da3
da2
da1
n.c.
da0
VDDD4
VSSD4
WRi
RDi
ALE
CSi
STOPCLOCK
CL1
BCAIN
SDA
SCL
INT
30
29
28
27
26
25
24
23
22
21
20
19
18
17
16
15
14
13
12
11
10
9
8
7
6
5
4
3
2
1
100
99
98
97
96
95
94
93
92
91
90
89
88
87
86
85
84
83
82
81
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
SAA7335
154
DSP for CD and DVD-ROM systems
SAA7335
FUNCTIONAL DESCRIPTION
Analog front-end
This block converts the HF input to the digital domain using
an 8-bit ADC proceeded by an AGC circuit to obtain the
optimum performance from the convertor. This block is
clocked by ADCCLK which is set by the external crystal
frequency plus a flexible clock multiplier and divider block.
PLL and bit detector
This subsystem recovers the data from the channel
stream. The block corrects asymmetry, performs noise
filtering and equalisation and finally recovers the bit clock
and data from the channel using a digital PLL.
The equalizer and the data slicer are programmable.
Digital logic
All the digital system logic is clocked from the master ADC
clock (ADCCLK) described above.
Advanced bit detector
The advanced bit detector offers improved data recovery
for multi-layer discs and contains two extra detection
circuits to increase the margins in the bit recovery block:
1.
Adaptive slicer: adds a second stage slicer with higher
bandwidth
2.
Run length 2 push-back: all T2 run lengths are pushed
back to T3, thereby automatically determining the
erroneous edge and shifting the transitions on that
edge.
Demodulator
FRAME SYNC PROTECTION CD MODE
This circuit detects the frame synchronization signals.
Two synchronization counters are used in the SAA7335:
1.
The coincidence counter: this is used to detect the
coincidence of successive syncs. It generates a sync
coincidence signal if 2 syncs are 588 ±1 EFM clocks
apart.
2.
The main counter: this is used to partition the EFM
signal into 17-bit words. This counter is reset when:
a) A sync coincidence is generated
b) A sync is found within ±6 EFM clocks of its
expected position.
The sync coincidence signal is also used to generate the
lock signal which will go active HIGH when 1 sync
coincidence is found. It will reset to LOW when, during
61 consecutive frames, no sync coincidence is found.
FRAME SYNC PROTECTION DVD MODE
This circuit detects the frame synchronization signals.
Two synchronization counters are used in the SAA7335:
1.
The coincidence counter: this is used to detect the
coincidence of successive syncs. It generates a sync
coincidence signal if 2 syncs are 1488 ±3 EFM+
clocks apart.
2.
The main counter: this is used to partition the EFM+
signal into 16-bit words. This counter is reset when:
a) A sync coincidence is generated
b) A sync is found within ±10 EFM+ clocks of its
expected position.
The sync coincidence signal is also used to generate the
lock signal which will go active HIGH when 1 sync
coincidence is found. It will reset to LOW when, during
61 consecutive frames, no sync coincidence is found.
EFM/EFM+ demodulation
The 14-bit EFM (16-bit EFM+) data and subcode words
are decoded into 8-bit symbols.
155
DSP for CD and DVD-ROM systems
SAA7335
Microcontroller interface
The SAA7335 has two microcontroller interfaces, one
serial I2C-bus and one parallel (8051 microcontroller
compatible).
The two communication modes may be operated at the
same time, the modes are described below:
1.
Parallel mode: protocol compatible with 8052
multiplexed bus:
a) da0 to da7 = address/data bus
b) ALE = Address Latch Enable, latches the address
information on the bus
c) WRi = active LOW write signal for write to
SAA7335
d) RDi = active LOW read signal for read from
SAA7335
e) CSi = active HIGH Chip Select signal (this signal
gates the RDi and WRi signals).
2.
I2C-bus mode: I2C-bus protocol where SAA7335
behaves as slave device where:
a) SDA = I2C-bus data
b) SCL = I2C-bus clock
c) I2C-bus slave address (write mode) = 3EH
d) I2C-bus slave address (read mode) = 3FH
e) Maximum data transfer rate = 400 kbits/s.
MICROCONTROLLER INTERFACE (I2C-BUS MODE)
Bytes are transferred over the interface in single bytes of
which there are two types; write data commands and read
data commands.
The sequence for a write data command (1 data byte) is as
follows:
Send START condition
Send address 3EH (write)
Write command address byte
Write data byte
Send STOP condition.
The sequence for a read data command (that reads 1 data
byte) is as follows:
Send START condition
Send address 3EH (write)
Write status address byte
Send STOP condition
Send START condition
Send address 3FH (read)
Read data byte
Send STOP condition.
READING AND WRITING DATA TO THE SAA7335
The SAA7335 has 32 x 8-bit configuration and status
registers as shown in Table 1. Not all locations are
currently defined and some remain reserved for future
upgrades. These can be written to or read from via the
microcontroller interface using either the serial or parallel
control bus.
156
Am29LV160BT/Am29LV160BB
16 Megabit (2 M x 8-Bit/1 M x 16-Bit)
CMOS 3.0 Volt-only Sector Erase Flash Memory
DISTINCTIVE CHARACTERISTICS
Single power supply operation
— Full voltage range: 2.7 to 3.6 volt read and write
operations for battery-powered applications
— Regulated voltage range: 3.0 to 3.6 volt read
and write operations and for compatibility with
high performance 3.3 volt microprocessors
Manufactured on 0.35 m process technology
Supports Common Flash Memory Interface
(CFI)
High performance
— Full voltage range: access times as fast as 90 ns
— Regulated voltage range: access times as fast
as 80 ns
Ultra low power consumption (typical values at
5 MHz)
— 200 nA Automatic Sleep mode current
— 200 nA standby mode current
— 10 mA read current
— 20 mA program/erase current
Flexible sector architecture
— One 16 Kbyte, two 8 Kbyte, one 32 Kbyte, and
thirty-one 64 Kbyte sectors (byte mode)
— One 8 Kword, two 4 Kword, one 16 Kword, and
thirty-one 32 Kword sectors (word mode)
— Supports full chip erase
— Sector Protection features:
A hardware method of locking a sector to
prevent any program or erase operations within
that sector
Sectors can be locked in-system or via
programming equipment
Temporary Sector Unprotect feature allows code
changes in previously locked sectors
Top or bottom boot block configurations
available
Embedded Algorithms
— Embedded Erase algorithm automatically
preprograms and erases the entire chip or any
combination of designated sectors
— Embedded Program algorithm automatically
writes and verifies data at specified addresses
Minimum 100,000 write cycle guarantee per
sector
Package option
— 48-ball FBGA
— 48-ball BGA
— 48-pin TSOP
— 44-pin SO
Compatibility with JEDEC standards
— Pinout and software compatible with single-
power supply Flash
— Superior inadvertent write protection
Data# Polling and toggle bits
— Provides a software method of detecting
program or erase operation completion
Ready/Busy# pin (RY/BY#)
— Provides a hardware method of detecting
program or erase cycle completion (not
available on 44-pin SO)
Erase Suspend/Erase Resume
— Suspends an erase operation to read data from,
or program data to, a sector that is not being
erased, then resumes the erase operation
Hardware reset pin (RESET#)
— Hardware method to reset the device to reading
array data
157
GENERAL DESCRIPTION
The Am29LV160B is a 16 Mbit, 3.0 Volt-only Flash
memory organized as 2,097,152 bytes or 1,048,576
words. The device is offered in 48-ball FBGA, 48-ball
BGA, 44-pin SO, and 48-pin TSOP packages. The
word-wide data (x16) appears on DQ15–DQ0; the byte-
wide (x8) data appears on DQ7–DQ0. This device is
designed to be programmed in-system with the standard
system 3.0 volt VCC supply. A 12.0 V VPP or 5.0 VCC are
not required for write or erase operations. The device can
also be programmed in standard EPROM programmers.
The device offers access times of 80, 90, and 120 ns,
allowing high speed microprocessors to operate
without wait states. To eliminate bus contention the
device has separate chip enable (CE#), write enable
(WE#) and output enable (OE#) controls.
The device requires only a single 3.0 volt power sup-
ply for both read and write functions. Internally gener-
ated and regulated voltages are provided for the
program and erase operations.
The Am29LV160B is entirely command set compatible
with the JEDEC single-power-supply Flash stan-
dard. Commands are written to the command register
using standard microprocessor write timings. Register
contents serve as input to an internal state-machine
that controls the erase and programming circuitry.
Write cycles also internally latch addresses and data
needed for the programming and erase operations.
Reading data out of the device is similar to reading
from other Flash or EPROM devices.
Device programming occurs by executing the program
command sequence. This initiates the Embedded
Program algorithm—an internal algorithm that auto-
matically times the program pulse widths and verifies
proper cell margin. The Unlock Bypass mode facili-
tates faster programming times by requiring only two
write cycles to program data instead of four.
Device erasure occurs by executing the erase com-
mand sequence. This initiates the Embedded Erase
algorithm—an internal algorithm that automatically pre-
programs the array (if it is not already programmed) be-
fore executing the erase operation. During erase, the
device automatically times the erase pulse widths and
verifies proper cell margin.
The host system can detect whether a program or
erase operation is complete by observing the RY/BY#
pin, or by reading the DQ7 (Data# Polling) and DQ6
(toggle) status bits. After a program or erase cycle
has been completed, the device is ready to read array
data or accept another command.
The sector erase architecture allows memory sectors
to be erased and reprogrammed without affecting the
data contents of other sectors. The device is fully
erased when shipped from the factory.
Hardware data protection measures include a low VCC
detector that automatically inhibits write operations dur-
ing power transitions. The hardware sector protection
feature disables both program and erase operations in
any combination of the sectors of memory. This can be
achieved in-system or via programming equipment.
The Erase Suspend/Erase Resume feature enables
the user to put erase on hold for any period of time to
read data from, or program data to, any sector that is
not selected for erasure. True background erase can
thus be achieved.
The hardware RESET# pin terminates any operation
in progress and resets the internal state machine to
reading array data. The RESET# pin may be tied to the
system reset circuitry. A system reset would thus also
reset the device, enabling the system microprocessor
to read the boot-up firmware from the Flash memory.
The device offers two power-saving features. When
addresses have been stable for a specified amount of
time, the device enters the automatic sleep mode.
The system can also place the device into the standby
mode. Power consumption is greatly reduced in both
these modes.
AMD's Flash technology combines years of Flash memory
manufacturing experience to produce the highest levels of
quality, reliability and cost effectiveness. The device electri-
cally erases all bits within a sector simultaneously
via Fowler-Nordheim tunneling. The data is programmed
using hot electron injection.
158
PRODUCT SELECTOR GUIDE
Note: See “AC Characteristics” for full specifications.
BLOCK DIAGRAM
Family Part Number
Am29LV160B
Ordering Part Number:
VCC =3.0–3.6 V
80R
V
CC = 2.7–3.6 V
90
120
Max access time, ns (tACC)
80
90
120
Max CE# access time, ns (tCE)
80
90
120
Max OE# access time, ns (tOE)
30
35
50
Input/Output
Buffers
X-Decoder
Y-Decoder
Chip Enable
Output Enable
Logic
Erase Voltage
Generator
PGM Voltage
Generator
Timer
VCC Detector
State
Control
Command
Register
VCC
VSS
WE#
BYTE#
CE#
OE#
STB
STB
DQ0–DQ15 (A-1)
Sector Switches
RY/BY#
RESET#
Data
Latch
Y-Gating
Cell Matrix
Address Latch
A0–A19
21358C-1
159
CONNECTION DIAGRAMS
A1
A15
A18
A14
A13
A12
A11
A10
A9
A8
A19
NC
WE#
RESET#
NC
NC
RY/BY#
A17
A7
A6
A5
A4
A3
A2
1
16
2
3
4
5
6
7
8
17
18
19
20
21
22
23
24
9
10
11
12
13
14
15
A16
DQ2
BYTE#
VSS
DQ15/A-1
DQ7
DQ14
DQ6
DQ13
DQ9
DQ1
DQ8
DQ0
OE#
VSS
CE#
A0
DQ5
DQ12
DQ4
VCC
DQ11
DQ3
DQ10
48
33
47
46
45
44
43
42
41
40
39
38
37
36
35
34
25
32
31
30
29
28
27
26
A1
A15
A18
A14
A13
A12
A11
A10
A9
A8
A19
NC
WE#
RESET#
NC
NC
RY/BY#
A17
A7
A6
A5
A4
A3
A2
1
16
2
3
4
5
6
7
8
17
18
19
20
21
22
23
24
9
10
11
12
13
14
15
A16
DQ2
BYTE#
VSS
DQ15/A-1
DQ7
DQ14
DQ6
DQ13
DQ9
DQ1
DQ8
DQ0
OE#
VSS
CE#
A0
DQ5
DQ12
DQ4
VCC
DQ11
DQ3
DQ10
48
33
47
46
45
44
43
42
41
40
39
38
37
36
35
34
25
32
31
30
29
28
27
26
21358C-2
Reverse TSOP
Standard TSOP
160
KEY TIMING PARAMETERS
-6
166 MHz
5.5ns
2ns
1ns
-7
143 MHz
5.5ns
2ns
1ns
-8A
125 MHz
6ns
2ns
1ns
*Off-center parting line
**CL = CAS (READ) latency
SYNCHRONOUS
DRAM
MT48LC1M16A1 S - 512K x 16 x 2 banks
PIN ASSIGNMENT (Top View)
50-Pin TSOP
FEATURES
• PC100 functionality
• Fully synchronous; all signals registered on positive
edge of system clock
• Internal pipelined operation; column address can be
changed every clock cycle
• Internal banks for hiding row access/precharge
1 Meg x 16 - 512K x 16 x 2 banks architecture with
11 row, 8 column addresses per bank
• Programmable burst lengths: 1, 2, 4, 8 or full page
• Auto Precharge Mode, includes CONCURRENT
AUTO PRECHARGE
• Self Refresh and Adaptable Auto Refresh Modes
- 32ms, 2,048-cycle refresh or
- 64ms, 2,048-cycle refresh or
- 64ms, 4,096-cycle refresh
• LVTTL-compatible inputs and outputs
• Single +3.3V ±0.3V power supply
• Supports CAS latency of 1, 2 and 3
OPTIONS
MARKING
• Configuration
1 Meg x 16 (512K x 16 x 2 banks)
1M16A1
• Plastic Package - OCPL*
50-pin TSOP (400 mil)
TG
• Timing (Cycle Time)
6ns (166 MHz)
-6
7ns (143 MHz)
-7
8ns (125 MHz)
-8A
• Refresh
2K or 4K with Self Refresh Mode at 64ms
S
• Part Number Example: MT48LC1M16A1TG-7S
Note:
The # symbol indicates signal is active LOW.
VDD
DQ0
DQ1
VssQ
DQ2
DQ3
VDDQ
DQ4
DQ5
VssQ
DQ6
DQ7
VDDQ
DQML
WE#
CAS#
RAS#
CS#
BA
A10
A0
A1
A2
A3
VDD
Vss
DQ15
DQ14
VssQ
DQ13
DQ12
VDDQ
DQ11
DQ10
VssQ
DQ9
DQ8
VDDQ
NC
DQMH
CLK
CKE
NC
A9
A8
A7
A6
A5
A4
Vss
16Mb (x16) SDRAM PART NUMBER
MT48LC1M16A1TG S
1 Meg x 16
GENERAL DESCRIPTION
The 16Mb SDRAM is a high-speed CMOS, dynamic
random-access memory containing 16,777,216 bits. It is
internally configured as a dual 512K x 16 DRAM with a
synchronous interface (all signals are registered on the
positive edge of the clock signal, CLK). Each of the 512K x
16-bit banks is organized as 2,048 rows by 256 columns by
16 bits. Read and write accesses to the SDRAM are burst
oriented; accesses start at a selected location and continue
for a programmed number of locations in a programmed
161
16Mb: x16
SDRAM
GENERAL DESCRIPTION (continued)
but it also allows the column address to be changed on every
clock cycle to achieve a high-speed, fully random access.
Precharging one bank while accessing the alternate bank
will hide the PRECHARGE cycles and provide seamless,
high-speed, random-access operation.
The 1 Meg x 16 SDRAM is designed to operate in 3.3V,
low-power memory systems. An auto refresh mode is
provided, along with a power-saving, power-down mode.
All inputs and outputs are LVTTL-compatible.
SDRAMs offer substantial advances in DRAM operat-
ing performance, including the ability to synchronously
burst data at a high data rate with automatic column-
address generation, the ability to interleave between inter-
nal banks in order to hide precharge time, and the capability
to randomly change column addresses on each clock cycle
during a burst access.
sequence. Accesses begin with the registration of an AC-
TIVE command, which is then followed by a READ or
WRITE command. The address bits registered coincident
with the ACTIVE command are used to select the bank and
row to be accessed (BA selects the bank, A0-A10 select the
row). The address bits registered coincident with the READ
or WRITE command are used to select the starting column
location for the burst access.
The SDRAM provides for programmable READ or
WRITE burst lengths of 1, 2, 4 or 8 locations, or the full page,
with a burst terminate option. An AUTO PRECHARGE
function may be enabled to provide a self-timed row
precharge that is initiated at the end of the burst sequence.
The 1 Meg x 16 SDRAM uses an internal pipelined
architecture to achieve high-speed operation. This architec-
ture is compatible with the 2 n rule of prefetch architectures,
162
16Mb: x16
SDRAM
11
11
11
RAS#
REFRESH
CONTROLLER
2,048
REFRESH
COUNTER
CAS#
256
256 (x16)
8
COLUMN-
ADDRESS BUFFER
BURST COUNTER
ROW-
ADDRESS
MUX
CLK
CS#
WE#
CKE
256 (x16)
BANK1
MEMORY
ARRAY
(2,048 x 256 x 16)
SENSE AMPLIFIERS
I/O GATING
DQM MASK LOGIC
CONTROL
LOGIC
COLUMN
DECODER
COLUMN-
ADDRESS LATCH
8
MODE REGISTER
ROW-
ADDRESS
LATCH
11
ROW
DECODER
11
COMMAND
DECODE
DQ0-
DQ15
A0-A10, BA
16
8
DQML,
DQMH
256
2,048
BANK0
MEMORY
ARRAY
(2,048 x 256 x 16)
ROW
DECODER
ROW-
ADDRESS
LATCH
11
12
ADDRESS
REGISTER
12
SENSE AMPLIFIERS
I/O GATING
DQM MASK LOGIC
DATA
INPUT
REGISTER
DATA
OUTPUT
REGISTER
16
16
FUNCTIONAL BLOCK DIAGRAM
1 Meg x 16 SDRAM
163
16Mb: x16
SDRAM
PIN DESCRIPTIONS
35
CLK
Input
Clock: CLK is driven by the system clock. All SDRAM input signals are
sampled on the positive edge of CLK. CLK also increments the internal burst
counter and controls the output registers.
34
CKE
Input
Clock Enable: CKE activates (HIGH) and deactivates (LOW) the CLK signal.
Deactivating the clock provides PRECHARGE POWER-DOWN and SELF
REFRESH operations (all banks idle), ACTIVE POWER-DOWN (row ACTIVE
in either bank) or CLOCK SUSPEND operation (burst/access in progress).
CKE is synchronous except after the device enters power-down and self
refresh modes, where CKE becomes asynchronous until after exiting the
same mode. The input buffers, including CLK, are disabled during power-
down and self refresh modes, providing low standby power. CKE may be tied
HIGH.
18
CS#
Input
Chip Select: CS# enables (registered LOW) and disables (registered HIGH)
the command decoder. All commands are masked when CS# is registered
HIGH. CS# provides for external bank selection on systems with multiple
banks. CS# is considered part of the command code.
15, 16, 17
WE#, CAS#,
Input
Command Inputs: RAS#, CAS# and WE# (along with CS#) define the
RAS#
command being entered.
14, 36
DQML,
Input
Input/Output Mask: DQM is an input mask signal for write accesses and an
DQMH
output enable signal for read accesses. Input data is masked when DQM is
sampled HIGH during a WRITE cycle. The output buffers are placed in a
High-Z state (two-clock latency) when DQM is sampled HIGH during a READ
cycle. DQML corresponds to DQ0-DQ7; DQMH corresponds to DQ8-DQ15.
DQML and DQMH are considered same state when referenced as DQM.
19
BA
Input
Bank Address Inputs: BA defines to which bank the ACTIVE, READ, WRITE
or PRECHARGE command is being applied. BA is also used to program the
twelfth bit of the Mode Register.
21-24, 27-32, 20
A0-A10
Input
Address Inputs: A0-A10 are sampled during the ACTIVE command (row-
address A0-A10) and READ/WRITE command (column-address A0-A7, with
A10 defining AUTO PRECHARGE) to select one location out of the 512K
available in the respective bank. A10 is sampled during a PRECHARGE
command to determine if all banks are to be precharged (A10 HIGH). The
address inputs also provide the op-code during a LOAD MODE REGISTER
command.
2, 3, 5, 6, 8, 9,
DQ0-
Input/
Data I/Os: Data bus.
11, 12, 39, 40, 42,
DQ15
Output
43, 45, 46, 48, 49
33, 37
NC
–
No Connect: These pins should be left unconnected.
7, 13, 38, 44
VDDQ
Supply DQ Power: Provide isolated power to DQs for improved noise immunity.
4, 10, 41, 47
VSSQ
Supply DQ Ground: Provide isolated ground to DQs for improved noise immunity.
1, 25
VDD
Supply Power Supply: +3.3V ±0.3V.
26, 50
VSS
Supply Ground.
164
PRODUCT PREVIEW
PQFP208 (Plastic Quad Flat Pack)
ORDER CODE : STi5505ACV
STi5505 (Rev. Ax)
DVD BACKEND DECODER
WITH INTEGRATED HOST PROCESSOR
. INTEGRATED 32-BIT RISC HOST CPU
- 2KBYTES INSTRUCTION CACHE, 2KBYTES
DATA CACHE/SRAM
- 50K DHRYSTONES/SEC (2.1) - 50MHz
. VIDEO DECODER
- FULLY SUPPORTS MPEG-2 MP@ML
- MEMORY REDUCTION - PAL IN 12MBITS
. SUBPICTURE DECODER
. HIGH PERFORMANCE ON-SCREEN DISPLAY
. AUDIO DECODER
- 5.1 CHANNEL DOLBY AC-3® / MULTI
CHANNEL MPEG-2 DECODING
- DOWNMIX TO STEREO OR TO DOLBY
PRO-LOGIC COMPATIBLE OUTPUTS FOR
MPEG-2 AND AC-3
- IEC6958 - IEC61937 COMPATIBLE OUTPUT
- LPCM (DVD) MODE SUPPORTED
- 6 CHANNELS OUTPUT
. PAL/NTSC ENCODER
- MACROVISIONTM 7.01/6.1 COMPATIBLE
- TELETEXT, AND CLOSED CAPTION
. HIGH PERFORMANCE SDRAM INTERFACE
. PROGRAMMABLE MEMORY
INTERFACE
FOR DRAM, ROM, PERIPHERALS ETC.
. FRONT-END CHANNEL IC INTERFACE
- DVD, VCD AND CD-DA COMPATIBLE
- DSS - DVB BISTREAMS
- SERIAL AND PARALLEL INTERFACES
- HARDWARE SECTOR FILTERING
- INTEGRATED CSS DECRYPTION AND
TRACK BUFFER
. INTEGRATED PERIPHERALS
- 2 UARTS, 1 I2C CONTROLLER, 3 PWM OUT-
PUTS, 3 TIMERS, 3 CAPTURE TIMERS,
SMART CARD
- 34 BITS OF PROGRAMMABLE I/O
- OS LINK
. PROFESSIONAL TOOLSET SUPPORT
- ANSI C COMPILER AND LIBRARIES
- OPERATING SYSTEMS SUPPORT
- ADVANCED DEBUGGING TOOLS
. 208 PIN PQFP PACKAGE
DESCRIPTION
The STi5505 provides a very highly integrated back-
end solution for DVD and combo DVD-DVB (Set
Top Box) applications. The STi5505 incorporates a
host CPU which handles both general application
(DVD navigation, CD-DA, VCD, DVB) and drivers
of the different embedded periphals (audio/video,
subpicture decoders, OSD, PAL/NTSC encoder...).
The STi5505 offers one of the best cost-effective
(memory savings, internal peripherals availability) solu-
tion to DVD-DVB applications with rapid time to mar-
ket (Reference design, DVD-DVB Software Toolkit).
DMA CHANNELS
ARBITOR
FRONT-END
INTERFACE
(SECTOR
PROCESSOR
& DVD
DECRYPTION)
2K
INSTRUC.
CACHE
2K DATA
CACHE AND
2K SRAM
OS LINK 2 UART
1 I2C
PIO
3 PWM
SMART CARD
DIAGNOSTICS
CONTROLLER
AND SYSTEM
SERVICES
EXTERNAL
MEMORY
INTERFACE
MPEG2/AC3
AUDIO
5.1 CHANNEL
PAL/NTSC
TELETEXT
INTERFACE
MPEG2 VIDEO
SUBPICTURE
OSD
ST20 CPU
Figure 1 : General Block Diagram
165
I - GENERAL DESCRIPTION
The performance offered by the ST20 CPU and its
associated hardware (decoders, encoder, periphe-
rals...) allows an integrated and unified DVD or
DVD-DVB software solution.
All the following operations are performed inside
the STi5505 :
- application management (DVD Navigation, VCD,
CD-DA, DVB-Program Guide ...),
- device data retrieval drivers (demultiplex, stream
buffer management ...),
- device presentation drivers (video decoder, sub-
picture decoder, on-screen display, audio de-
coder, PAL/NTSC encoder ...),
- embedded peripherals drivers (UART, I2C, Pro-
grammable I/O, Smart Card ...).
I.1 - ST20 32-bit CPU
The ST20 micro-core family has been developped
by SGS-THOMSON Microelectronics to provide
the tools and building blocks to enable the devel-
opment of highly integrated application-specific 32-
bits device at the lowest cost and fastest time to
market.
The STi5505 integrates a ST20 C2 core with the
following characteristics :
- 50K Dhrystones/s at 50MHz,
- 8/16 bits instructions (32 most common instruc-
tions in 8 bits),
- instruction cache 2Kbytes - write back replace-
ment policy,
- internal SRAM 2Kbytes to ensure fast access to
critical code, data, interrupt handler ...
- data cache 2 Kbytes - write back replacement policy,
The STi5505's ST20 is provided with advanced
debugging tools :
- on-chip real-time emulation,
- debugging with minimal impact on software and
performance,
- non intrusive attachment to the host via JTAG
(IEEE1149.1),
- no intrusion into the performance of the CPU core,
- no intrusion into user code space by a debug kernel,
- only 40bytes used for breakpoint handler.
I.2 - Video Decoder
The video decoder implemented in the STi5505
uses a patented memory reduction/bandwith re-
duction scheme to offer the user the best band-
width/memory size compromise.
The algorithm is lossless and uses "on-the-fly"
decoding to reduce the memory requirements to
two frame buffers in memory reduction mode.
In this mode, PAL decoding is contained in 12Mbits.
When used in bandwith reduction mode, the mem-
ory usage is the normal three buffers but the band-
with required by the decoder is significantly
reduced compared to a classical implementation.
In summary, the features of the decoder are :
- MPEG-2 Main Profile/Main Level (MP@ML) support,
- MPEG-2 program streams, Packet Elementary
streams and MPEG-1 system streams support,
- memory reduction architecture allowing sharing
of single 16 Mbits SDRAM between MPEG de-
coding, micro and transport functions - memory
expandable to 32 Mbits of SDRAM,
- letter box (16:9) filter,
- pan-scan, horizontal and vertical image resizing,
- automatic error concealment.
I.3 - Subpicture Decoder
The STi5505 has a hardware DVD compliant sub-
picture decoder. Subpicture units are copied by
DMA into subpicture bit buffer.
The subpicture decoder can decode complete sub-
picture units without any interaction from the ST20.
The main subpicture decoder features are :
- up to 720x480 or 720x576 subpicture area,
- internal LUTs for Sub Picture, Highlight and PCI
(4 bits color and contrast outputs),
- internal color LUT (4 bits from SP, HL, PCI to 24 Y,Cr,Cb
bits) for SP color inputs to MPEG, OSD, SP mixer.
I.4 - Audio Decoder
The audio decoder cell is a fully compatible Dolby
AC-3
/ MPEG-1/MPEG-2 decoder capable of
decoding both 5.1 and 2 channel streams compat-
ible with the DVD standard.
Downmix from 5.1 channels is supported for both
Dolby and MPEG-2 streams. The output can be
sent directly to external DACs or formatted for
transmission in accordance with the IE6958 stand-
ard.
The decoder can also handle linear PCM in accord-
ance with the DVD standard. An integrated down-
sampler is provided for conversion from 96 kHz to
48kHz.
STi5505 (Rev. Ax)
166
The main features of the decoder core are :
- Decodes 5.1 Dolby AC-3 Digital surround,
- Output to 6 channels. Downmix modes : 1, 2, 3
or 4 channels for MPEG and AC-3 streams,
- Karaoke mode for DVD. MPEG-2 capable, AC-3
capable,
- MPEG-1, 2-channel audio decoder layers 1 and 2,
- MPEG-2, 6-channel audio decoder layer 2,
- PCM : transparent. downsampling 96 to 48 kHz,
- Accepts MPEG-2 PES stream format for : MPEG-
2, MPEG-1, Dolby AC-3 and Linear PCM,
- IEC6958 Output Interface,
- CD-DA PCM format (subcode output in IEC6958
user data),
- Downmix for Dolby Pro Logic compatible outputs
for AC-3 and MPEG-2 (Pro Logic encoder),
- Pro Logic decoder,
- PLL for Internal 44.1 and 48kHz PCM clock
generation,
- On chip pink noise generator.
I.5 - High Performance On-Screen Display
The graphics performance of the STi5505 sup-
ports the new requirements for intelligent program
guides and interactive applications.
The display interface supports up to 256 colors for
each OSD region and a transparency feature al-
lows mixing of video with the OSD. Fast access
graphics and many other additional features are
available and are supported by a graphics library.
Very high system performance is obtained by
closely coupling the ST20 RISC processor and
cache with the MPEG audio/video core and display
memory.
Low latency RISC access and DMA engines allow
rapid construction of bit maps.
I.6 - PAL/NTSC Encoder
The STi5505 integrates a PAL/NTSC encoder. It
converts the digital MPEG/Sub Picture/OSD
stream into a standard analog baseband
PAL/NTSC signal and into RGB analog compo-
nents. Six analog output pins are available on
which it is possible to output CVBS, S-VHS (Y/C)
and RGB formats.
The encoder handles interlaced and non-interlaced
mode.
It can perform Closed Captions, CGMS or Teletext
encoding and allows Macrovision 7.01/6.1 copy
protection.
The encoder supports both master and slave
modes for synchronization.
I.7 - Memory Interfaces
The STi5505 has been designed to minimize sys-
tem costs by enabling various memory savings.
Two kinds of memory interfaces are used on the
STi5505 : a programmable External Memory Inter-
face (EMI) and a high performance SDRAM inter-
face.
The External Memory Interface supports several
address ranges (memory banks). In each bank, a
set of signals are entirely programmable and can
be used to map 8/16 bits peripherals such as Front
End channel ICs in DVD applications.
The EMI contains a zero glue logic DRAM and a
low-cost EPROM interface.
This interface can be programmed to interface very
easily peripherals.
The SDRAM memory interface supports gluelessly
125 MHz SDRAMs providing the adequate band-
withs to achieve MPEG decoding and display, OSD
drawing and display, and general system use.
Memory savings can be realized on ROM require-
ments too : the ST20 VL-RISC micro-core has the
highest code density of any 32 bit CPU, leading to
the lowest cost program ROM.
I.8 - Front-End Interface
The STi5505 's front end interface accepts :
- DVD, VCD and CD-DA sectors,
- DVB-DSS transport stream.
In DVD mode, DVD, VCD and CD-DA information
can be input into STi5505 through a serial interface
or a generic parallel interface.
In serial mode, data are captured and filtered from
I2S and V4 interfaces by an internal sector proces-
sor. V4 interface is used to capture VCD and CD-
DA subcode information. In parallel mode, sector
processor is bypassed.
I - GENERAL DESCRIPTION (continued)
STi5505 (Rev. Ax)
167
The main features of the DVD interface are :
- DVD, VCD and CD-DA compatible,
- hardware sector filtering,
- subcode error correction for CD-DA,
- integrated CSS decryption,
- integrated track buffer support,
- DMA engine to ST20 memory.
In DVB-DSS mode, DVB-DSS transport stream is
input through a serial interface. The STi5505 ex-
tracts and descrambles Packet Elementary
Streams belonging to one user selected program
to be decoded and presented.
The main features of the DVB-DSS interface are :
- descrambling (transport packet and packet ele-
mentary streams in DVB mode, transport packet
in DSS mode ; up to 32 streams descrambling),
- PID and section filtering,
- clock recovery,
- DMA engine.
In DVB-DSS mode, a high speed digital interface
allows to transfer packets between the Set Top Box
and external units, either for recording or playback
purposes. This interface provides also full support
for an external IEEE1394 connection.
I.9 - Integrated Peripherals
Several peripherals generally used in DVD players
or DVD-DVB combos have been integrated into the
STi5505.
They are :
- two UARTs to interface remote control receivers,
DVD front end, modem ...,
- one I2C controller to interface serial memories,
remote control receivers, microcontrollers...,
- 2 SmartCard interfaces (ISO7816-3) for DVB-
DSS conditionnal access, pay per view ...,
- PWM/timer module for control of system clock,
- 34 programmable I/O pins,
- OS Link interface,
- JTAG with boundary scan for debug.
I - GENERAL DESCRIPTION (continued)
STi5505 (Rev. Ax)
168
II - PIN DESCRIPTION
120
119
118
117
116
115
114
113
112
111
110
109
108
107
106
105
208
206
205
204
136
135
134
133
132
131
130
129
128
127
126
125
124
123
122
121
140
139
138
137
143
142
141
147
146
145
144
149
148
153
152
151
150
156
155
154
203
202
201
200
199
198
197
196
195
194
193
192
191
190
189
188
187
186
185
184
183
182
181
180
179
178
177
176
175
174
173
172
171
170
169
168
167
166
165
164
163
160
159
158
157
162
161
207
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
88
89
90
91
92
87
93
94
95
96
97
98
100
101
102
103
104
99
VDD
PIO3[7]
PIO2[0]
GND
PIO2[3]
PIO2[4]
PIO2[5]
PIO2[7]
PIO1[0]
PIO1[2]
PIO1[5]
PIO1[6]
PIO1[7]
PIO4[7]
PIO0[0]
PIO0[3]
PIO0[4]
VDD
GND
PIO0[5]
PIO0[6]/PCM_OUT2
PIO0[7]
IRQ[0]
PCM_OUT1
IRQ[1]
PWM0/OSLINK_SEL
PWM1/BOOTFROMROM
PWM2
RST
TEST1
TEST2
TEST3
TEST4
VDD
GND
B_DATA
B_BCLK
B_FLAG
B_SYNC
B_WCLK
TEST5
B_V4
SCLK
PCM_OUT0
PCM_CLK
LRCLK
SPDIF_OUT
VDDA_PCM
V_REF_PCM
VSSA_PCM
HSYNC
ODD/EVEN
VDDA
VSSA
B_OUT
G_OUT
R_OUT
I_REF_DAC_RGB
V_REF_DAC_RGB
VDDA
VSSA
Y_OUT
C_OUT
CV_OUT
V_REF_DAC_YCC
I_REF_DAC_YCC
VDD
GND
AD[4]
AD[5]
AD[6]
AD[7]
AD[8]
AD[9]
VDD
MEMCLKOUT
GND
AD[0]
AD[1]
AD[2]
AD[3]
AD[11]
AD[10]
SDCS[0]
SDCS[1]
VDD
GND
SDRAS
SDCAS
SDWE
DQML
DQ[0]
DQ[1]
DQ[2]
VDD
GND
DQ[3]
DQ[4]
DQ[5]
DQ[6]
DQ[7]
VDD
GND
MEMCLKIN
DQMU
DQ[8]
DQ[9]
DQ[10]
DQ[11]
VDD
GND
DQ[12]
DQ[13]
DQ[14]
DQ[15]
AUXCLK
OSD_ACTIVE
PIXCLK_27MHz
VDD
GND
BE[1]
OE
CE[1]
CE[2]
CE[3]
RAS0/CE[0]
RAS1
CAS0/HOLDACK
VDD
GND
CAS1/DMAREQ
R/W/DMAACK
DMAXFER
CS
WAIT/READY
PROCCLK
PPC_MODE
VDD
GND
DATA[0]
DATA[1]
DATA[2]
DATA[3]
DATA[4]
DATA[5]
DATA[6]
DATA[7]
VDD
GND
DATA[8]
DATA[9]
DATA[10]
DATA[11]
DATA[12]
DATA[13]
VDD
PIO3[6]
PIO3[5]
PIO3[4]
PIO3[3]
PIO3[2]
PIO3[1]
PIO3[0]
GND
PIO1[4]
PIO1[3]
PIO4[6]
PIO4[5]
PIO4[4]
PIO4[3]
PIO4[2]
PIO4[1]
PIO4[0]
TRST
TDO
TCK
TMS
TDI
GND
VDD
ADR[21]
ADR[20]
ADR[19]
ADR[18]
ADR[17]
ADR[16]
ADR[15]
ADR[14]
ADR[13]
ADR[12]
ADR[11]
GND
VDD
ADR[10]
ADR[9]
ADR[8]
ADR[7]
ADR[6]
ADR[5]
ADR[4]
ADR[3]
ADR[2]
ADR[1]
GND
VDD
DATA[15]
DATA[14]
STi5505
PQFP208
(Top View)
BE[0]
II.1 - Pin Connections
STi5505 (Rev. Ax)
169
II - PIN DESCRIPTION (continued)
II.2 - Pin List
Pin
Name
Type
Function
SUPPLIES
1, 18, 34, 67, 75, 86, 95,
102, 110, 119, 130, 139,
149, 159, 171, 184, 208
VDD
Power Supply
4, 19, 35, 68, 77, 87, 96,
103, 111, 120, 131, 140,
150, 160, 172, 185, 200
GND
Ground
53, 60
VDDA
Analog Power Supply for DENC D/A Converters
54, 61
VSSA
Analog Ground for DENC D/A Converters
48
VDDA_PCM
Analog Power Supply for PLL PCM
49
V_REF_PCM
Analog Reference for PLL PCM
50
VSSA_PCM
Analog Ground for PLL PCM
FRONT-END INTERFACE
36
B_DATA
I
I2S Data (DVD) or PARA_DATA[2] (DVD//) or Link Data
(DVB/DSS)
40
B_WCLK
I/O
I2S Word Clock or PARA_DATA[6] (DVD//) or
NRSS_CLK (DVB/DSS)
37
B_BCLK
I
I2S Bit Clock (DVD) or PARA_DATA[3] (DVD//) or Link
Bit Clock (DVB/DSS)
38
B_FLAG
I
Error Flag (DVD) or PARA_DATA [4] (DVD//) or Link
Sync (DVB/DSS)
39
B_SYNC
I
Sector / Abs Time Sync (DVD) or PARA_DATA[5]
(DVD//) or Link Not Valid (DVB/DSS)
42
B_V4
I
Versatile Input Pin (Subcode Input) or PARA_DATA[7]
(DVD//) or NRSS_IN (DVB/DSS)
VIDEO OUTPUT INTERFACE
57
R_OUT
O
Red Output
56
G_OUT
O
Green Output
55
B_OUT
O
Blue Output
63
C_OUT
O
Chroma Output
64
CV_OUT
O
Composite Video Output
62
Y_OUT
O
Luma Output
59
I_REF_DAC_RGB
I
DAC Current Reference
66
I_REF_DAC_YCC
I
DAC Current Reference
58
V_REF_DAC_RGB
I
DAC Voltage Reference
65
V_REF_DAC_YCC
I
DAC Voltage Reference
117
OSD_ACTIVE
I/O
OSD Active
118
PIXCLK_27MHz
I
System Clock Input
51
HSYNC
I/O
Horizontal Sync
52
ODD/EVEN
I/O
Vertical Sync
AC-3/MPEG1-2 AUDIO OUTPUT INTERFACE
43
SCLK
O
Serial Bit Clock
44
PCM_OUT0
O
Audio Serial Output Data 0
24
PCM_OUT1
O
Audio Serial Output Data 1
21
PCM_OUT2
O
Audio Serial Output Data 2
45
PCM_CLK
I/O
PCM Clock In or Out
46
LRCLK
O
Left/Right Clock
47
SPDIF_OUT
O
SPDIF Output
STi5505 (Rev. Ax)
170
II - PIN DESCRIPTION (continued)
Pin
Name
Type
Function
EXTERNAL INTERRUPTS
23, 25
IRQ[0:1]
I
External Interrupts
PROGRAMMABLE I/O AND ALTERNATE FUNCTION (see Device Configuration Chapter)
15
PIO0 [0]
I/O
General Purpose I/O or PARA_SYNC (DVD//Front End)
or Sc1Data (Smart Card 1 Data I/O)
16
PIO0 [3]
I/O
General Purpose I/O or PARA_REQ (DVD//Front End)
or Sc1Clk (Smart Card 1 Clock)
17
PIO0 [4]
I/O
General Purpose I/O or PARA_STR (DVD//Front End)
or Sc1RST (Smart Card 1 Reset)
20
PIO0 [5]
I/O
General Purpose I/O or PARA_DATA[0] (DVD//Front End)
or Sc1Cmd VCC (Smart Card 1 Voltage Enable)
21
PIO0 [6]
I/O
General Purpose IO or Sc1DataDir (Smart Card 1 Dir)
22
PIO0 [7]
I/O
General Purpose I/O or PARA_DATA[1] (DVD//Front End)
or Sc1Detect(Smart Card 1 Detect)
9
PIO1 [0]
I/O
General Purpose I/O or I2C Data
10
PIO1 [2]
I/O
General Purpose I/O or I2C Clock
198, 199
PIO1 [3:4]
I/O
General Purpose IO
11
PIO1 [5]
I/O
General Purpose IO or ASC1 TXD
12
PIO1 [6]
I/O
General Purpose IO or ASC1 RXD
13
PIO1 [7]
I/O
General Purpose IO or ASC3 TXD
3
PIO2 [0]
I/O
General Purpose I/O or Sc0Data (Smart Card 0 Data I/O)
5
PIO2 [3]
I/O
General Purpose I/O or Sc0Clk (Smart Card 0 Clock)
6
PIO2 [4]
I/O
General Purpose I/O or Sc0RST (Smart Card 0 Reset)
7
PIO2 [5]
I/O
General Purpose I/O or Sc0CmdVCC (Smart Card 0
Voltage Enable)
8
PIO2 [7]
I/O
General Purpose I/O or Sc0Detect (Smart Card 0 Detect)
201
PIO3 [0]
I/O
General Purpose IO or OSLink In
202
PIO3 [1]
I/O
General Purpose IO or OSLink Out
203
PIO3 [2]
I/O
General Purpose IO or CPUReset
204
PIO3 [3]
I/O
General Purpose IO or CPU Analyse
205
PIO3 [4]
I/O
General Purpose IO or ErrorOut
206, 207, 2
PIO3 [5:7]
I/O
General Purpose IO
191-197
PIO4 [0:6]
I/O
General Purpose IO
14
PIO4 [7]
I/O
General Purpose IO or ASC3 RXD
JTAG INTERFACE
188
TCK
I
Test Clock
186
TDI
I
Test Data Input
189
TDO
O
Test Data Input
187
TMS
I
Test Mode Select
190
TRST
I
Test Reset
SYSTEM USE
28
PWM2
O
PWM2 Output
27
PWM1/BOOTFROMROM
O/I
PWM1 Output or Configuration Oslink Pins
26
PWM0/OSLINK_SEL
O/I
PWM0 Output or Boot from ROM during Reset
29
RST
I
Reset
116
AUXCLK
O
Auxilary Clock for Any Purpose
II.2 - Pin List (continued)
STi5505 (Rev. Ax)
171
II - PIN DESCRIPTION (continued)
Pin
Name
Type
Function
SDRAM INTERFACE
78-81, 69, 70-74, 82, 83
AD[0:11]
O
SDRAM Address Bus
92-94, 97-101, 106-109,
112-115
DQ[0:15]
I/O
SDRAM Data (Lower Byte)
84, 85
SDCS[0:1]
O
SDRAM Chip Selects
89
SDCAS
O
SDRAM CAS
88
SDRAS
O
SDRAM RAS
90
SDWE
O
SDRAM Write Enable
104
MEMCLKIN
I
SDRAM Memory Clock Input
76
MEMCLKOUT
O
SDRAM Memory Clock Output
91
DQML
O
DQ Mask Enable (Lower)
105
DQMU
O
DQ Mask Enable (Upper)
EXTERNAL MEMORY INTERFACE
161-170, 173-183
ADR[1:21]
I/O
External Memory Address Bus
141-148, 151-158
DATA[0:15]
I/O
External Memory Data Bus
128
RAS1/HOLDREQ
O
DRAM RAS or reserved
136
WAIT/READY
I/O
External Wait States or Reserved
133
R/W/DMAACK
I/O
DRAM R/W Strobe or Reserved
121, 122
BE[0:1]
O
Byte enable
129
CAS0/HOLDACK
O/I
DRAM CAS or Reserved
132
CAS1/DMAREQ
O
DRAM CAS or Reserved
124-126
CE[1:3]
O
Chip Select for Banks 1 - 3
135
CS
I
Reserved
137
PROCCLK
I/O
ST20 Clock or Reserved
127
RAS0/CE0
O
DRAM RAS or Chip Select for Bank 0
134
DMAXFER
I
Reserved
138
PPC_MODE
I
Reserved
123
OE
I/O
Output Enable or Reserved
SDAV/P1394 INTERFACE
30
TEST1
I/O
DATA_RX/STROBE_TX (SDAV Mode) or SDAV_CLK
(P1394 Mode)
31
TEST2
I/O
STROBE_RX/DATA_TX
(SDAV
Mode)
or
DATA_IN/DATA_OUT (P1394 Mode)
32
TEST3
I/O
Direction (SDAV Mode) or DATA_VALID In/Out (P1394
Mode)
MISCELLANEOUS
41
TEST5
O
NRSS_OUT (DVB/DSS)
II.2 - Pin List (continued)
STi5505 (Rev. Ax)
172
III.1 - Functional Modules
Figure 1 shows the subsystem modules that make
up the STi5505. These modules are outlined below.
III.1 - CPU
The Central Processing Unit (CPU) on the STi5505
is the ST20-C2 32-bit processor core. It contains
instruction processing logic, instruction and data
pointers and an operand register. It directly ac-
cesses the high speed on-chip SRAM memory,
which can store data or programs, and uses the
Caches to reduce access time to off chip program
and data memory.
The processor can access memory via the general
purpose External Memory Interface (EMI) or via the
SDRAM EMI which is shared with the MPEG de-
coder.
III.2 - Memory Subsystem
The STi5505 on-chip SRAM memory system provides
160 Mbytes/s internal data bandwidth, supporting pipe-
lined 2 cycles internal memory access at 25ns cycle
times. The STi5505 memory system consists of 2
Kbytes of SRAM, 2Kbytes of instruction cache, a
2Kbytes data cache that can be programmed to be
SRAM, and an external memory interface (EMI).
The STi5505 product has 2 Kbytes of on-chip
SRAM. The advantage of this is the ability to store
time critical code on chip, for instance interrupt
routines, software kernels or device drivers, and
even frequently used data without these being
flushed from the caches.
The instruction and data caches are direct mapped with
a write-back system for the data cache and support
burst accesses to the external memories for refill and
write-back which are effective for increasing perform-
ance with page-mode and SDRAM memories.
The STi5505 EMI controls access to the external
memory and peripherals while the SDRAM EMI
provides access to the SDRAM buffer for the
MPEG decoders, ST20 and DMA peripherals.
The STi5505 EMI can access a 16 Mbytes (or
greater if DRAM is used) physical address space
in each of the four general purpose memory banks,
and provides sustained transfer rates of up to 80
Mbytes/s. Peripherals that support an asynchro-
nous data acknowledge are supported as is an
external Power PC which can share the bus with
the STi5505 and access the SDRAM buffer through
the device.
High memory bandwidths up to 200 Mbytes/s can
be supported by the SDRAM EMI.
The STi5505 internal memory interconnect pro-
vides buffering and arbitration of memory access
requests to sustain very high throughput of memory
accesses.
III.3 - Syste m Services Module
The STi5505 system services module includes :
- Phase locked loop (PLL) - accepts 27MHz input
and generates all the internal high frequency
clocks needed for the CPU and the OS-Link.
- test access port - JTAG compatible.
- Diagnostics controller accessed via the JTAG
port providing :
- Bootstrapping during development
- Hardware breakpoint and watchpoint
- Real time trace
- External LSA triggering support.
III.4 - Serial Communications
To facilitate the connection of this system the front
end device and other peripherals, two UARTs
(ASCs) are included in the device. The UARTs
provide an asynchronous serial interface.
The UART can be programmed to support a range
of baud rates and data formats, for example, data
size, stop bits and parity. Two synchronous serial
communications (SSC) interfaces are provided on
the device. These can be used for a remote control
device for example via an I2C or SPI bus.
III.5 - Interrupt Subsystem
The STi5505 interrupt subsystem supports eight
prioritized interrupt levels. Two external interrupt
pins are provided. Level assignment logic allows
any of the internal or external interrupts to be
assigned and, if necessary, share any interrupt
level.
III.6 - Front End Interf ace & DVD Decryption
The front end interface accepts sectors in the case
of DVD, MPEG-1 system stream in the case of VCD
and PCM data for CD-DA applications on an I2S
interface. In the case of VCD and CD-DA disks the
subcode information is input via a simple asynchro-
nous serial interface similar to a UART.
The bitstream and subcode stream then pass
through a "sector processor" block which handles
sector filtering in the case of DVD and sectorizing
using the subcode stream for VCD and CD-DA
systems.
III - FUNCTIONAL DESCRIPTION
STi5505 (Rev. Ax)
173
The block also handles overspeed processing for
all systems. The capturing of CD-DA sectors is
based on a flywheel tiner to improve robusters by
concealing erros in the subcode stream. For DVD
the data, having had sector headers removed, then
passes through a DVD conformant de-cryption
stage and is written into any of the system memo-
ries using a programmable DMA engine. When a
subcode stream is present it is locally buffered, by
subcode block and can be read by the CPU for
subsequent processing, if required.
III.7 - PWM and counter module
This unit includes three separate pulse width
modulator (PWM) generators using a shared
counter, and three timer compare and capture
channels sharing a second counter.
The counters can be clocked from a pre-scaled
internal clock or from a pre-scaled external clock
via the capture clock input and the event on which
the timer value is captured is also programmable.
The PWM counters are 8-bit with 8-bit registers to
set the output high time. The capture/compare
counter and the compare and capture registers are
32-bit.
III.8 - Parallel Programmable IO module
40 bits of parallel I/O are provided. 34 of then are
connected to actual PIO pins. Each bit is program-
mable as an output or an input. The output can be
configured as a totem pole or open drain driver. Input
compare logic is provided which can generate an
interrupt on any change on any input bit.
Many pins of the STi5505 device are multi-function
and can either be configured as PIO or connected
to an internal peripheral signal.
III.9 - MPEG Video decoder
The video decoder is a real-time video compres-
sion processor supporting the MPEG-1 and MPEG-
2 standards at video rates up to 720 x 480 x 60 Hz
and 720 x 576 x 50 Hz. Picture format conversion
for display is performed by vertical and horizontal
filters. User-defined bitmaps may be superimposed
on the display picture through use of the on-screen
display function.
III.10 - PAL/NTSC encoder
The digital encoder which is integrated in the STi5505
converts a multiplexed 4:2:2 YUV stream into a
standard analog baseband PAL/NTSC signal and
into RGB analog components. The encoder can also
perform closed-caption, CGMS or teletext encoding
and allows MacrovisionTM 7.01/6.1 copy protection.
III.11 - MPEG-2 Audio / Dolby AC-3 Decoder
The audio decoder is a Dolby AC-3 decoder capable
of decoding both 5.1 and 2 channel DVD comfor-
mant bitstreams. The decoder also handles MPEG-
1 (layers 1 & 2) and MPEG-2 layer 2 (6 channels).
Downmix to 2 channels is possible for Dolby and
MPEG standards with optional pro-logic encoding.
The decoder directly accepts MPEG-2 PES streams
as input. The decoder is capable of supporting
IEC6958-IEC61937 formatted outputs for AC-3 and
MPEG audio, linear PCM (left & right,16, 18, 20 &
24 bits), zero output (Mute mode) and PCM audio.
III - FUNCTIONAL DESCRIPTION (continued)
STi5505 (Rev. Ax)
174
ST24E32
ST25E32
32K SERIAL I2C EEPROM
with EXTENDED ADDRESSING
NOT FOR NEW DESIGN
AI01201B
3
E0-E2
SDA
VCC
ST24E32
ST25E32
WC
SCL
VSS
Figure 1. Logic Diagram
COMPATIBLE with I2C EXTENDED
ADDRESSING
TWO WIRE SERIAL INTERFACE,
SUPPORTS 400kHz PROTOCOL
1 MILLION ERASE/WRITE CYCLES, OVER
the FULL SUPPLY VOLTAGE RANGE
40 YEARS DATA RETENTION
SINGLE SUPPLY VOLTAGE
± 4.5V to 5.5V for ST24E32 version
± 2.5V to 5.5V for ST25E32 version
WRITE CONTROL FEATURE
BYTE and PAGE WRITE (up to 32 BYTES)
BYTE, RANDOM and SEQUENTIAL READ
MODES
SELF TIMED PROGRAMING CYCLE
AUTOMATIC ADDRESS INCREMENTING
ENHANCED ESD/LATCH UP
PERFORMANCES
ST24E32and ST25E32 are replaced by the
M24C32
DESCRIPTION
The ST24/25E32 are 32K bit electrically erasable
programmable memories (EEPROM), organized
as 8 blocks of 512x 8 bits. The ST25E32operates
with a power supply value as low as 2.5V. Both
PlasticDual-in-Line andPlasticSmallOutline pack-
ages are available.
E0 - E2
Chip Enable Inputs
SDA
Serial Data Address Input/Output
SCL
Serial Clock
WC
Write Control
VCC
Supply Voltage
VSS
Ground
Table 1. Signal Names
8
1
SO8 (M)
200mil Width
8
1
PSDIP8 (B)
0.25mm Frame
175
SDA
VSS
SCL
WC
E1
E0
VCC
E2
AI01202B
ST24E32
ST25E32
1
2
3
4
8
7
6
5
Figure 2A. DIP Pin Connections
1
AI01203C
2
3
4
8
7
6
5
SDA
VSS
SCL
WC
E1
E0
VCC
E2
ST24E32
ST25E32
Figure 2B. SO Pin Connections
Each memory is compatible with the I2C extended
addressing standard, two wire serial interface
which uses a bi-directional data bus and serial
clock. The ST24/25E32carry a built-in 4 bit, unique
device identification code (1010) corresponding to
the I2C bus definition. The ST24/25E32behave as
DESCRIPTION (cont'd)
slave devices in the I2C protocol with all memory
operations synchronized by the serial clock. Read
and write operations are initiated by a START
conditiongeneratedby thebus master. TheSTART
condition is followed by a stream of 4 bits (identifi-
cation code 1010), 3 bit Chip Enable input to form
a 7 bit Device Select, plus one read/write bit and
terminatedby an acknowledge bit.
Symbol
Parameter
Value
Unit
TA
Ambient Operating Temperature
±40 to 125
°C
TSTG
Storage Temperature
±65 to 150
°C
TLEAD
Lead Temperature, Soldering
(SO8)
(PSDIP8)
40 sec
10 sec
215
260
°C
VIO
Input or Output Voltages
±0.6 to 6.5
V
VCC
Supply Voltage
±0.3 to 6.5
V
VESD
Electrostatic Discharge Voltage (Human Body model) (2)
4000
V
Electrostatic Discharge Voltage (Machine model) (3)
500
V
Notes: 1. Except for the rating "Operating Temperature Range", stresses above those listed in the Table "Absolute Maximum Ratings"
may cause permanent damage to the device. These are stress ratings only and operation of the device at these or any other
conditions above thoseindicated in the Operating sections of this specification is not implied. Exposure to Absolute Maximum
Rating conditions for extended periods may affect device reliability. Refer also to the SGS-THOMSON SURE Program and
other relevantquality documents.
2. 100pF through 1500 ; MIL-STD-883C, 3015.7
3. 200pF through 0 ; EIAJ IC-121 (condition C)
Table 2. Absolute Maximum Ratings (1)
ST24E32, ST25E32
176
9.24
Description of Furore IC
9.24.1 General Description
FURORE-IC is a one-chip design containing all the hardware
required for SACD processing. It is intended to interface to
the Sti family (Sti5505/Sti5508) DVD video decoders.
The FURORE-IC contains a memory interface to support one
4M*16 SDRAM or one 1M*16 SDRAM device.
9.24.2 Blockdiagram
Figure 9-7
9.24.3 Basic Engine Interface
Data input interface.
The Basic Engine Interface is connected to the output of the
SAA7335 (HD61)
Analogue HF input
The analogue HF input, coming from the optical pickup unit,
is also fed to the Furore IC to extract the copyprotection
information "PSP".
9.24.4 SDRAM Interface
The SDRAM interface forms a glueless interface to one
16Mbit or one 64 Mbit SDRAM device.
The interface takes care for the power-up sequence, mode
programming and refreshing of the SDRAM devices. This is
hard coded in the interface and doesn't have to be controlled
by the host.
9.24.5 Audio data input/output Interface
DSD/PCM combined data output.
DSD_PCM : Output intended for a combined 6 channel DSD
( SACD ) and PCM ( DVD-CDDA) DAC. Switching between
the PCM data coming from the Sti5505 and the internal
generated DSD signals is done in the Furore IC.
Stereo DSD only output.
DSD_stereo: 2 channel DSD output, with stereo down mix in
the case of 5 and 6 channel and normal stereo in case of 2
channel DSD mode.
Stereo PCM data output.
Two possible stereo sources can be selected as stereo PCM
output:
–
Stereo PCM coming from the Sti5505 via the PCM input
on Furore.
–
Stereo or down mix PCM derived via a decimation filter
from the SACD-DSD signal.
Digital audio output interface (IEC958)
The IEC958 format is intended to connect the SA12S1 to
a digital receiver. No DSD signals are defined for IEC958
therefore the DSD-->PCM converted signal will be
transmitted. Following two types of signals are possible on
the digital interface:
–
IEC958 data coming from Sti5505.
–
IEC958 data, Stereo or down mix PCM, derived via a
decimation filter from the SACD-DSD signal.
Clock + reset input.
Two different processing clocks are needed in the FURORE-
IC:
–
Sys_clk: System clock for data processing part,
frequency can be 27 MHz or 768 * Fs.
–
384 * Fs: Processing clock for LLD and postprocessing.
Decryption
/
Sector
Processor
AGC
8 bits
AD
PSP-key
decoder
Key
Host interface
Demux
SDRAM
interface
SACD
Audio
interface
PI-Bus
Control
2 -5 -6 ch
LossLess
decoder
6 channel
fade
384 * fs
sys_clk
6 * DSD
To Host
(ST5505 or ST5508)
to 16 Mbit
SDRAM
DSD to
PCM
conversion
6 channel
mix
DSD_str
PI-bus
Control
S
e
l.
Register
Host
interface
BE-
I/F
SSM
LLD
Post processing
clk_gen
384 * fs
6
3
L/R/C
6
IEC958
HF
I2S
Memory
manager
switch
matrix
IEC958
gen
S
e
l.
S
e
l.
IEC958
from Sti
PCM from Sti
5505
6
dsd_mute
4
I2S-LR +
mute
3
9
to
DSD/PCM
DAC
5
PCM data
5
sys_clk
ad(6:0)
clk_256_sacd
clk_256_dvd
gp_in
gp_out
CL 06532152_098.eps
131200
177
RESETn is an asynchronous reset and should be low for at
least 1 period of DSD_CLK.
General-purpose in/outputs.
Four general purpose input and output signals are available.
9.24.6 Pin description
IC-Pin_no
Name
Type
Function
1
H_DQ[13]
I/O5
Data bus
2
H_DQ[12]
I/O5
Data bus
3
VCC_IO
IN
3.3V power supply IO
4
GND_IO
IN
Ground
5
H_DQ[11]
I/O5
Data bus
6
H_DQ[10]
I/O5
Data bus
7
H_DQ[9]
I/O5
Data bus
8
H_DQ[8]
I/O5
Data bus
9
H_DQ[7]
I/O5
Data bus
10
H_DQ[6]
I/O5
Data bus
11
H_DQ[5]
I/O5
Data bus
12
H_DQ[4]
I/O5
Data bus
13
VCC_CORE
IN
3.3V power supply Core
14
GND_CORE
IN
Ground(core)
15
H_DQ[3]
I/O5
Data bus
16
H_DQ[2]
I/O5
Data bus
17
H_DQ[1]
I/O5
Data bus
18
H_DQ[0]
I/O5
Data bus
19
VCC_IO
IN
3.3V power supply IO
20
H_procclock
IN
Host processor EMI interface clock
21
GND_IO
IN
Ground
22
H_WAIT
O5
Wait signal
23
H_RWn
IN
READ=1,Write=0
24
H_CSLn
IN
Chip Select, active low
25
H_CSHn
IN
Chip select
26
H_ben(1)
IN
Byte Enable 1
27
H_ben(0)
IN
Byte Enable 0
28
B_V4
IN
Versatile Input Pin (contains Subcode), not used
29
B_SYNC
IN
Sector sync / Absolute time sync
30
B_FLAG
IN
I2S flag (EDC flag)
31
B_BCLK
IN
I2S Bit ClocK
32
B_WCLK
IN
I2S Word CLock
33
B_DATA
IN
I2S Data
34
GP_in_pin(0)
IN
General purpose in
35
GP_in_pin(1)
IN
General purpose in
36
AD[6]
I/O5
37
AD[5]
I/O5
38
AD[4]
I/O5
39
VCC_CORE
IN
3.3V power supply Core
40
GND_CORE
IN
Ground(core)
41
AD[3]
I/O5
42
AD[2]
I/O5
43
AD[1]
I/O5
44
AD[0]
I/O5
Digital out of AD OR digital in for PLL
45
GP_in_pin (2)
IN
General purpose in
46
biasin
APIO
Current input. connect via 15K to VSS
47
vddaagc
VDDCO
VDD of AGC ( + 3.3V)
48
Agcadctstp
APIO
AGC Positive channel test pin
49
vssaagc
VSSCO
Analog ground for AGC.
50
agcinp
APIO
AGC positive input signal, HF in.
51
VCC_IO
IN
3.3V power supply IO
52
GND_IO
In
Ground
53
agcadctstn
APIO
AGC Negative channel test pin
54
vssaadc
VSSCO
VSS of AGC & ADC connected to substrate
55
vddaadc
VDDCO
VDD of ADC ( +3.3V)
56
adcrefh
APIO
ADC decoupling high . (via 100nF to VSS)
57
Adcrefm
APIO
ADC decoupling middle . (via 100nF to VSS)
178
58
adcrefl
APIO
ADC decoupling low. (via 100nF to VSS)
59
vssrefadc
VSSCO
VSS of Reference Ladder of ADC ( not to the substrate)
60
PCM_LeRi_in
IN
PCM data Left/Right
61
PCM_CeLf_in
IN
PCM data Centre/LFE
62
PCM_LsRs_in
IN
PCM data lift/Right surround
63
PCM_wclk_in
IN
PCM word clock
64
PCM_dclk_in
IN
PCM data clock
65
VCC_CORE
IN
3.3V power supply Core
66
GND_CORE
IN
Ground(core)
67
GP_in_pin (3)
IN
General purpose in
68
D_ADDR[4]
O5
SDRAM Address bus
69
D_ADDR[5]
O5
SDRAM Address bus
70
GND_IO
IN
Ground
71
D_ADDR[6]
O5
SDRAM Address bus
72
D_ADDR[7]
O5
SDRAM Address bus
73
D_ADDR[8]
O5
SDRAM Address bus
74
D_ADDR[9]
O5
SDRAM Address bus
75
VCC_IO
IN
3.3V power supply IO
76
D_clk
O5
Clock signal needed for SDRAM.
77
GND_IO
IN
Ground
78
D_ADDR[0]
O5
SDRAM Address bus
79
D_ADDR[1]
O5
SDRAM Address bus
80
D_ADDR[2]
O5
SDRAM Address bus
81
D_ADDR[3]
O5
SDRAM Address bus
82
VCC_IO
IN
3.3V power supply IO
83
GND_IO
IN
Ground
84
D_ADDR[10]
O5
SDRAM Address bus
85
D_ADDR[11]
O5
SDRAM Address bus
86
GND_IO
-
Ground.
87
D_RASn
O5
Row Address Select
88
D_CASn
O5
Column Address Select
89
D_Wen
O5
Read/Write
90
D_LDQM
O5
DQ mask enable (lower)
91
VCC_CORE
IN
3.3V power supply Core
92
GND_CORE
IN
Ground(core)
93
D_UDQM
O5
DQ mask enable (Upper)
94
D_DQ[0]
I/O5
Data bus
95
VCC_IO
IN
3.3V power supply IO
96
D_DQ[1]
I/O5
Data bus
97
D_DQ[2]
I/O5
Data bus
98
D_DQ[3]
I/O5
Data bus
99
D_DQ[4]
I/O5
Data bus
100
VCC_IO
IN
3.3V power supply IO
101
GND_IO
IN
Ground
102
D_DQ[5]
I/O5
Data bus
103
D_DQ[6]
I/O5
Data bus
104
D_DQ[7]
I/O5
Data bus
105
D_DQ[8]
I/O5
Data bus
106
D_DQ[9]
I/O5
Data bus
107
D_DQ[10]
I/O5
Data bus
108
D_DQ[11]
I/O5
Data bus
109
D_DQ[12]
I/O5
Data bus
110
VCC_IO
IN
3.3V power supply IO
111
GND_IO
IN
Ground
112
D_DQ[13]
I/O5
Data bus
113
D_DQ[14]
I/O5
Data bus
114
D_DQ[15]
I/O5
Data bus
115
D_ADDR[12]
O5
SDRAM Address bus
116
D_ADDR[13]
O5
SDRAM Address bus
117
VCC_CORE
IN
3.3V power supply Core
118
GND_CORE
IN
Ground(core)
IC-Pin_no
Name
Type
Function
179
119
DSD_PCM_0
O10
DSD data output signal. On 64 * Fs
Stereo : Left channel (channel 0)
MCA5/6 : front left ( channel 0) OR From PCM switch matrix
120
DSD_PCM_1
O10
Stereo : right channel (channel 1)
MCA 5/6 : front right ( channel 1)
OR From PCM switch matrix
121
DSD_PCM_2
O10
Stereo : mute sequence
MCA 5/6 : front centre ( channel 2) OR From PCM switch matrix
122
DSD_PCM_3
O10
stereo : mute sequence
MCA-5 : mute sequence
MCA-6 : LFE channel. (channel 3) OR From PCM switch matrix
123
VCC_IO
IN
3.3V power supply IO
124
GND_IO
IN
Ground
125
DSD_PCM_4
O10
Stereo : mute sequence
MCA-5 : left surround (channel 3)
MCA-6 : left surround (channel 4) OR From PCM switch matrix
126
DSD_PCM_5
O10
Stereo : mute sequence
MCA-5 : right surround (channel 4)
MCA-6 : right surround (channel 5) OR From PCM switch matrix
127
DSD_PCM_6
O5
DSD clock signal. OR From PCM switch matrix
128
DSD_PCM_7
O5
DSD stereo or down mix Left OR From PCM switch matrix
129
DSD_PCM_8
O5
DSD stereo or down mix Right OR From PCM switch matrix
130
DSD_str(0)
O10
DSD stereo or downmix on DSD.
131
DSD_str(1)
O10
DSD stereo or downmix on DSD.
132
dsd_clk
O5
DSD clock for DSD stereo signal.
133
VCC_IO
IN
3.3V power supply IO
134
GND_IO
IN
Ground
135
PCM_LeRi_Out
O10
PCM data Left/Right to AV PCB
136
PCM_wclk_Out
O5
PCM word clock
137
fs_256_sacd
IN
256 * Fs audio clock generated for SACD ( Fs=44.1k Hz)
138
mute_tot
O10
Selectable mute signal from PCM source or internal SACD source.
139
fs_256_dvd
IN
256 * Fs audio clock generated for DVD (Fs=48 kHz)
140
RESETn
IN
Asynchronous Reset
141
D_cke
O5
Clock enable output to SDRAM to enable the power down mode.
142
PCM_clk_Out
O5
256 * fs O10put./384 * Fs O10
143
VCC_CORE
IN
3.3V power supply Core
144
GND_CORE
IN
Ground(core)
145
PCM_mute_in
IN
PCM mute signal.
146
IEC958_in
IN
IEC958 input from Sti5505
147
IEC958_Out
O10
IEC958 O10put
148
VCC_IO
IN
3.3V power supply IO
149
CLK
IN
system Clock 27 MHz
150
GND_IO
IN
Ground
151
GP_out_pin (0)
O10
General purpose out
152
GP_out_pin (1)
O10
General purpose out
153
GP_out_pin (2)
O10
General purpose out
154
GP_out_pin (3)
O10
General purpose out
155
Prog_clk_sys
O10
Clock divide from system clock.
156
Prog_clk_384
O10
Clock divided from 384 * Fs LLD clock.
157
Pll_lock
O10
Indication that PLL is in lock
158
VCC_IO
IN
3.3V power supply IO
159
clk_384
IN
DSD system clock 384*Fs = 16.934400Hz
160
GND_IO
IN
Ground
161
Pll_sync
O10
Sector sync found.
162
Psp_enable
O10
If '1' PSP circuit is active
163
75hz_pulse
O10
75 Hz pulse to audio interface
164
Ssm_act
O10
Indication new frame is being transmitted
165
Lld_mute
O10
If '1' mute indication from audio interface
166
Play
O10
If '1' Fade circuit is in LLD mode
167
mute_det
O10
Mute 0x69 for all channels detection
168
Fade_busy
O10
Indication that fade in/out is busy
169
Do_grab
O10
Active data out of LLD.
170
VCC_CORE
IN
3.3V power supply Core
IC-Pin_no
Name
Type
Function
180
9.25
Circuit description of DAC board
9.25.1 Description
The DAC board has 6 high performance audio outputs. It
consists of 3 D/A converters and their appropriate filters, the
clock generator part, the filter-control part and the muting-
control part (See block diagram).
Key components are D/A converter CS4397 and I2C
controller PCF8574.
The DAC board supports DSD and PCM. The digital data are
sent from the MONO board to the DAC's QD41,QD51 and
QD61 via a flex and connector JD01. The audio signals are
sent to the cinches via a 2 or 1 filter stage. In these filter
stages discrete opamp's are used.
The DAC board is I2C controlled via the I2C bus from the
mono board to the DAC's and I2C controller QD21.
The differences between DSD mode and PCM mode are
shown in the table below:
Digital audio data
MCLK
9.25.2 Filter setting
The user can select 3 filter settings using switch SD71 at the
rear of the set. This is only effective during the playback of
SACD discs. See the table below.
171
GND_CORE
IN
Ground(core)
172
PCM_dclk_Out
O5
PCM data clock
173
Tst(1)
IN
internal pull up for both test pins
174
Tst(0)
IN
IC testpins tst(1:0)
11 : Functional behaviour
10 : RAM test
01 : scan shift
00 : scan normal
175
TDI
IN
Boundary scan Data Input.
176
TMS
IN
Boundary scan Mode select
177
TCK
IN
Boundary scan Clock
178
TDO
O10
O10put
179
TRST
IN
Boundary scan Reset.
180
GND_IO
IN
Ground
181
H_IRQn
O5
Interrupt Request, active low
182
H_A22
IN
Data Strobe, active low
183
H_A[21]
IN
Address bus
184
H_A[20]
IN
Address bus
185
H_A[19]
IN
Address bus
186
H_A[18]
IN
Address bus
187
H_A[17]
IN
Address bus
188
H_A[16]
IN
Address bus
189
H_A[15]
IN
Address bus
190
H_A[14]
IN
Address bus
191
H_A[13]
IN
Address bus
192
H_A[12]
IN
Address bus
193
H_A[11]
IN
Address bus
194
H_A[10]
IN
Address bus
195
VCC_CORE
IN
3.3V power supply Core
196
GND_CORE
IN
Ground(core)
197
H_A[9]
IN
Address bus
198
H_A[8]
IN
Address bus
199
H_A[7]
IN
Address bus
200
H_A[6]
IN
Address bus
201
H_A[5]
IN
Address bus
202
H_A[4]
IN
Address bus
203
H_A[3]
IN
Address bus
204
H_A[2]
IN
Address bus
205
H_A[1]
IN
Address bus
206
VCC_IO
IN
3.3V power supply IO
207
H_DQ[15]
I/O5
Data bus
208
H_DQ[14]
I/O5
Data bus
IC-Pin_no
Name
Type
Function
Pin number
PCM mode
DSD mode
11
BCK
BCK
12
LRCK
SEL_DSD
13
SDT
DSD_L
14
SEL_PCM
DSD_R
AUDIO SIGNAL
MCLK
DSD(SACD)
192Fs(8.4672 MHz)
PCM audio (Fs = 44.1 kHz) (CD) 384Fs(16.9344 MHz)
PCM audio (Fs = 32,4896 kHz)
256Fs
181
* Normal: output via 1 filter stage (3rd order filter)
Custom: output via 2 filter stage (6th order filter)
9.25.3 Description of DAC CS4397
DISCS
Filter switch position
Position 1
position 2
position 3
SACD (DSD)
All channels: Normal*
L and R: Custom* Other channels: Normal
All channels: Custom
CD (PCM)
All channels : Custom
SCLK
MCLK
M4
LRCK
SDATA
AOUTL+
AOUTR+
SERIAL INTERFACE
AND FORMAT SELECT
INTERPOLATION
SOFT MUTE
DS
MODULATOR
DYNAMIC
DE-EMPHASIS
SWITCHED
AOUTL-
AOUTR-
FILT+
FILTER
INTERPOLATION
FILTER
FILTER
MULTI-BIT
DS
MODULATOR
MULTI-BIT
ELEMENT
MATCHING
LOGIC
DYNAMIC
ELEMENT
MATCHING
LOGIC
CAPACITOR-DAC
AND FILTER
SWITCHED
CAPACITOR-DAC
AND FILTER
VREF
CMOUT
FILT-
VOLTAGE REFERENCE
HARDWARE MODE CONTROL
CLOCK
DIVIDER
(CONTROL PORT)
(AD0/CS)
M3
M2
(AD1/CDIN) (SCL/CCLK)
M1
M0
(SDA/CDOUT)
RESET
MUTEC MUTE
SCLK
Audio
Data
Processor
External Clock
M CLK
AG ND
AOUTR+
CS4397
SDATA
VA
AOUTR-
+5V
Analog
+
Mode
Select
(Control Port)
M1 (GND)
M0 (SDA/CDO UT)
AOUTL-
AOUTL+
DGND
VD
MUTE
Analog
Conditioning
Analog
Conditioning
7
22
24
23
19
20
18
9
1
15
13
11
12
4
14
5
M2 (SCL/CCLK)
LRCK
+
RST
10
M3 (AD1/CDIN)
M4 (AD0/CS)
2
3
25
26
27
VREF
FILT+
FILT-
+5V
Analog
28
6
21
MUTEC
8
17
+
+
CMOUT
VD
16
C/H
+5 to +3 V
Digital
Typical Connection Diagram - Hardware Mode (Control Port Mode)
CS4397
Block Diagram
Pin Configuration
CL 06532152_099.eps
131200
182
Pin Function
No.
Pin Name
I/O
Description
1
RST
I
Reset input (Low active)
2
M4(AD0/CS)
I
Chip address bit0 for I2C
3
M3(AD1/CDIN)
I
Chip address bit1 for I2C
4
M2(SCL/CCLK))
I
Serial clock for I2C
5
M0(SDA/CDOUT)
I/O
Serial data for I2C
6
DGND
Digital ground
7
VD
Digital power supply +3.3V
8
VD
Digital power supply +3.3V
9
DGND
Digital ground
10
MCLK
I
Master clock
PCM mode:256Fs
DSD mode:192Fs (8.4672MHz)
11
SCLK
I
Serial data clock
12
LRCK(PCM)
I
PCM mode:Left/Right channel clock
CLKMODE(DSD)
I
DSD mode:Select MCLK to DSD data rate clock rations
13
SDATA(PCM)
I
PCM mode:Serial audio data
DSD_L(DSD)
DSD mode:Direct Stream Digital audio data (Left)
14
M1(PCM)
I
PCM mode:(Low)
DSD_R(DSD)
DSD mode:Direct Stream Digital audio data (Right)
15
MUTE
I
Mute input (Low active)
16
C/H
I
Control port (H) /Hardware (L) mode select
17
MUTEC
O
Mute control (Low active)
18
AGND
Analog ground
19
AOUTR-
O
Right channel negative Analog out
20
AOUTR+
O
Right channel positive Analog out
21
AND
Analog ground
22
VA
Analog power supply +5.5V
23
AOUTL+
O
Left channel positive Analog out
24
AOUTL-
O
Left channel negative Analog out
25
CMOUT
O
Common mode voltage
26
FILT-
I
Reference ground
27
FILT+
O
Reference filter
28
VREF
Voltage reference input
CL 06532152_100.eps
131200
183
9.25.4 Description of I2C controller PC8574
PC8574
Block Diagram
Pin Configuration
Pin Function
I C BUS
CONTROL
2
INPUT
FILTER
1
2
3
14
15
13
INTERRUPT
LOGIC
12
P7
11
P6
10
P5
9
P4
7
P3
6
P2
5
P1
4
P0
8 BIT
I/O
PORT
SHIFT
REGISTER
LP FILTER
WRITE pulse
READ pulse
POWER-ON
RESET
16
8
VDD
VSS
SDA
SCL
A2
A1
A0
INT
PCF8574
1
2
3
4
5
6
7
8
16
15
14
13
12
11
10
9
INT
A0
A1
A2
P0
P1
P2
P3
SDA
VSS
SCL
P7
P6
P5
P4
VDD
PCF8574
SYMBOL
PIN
DESCRIPTION
DIP16; SO16
SSOP20
A0
1
6
address input 0
A1
2
7
address input 1
A2
3
9
address input 2
P0
4
10
quasi-bidirectional I/O 0
P1
5
11
quasi-bidirectional I/O 1
P2
6
12
quasi-bidirectional I/O 2
P3
7
14
quasi-bidirectional I/O 3
VSS
8
15
supply ground
P4
9
16
quasi-bidirectional I/O 4
P5
10
17
quasi-bidirectional I/O 5
P6
11
19
quasi-bidirectional I/O 6
P7
12
20
quasi-bidirectional I/O 7
INT
13
1
interrupt output (active LOW)
SCL
14
2
serial clock line
SDA
15
4
serial data line
VDD
16
5
supply voltage
n.c.
-
3
not connected
n.c.
-
8
not connected
n.c.
-
13
not connected
n.c.
-
18
not connected
CL 06532152_101.eps
131200
184
9.26
IC description of Linear power supply
PQ15RW11
1 DC input(Vin)
2 DC output(Vo)
3 GND
4 Output voltage adjustment
terminal(Vadj)
1
2
3
4
PQ15RW11
1
4
2
3
Input
Output
GND
Specific IC
Output voltage
adjustment terminal
TA7317P
Block Diagram
Pin Configuration
CL 06532152_102.eps
131200
185
9.27
List of abbreviations
+12VSTBY
+12V power supply present during
standby
+3A
Filtered 3V3 power supply to
IC7207(MACE servo processor)
+3V3
3V3 power supply
+3V3S
Stabilised 3V3 power supply from
IC7605 to MACE (IC7207) circuit
+5V
+5V power supply
+5VA
Filtered +5V: analog power supply
for IC7311(HD61 decoder)
+5VB
Filtered +5V: digital power supply for
IC7311(HD61 decoder)
+5VC
+5V power supply for IC7202(servo
flash eprom)
+5VSTBY
+5V power supply present during
standby
+5VX
+5V power supply for
IC7105(opamp)
+6VSTBY
+6V power supply present during
standby
+9V
Stabilised +9V power supply from
IC7109 to IC7103 (Servo power
driver)
0_6_12V
Scart switch control signal to A/V
board. 0V : loop through (AUX to
TV), 6V : play 16:9 format, 12V : play
4:3 format
1.5V
1.5V reference voltage for IC7102
(DVDALAS)
2.0V
2V reference voltage for IC7102
(DVDALAS)
2.5V
2.5V reference voltage for IC7102
(DVDALAS)
27M_CLK
27MHz clock out of the PLL-Master
clock for the main processor
(IC7503)
384FS_IN
SACD clock from DAC PCB
75HZ_PULSE
75Hz pulse to audio interface
indication output
-8VSTBY
-8V power supply present during
standby
A[20:1]
System address bus (EMI)
A1_MACE
Amplitude of the "land" reflection
relative to the average EFM
AD[11:0]
SDRAM address bus
ALE
Address latch enable (servo
processor)
ALPHA0
Generic name for the setpoint of the
laser power absorption control
AM[7:0]
Latched low address bus to servo
flash
AM[17:8]
High address bus to servo flash
AMD[7:0]
Multiplexed address data bus to
servo flash
Ax
Central photodiode signal
B
Central photodiode signal
B_BCLK
Basic engine I2S bit clock
B_DATA
Basic engine I2S data
B_FLAG
Basic engine error flag
B_OUT
Video output blue from Sti5505
B_SYNC
Basic engine sector /abs time sync
B_V4
Basic engine versatile input pin
B_VID
Buffered video output Blue to A/V
board
B_WCLK
Basic engine I2S word clock
BE1N_FUR
Upper byte enable of the Furore
BE0N_FUR
Lower byte enable of the Furore
C
Central photodiode signal
C_OUT
Chrominance output from Sti5505
C_VID
Buffered Chrominance output to A/V
board
CALF_MACE
Central aperture low frequency
control signal to MACE
CAS[1:0]ND
DRAM column address strobe
CASN
SDRAM column address strobe
CE_ROM1N
Chip enable flash eprom IC7401
CE_ROM2N
Chip enable flash eprom IC7451
CE_ROMN
Chip enable ROM memory (flash
access)
CENTRE_ON
Control signal from Sti5505 to AV
board to switch STEREO OUTPUT
cinch to mono.
CFLG
Correction flag output
CFR
Control processor ready to accept
data (S2B)
CLK
Clock for SDRAM memory
COSPH
Position Control Sledge in
CPUANALYSE
Control port P3 I/O from Sti5505
CPURESET
Control port P3 I/O to Sti5505
CSH_FUR
FURORE chip select the upper bank
CSI
Chip select input of HD61 (servo)
CSL_FUR
FURORE chip select the lower bank
CSN[2:1]
SDRAM chip select
CTS_SER
Clear to send control signal of
service serial interface
CVBS
Buffered composite video output to
A/V board
CVBS_OUT
Composite video output from
Sti5505
D
Central photodiode signal
D[15:0]
System data bus (EMI)
DO_GRAB
Active data out of LLD (LossLess
Decoder). Indication output
DQ[15:0]
SDRAM data bus
DQML
SDRAM data mask enable (Lower)
DQMU
SDRAM data mask enable (Upper)
DSD
Direct Stream Digital
DSD_CLK
DSD clock for DSD stereo signal
DSD_PCM[8:0]
DSD data
DSD_STR[1:0]
DSD stereo or downmix on DSD
DST
Direct Stream Transfer
DVD_LDN
Control signal from MACE to loader
supply IC7107
E
Satellite photodiode signal
EMI_IRQN
Interrupt request, active low
ERROROUT
Control port P3 I/O from Sti5505
F
Satellite photodiode signal
FADE_BUSY
Indication that fade in/out is busy
FLASH_OEN
FLASH output enable control signal
FO
Focus actuator output
FOC-
Focus actuator negative connection
FOC+
Focus actuator positive connection
FUR_AD[13:0]
FURORE SDRAM address bus
FUR_CASN
Furore SDRAM column address
strobe
FUR_CKE
Furore SDRAM clock enable
FUR_CLK
Furore SDRAM clock
FUR_DQ[15:0]
FURORE SDRAM data bus
FUR_DQMH
FURORE SDRAM data mask
enable (Upper)
FUR_DQML
FURORE SDRAM data mask
enable (Lower)
FUR_RASN
Furore SDRAM row address strobe
FUR_TDI
Boundary scan test data input
FURORE
FUR_TMS
Boundary scan test mode select
FURORE
FUR_TRST
Boundary scan test port reset
FURORE
FUR_WEN
Furore SDRAM write enable
G_OUT
Video output green from Sti5505
G_VID
Buffered video output Green to A/V
board
GND
Ground
GP_IN_PIN[3:0]
Furore general purpose input port
GP_OUT_PIN[3:0]
Furore general purpose output port
186
HPSW
Control signal to swith HF signal
path
HSYNC
Horizontal synchronization output
I2C_DAC
Control signal to enable/disable the
I2C bus to the DAC PCB
INT
Interrupt request
KAR_BY_PASS
Karaoke bypass control signal from
Sti5505 to AV board.
LD-CD
CD laser out
LD-DVD
DVD laser out
LLD_MUTE
LossLess Decoder Mute, if "1" mute
indication from audio interface
LRCLK
PCM Left/Right clock (word clock) to
AV board
LRCLK_AV
PCM Left/Right clock (word clock) to
AV board
LRCLK_FUR
PCM Left/Right clock (word clock) to
the FURORE
LRCLKO
PCM Left/Right clock (word clock)
output from STI5505
MON1
CD laser monitor
MON2
DVD laser monitor
MOTO1
Motor control signal
MUTE
Mute control signal
MUTE_AV
Mute control signal to AV board
MUTE_DET
Mute detection, mute 0x69 for all
channels detection
O[4:1]
Servo current outputs for focus
control
O-CENTRAL
Testpin for offset cancelation
OEND
DRAM output enable
OSLINKIN
Control port P3 I/O to Sti5505
OSLINKOUT
Control port P3 I/O from Sti5505
OTD-HD61
Off track detection
P50
Bi-directional interface used for
communication between video
equipment
PCM_CELF_FUR
I2S center/subwoofer serial data line
PCM_CLK_FUR
Audio system clock to FURORE
PCM_CLK_ST
Audio system clock to STI5505
PCM_LERI_FUR
I2S left right data line to the
FURORE
PCM_LSRS_FUR
I2S left/right surround serial data line
PCM_OUT0
I2S audio serial data out of the
STI5505
PCMCLK_AV
I2S audio system clock to A/V PCB
PCMOUT_AV
I2S audio serial output data to A/V
PCB
PLAY
If "1" Fade circuit is in LLD mode,
indication output
PLL_LOCK
Indication that PLL is in lock
PLL_SYNC
Sector sync found indication
POR
Power on reset
PORN
Power on reset active low
PROG_CLK384
Clock divided from 384*Fs =
16.9344 Hz
PROG_CLKSYS
Clock divide from system clock
PSENn
Program strobe enable (Servo)
PSP
Pit Signal Processing
PSP_ENABLE
If "1" PSP circuit is active, indication
output
PWR_FAIL
Power fail control signal from PSU
R_OUT
Video output Red from Sti5505
R_VID
Buffered video output Red to A/V
board
RA
Radial actuator control signal from
servo processor to power driver
RAC-SW
Radial control switch
RAD-
Radial actuator negative connection
RAD+
Radial actuator positive connection
RAMAD[14:0]
RAM memory address bus (Servo)
RAMDA[7:0]
RAM memory data bus (Servo)
RAMRW
RAM memory read/write control
signal (Servo)
RAS[1:0]ND
DRAM row address strobe
RASN
SDRAM row address strobe
RDI
Read enable input of HD61
REFCOS
Position Control Sledge external
cosine offset compensation/stepper
motor cosine output
REFSIN
Position Control Sledge external
sine offset compensation/stepper
motor sine output
RESET_I2C
Reset I2C
Rfo
Amplified HF signal to HD61
RFP
Amplified HF signal for PSP
recognition
RSTN
System reset
RTS_SER
Ready to send control signal of
service serial interface
RWN
Read/Write control signal (EMI)
RXD_BE
Receive data of basic engine serial
interface (S2B)
RXD_SER
Receive data of service serial
interface
S[2:1]
Servo current outputs for radial
tracking
SACD_CLK
SACD clock 16.394 MHz, CLK
source of the system
SCART[1:0]
Scart control signals: slow blanking
SCL
I2C bus clock
SCL_DAC
I2C bus clock to DAC PCB
SCLK
PCM I2S serial bit clock
SCLK_AV
PCM I2S serial bit clock to A/V PCB
SCLK_FUR
PCM I2S serial bit clock to the
FURORE
SCLKo
PCM I2S serial bit clock output from
Sti5505
SDA
I2C bus data
SDA_DAC
I2C bus data to DAC PCB
SEL_ACLK1
Select audio clock 1
SEL_ACLK2
Select audio clock 2
SERVICE
Control signal of service serial
interface
SICL
Serial interface clock input
SIDA
Serial interface data input
SILD
Serial interface load
SINPH
Position control sledge in
SL
Sledge actuator control signal from
servo processor to power driver
SL-
Sledge actuator negative
connection to sledge motor
SL+
Sledge actuator positive connection
to sledge motor
SPDIF_AV
Digital audio to the A/V PCB
SPDIF_FUR
Digital audio to the FURORE
SPDIF_OUT
Digital output from STI5505
SSM_ACT
Indication new frame is being
transmitted
ST_CLK
STI5505 system clock
ST_TDI
Boundary scan test data input to
STI5505
STB_CONT
Standby control signal to power
supply
STB_CONTD
Delayed standby control signal -
enable or disable the clocks
STB_MUTE
Standby control signal mute
STB_OUT
Standby control signal to DAC PCB
STBY
Standby
SUR
Servo Unit Ready to accept data
(S2B0
T[3:1]
Tacho control signals from HD61 to
turntable motor driver
TCK
Boundary scan test clock
TDI
Boundary scan test data input
TDO
Boundary scan test data output
TMS
Boundary scan test mode select
TRAY1
Tray motor control signal 1 from
servo processor to power driver
187
TRAY2
Tray motor control signal 2 from
servo processor to power driver
TRAYSW
Tray switch control signal to servo
processor
TRST
Boundary scan test port reset
TXD_BE
Transmitted data basic engine serial
interface (S2B)
TXD_SER
Transmitted data service serial
interface
VCC_FUR
Filtered power supply 3V3 to
FURORE IC
VCC_LVC00
Filtered power supply 3V3 to IC7400
VCC3V3
Power supply 3V3
VCC5V
Power supply 5V to system clocks
VDD_DRAM
Power supply for DRAM 7450
(option)
VDD_MEM
Power supply for flashes 7401 and
7451
VDD_MEM2
Power supply for SDRAM
VDD_STI
Power supply for ST5505
VDDA_ADC
ADC power supply voltage 3V3 for
FURORE
VDDA_AGC
AGC power supply voltage 3V3 for
FURORE
VO2-
Tray motor negative connection
VO2+
Tray motor positive connection
V-REF
Reference voltage
VSYNC
Vertical synchronisation
-VVID
Negative reference voltage to video
buffers
WAIT
Wait state request
WE
Servo flash Write Enable
WEN
Write enable control signal to
SDRAM
WRI
Write enable input of HD61 (Servo)
Y_OUT
Luminance output from Sti5505
Y_VID
Buffered luminance output to A/V
board
188
10. ELECTRICAL PARTS LIST
The suppliers and their type numbers of fusible resistors
are as follows;
1. KOA Corporation
Part No. (MJI)
Type No. (KOA)
Description
NH05 × × × 140
RF25S × × × × ΩJ
(±5% 1/4W)
NH05 × × × 120
RF50S × × × × ΩJ
(±5% 1/2W)
NH85 × × × 110
RF73B2A × × × × ΩJ
(±5% 1/10W)
NH95 × × × 140
RF73B2E × × × × ΩJ
(±5% 1/4W)
2. Matsushita Electronic Components Co., Ltd
Part No. (MJI)
Type No. (MEC)
Description
NF05 × × × 140
ERD-2FCJ × × ×
(±5% 1/4W)
RF05 × × × 140
NF02 × × × 140
ERD-2FCG × × ×
(±2% 1/4W)
RF02 × × × 140
Examples ;
Resistance value
0.1 Ω .... 001
10 Ω .... 100
1 kΩ .... 102 100 kΩ .... 104
0.5 Ω .... 005
18 Ω .... 180
2.7 kΩ .... 272 680 kΩ .... 684
1 Ω .... 010
100 Ω .... 101
10 kΩ .... 103
1 MΩ .... 105
6.8 Ω .... 068
390 Ω .... 391
22 kΩ .... 223 4.7 MΩ .... 475
ASSIGNMENT OF COMMON PARTS CODES.
RESISTORS
R
: 1) GD05 × × × 140, Carbon film fixed resistor, ±5% 1/4W
R
: 2) GD05 × × × 160, Carbon film fixed resistor, ±5% 1/6W
Examples ;
Resistance value
0.1 Ω .... 001
10 Ω .... 100
1 kΩ .... 102 100 kΩ .... 104
0.5 Ω .... 005
18 Ω .... 180
2.7 kΩ .... 272 680 kΩ .... 684
1 Ω .... 010
100 Ω .... 101
10 kΩ .... 103
1 MΩ .... 105
6.8 Ω .... 068
390 Ω .... 391
22 kΩ .... 223 4.7 MΩ .... 475
Note : Please distinguish 1/4W from 1/6W by the shape of parts
used actually.
CAPACITORS
C
: CERAMIC CAP.
3) DD1 × × × × 370,
Ceramic capacitor
Disc type
Temp.coeff.P350
N1000, 50V
Examples ;
Tolerance (Capacity deviation)
±0.25 pF .... 0
±0.5 pF .... 1
±5% .... 5
Tolerance of COMMON PARTS handled here are as follows :
0.5 pF
5 pF .... ±0.25 pF
6 pF
10 pF .... ±0.5 pF
12 pF
560 pF .... ±5%
Capacity value
0.5 pF .... 005
3 pF .... 030 100 pF .... 101
1 pF .... 010
10 pF .... 100 220 pF .... 221
1.5 pF .... 015
47 pF .... 470 560 pF .... 561
C
: CERAMIC CAP.
4) DK16 × × × 300,
High dielectric constant ceramic
capacitor
Disc type
Temp.chara. 2B4, 50V
Examples ;
Capacity value
100 pF .... 101 1000 pF ....102
10000 pF .... 103
470 pF .... 471 2200 pF ....222
C
: 5) ELECTROLY CAP. ( ), 6) FILM CAP. ( )
5) EA × × × × × × 10,
Electrolytic capacitor
One-way lead type, Tolerance ±20%
Examples ;
Capacity value
0.1 µF....104
4.7 µF ....475
100 µF ....107
0.33 µF....334
10 µF ....106
330 µF ....337
1 µF....105
22 µF ....226
1100 µF ....118
2200 µF ....228
Working voltage
6.3V....006
25V ....025
10V....010
35V ....035
16V....016
50V ....050
6) DF15 × × × 350
Plastic film capacitor
DF15 × × × 310
One-way type, Mylar ±5% 50V
DF16 × × × 310
Plastic film capacitor
One-way type, Mylar ±10% 50V
Examples ;
Capacity value
0.001 µF(1000 pF) ....... 102
0.1 µF....104
0.0018 µF........................ 182
0.56 µF....564
0.01 µF........................ 103
1 µF....105
0.015 µF........................ 153
: 1) The above CODES ( R , R , C , C and
C ) are omitted on the schematic diagram in some
case.
2) On the occasion, be confirmed the common parts on
the parts list.
3) Refer to “Common Parts List” for the other common
parts (RI05, DD4, DK4).
➀
➁
Capacity value
Tolerance
➃
Capacity value
Resistance value
➄
Working voltage
Capacity value
➆
Capacity value
NOTE
NOTE ON SAFETY FOR FUSIBLE RESISTOR :
Resistance value
Resistance value
(0.1 Ω − 10 kΩ)
Resistance value
Resistance value
ANT.
: ANTENNA
BATT.
: BATTERY
CAP.
: CAPACITOR
CER.
: CERAMIC
CONN.
: CONNECTING
DIG.
: DIGITAL
HP
: HEADPHONE
MIC.
: MICROPHONE
µ-PRO
: MICROPROCESSOR
REC.
: RECORDING
RES.
: RESISTOR
SPK
: SPEAKER
SW
: SWITCH
TRANSF. : TRANSFORMER
TRIM.
: TRIMMING
TRS.
: TRANSISTOR
VAR.
: VARIABLE
X’TAL
: CRYSTAL
ABBREVIATION AND MARKS
{
{
{
{
{
{
{
{
{
{
➂
➀
➁
➂
➃
➄
➅
➆
➅
NOTE ON SAFETY :
Symbol
Fire or electrical shock hazard. Only original
parts should be used to replaced any part marked with
symbol
. Any other component substitution (other
than original type), may increase risk of fire or electrical
shock hazard.
NOTE ON FUSE :
Regarding to all parts of parts code FS20xxx2xx, replace
only with Wickmann-Werke GmbH, Type 372 non glass type
fuse.
010728MIT
189
NOTE : "nsp" PART IS LISTED FOR REFERENCE ONLY, MARANTZ WILL NOT SUPPLY THESE PARTS.
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
MONO (PZ01)
CIRCUIT BOARD
MONO-CAPACITORS
2009
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2010
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2011
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2012
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2013
4822 126 14043 1µF +80-20% Y5V 16V 0805
QP12614043
2100
2222 780 15656 330n16V 0805 X7R CER
QL78015656
2101
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2103
4822 124 80151 47µF 16V
QP12480151
2104
4822 126 13193 4.7nF 10% X7R 63V
QP12613193
2105
4822 122 33761 22pF 5%NP0 50V
QP12233761
2107
4822 126 13956 68pF 5% NP0 63V CASE 0603
QP12613956
2108
4822 126 14315 390pF 5% NP0 50V 0603
QP12614315
2109
2020 552 95697
QV55295697
2110
2222 861 15222 2n2 63V CER 0805 NP0 PM5
QL86115222
2111
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2112
5322 126 11578 1nF 10% X7R 50V 0603
QQ12611578
2113
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2114
4822 122 31765 100pF 2% NP0 63V
QP12231765
2115
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2116
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2117
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2118
3198 017 42230 22n 50V CER 0603 Y5VCOL
QG01742230
2119
3198 017 42230 22n 50V CER 0603 Y5VCOL
QG01742230
2120
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2121
4822 126 13879 220nF +80-20% 16V
QP12613879
2122
3198 017 42230 22n 50V CER 0603 Y5VCOL
QG01742230
2123
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2124
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2125
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2126
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2127
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2128
4822 126 14508 180pF 5% 50V 0603 NP0
QP12614508
2129
4822 126 14508 180pF 5% 50V 0603 NP0
QP12614508
2130
4822 122 33761 22pF 5%NP0 50V
QP12233761
2131
4822 126 14494 22nF 10% X7R 25V 0603
QP12614494
2136
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2137
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2138
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2139
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2140
4822 126 14241 330p 50V 0603 NPO CER
QP12614241
2141
4822 122 33761 22pF 5%NP0 50V
QP12233761
2142
5322 126 11583 10nF 10% X7R 50V 0603 CER
QQ12611583
2143
4822 126 13883 220pF 5% 50V
QP12613883
2144
4822 126 13883 220pF 5% 50V
QP12613883
2145
4822 126 13883 220pF 5% 50V
QP12613883
2146
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2147
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2200
4822 126 14494 22nF 10% X7R 25V 0603
QP12614494
2201
4822 126 14494 22nF 10% X7R 25V 0603
QP12614494
2202
4822 126 14494 22nF 10% X7R 25V 0603
QP12614494
2203
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2204
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2205
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2206
4822 126 14549 33N 16V X7R O6O3
QP12614549
2207
5322 126 11578 1nF 10% X7R 50V 0603
QQ12611578
2208
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2209
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2210
5322 126 11578 1nF 10% X7R 50V 0603
QQ12611578
2212
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2213
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2214
3198 017 42230 22n 50V CER 0603 Y5VCOL
QG01742230
2215
4822 124 23237 22µF 6.3V
QP12423237
2216
5322 126 11578 1nF 10% X7R 50V 0603
QQ12611578
2226
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2227
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2228
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2300
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2301
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2302
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2303
4822 124 80349 47µF 20% 6.3V
QP12480349
2304
3198 017 42230 22n 50V CER 0603 Y5VCOL
QG01742230
2305
3198 017 42230 22n 50V CER 0603 Y5VCOL
QG01742230
2306
4822 124 23002 10µF 16V
QP12423002
2307
3198 017 42230 22n 50V CER 0603 Y5VCOL
QG01742230
2308
4822 126 14494 22nF 10% X7R 25V 0603
QP12614494
2309
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2310
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2314
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2315
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2316
4822 126 14494 22nF 10% X7R 25V 0603
QP12614494
2317
4822 126 14494 22nF 10% X7R 25V 0603
QP12614494
2318
5322 122 33861 120pF10% 50V
QQ12233861
2319
4822 126 11669 27pF
QP12611669
2320
4822 126 14494 22nF 10% X7R 25V 0603
QP12614494
2401
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2402
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2403
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2404
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2405
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2406
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2407
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2408
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2409
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2410
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2411
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2412
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2413
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2414
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2418
4822 124 12095 100µF 20% 16V
QP12412095
2419
4822 124 80349 47µF 20% 6.3V
QP12480349
2420
4822 124 80349 47µF 20% 6.3V
QP12480349
2452
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2454
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2455
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2457
4822 124 23002 10µF 16V
QP12423002
2458
4822 126 14583 470nF 10% 16V XTR 0805
QP12614583
2459
4822 126 14043 1µF +80-20% Y5V 16V 0805
QP12614043
2500
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2504
4822 122 31765 100pF 2%NP0 63V
QP12231765
2505
4822 126 14494 22nF 10% X7R 25V 0603
QP12614494
2506
4822 124 23002 10µF 16V
QP12423002
2507
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2508
5322 126 11579 3,3nF 10%X7R 63V
QQ12611579
2509
4822 126 14241 330p 50V 0603 NPO CER
QP12614241
2510
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2511
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2512
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2513
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2514
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2515
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2516
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2517
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2518
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2519
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2520
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2521
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2522
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2523
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2524
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2525
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2526
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2528
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2529
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2530
3198 030 74780 4µ7 35V ELCAP SMPM20
QG03074780
2531
3198 030 74780 4µ7 35V ELCAP SMPM20
QG03074780
2532
4822 122 33777 47pF 5%NP0 63V
QP12233777
2533
4822 122 33777 47pF 5%NP0 63V
QP12233777
190
NOTE : "nsp" PART IS LISTED FOR REFERENCE ONLY, MARANTZ WILL NOT SUPPLY THESE PARTS.
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
MONO-CAPACITORS
2534
5322 126 11578 1nF 10% X7R 50V 0603
QQ12611578
2535
5322 126 11578 1nF 10% X7R 50V 0603
QQ12611578
2600
4822 126 14494 22nF 10% X7R 25V 0603
QP12614494
2601
4822 126 14247 1n5 50V 0603 X7R COL R CER
QP12614247
2602
4822 126 14247 1n5 50V 0603 X7R COL R CER
QP12614247
2603
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2604
4822 124 12095 100µF 20% 16V
QP12412095
2605
4822 126 14494 22nF 10% X7R 25V 0603
QP12614494
2606
4822 124 12095 100µF 20% 16V
QP12412095
2607
4822 124 12095 100µF 20% 16V
QP12412095
2608
4822 124 23002 10µF 16V
QP12423002
2609
4822 124 80151 47µF 16V
QP12480151
2610
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2611
4822 124 12095 100µF 20% 16V
QP12412095
2614
4822 122 33777 47pF 5%NP0 63V
QP12233777
2615
4822 122 33777 47pF 5%NP0 63V
QP12233777
2616
4822 122 33777 47pF 5%NP0 63V
QP12233777
2617
4822 122 33777 47pF 5%NP0 63V
QP12233777
2620
4822 122 33777 47pF 5%NP0 63V
QP12233777
2621
4822 122 33777 47pF 5%NP0 63V
QP12233777
2622
4822 122 33777 47pF 5%NP0 63V
QP12233777
2623
4822 122 33777 47pF 5%NP0 63V
QP12233777
2624
4822 122 33777 47pF 5%NP0 63V
QP12233777
2625
4822 122 33777 47pF 5%NP0 63V
QP12233777
2626
4822 122 33777 47pF 5%NP0 63V
QP12233777
2627
4822 122 33777 47pF 5%NP0 63V
QP12233777
2632
4822 124 12095 100µF 20% 16V
QP12412095
2633
4822 124 12095 100µF 20% 16V
QP12412095
2634
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2635
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2636
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2637
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2638
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2639
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2646
4822 124 23002 10µF 16V
QP12423002
2647
4822 122 33777 47pF 5%NP0 63V
QP12233777
2648
4822 122 33761 22pF 5%NP0 50V
QP12233761
2649
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2650
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2700
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2701
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2702
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2703
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2704
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2705
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2706
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2707
4822 124 80349 47µF 20% 6.3V
QP12480349
2800
4822 124 23002 10µF 16V
QP12423002
2801
4822 124 23002 10µF 16V
QP12423002
2802
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2803
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2804
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2805
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2806
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2807
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2808
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2809
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2810
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2811
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2812
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2813
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2814
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2815
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2816
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2817
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2818
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2819
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2820
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2821
4822 126 14305 100nF 10% X7R 16V 0603 CER QP12614305
2822
4822 126 14305
100nF 10% X7R 16V 0603 CER QP12614305
2823
4822 124 23002
10µF 16V
QP12423002
2824
4822 126 14305
100nF 10% X7R 16V 0603 CER QP12614305
2825
4822 124 23002
10µF 16V
QP12423002
2826
4822 126 14305
100nF 10% X7R 16V 0603 CER QP12614305
2827
5322 126 11583
10nF 10% X7R 50V 0603 CER
QQ12611583
2829
4822 126 14305
100nF 10% X7R 16V 0603 CER QP12614305
2830
4822 126 14305
100nF 10% X7R 16V 0603 CER QP12614305
2831
4822 126 14305
100nF 10% X7R 16V 0603 CER QP12614305
2832
4822 126 14238
2n2 50V 0603 X7R COL R CER
QP12614238
2833
5322 126 11583
10nF 10% X7R 50V 0603 CER
QQ12611583
2901
5322 126 11583
10nF 10% X7R 50V 0603 CER
QQ12611583
2902
4822 126 14305
100nF 10% X7R 16V 0603 CER QP12614305
2903
4822 126 14305
100nF 10% X7R 16V 0603 CER QP12614305
2905
4822 126 14305
100nF 10% X7R 16V 0603 CER QP12614305
2910
4822 124 12397
330µF 20% 6.3V
QP12412397
MONO-RESISTORS
3000
4822 051 30339
33R00 5% 0.062W
QP05130339
3001
4822 051 30339
33R00 5% 0.062W
QP05130339
3002
4822 051 30339
33R00 5% 0.062W
QP05130339
3003
4822 051 30103
10k00 5% 0.062W
QP05130103
3004
4822 051 30339
33R00 5% 0.062W
QP05130339
3005
4822 051 30339
33R00 5% 0.062W
QP05130339
3006
4822 051 30339
33R00 5% 0.062W
QP05130339
3007
4822 051 30339
33R00 5% 0.062W
QP05130339
3008
4822 051 30339
33R00 5% 0.062W
QP05130339
3009
4822 051 30339
33R00 5% 0.062W
QP05130339
3010
4822 117 12925
47k 1% 0.063W 0603
QP11712925
3011
4822 051 30339
33R00 5% 0.062W
QP05130339
3012
4822 051 30472
4k70 5% 0.062W
QP05130472
3013
4822 051 30103
10k00 5% 0.062W
QP05130103
3014
4822 051 30103
10k00 5% 0.062W
QP05130103
3015
4822 051 30103
10k00 5% 0.062W
QP05130103
3016
4822 051 30103
10k00 5% 0.062W
QP05130103
3017
4822 051 30103
10k00 5% 0.062W
QP05130103
3018
4822 117 12925
47k 1% 0.063W 0603
QP11712925
3019
4822 051 30103
10k00 5% 0.062W
QP05130103
3020
4822 051 30339
33R00 5% 0.062W
QP05130339
3021
4822 051 30472
4k70 5% 0.062W
QP05130472
3025
4822 051 30103
10k00 5% 0.062W
QP05130103
3026
4822 051 30103
10k00 5% 0.062W
QP05130103
3027
4822 051 30103
10k00 5% 0.062W
QP05130103
3028
4822 051 30103
10k00 5% 0.062W
QP05130103
3029
4822 051 30472
4k70 5% 0.062W
QP05130472
3030
4822 051 30103
10k00 5% 0.062W
QP05130103
3031
4822 051 30103
10k00 5% 0.062W
QP05130103
3033
4822 051 30102
1k00 5% 0.062W
QP05130102
3100
4822 117 11152
4R7 5%
QP11711152
3102
5322 117 13034
1k5 1% 0.063W 0603 RC22H
QQ11713034
3103
5322 117 13034
1k5 1% 0.063W 0603 RC22H
QQ11713034
3104
5322 117 13062
390R 1% 0.063W 0603 RC22H
QQ11713062
3105
4822 051 30103
10k00 5% 0.062W
QP05130103
3106
4822 051 30479
47R00 5% 0.062W
QP05130479
3107
4822 051 20228
2R20 5% 0.1W
QP05120228
3108
4822 051 20228
2R20 5% 0.1W
QP05120228
3109
4822 117 13632
100k 1% 0603 0.62W
QP11713632
3110
4822 051 30479
47R00 5% 0.062W
QP05130479
3111
5322 117 13058
150R 1% 0.063W 0603 RC22H
QQ11713058
3112
5322 117 13021
47R 1% 0.063W 0603 RC22H
QQ11713021
3114
4822 051 20228
2R20 5% 0.1W
QP05120228
3115
4822 051 20228
2R20 5% 0.1W
QP05120228
3116
5322 117 13042
3k9 1% 0.063W 0603 RC22H
QQ11713042
3117
4822 051 30181
180R00 5% 0.062W
QP05130181
3118
4822 051 30681
680R00 5% 0.062W
QP05130681
3119
5322 117 13062
390R 1% 0.063W 0603 RC22H
QQ11713062
3120
4822 051 30102
1k00 5% 0.062W
QP05130102
3121
4822 051 30273
27k00 5% 0.062W
QP05130273
3122
4822 051 30471
470R00 5% 0.062W
QP05130471
3123
4822 051 30103
10k00 5% 0.062W
QP05130103
191
NOTE : "nsp" PART IS LISTED FOR REFERENCE ONLY, MARANTZ WILL NOT SUPPLY THESE PARTS.
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
MONO-RESISTORS
3124
4822 051 30471 470R00 5% 0.062W
QP05130471
3125
4822 051 30103 10k00 5% 0.062W
QP05130103
3126
4822 051 30103 10k00 5% 0.062W
QP05130103
3127
4822 051 30223 22k00 5% 0.062W
QP05130223
3128
2322 704 69109
QH70469109
3129
4822 051 30392 3k9 5% 0.063W 0603
QP05130392
3130
4822 051 20228 2R20 5% 0.1W
QP05120228
3131
4822 051 20228 2R20 5% 0.1W
QP05120228
3132
4822 051 20228 2R20 5% 0.1W
QP05120228
3133
4822 051 20228 2R20 5% 0.1W
QP05120228
3134
5322 117 13047 330R 1% 0.063W 0603 RC22H
QQ11713047
3135
4822 117 13613 2R2 5% 0603
QP11713613
3137
4822 117 13613 2R2 5% 0603
QP11713613
3138
5322 117 13053 6k8 1% 0.063W 0603 RC22H
QQ11713053
3139
4822 117 12917 1R 5% 0.062W CASE0603
QP11712917
3140
4822 051 30479 47R00 5% 0.062W
QP05130479
3141
4822 117 11152 4R7 5%
QP11711152
3142
5322 117 13028 12k 1% 0.063W 0603 RC22H
QQ11713028
3143
5322 117 13043 220R 1% 0.063W 0603 RC22H
QQ11713043
3144
2322 704 69109
QH70469109
3146
4822 051 30103 10k00 5% 0.062W
QP05130103
3147
4822 051 30103 10k00 5% 0.062W
QP05130103
3148
5322 117 13022 22k 1% 0.063W 0603 RC22H
QQ11713022
3153
4822 117 12139 22R 5% 0.062W
QP11712139
3155
4822 051 30103 10k00 5% 0.062W
QP05130103
3157
4822 051 30103 10k00 5% 0.062W
QP05130103
3158
5322 117 13017 100R 1% 0.063W 0603 RC22H
QQ11713017
3160
4822 051 30101 100R00 5% 0.062W
QP05130101
3161
4822 117 13613 2R2 5% 0603
QP11713613
3162
4822 051 30101 100R00 5% 0.062W
QP05130101
3163
4822 051 30273 27k00 5% 0.062W
QP05130273
3164
4822 117 13613 2R2 5% 0603
QP11713613
3165
5322 117 13063 120R 1% 0.063W 0603 RC22H
QQ11713063
3166
4822 051 30393 39k00 5% 0.062W
QP05130393
3167
4822 051 30101 100R00 5% 0.062W
QP05130101
3168
5322 117 13047 330R 1% 0.063W 0603 RC22H
QQ11713047
3169
4822 051 30101 100R00 5% 0.062W
QP05130101
3170
4822 051 30101 100R00 5% 0.062W
QP05130101
3171
4822 051 30101 100R00 5% 0.062W
QP05130101
3172
4822 117 13632 100k 1% 0603 0.62W
QP11713632
3173
4822 117 13632 100k 1% 0603 0.62W
QP11713632
3174
4822 117 11152 4R7 5%
QP11711152
3175
4822 117 13613 2R2 5% 0603
QP11713613
3176
4822 051 30153 15K00 5% 0.062W
QP05130153
3178
4822 117 11151 1R 5%
QP11711151
3179
4822 051 30221 220R00 5% 0.062W
QP05130221
3180
4822 117 13632 100k 1% 0603 0.62W
QP11713632
3181
4822 051 30561 560R00 5% 0.062W
QP05130561
3182
5322 117 13018 1k0 1% 0.063W 0603 RC22H
QQ11713018
3183
5322 117 13017 100R 1% 0.063W 0603 RC22H
QQ11713017
3184
2322 704 61204
QH70461204
3185
4822 117 11151 1R 5%
QP11711151
3187
4822 051 30273 27k00 5% 0.062W
QP05130273
3189
4822 051 30008 0R00 JUMPER
QP05130008
3190
4822 051 30008 0R00 JUMPER
QP05130008
3191
4822 051 30008 0R00 JUMPER
QP05130008
3192
4822 051 30008 0R00 JUMPER
QP05130008
3193
4822 051 30008 0R00 JUMPER
QP05130008
3194
4822 051 30008 0R00 JUMPER
QP05130008
3195
4822 051 30008 0R00 JUMPER
QP05130008
3197
4822 051 30008 0R00 JUMPER
QP05130008
3198
5322 117 13049 470R 1% 0.063W 0603 RC22H
QQ11713049
3199
5322 117 13042 3k9 1% 0.063W 0603 RC22H
QQ11713042
3200
4822 051 30103 10k00 5% 0.062W
QP05130103
3201
4822 117 11151 1R 5%
QP11711151
3202
4822 117 11151 1R 5%
QP11711151
3203
4822 051 30105 1M00 5% 0.062W
QP05130105
3204
4822 051 30331 330R00 5% 0.062W
QP05130331
3205
4822 051 30103 10k00 5% 0.062W
QP05130103
3206
4822 051 30103 10k00 5% 0.062W
QP05130103
3207
4822 051 30472 4k70 5% 0.062W
QP05130472
3208
4822 051 30272 2k70 5% 0.062W
QP05130272
3209
4822 051 30472 4k70 5% 0.062W
QP05130472
3210
4822 051 30392 3k9 5% 0.063W 0603
QP05130392
3211
4822 051 30472 4k70 5% 0.062W
QP05130472
3212
4822 117 11152 4R7 5%
QP11711152
3213
4822 117 11152 4R7 5%
QP11711152
3214
4822 051 30392 3k9 5% 0.063W 0603
QP05130392
3215
4822 051 30103 10k00 5% 0.062W
QP05130103
3216
4822 051 30472 4k70 5% 0.062W
QP05130472
3219
4822 051 30103 10k00 5% 0.062W
QP05130103
3220
4822 051 30103 10k00 5% 0.062W
QP05130103
3221
4822 051 30103 10k00 5% 0.062W
QP05130103
3224
4822 051 30151 150R00 5% 0.062W
QP05130151
3225
2322 704 62004
QH70462004
3226
4822 051 30103 10k00 5% 0.062W
QP05130103
3227
4822 051 30472 4k70 5% 0.062W
QP05130472
3229
4822 051 30123 12k00 5% 0.062W
QP05130123
3230
4822 051 30103 10k00 5% 0.062W
QP05130103
3231
4822 051 30103 10k00 5% 0.062W
QP05130103
3232
4822 117 13613 2R2 5% 0603
QP11713613
3233
4822 051 30102 1k00 5% 0.062W
QP05130102
3234
4822 117 12902 8K2 1% 0.063W 0603
QP11712902
3235
4822 117 13632 100k 1% 0603 0.62W
QP11713632
3236
4822 051 30472 4k70 5% 0.062W
QP05130472
3237
4822 051 30103 10k00 5% 0.062W
QP05130103
3238
4822 051 30103 10k00 5% 0.062W
QP05130103
3239
4822 051 30008 0R00 JUMPER
QP05130008
3240
4822 051 30103 10k00 5% 0.062W
QP05130103
3242
4822 051 30008 0R00 JUMPER
QP05130008
3243
4822 051 30008 0R00 JUMPER
QP05130008
3246
4822 051 30008 0R00 JUMPER
QP05130008
3247
4822 051 30008 0R00 JUMPER
QP05130008
3249
4822 051 30008 0R00 JUMPER
QP05130008
3250
4822 051 30008 0R00 JUMPER
QP05130008
3251
4822 051 30008 0R00 JUMPER
QP05130008
3252
4822 051 30008 0R00 JUMPER
QP05130008
3253
4822 051 30008 0R00 JUMPER
QP05130008
3254
4822 051 30008 0R00 JUMPER
QP05130008
3255
4822 051 30008 0R00 JUMPER
QP05130008
3256
4822 051 30008 0R00 JUMPER
QP05130008
3257
4822 051 30008 0R00 JUMPER
QP05130008
3258
4822 051 30008 0R00 JUMPER
QP05130008
3259
4822 117 11151 1R 5%
QP11711151
3260
4822 117 11151 1R 5%
QP11711151
3300
4822 117 11152 4R7 5%
QP11711152
3301
4822 051 30105 1M00 5% 0.062W
QP05130105
3302
4822 051 30221 220R00 5% 0.062W
QP05130221
3303
4822 051 30101 100R00 5% 0.062W
QP05130101
3304
4822 051 30272 2k70 5% 0.062W
QP05130272
3305
4822 051 30272 2k70 5% 0.062W
QP05130272
3306
4822 051 30101 100R00 5% 0.062W
QP05130101
3309
4822 051 30103 10k00 5% 0.062W
QP05130103
3310
4822 051 30223 22k00 5% 0.062W
QP05130223
3311
4822 051 30223 22k00 5% 0.062W
QP05130223
3312
4822 051 30472 4k70 5% 0.062W
QP05130472
3313
4822 051 30472 4k70 5% 0.062W
QP05130472
3316
4822 051 20108 1R00 5% 0.1W
QP05120108
3317
4822 051 20108 1R00 5% 0.1W
QP05120108
3318
4822 051 30472 4k70 5% 0.062W
QP05130472
3319
4822 051 30479 47R00 5% 0.062W
QP05130479
3320
4822 051 30472 4k70 5% 0.062W
QP05130472
3321
4822 051 30682 6k80 5% 0.062W
QP05130682
3322
5322 117 13026 4k7 1% 0.063W 0603 RC22H
QQ11713026
3323
5322 117 13026 4k7 1% 0.063W 0603 RC22H
QQ11713026
3324
4822 117 13632 100k 1% 0603 0.62W
QP11713632
3325
4822 051 30682 6k80 5% 0.062W
QP05130682
3326
4822 051 30479 47R00 5% 0.062W
QP05130479
3327
4822 051 30682 6k80 5% 0.062W
QP05130682
192
NOTE : "nsp" PART IS LISTED FOR REFERENCE ONLY, MARANTZ WILL NOT SUPPLY THESE PARTS.
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
MONO-RESISTORS
3328
4822 051 30223 22k00 5% 0.062W
QP05130223
3329
4822 051 30223 22k00 5% 0.062W
QP05130223
3330
4822 051 30223 22k00 5% 0.062W
QP05130223
3331
4822 051 30332 3k30 5% 0.062W
QP05130332
3332
4822 051 30332 3k30 5% 0.062W
QP05130332
3333
4822 051 30101 100R00 5% 0.062W
QP05130101
3334
4822 051 30101 100R00 5% 0.062W
QP05130101
3335
4822 051 30101 100R00 5% 0.062W
QP05130101
3336
4822 051 30339 33R00 5% 0.062W
QP05130339
3337
4822 051 30339 33R00 5% 0.062W
QP05130339
3338
4822 051 30101 100R00 5% 0.062W
QP05130101
3339
4822 051 30008 0R00 JUMPER
QP05130008
3340
4822 051 30008 0R00 JUMPER
QP05130008
3403
4822 051 30103 10k00 5% 0.062W
QP05130103
3404
4822 051 30103 10k00 5% 0.062W
QP05130103
3450
4822 051 30103 10k00 5% 0.062W
QP05130103
3451
4822 117 13632 100k 1% 0603 0.62W
QP11713632
3452
4822 051 30223 22k00 5% 0.062W
QP05130223
3453
4822 051 30222 2k20 5% 0.062W
QP05130222
3454
4822 051 30223 22k00 5% 0.062W
QP05130223
3455
4822 051 30223 22k00 5% 0.062W
QP05130223
3456
4822 051 30103 10k00 5% 0.062W
QP05130103
3457
4822 051 30103 10k00 5% 0.062W
QP05130103
3458
4822 051 30223 22k00 5% 0.062W
QP05130223
3459
4822 051 30223 22k00 5% 0.062W
QP05130223
3460
4822 051 30472 4k70 5% 0.062W
QP05130472
3462
4822 051 30101 100R00 5% 0.062W
QP05130101
3500
4822 051 30332 3k30 5% 0.062W
QP05130332
3501
4822 051 30332 3k30 5% 0.062W
QP05130332
3502
4822 051 30103 10k00 5% 0.062W
QP05130103
3503
4822 051 30103 10k00 5% 0.062W
QP05130103
3504
4822 051 30103 10k00 5% 0.062W
QP05130103
3505
4822 051 30103 10k00 5% 0.062W
QP05130103
3506
4822 051 30103 10k00 5% 0.062W
QP05130103
3508
4822 051 30689 68R 5% 0.063W 0603 RC21
QP05130689
3509
4822 051 30103 10k00 5% 0.062W
QP05130103
3511
4822 051 30332 3k30 5% 0.062W
QP05130332
3512
4822 051 30332 3k30 5% 0.062W
QP05130332
3513
4822 051 30103 10k00 5% 0.062W
QP05130103
3514
4822 051 30103 10k00 5% 0.062W
QP05130103
3515
4822 051 30103 10k00 5% 0.062W
QP05130103
3516
4822 051 30103 10k00 5% 0.062W
QP05130103
3517
4822 051 30332 3k30 5% 0.062W
QP05130332
3519
4822 051 30103 10k00 5% 0.062W
QP05130103
3520
4822 051 30103 10k00 5% 0.062W
QP05130103
3521
4822 051 30103 10k00 5% 0.062W
QP05130103
3522
4822 051 30103 10k00 5% 0.062W
QP05130103
3523
4822 051 30332 3k30 5% 0.062W
QP05130332
3524
4822 051 30101 100R00 5% 0.062W
QP05130101
3525
4822 051 30103 10k00 5% 0.062W
QP05130103
3526
4822 051 30103 10k00 5% 0.062W
QP05130103
3534
4822 051 30103 10k00 5% 0.062W
QP05130103
3535
4822 051 30153 15K00 5% 0.062W
QP05130153
3537
4822 051 30331 330R00 5% 0.062W
QP05130331
3538
4822 051 30681 680R00 5% 0.062W
QP05130681
3541
4822 051 30479 47R00 5% 0.062W
QP05130479
3542
4822 051 30479 47R00 5% 0.062W
QP05130479
3545
4822 051 30221 220R00 5% 0.062W
QP05130221
3546
4822 051 30101 100R00 5% 0.062W
QP05130101
3548
4822 051 30008 0R00 JUMPER
QP05130008
3550
4822 051 30101 100R00 5% 0.062W
QP05130101
3551
4822 051 30101 100R00 5% 0.062W
QP05130101
3564
4822 051 30008 0R00 JUMPER
QP05130008
3570
4822 051 30101 100R00 5% 0.062W
QP05130101
3571
4822 051 30689 68R 5% 0.063W 0603 RC21
QP05130689
3572
4822 051 30689 68R 5% 0.063W 0603 RC21
QP05130689
3606
4822 117 12925 47k 1% 0.063W 0603
QP11712925
3607
4822 117 13632 100k 1% 0603 0.62W
QP11713632
3608
4822 117 13632 100k 1% 0603 0.62W
QP11713632
3609
4822 117 13632
100k 1% 0603 0.62W
QP11713632
3610
4822 051 30103
10k00 5% 0.062W
QP05130103
3611
4822 051 30103
10k00 5% 0.062W
QP05130103
3612
4822 051 30103
10k00 5% 0.062W
QP05130103
3613
4822 051 30103
10k00 5% 0.062W
QP05130103
3614
4822 051 30103
10k00 5% 0.062W
QP05130103
3615
4822 051 30103
10k00 5% 0.062W
QP05130103
3616
4822 051 30103
10k00 5% 0.062W
QP05130103
3618
4822 051 30223
22k00 5% 0.062W
QP05130223
3619
4822 051 30223
22k00 5% 0.062W
QP05130223
3620
4822 051 30101
100R00 5% 0.062W
QP05130101
3621
4822 051 30101
100R00 5% 0.062W
QP05130101
3622
4822 051 30101
100R00 5% 0.062W
QP05130101
3623
4822 051 30339
33R00 5% 0.062W
QP05130339
3624
4822 051 30339
33R00 5% 0.062W
QP05130339
3625
4822 051 30339
33R00 5% 0.062W
QP05130339
3626
4822 051 30102
1k00 5% 0.062W
QP05130102
3627
4822 051 30471
470R00 5% 0.062W
QP05130471
3628
4822 051 30471
470R00 5% 0.062W
QP05130471
3629
4822 051 30472
4k70 5% 0.062W
QP05130472
3630
4822 051 30221
220R00 5% 0.062W
QP05130221
3631
2322 704 64301
0603 RC22H 430R PM1 R
QH70464301
3632
2322 704 64301
0603 RC22H 430R PM1 R
QH70464301
3633
2322 704 64301
0603 RC22H 430R PM1 R
QH70464301
3635
4822 051 30682
6k80 5% 0.062W
QP05130682
3636
4822 051 30682
6k80 5% 0.062W
QP05130682
3637
4822 051 30332
3k30 5% 0.062W
QP05130332
3642
4822 051 30103
10k00 5% 0.062W
QP05130103
3647
2322 704 64301
0603 RC22H 430R PM1 R
QH70464301
3648
2322 704 64301
0603 RC22H 430R PM1 R
QH70464301
3651
2322 704 64301
0603 RC22H 430R PM1 R
QH70464301
3654
2322 704 64301
0603 RC22H 430R PM1 R
QH70464301
3655
2322 704 64301
0603 RC22H 430R PM1 R
QH70464301
3656
2322 704 64301
0603 RC22H 430R PM1 R
QH70464301
3657
2322 704 64301
0603 RC22H 430R PM1 R
QH70464301
3658
4822 051 30102
1k00 5% 0.062W
QP05130102
3659
4822 051 30102
1k00 5% 0.062W
QP05130102
3660
4822 051 30102
1k00 5% 0.062W
QP05130102
3661
2322 704 64301
0603 RC22H 430R PM1 R
QH70464301
3662
4822 051 30102
1k00 5% 0.062W
QP05130102
3663
4822 051 30102
1k00 5% 0.062W
QP05130102
3664
2322 704 64301
0603 RC22H 430R PM1 R
QH70464301
3665
4822 117 12139
22R 5% 0.062W
QP11712139
3667
4822 051 30339
33R00 5% 0.062W
QP05130339
3672
4822 051 30479
47R00 5% 0.062W
QP05130479
3686
4822 051 30223
22k00 5% 0.062W
QP05130223
3687
4822 051 30223
22k00 5% 0.062W
QP05130223
3688
4822 051 30472
4k70 5% 0.062W
QP05130472
3689
4822 051 30223
22k00 5% 0.062W
QP05130223
3691
4822 051 30339
33R00 5% 0.062W
QP05130339
3702
4822 051 30102
1k00 5% 0.062W
QP05130102
3800
4822 051 30479
47R00 5% 0.062W
QP05130479
3801
4822 051 30339
33R00 5% 0.062W
QP05130339
3802
4822 051 30331
330R00 5% 0.062W
QP05130331
3805
4822 051 30479
47R00 5% 0.062W
QP05130479
3806
4822 051 30153
15K00 5% 0.062W
QP05130153
3808
4822 051 30332
3k30 5% 0.062W
QP05130332
3809
4822 051 30332
3k30 5% 0.062W
QP05130332
3810
4822 051 30332
3k30 5% 0.062W
QP05130332
3811
4822 051 30332
3k30 5% 0.062W
QP05130332
3812
5322 117 13042
3k9 1% 0.063W 0603 RC22H
QQ11713042
3813
5322 117 13042
3k9 1% 0.063W 0603 RC22H
QQ11713042
3814
4822 051 30339
33R00 5% 0.062W
QP05130339
3815
4822 051 30561
560R00 5% 0.062W
QP05130561
3816
4822 051 30101
100R00 5% 0.062W
QP05130101
3900
4822 051 30103
10k00 5% 0.062W
QP05130103
3901
4822 051 30103
10k00 5% 0.062W
QP05130103
3902
4822 051 30339
33R00 5% 0.062W
QP05130339
3903
4822 051 30339
33R00 5% 0.062W
QP05130339
3904
4822 051 30339
33R00 5% 0.062W
QP05130339
193
NOTE : "nsp" PART IS LISTED FOR REFERENCE ONLY, MARANTZ WILL NOT SUPPLY THESE PARTS.
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
MONO-RESISTORS
3906
4822 051 30339 33R00 5% 0.062W
QP05130339
3907
2322 704 65609 0603 RC22H 56R PM1 R
QH70465609
3908
4822 051 30479 47R00 5% 0.062W
QP05130479
3909
4822 051 30332 3k30 5% 0.062W
QP05130332
3910
2322 704 65609 0603 RC22H 56R PM1 R
QH70465609
4000
4822 051 30008 0R00 JUMPER
QP05130008
4004
4822 051 30008 0R00 JUMPER
QP05130008
4005
4822 051 30008 0R00 JUMPER
QP05130008
4006
4822 051 30008 0R00 JUMPER
QP05130008
4452
4822 051 30008 0R00 JUMPER
QP05130008
4453
4822 051 30008 0R00 JUMPER
QP05130008
4500
4822 051 30008 0R00 JUMPER
QP05130008
4503
4822 051 30008 0R00 JUMPER
QP05130008
4507
4822 051 30008 0R00 JUMPER
QP05130008
4602
4822 051 30008 0R00 JUMPER
QP05130008
4603
4822 051 30008 0R00 JUMPER
QP05130008
4604
4822 051 30008 0R00 JUMPER
QP05130008
4801
4822 051 30008 0R00 JUMPER
QP05130008
4802
4822 051 30008 0R00 JUMPER
QP05130008
4803
4822 051 30008 0R00 JUMPER
QP05130008
4902
4822 051 30008 0R00 JUMPER
QP05130008
MONO-SEMICONDUCTORS
6200
4822 130 11397 DIODE BAS316
QP13011397
6301
9322 128 69685 DIODE S1D
QA12869685
6302
9322 128 69685 DIODE S1D
QA12869685
6303
9322 128 69685 DIODE S1D
QA12869685
6600
4822 130 11528 DIODE 1PS76SB10
QP13011528
7000
9337 144 60118 IC SM 74HCT4066D (PHSE) R
QN14460118
7001
4822 130 60373 BC856B
QP13060373
7002
4822 130 60511 BC847B
QP13060511
7003
4822 130 60511 BC847B
QP13060511
7006
4822 130 60511 BC847B
QP13060511
7007
4822 130 60511 BC847B
QP13060511
7100
5322 130 42718 BFS20
QQ13042718
7101
5322 130 42718 BFS20
QQ13042718
7102
9352 637 37518 IC TZA1033HL
QB63737518
7103
4822 209 17229 BA5938FM
QP20917229
7104
4822 209 30095 IC LM833D
QP20930095
7105
4822 209 32073 IC MC34072D
QP20932073
7106
5322 130 42718 BFS20
QQ13042718
7107
4822 209 33411 IC MC78L05ACD
QP20933411
7108
5322 130 60845 BC807-25
QQ13060845
7109
4822 209 15083 IC AN78M09
QP20915083
7110
5322 130 60803 BST72A
QQ13060803
7111
4822 130 60511 BC847B
QP13060511
7112
4822 130 60511 BC847B
QP13060511
7113
4822 130 60511 BC847B
QP13060511
7114
4822 130 60511 BC847B
QP13060511
7115
4822 130 60373 BC856B
QP13060373
7116
4822 130 60511 BC847B
QP13060511
7117
4822 130 42804 BC817-25
QP13042804
7201
9351 869 80118 IC DISPLAY, LCD
*D86980118
7202
3104 123 85860 IC AM29F002T/5.1.14
QW12385860
7203
4822 130 60373 BC856B
QP13060373
7204
9322 139 67685 IC SM MC33464N-45A
QA13967685
7207
4822 209 17231 IC SAA7399HL
QP20917231
7304
4822 209 16877 BA6856FP
QP20916877
7310
4822 209 15899 IC CY7C199-15C
QP20915899
7311
9352 622 13557 IC SAA7335HL
QB62213557
7312
4822 130 60373 BC856B
QP13060373
7315
4822 130 60511 BC847B
QP13060511
7400
9352 499 60118 IC SM 74LVC00AD
QB49960118
7402
4822 209 16318 IC MC33464N-30A
QP20916318
7404
9322 144 59668 IC SM MT48LC1M16A1TG-7S
QA14459668
7405
9322 144 59668 IC SM MT48LC1M16A1TG-7S
QA14459668
7452
4822 130 60511 BC847B
QP13060511
7453
4822 130 60511 BC847B
QP13060511
7454
4822 130 60511 BC847B
QP13060511
7455
4822 130 60373 BC856B
QP13060373
7503
9322 151 16671 IC STI5505AVC
QA15116671
7505
9322 156 81668 IC M24C32-WMN6TNKSA
QA15681668
7600
5322 209 71568 IC PC74HCT14T
QQ20971568
7604
4822 130 60511 BC847B
QP13060511
7605
4822 209 17398 IC LD1117DT33
QP20917398
7607
4822 130 60511 BC847B
QP13060511
7608
4822 130 60373 BC856B
QP13060373
7609
4822 130 60373 BC856B
QP13060373
7610
4822 130 60511 BC847B
QP13060511
7611
9352 456 80115
QB45680115
7612
4822 130 60511 BC847B
QP13060511
7613
4822 130 60511 BC847B
QP13060511
7614
4822 130 60511 BC847B
QP13060511
7615
4822 130 60511 BC847B
QP13060511
7617
4822 130 60511 BC847B
QP13060511
7618
4822 130 60511 BC847B
QP13060511
7620
4822 130 60373 BC856B
QP13060373
7621
4822 130 42804 BC817-25
QP13042804
7622
4822 209 17398 IC LD1117DT33
QP20917398
7700
9322 144 96668 IC SM MT48LC4M16A2TG-8E
QA14496668
7800
9352 680 19557 IC SAA7331HL/M1
QB68019557
7801
5322 130 42718 BFS20
QQ13042718
7900
4822 209 90752 IC 74HCT04D
QP20990752
7902
9322 153 36668 IC ICS302M-3
QA15336668
7903
9322 151 72668 IC ICS601M-01T
QA15172668
7905
9322 151 71668 IC MK2703STR
QA15171668
3104 128 07940
QW12807940
MONO -MISCELLANEOUS
1001
2422 025 16957 FFC CON BM V 24P F 1.00 0.3 QU02516957
1104
2422 025 15963 FFC CON BM H 24P F 0.50
QU02515963
1106
2422 025 16158 FFC CON BM H 8P F 1.00 0.3
QU02516158
1205
2422 540 98428 RES CER 8M467
CSTCC8.46MG
QU54098428
1300
2422 540 98426 RES CER 6MHZ
CSTCC6.00MG
QU54098426
1301
4822 267 51454 CONN. 11P FEMALE
QP26751454
1603
2422 025 16389 FFC CON BM V 22P F 1.00 0.3 QU02516389
1604
2422 025 16388 FFC CON BM V 16P F 1.00 0.3 QU02516388
5200
4822 157 11717 BLM31P500SPT
QP15711717
5300
4822 157 11717 BLM31P500SPT
QP15711717
5301
4822 157 11717 BLM31P500SPT
QP15711717
5402
4822 157 11717 BLM31P500SPT
QP15711717
5403
4822 157 11499 BLM11P600SPT
QP15711499
5450
4822 157 11717 BLM31P500SPT
QP15711717
5501
4822 157 70299 2.2µH (NL322522T-2R2J)
QP15770299
5502
4822 157 70299 2.2µH (NL322522T-2R2J)
QP15770299
5503
4822 157 71206 BLM21A601SPT
QP15771206
5504
4822 157 71206 BLM21A601SPT
QP15771206
5600
4822 157 71206 BLM21A601SPT
QP15771206
5601
4822 157 11499 BLM11P600SPT
QP15711499
5602
4822 157 70298 15µH (NL322522T-150J)
QP15770298
5604
4822 157 70298 15µH (NL322522T-150J)
QP15770298
5605
4822 157 70298 15µH (NL322522T-150J)
QP15770298
5606
4822 157 70298 15µH (NL322522T-150J)
QP15770298
5607
4822 157 70298 15µH (NL322522T-150J)
QP15770298
5608
4822 157 70298 15µH (NL322522T-150J)
QP15770298
5609
4822 157 11717 BLM31P500SPT
QP15711717
5610
4822 157 11717 BLM31P500SPT
QP15711717
5611
4822 157 11717 BLM31P500SPT
QP15711717
5700
4822 157 11717 BLM31P500SPT
QP15711717
5800
4822 157 11717 BLM31P500SPT
QP15711717
5801
4822 157 11717 BLM31P500SPT
QP15711717
5802
4822 157 11717 BLM31P500SPT
QP15711717
5900
4822 157 11717 BLM31P500SPT
QP15711717
5901
4822 157 11717 BLM31P500SPT
QP15711717
194
NOTE : "nsp" PART IS LISTED FOR REFERENCE ONLY, MARANTZ WILL NOT SUPPLY THESE PARTS.
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
5902
4822 157 11717 BLM31P500SPT
QP15711717
5903
4822 157 11717 BLM31P500SPT
QP15711717
AV (PZ02) CIRCUIT BOARD
[ N Only ]
AV-CAPACITORS
2308 N
4822 122 33575 220pF 5% NP0 63V CASE 0805 QP12233575
2314 N
4822 124 41584 100µF 20% 10V
QP12441584
2337 N
4822 122 33575 220pF 5% NP0 63V CASE 0805 QP12233575
2351 N
4822 126 14585 100nF 10% X7R 0805 50V
QP12614585
2352 N
4822 126 14585 100nF 10% X7R 0805 50V
QP12614585
2353 N
4822 124 40769 4.7µF 20% 100V
QP12440769
2354 N
4822 126 14076 220N 25V. P8020
QP12614076
2355 N
4822 124 40769 4.7µF 20% 100V
QP12440769
2357 N
4822 124 40769 4.7µF 20% 100V
QP12440769
2358 N
4822 122 33575 220pF 5% NP0 63V CASE 0805 QP12233575
2359 N
4822 124 40769 4.7µF 20% 100V
QP12440769
2360 N
4822 126 13692 47pF 1% NP0 63V
QP12613692
2361 N
4822 126 13692 47pF 1% NP0 63V
QP12613692
2362 N
4822 126 14585 100nF 10% X7R 0805 50V
QP12614585
2363 N
4822 126 14585 100nF 10% X7R 0805 50V
QP12614585
2364 N
4822 124 41584 100µF 20% 10V
QP12441584
2365 N
5322 122 32654 22n 63V 0805 X7R CER
QQ12232654
2366 N
4822 122 33575 220pF 5% NP0 63V CASE 0805 QP12233575
2367 N
4822 126 14585 100nF 10% X7R 0805 50V
QP12614585
2368 N
4822 122 33575 220pF 5% NP0 63V CASE 0805 QP12233575
2369 N
4822 122 33575 220pF 5% NP0 63V CASE 0805 QP12233575
2370 N
4822 124 40248 10µF 20% 63V
QP12440248
2371 N
4822 122 33575 220pF 5% NP0 63V CASE 0805 QP12233575
2372 N
4822 124 40769 4.7µF 20% 100V
QP12440769
2373 N
4822 124 40769 4.7µF 20% 100V
QP12440769
2374 N
4822 126 14076 220N 25V. P8020
QP12614076
2375 N
4822 122 33575 220pF 5% NP0 63V CASE 0805 QP12233575
2376 N
4822 124 40248 10µF 20% 63V
QP12440248
2377 N
4822 122 33575 220pF 5% NP0 63V CASE 0805 QP12233575
2378 N
4822 124 40769 4.7µF 20% 100V
QP12440769
2379 N
4822 126 14585 100nF 10% X7R 0805 50V
QP12614585
2380 N
4822 126 14585 100nF 10% X7R 0805 50V
QP12614585
2381 N
4822 126 14585 100nF 10% X7R 0805 50V
QP12614585
2382 N
4822 124 40769 4.7µF 20% 100V
QP12440769
2383 N
4822 124 40769 4.7µF 20% 100V
QP12440769
2384 N
4822 126 14583 470nF 10% 16V XTR 0805
QP12614583
2385 N
4822 124 40769 4.7µF 20% 100V
QP12440769
2386 N
4822 126 14583 470nF 10% 16V XTR 0805
QP12614583
2387 N
4822 126 14583 470nF 10% 16V XTR 0805
QP12614583
2388 N
4822 126 14076 220N 25V. P8020
QP12614076
2389 N
4822 126 14583 470nF 10% 16V XTR 0805
QP12614583
2390 N
4822 122 33177 10nF 20% X7R 50V
QP12233177
2391 N
4822 122 33177 10nF 20% X7R 50V
QP12233177
2392 N
4822 126 14583 470nF 10% 16V XTR 0805
QP12614583
2393 N
4822 122 33177 10nF 20% X7R 50V
QP12233177
2394 N
4822 126 14076 220N 25V. P8020
QP12614076
2395 N
4822 122 33575 220pF 5% NP0 63V CASE 0805 QP12233575
2396 N
4822 124 40248 10µF 20% 63V
QP12440248
2397 N
4822 122 33177 10nF 20% X7R 50V
QP12233177
2398 N
4822 122 33177 10nF 20% X7R 50V
QP12233177
2399 N
4822 124 40248 10µF 20% 63V
QP12440248
2400 N
4822 122 33177 10nF 20% X7R 50V
QP12233177
2401 N
4822 126 14583 470nF 10% 16V XTR 0805
QP12614583
2402 N
4822 122 33575 220pF 5% NP0 63V CASE 0805 QP12233575
2403 N
4822 126 14076 220N 25V. P8020
QP12614076
2404 N
4822 122 33575 220pF 5% NP0 63V CASE 0805 QP12233575
2405 N
4822 126 13692 47pF 1% NP0 63V
QP12613692
2406 N
4822 126 13692 47pF 1% NP0 63V
QP12613692
2407 N
2222 780 15656 330N 16V 0805 X7R CER
QL78015656
2408 N
4822 122 33575 220pF 5% NP0 63V CASE 0805 QP12233575
2409 N
4822 122 33575 220pF 5% NP0 63V CASE 0805 QP12233575
2410 N
4822 122 33575 220pF 5% NP0 63V CASE 0805 QP12233575
2411 N
4822 124 40248 10µF 20% 63V
QP12440248
2412 N
4822 124 40433 47µF 20% 25V
QP12440433
2413
N
5322 122 32531
100pF 5%NP0 50V
QQ12232531
2414
N
5322 122 32531
100pF 5%NP0 50V
QQ12232531
2415
N
4822 124 40248
10µF 20% 63V
QP12440248
2416
N
4822 126 14585
100nF 10% X7R 0805 50V
QP12614585
2417
N
4822 126 14585
100nF 10% X7R 0805 50V
QP12614585
2418
N
2222 780 15656
330N 16V 0805 X7R CER
QL78015656
2419
N
4822 124 40433
47µF 20% 25V
QP12440433
2450
N
5322 122 32654
22n 63V 0805 X7R CER
QQ12232654
2452
N
4822 126 14076
220N 25V. P8020
QP12614076
2453
N
4822 124 40433
47µF 20% 25V
QP12440433
2455
N
5322 122 32531
100pF 5%NP0 50V
QQ12232531
2456
N
4822 124 22339
100µF 16V
QP12422339
2457
N
5322 126 10511
1nF 5%NP0 50V
QQ12610511
2458
N
5322 122 32654
22n 63V 0805 X7R CER
QQ12232654
2459
N
5322 122 32531
100pF 5%NP0 50V
QQ12232531
2460
N
5322 122 32654
22n 63V 0805 X7R CER
QQ12232654
2461
N
5322 122 32531
100pF 5%NP0 50V
QQ12232531
2462
N
4822 124 22339
100µF 16V
QP12422339
2463
N
5322 126 10511
1nF 5%NP0 50V
QQ12610511
2464
N
5322 122 32531
100pF 5%NP0 50V
QQ12232531
2465
N
5322 122 32654
22n 63V 0805 X7R CER
QQ12232654
2468
N
5322 122 32654
22n 63V 0805 X7R CER
QQ12232654
2469
N
5322 122 32654
22n 63V 0805 X7R CER
QQ12232654
2470
N
5322 122 32654
22n 63V 0805 X7R CER
QQ12232654
2471
N
4822 126 14585
100nF 10% X7R 0805 50V
QP12614585
2472
N
4822 124 40433
47µF 20% 25V
QP12440433
2473
N
5322 122 32654
22n 63V 0805 X7R CER
QQ12232654
2474
N
4822 124 40433
47µF 20% 25V
QP12440433
2475
N
4822 124 40433
47µF 20% 25V
QP12440433
2476
N
4822 124 22339
100µF 16V
QP12422339
2479
N
5322 122 32654
22n 63V 0805 X7R CER
QQ12232654
2480
N
5322 122 32531
100pF 5% NP0 50V
QQ12232531
2483
N
4822 124 22339
100µF 16V
QP12422339
2488
N
4822 126 14585
100nF 10% X7R 0805 50V
QP12614585
2489
N
4822 126 14585
100nF 10% X7R 0805 50V
QP12614585
2490
N
4822 124 40433
47µF 20% 25V
QP12440433
2491
N
4822 124 41584
100µF 20% 10V
QP12441584
2493
N
4822 126 13692
47pF 1% NP0 63V
QP12613692
2495
N
4822 124 40248
10µF 20% 63V
QP12440248
AV-RESISTORS
3300
N
4822 117 10353
150R 1% 0.1W
QP11710353
3301
N
4822 117 11373
100R 1% RC12H 0805
QP11711373
3302
N
4822 117 11373
100R 1% RC12H 0805
QP11711373
3303
N
4822 117 11927
75R 1% 0.1W
QP11711927
3304
N
4822 117 11507
6k8 1% 0.1W
QP11711507
3305
N
4822 117 11454
820R 1% 0.1W
QP11711454
3306
N
4822 051 20471
470R00 5% 0.1W
QP05120471
3307
N
4822 051 20472
4k70 5% 0.1W
QP05120472
3308
N
4822 117 10361
680R 1% 0.1W
QP11710361
3309
N
4822 117 10353
150R 1% 0.1W
QP11710353
3310
N
4822 117 11927
75R 1% 0.1W
QP11711927
3312
N
4822 117 11503
220R 1% 0.1W
QP11711503
3313
N
4822 051 20391
390R00 5% 0.1W
QP05120391
3314
N
4822 051 10102
1k00 2% 0.25W
QP05110102
3315
N
4822 051 20471
470R00 5% 0.1W
QP05120471
3316
N
4822 117 10834
47k 1% 0.1W
QP11710834
3318
N
4822 117 10834
47k 1% 0.1W
QP11710834
3319
N
4822 051 10102
1k00 2% 0.25W
QP05110102
3320
N
4822 117 10834
47k 1% 0.1W
QP11710834
3321
N
4822 117 11373
100R 1% RC12H 0805
QP11711373
3322
N
4822 117 11373
100R 1% RC12H 0805
QP11711373
3323
N
4822 051 20471
470R00 5% 0.1W
QP05120471
3325
N
4822 117 10834
47k 1% 0.1W
QP11710834
3327
N
4822 117 11927
75R 1% 0.1W
QP11711927
3329
N
4822 051 20471
470R00 5% 0.1W
QP05120471
3330
N
4822 117 11927
75R 1% 0.1W
QP11711927
3331
N
4822 117 11145
4k70 1% 0.1W
QP11711145
3332
N
4822 051 20471
470R00 5% 0.1W
QP05120471
3333
N
4822 117 10353
150R 1% 0.1W
QP11710353
195
NOTE : "nsp" PART IS LISTED FOR REFERENCE ONLY, MARANTZ WILL NOT SUPPLY THESE PARTS.
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
AV-RESISTORS
3334 N
4822 117 10357 4K3 1% 0.2W
QP11710357
3335 N
4822 051 20471 470R00 5% 0.1W
QP05120471
3336 N
4822 117 11927 75R 1% 0.1W
QP11711927
3338 N
4822 117 10833 10k 1% 0.1W
QP11710833
3339 N
4822 117 11373 100R 1% RC12H 0805
QP11711373
3340 N
4822 117 11373 100R 1% RC12H 0805
QP11711373
3341 N
4822 117 10833 10k 1% 0.1W
QP11710833
3342 N
4822 051 20471 470R00 5% 0.1W
QP05120471
3343 N
4822 117 11927 75R 1% 0.1W
QP11711927
3345 N
4822 117 11927 75R 1% 0.1W
QP11711927
3347 N
4822 051 20471 470R00 5% 0.1W
QP05120471
3348 N
4822 051 10102 1k00 2% 0.25W
QP05110102
3349 N
4822 117 10834 47k 1% 0.1W
QP11710834
3350 N
4822 117 10833 10k 1% 0.1W
QP11710833
3351 N
4822 051 20471 470R00 5% 0.1W
QP05120471
3352 N
4822 051 20562 5K6 5% 0.1W 0805
QP05120562
3353 N
4822 051 10102 1k00 2% 0.25W
QP05110102
3354 N
4822 117 11927 75R 1% 0.1W
QP11711927
3355 N
4822 051 20339 33R00 5% 0.1W
QP05120339
3356 N
4822 051 20472 4k70 5% 0.1W
QP05120472
3357 N
4822 051 20472 4k70 5% 0.1W
QP05120472
3359 N
4822 117 10834 47k 1% 0.1W
QP11710834
3360 N
4822 051 20471 470R00 5% 0.1W
QP05120471
3362 N
4822 051 20471 470R00 5% 0.1W
QP05120471
3363 N
4822 051 10102 1k00 2% 0.25W
QP05110102
3364 N
2322 734 65609 56R 0805 RC12H PM1 R
QH73465609
3365 N
4822 051 20561 560R00 5% 0.1W
QP05120561
3366 N
4822 117 10834 47k 1% 0.1W
QP11710834
3367 N
4822 117 12955 2k7 1% 0.1W 0805
QP11712955
3368 N
4822 117 12955 2k7 1% 0.1W 0805
QP11712955
3378 N
4822 051 10102 1k00 2% 0.25W
QP05110102
3394 N
4822 051 20471 470R00 5% 0.1W
QP05120471
3395 N
4822 051 20472 4k70 5% 0.1W
QP05120472
3397 N
4822 117 10834 47k 1% 0.1W
QP11710834
3398 N
4822 051 20472 4k70 5% 0.1W
QP05120472
3399 N
4822 051 20562 5K6 5% 0.1W 0805
QP05120562
3400 N
4822 117 11927 75R 1% 0.1W
QP11711927
3401 N
4822 117 11927 75R 1% 0.1W
QP11711927
3402 N
4822 051 20472 4k70 5% 0.1W
QP05120472
3403 N
4822 117 11927 75R 1% 0.1W
QP11711927
3404 N
4822 117 11927 75R 1% 0.1W
QP11711927
3405 N
4822 117 11927 75R 1% 0.1W
QP11711927
3406 N
4822 117 11927 75R 1% 0.1W
QP11711927
3407 N
4822 117 11927 75R 1% 0.1W
QP11711927
3408 N
4822 117 11927 75R 1% 0.1W
QP11711927
3409 N
4822 051 20471 470R00 5% 0.1W
QP05120471
3410 N
4822 051 20471 470R00 5% 0.1W
QP05120471
3411 N
4822 117 11927 75R 1% 0.1W
QP11711927
3413 N
4822 117 10834 47k 1% 0.1W
QP11710834
3414 N
4822 051 20472 4k70 5% 0.1W
QP05120472
3415 N
4822 051 20223 22k00 5% 0.1W
QP05120223
3416 N
4822 051 20339 33R00 5% 0.1W
QP05120339
3417 N
4822 051 20471 470R00 5% 0.1W
QP05120471
3418 N
4822 117 11373 100R 1% RC12H 0805
QP11711373
3419 N
4822 117 11373 100R 1% RC12H 0805
QP11711373
3420 N
4822 117 11149 82k 1% 0.1W
QP11711149
3421 N
4822 117 11504 270R 1% 0.1W
QP11711504
3422 N
4822 051 20472 4k70 5% 0.1W
QP05120472
3423 N
2322 734 65609 0805 RC12H 56R PM1 R
QH73465609
3424 N
4822 051 20223 22k00 5% 0.1W
QP05120223
3425 N
4822 117 11927 75R 1% 0.1W
QP11711927
3427 N
4822 051 20472 4k70 5% 0.1W
QP05120472
3429 N
4822 117 11927 75R 1% 0.1W
QP11711927
3431 N
4822 051 20471 470R00 5% 0.1W
QP05120471
3432 N
4822 117 11927 75R 1% 0.1W
QP11711927
3433 N
4822 051 20008 0R00 JUMP. (0805)
QP05120008
3434 N
4822 117 11373 100R 1% RC12H 0805
QP11711373
3435 N
4822 117 11373 100R 1% RC12H 0805
QP11711373
3436 N
4822 117 10353 150R 1% 0.1W
QP11710353
3437 N
4822 117 11373 100R 1% RC12H 0805
QP11711373
3438 N
4822 117 11373 100R 1% RC12H 0805
QP11711373
3439 N
4822 117 11373 100R 1% RC12H 0805
QP11711373
3440 N
4822 117 11373 100R 1% RC12H 0805
QP11711373
3441 N
4822 117 11373 100R 1% RC12H 0805
QP11711373
3442 N
4822 117 11373 100R 1% RC12H 0805
QP11711373
3444 N
4822 117 10833 10k 1% 0.1W
QP11710833
3445 N
4822 117 10833 10k 1% 0.1W
QP11710833
3448 N
4822 117 10833 10k 1% 0.1W
QP11710833
3451 N
4822 117 10833 10k 1% 0.1W
QP11710833
3452 N
4822 051 20008 0R00 JUMP. (0805)
QP05120008
3453 N
4822 117 10833 10k 1% 0.1W
QP11710833
3454 N
4822 117 10833 10k 1% 0.1W
QP11710833
3455 N
4822 117 10833 10k 1% 0.1W
QP11710833
3456 N
4822 117 11373 100R 1% RC12H 0805
QP11711373
3457 N
4822 117 11373 100R 1% RC12H 0805
QP11711373
3458 N
4822 051 20008 0R00 JUMP. (0805)
QP05120008
3459 N
4822 117 10833 10k 1% 0.1W
QP11710833
3460 N
4822 051 20008 0R00 JUMP. (0805)
QP05120008
3461 N
4822 117 10833 10k 1% 0.1W
QP11710833
3464 N
4822 117 10833 10k 1% 0.1W
QP11710833
3468 N
4822 117 10837 100k 1% 0.1W
QP11710837
3471 N
4822 051 20562 5K6 5% 0.1W 0805
QP05120562
3472 N
4822 117 11152 4R7 5%
QP11711152
3473 N
4822 051 20008 0R00 JUMP. (0805)
QP05120008
3476 N
4822 117 11373 100R 1% RC12H 0805
QP11711373
3477 N
4822 117 11373 100R 1% RC12H 0805
QP11711373
3478 N
4822 117 10837 100k 1% 0.1W
QP11710837
3479 N
4822 117 13085 5K6 1% RC12H 0.1W 0805
QP11713085
3481 N
4822 117 12955 2k7 1% 0.1W 0805
QP11712955
3482 N
4822 117 10833 10k 1% 0.1W
QP11710833
3486 N
4822 117 10837 100k 1% 0.1W
QP11710837
3489 N
4822 051 20562 5K6 5% 0.1W 0805
QP05120562
3491 N
4822 117 11373 100R 1% RC12H 0805
QP11711373
3492 N
4822 117 11373 100R 1% RC12H 0805
QP11711373
3494 N
4822 117 12955 2k7 1% 0.1W 0805
QP11712955
3495 N
4822 117 10837 100k 1% 0.1W
QP11710837
3498 N
4822 051 20562 5K6 5% 0.1W 0805
QP05120562
3505 N
4822 117 11373 100R 1% RC12H 0805
QP11711373
3506 N
4822 117 10833 10k 1% 0.1W
QP11710833
3507 N
4822 117 11373 100R 1% RC12H 0805
QP11711373
3508 N
4822 117 12521 68R 1% 0.1W
QP11712521
3509 N
4822 117 10834 47k 1% 0.1W
QP11710834
3510 N
4822 117 11152 4R7 5%
QP11711152
3513 N
4822 117 12955 2k7 1% 0.1W 0805
QP11712955
3514 N
4822 117 12955 2k7 1% 0.1W 0805
QP11712955
3515 N
4822 117 10837 100k 1% 0.1W
QP11710837
3516 N
4822 117 11152 4R7 5%
QP11711152
3517 N
4822 117 11373 100R 1% RC12H 0805
QP11711373
3518 N
4822 117 12955 2k7 1% 0.1W 0805
QP11712955
3519 N
4822 051 20562 5K6 5% 0.1W 0805
QP05120562
3520 N
4822 051 20472 4k70 5% 0.1W
QP05120472
3521 N
4822 051 10102 1k00 2% 0.25W
QP05110102
3522 N
4822 051 10102 1k00 2% 0.25W
QP05110102
3524 N
4822 051 20008 0R00 JUMP. (0805)
QP05120008
3525 N
4822 117 10833 10k 1% 0.1W
QP11710833
3527 N
4822 117 10834 47k 1% 0.1W
QP11710834
3600 N
4822 051 20472 4k70 5% 0.1W
QP05120472
3601 N
4822 051 20472 4k70 5% 0.1W
QP05120472
3602 N
4822 051 20472 4k70 5% 0.1W
QP05120472
3603 N
4822 117 10837 100k 1% 0.1W
QP11710837
3604 N
4822 117 11449 2k2 5% 0.1W 0805
QP11711449
3605 N
4822 051 20472 4k70 5% 0.1W
QP05120472
3606 N
4822 051 20561 560R00 5% 0.1W
QP05120561
3607 N
4822 051 20562 5K6 5% 0.1W 0805
QP05120562
3608 N
4822 117 10837 100k 1% 0.1W
QP11710837
3609 N
4822 051 20822 8K20 5% 0.1W
QP05120822
3610 N
4822 051 20472 4k70 5% 0.1W
QP05120472
3611 N
4822 051 20472 4k70 5% 0.1W
QP05120472
3612 N
4822 117 10833 10k 1% 0.1W
QP11710833
196
NOTE : "nsp" PART IS LISTED FOR REFERENCE ONLY, MARANTZ WILL NOT SUPPLY THESE PARTS.
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
AV-RESISTORS
3613 N
4822 117 12955 2k7 1% 0.1W 0805
QP11712955
3614 N
4822 117 10833 10k 1% 0.1W
QP11710833
3615 N
4822 117 11152 4R7 5%
QP11711152
3616 N
4822 051 20472 4k70 5% 0.1W
QP05120472
3617 N
4822 117 10833 10k 1% 0.1W
QP11710833
3618 N
4822 117 10361 680R 1% 0.1W
QP11710361
3619 N
4822 117 10833 10k 1% 0.1W
QP11710833
3620 N
4822 051 10008 0R00 5% 0.25W
QP05110008
3621 N
4822 051 20472 4k70 5% 0.1W
QP05120472
3622 N
4822 117 10833 10k 1% 0.1W
QP11710833
3623 N
4822 117 11139 1k5 1% 0.1W
QP11711139
3624 N
4822 117 10833 10k 1% 0.1W
QP11710833
3625 N
4822 051 10102 1k00 2% 0.25W
QP05110102
3628 N
4822 117 11139 1k5 1% 0.1W
QP11711139
3999 N
4822 117 12842
QP11712842
4301 N
4822 051 20008 0R00 JUMP. (0805)
QP05120008
4304 N
4822 051 20008 0R00 JUMP. (0805)
QP05120008
4305 N
4822 051 20008 0R00 JUMP. (0805)
QP05120008
AV-SEMICONDUCTORS
6300 N
3198 020 55680 DIODE REG SM BZX384-C5V6 QG02055680
6301 N
4822 130 83757 DIODE BAS216
QP13083757
6302 N
4822 130 83757 DIODE BAS216
QP13083757
6303 N
4822 130 83757 DIODE BAS216
QP13083757
6306 N
9322 154 46685 DIODE REC SM RB501V-40
QA15446685
6307 N
9322 154 46685 DIODE REC SM RB501V-40
QA15446685
6308 N
9322 154 46685 DIODE REC SM RB501V-40
QA15446685
6309 N
4822 130 11383 DIODE BZX284-C5V1
QP13011383
6400 N
4822 130 10845 OPT FIB CON GP1F32T
QP13010845
6400 N
9322 155 28667 OPT FIB CON GP1FA550TZ
QA15528667
7300 N
4822 130 60373 BC856B
QP13060373
7301 N
4822 130 60511 BC847B
QP13060511
7302 N
4822 130 60511 BC847B
QP13060511
7303 N
4822 130 60511 BC847B
QP13060511
7304 N
9322 134 86668 IC LF80C
QA13486668
7305 N
9322 135 58671 IC SM STV6410AD (ST00) Y
QA13558671
7306 N
4822 130 60511 BC847B
QP13060511
7307 N
4822 130 60511 BC847B
QP13060511
7308 N
4822 130 60511 BC847B
QP13060511
7309 N
4822 130 60511 BC847B
QP13060511
7310 N
4822 130 60511 BC847B
QP13060511
7311 N
4822 130 60511 BC847B
QP13060511
7312 N
4822 130 60373 BC856B
QP13060373
7313 N
4822 130 60511 BC847B
QP13060511
7314 N
4822 130 42804 BC817-25
QP13042804
7315 N
4822 130 42804 BC817-25
QP13042804
7316 N
4822 209 16256 IC TDA4780/V4
QP20916256
7320 N
4822 130 60511 BC847B
QP13060511
7321 N
4822 130 42804 BC817-25
QP13042804
7322 N
4822 130 60511 BC847B
QP13060511
7324 N
4822 130 42804 BC817-25
QP13042804
7325 N
4822 130 60511 BC847B
QP13060511
7326 N
4822 130 60373 BC856B
QP13060373
7327 N
4822 130 60511 BC847B
QP13060511
7328 N
4822 130 60511 BC847B
QP13060511
7329 N
4822 130 60511 BC847B
QP13060511
7330 N
4822 130 60511 BC847B
QP13060511
7331 N
4822 130 40981 BC337-25
QP13040981
7332 N
4822 130 60373 BC856B
QP13060373
7333 N
4822 130 41246 BC327-25
QP13041246
7334 N
4822 130 60511 BC847B
QP13060511
7335 N
4822 130 60511 BC847B
QP13060511
7336 N
4822 130 42804 BC817-25
QP13042804
7337 N
4822 130 42804 BC817-25
QP13042804
7400 N
4822 209 17398 IC LD1117DT33
QP20917398
7401 N
4822 209 17423 IC UAD1328T
QP20917423
7402 N
4822 130 42804 BC817-25
QP13042804
7403
N
4822 209 32071
IC MC33079D
QP20932071
7408
N
4822 209 32071
IC MC33079D
QP20932071
7413
N
5322 209 14481
IC HEF4053BT
QQ20914481
7414
N
4822 209 30095
IC LM833D
QP20930095
7415
N
4822 130 42804
BC817-25
QP13042804
7416
N
4822 130 42804
BC817-25
QP13042804
7417
N
4822 130 60373
BC856B
QP13060373
7419
N
4822 130 42804
BC817-25
QP13042804
7420
N
4822 130 42804
BC817-25
QP13042804
7421
N
4822 130 42804
BC817-25
QP13042804
7422
N
4822 130 44568
BC557B
QP13044568
7423
N
4822 130 60511
BC847B
QP13060511
AV-MISCELLANEOUS
1300
N
4822 265 11154
52030-2210 (22P)
QP26511154
1301
N
4822 265 11103
52030-1610 (16P)
QP26511103
1303
N
4822 267 10994
4P, MDIN
QP26710994
1304
N
2422 033 00334
CON BM EURO H 42P
F BK GRND-L
QU03300334
1402
N
2422 026 05089
CON BM CINCH H 3P
F RDWHYE B
QU02605089
1405
N
4822 267 31626
QP26731626
5400
N
4822 157 70601
100µH (920927085A)
QP15770601
AV (PZ02) CIRCUIT BOARD
[ F, S, U Only ]
AV-CAPACITORS
2000
F,U,S
3198 028 41090
10µF 20% 35V
QG02841090
2001
F,U,S
4822 126 14585
100nF 10% X7R 0805 50V
QP12614585
2002
F,U,S
4822 126 13692
47pF 1% NP0 63V
QP12613692
2004
F,U,S
4822 126 13692
47pF 1% NP0 63V
QP12613692
2006
F,U,S
4822 124 41796
22µF 20% 16V
QP12441796
2007
F,U,S
4822 124 23432
100µF 20% 10V
QP12423432
2029
F,U,S
4822 124 81286
47µF 20% 16V
QP12481286
2030
F,U,S
4822 126 13482
470nF +80%-20% 16V
QP12613482
2032
F,U,S
4822 126 13482
470nF +80%-20% 16V
QP12613482
2033
F,U,S
4822 122 33575
220pF 5% NP0 63V CASE 0805 QP12233575
2036
F,U,S
4822 124 40207
100µF 20% 25V
QP12440207
2038
F,U,S
4822 124 41584
100µF 20% 10V
QP12441584
2039
F,U,S
4822 124 40184
1000µF 20% 10V
QP12440184
2040
F,U,S
4822 124 40207
100µF 20% 25V
QP12440207
2041
F,U,S
4822 124 41643
100µF 20% 16V DIM:6,3X11MM QP12441643
2100
F,U,S
5322 122 32654
22n 63V 0805 X7R CER
QQ12232654
2101
F,U,S
5322 122 32531
100pF 5%NP0 50V
QQ12232531
2103
F,U,S
4822 124 22339
100µF 16V
QP12422339
2104
F,U,S
5322 122 31647
1nF 10%X7R 63V
QQ12231647
2106
F,U,S
5322 122 32531
100pF 5%NP0 50V
QQ12232531
2107
F,U,S
5322 122 32531
100pF 5%NP0 50V
QQ12232531
2108
F,U,S
5322 122 32654
22n 63V 0805 X7R CER
QQ12232654
2109
F,U,S
4822 126 14585
100nF 10% X7R 0805 50V
QP12614585
2110
F,U,S
4822 124 81286
47µF 20% 16V
QP12481286
2112
F,U,S
4822 124 22339
100µF 16V
QP12422339
2113
F,U,S
5322 122 31647
1nF 10%X7R 63V
QQ12231647
2115
F,U,S
5322 122 32531
100pF 5%NP0 50V
QQ12232531
2119
F,U,S
5322 122 31647
1nF 10%X7R 63V
QQ12231647
2121
F,U,S
5322 122 31647
1nF 10%X7R 63V
QQ12231647
2123
F,U,S
4822 122 33575
220pF 5% NP0 63V CASE 0805 QP12233575
2124
F,U,S
4822 126 14585
100nF 10% X7R 0805 50V
QP12614585
2125
F,U,S
5322 122 32654
22n 63V 0805 X7R CER
QQ12232654
2126
F,U,S
5322 122 32654
22n 63V 0805 X7R CER
QQ12232654
2130
F,U,S
5322 122 32654
22n 63V 0805 X7R CER
QQ12232654
2131
F,U,S
5322 122 32654
22n 63V 0805 X7R CER
QQ12232654
2134
F,U,S
4822 124 11947
10µF 20% 16V
QP12411947
AV-RESISTORS
3000
F,U,S
4822 117 11373
100R 1% RC12H 0805
QP11711373
3001
F,U,S
4822 117 12521
68R 1% 0.1W
QP11712521
3002
F,U,S
4822 051 20008
0R00 JUMP. (0805)
QP05120008
3003
F,U,S
4822 051 20008
0R00 JUMP. (0805)
QP05120008
3004
F,U,S
4822 051 20008
0R00 JUMP. (0805)
QP05120008
197
NOTE : "nsp" PART IS LISTED FOR REFERENCE ONLY, MARANTZ WILL NOT SUPPLY THESE PARTS.
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
AV-RESISTORS
3005 F,U,S
4822 051 20472 4k70 5% 0.1W
QP05120472
3006 F,U,S
4822 051 20472 4k70 5% 0.1W
QP05120472
3007 F,U,S
4822 117 12955 2k7 1% 0.1W 0805
QP11712955
3008 F,U,S
4822 117 10833 10k 1% 0.1W
QP11710833
3009 F,U,S
4822 051 20472 4k70 5% 0.1W
QP05120472
3010 F,U,S
4822 051 20472 4k70 5% 0.1W
QP05120472
3011 F,U,S
4822 051 20472 4k70 5% 0.1W
QP05120472
3012 F,U,S
4822 117 11152 4R7 5%
QP11711152
3014 F,U,S
4822 117 11373 100R 1% RC12H 0805
QP11711373
3015 F,U,S
4822 117 12955 2k7 1% 0.1W 0805
QP11712955
3016 F,U,S
4822 117 11373 100R 1% RC12H 0805
QP11711373
3017 F,U,S
4822 117 12955 2k7 1% 0.1W 0805
QP11712955
3036 F,U,S
4822 117 11449 2k2 5% 0.1W 0805
QP11711449
3038 F,U,S
4822 051 20223 22k00 5% 0.1W
QP05120223
3039 F,U,S
4822 051 20223 22k00 5% 0.1W
QP05120223
3040 F,U,S
4822 116 83933 15K 1% 0.1W
QP11683933
3041 F,U,S
4822 051 20822 8K20 5% 0.1W
QP05120822
3042 F,U,S
4822 051 20008 0R00 JUMP. (0805)
QP05120008
3043 F,U,S
4822 117 11504 270R 1% 0.1W
QP11711504
3044 F,U,S
4822 117 10833 10k 1% 0.1W
QP11710833
3045 F,U,S
4822 117 11373 100R 1% RC12H 0805
QP11711373
3046 F,U,S
4822 117 11373 100R 1% RC12H 0805
QP11711373
3047 F,U,S
4822 117 11507 6k8 1% 0.1W
QP11711507
3048 F,U,S
4822 117 11454 820R 1% 0.1W
QP11711454
3049 F,U,S
4822 117 11927 75R 1% 0.1W
QP11711927
3050 F,U,S
4822 051 20471 470R00 5% 0.1W
QP05120471
3051 F,U,S
4822 051 20472 4k70 5% 0.1W
QP05120472
3052 F,U,S
4822 117 10361 680R 1% 0.1W
QP11710361
3054 F,U,S
4822 051 20008 0R00 JUMP. (0805)
QP05120008
3055 F,U,S
4822 051 20008 0R00 JUMP. (0805)
QP05120008
3056 F,U,S
4822 117 11504 270R 1% 0.1W
QP11711504
3057 F,U,S
4822 117 11152 4R7 5%
QP11711152
3058 F,U,S
4822 117 11373 100R 1% RC12H 0805
QP11711373
3059 F,U,S
4822 117 11373 100R 1% RC12H 0805
QP11711373
3060 F,U,S
4822 117 11507 6k8 1% 0.1W
QP11711507
3061 F,U,S
4822 117 11454 820R 1% 0.1W
QP11711454
3062 F,U,S
4822 117 11927 75R 1% 0.1W
QP11711927
3063 F,U,S
4822 117 11449 2k2 5% 0.1W 0805
QP11711449
3064 F,U,S
4822 051 20472 4k70 5% 0.1W
QP05120472
3065 F,U,S
4822 117 10361 680R 1% 0.1W
QP11710361
3066 F,U,S
4822 051 20008 0R00 JUMP. (0805)
QP05120008
3067 F,U,S
4822 051 20008 0R00 JUMP. (0805)
QP05120008
3068 F,U,S
4822 117 11504 270R 1% 0.1W
QP11711504
3069 F,U,S
4822 117 11373 100R 1% RC12H 0805
QP11711373
3070 F,U,S
4822 117 11507 6k8 1% 0.1W
QP11711507
3071 F,U,S
4822 117 11454 820R 1% 0.1W
QP11711454
3072 F,U,S
4822 117 11927 75R 1% 0.1W
QP11711927
3073 F,U,S
4822 117 11449 2k2 5% 0.1W 0805
QP11711449
3074 F,U,S
4822 051 20472 4k70 5% 0.1W
QP05120472
3075 F,U,S
4822 117 10361 680R 1% 0.1W
QP11710361
3076 F,U,S
4822 051 20008 0R00 JUMP. (0805)
QP05120008
3077 F,U,S
4822 117 11927 75R 1% 0.1W
QP11711927
3078 F,U,S
4822 117 11449 2k2 5% 0.1W 0805
QP11711449
3100 F,U,S
4822 117 11373 100R 1% RC12H 0805
QP11711373
3101 F,U,S
4822 051 20472 4k70 5% 0.1W
QP05120472
3102 F,U,S
4822 117 10833 10k 1% 0.1W
QP11710833
3103 F,U,S
4822 117 10833 10k 1% 0.1W
QP11710833
3105 F,U,S
4822 117 10833 10k 1% 0.1W
QP11710833
3106 F,U,S
4822 117 10833 10k 1% 0.1W
QP11710833
3107 F,U,S
4822 117 11373 100R 1% RC12H 0805
QP11711373
3108 F,U,S
4822 117 11152 4R7 5%
QP11711152
3109 F,U,S
4822 117 11152 4R7 5%
QP11711152
3110 F,U,S
4822 117 10833 10k 1% 0.1W
QP11710833
3112 F,U,S
4822 117 12955 2k7 1% 0.1W 0805
QP11712955
3113 F,U,S
4822 117 12955 2k7 1% 0.1W 0805
QP11712955
3114 F,U,S
4822 117 10833 10k 1% 0.1W
QP11710833
3115 F,U,S
4822 117 10833 10k 1% 0.1W
QP11710833
3116 F,U,S
4822 117 10833 10k 1% 0.1W
QP11710833
3117 F,U,S
4822 117 10833 10k 1% 0.1W
QP11710833
3118 F,U,S
4822 117 11373 100R 1% RC12H 0805
QP11711373
3119 F,U,S
4822 117 11373 100R 1% RC12H 0805
QP11711373
3120 F,U,S
4822 117 10833 10k 1% 0.1W
QP11710833
3121 F,U,S
4822 117 10833 10k 1% 0.1W
QP11710833
3122 F,U,S
4822 117 12955 2k7 1% 0.1W 0805
QP11712955
3123 F,U,S
4822 117 12955 2k7 1% 0.1W 0805
QP11712955
3124 F,U,S
4822 117 10833 10k 1% 0.1W
QP11710833
3126 F,U,S
4822 117 11373 100R 1% RC12H 0805
QP11711373
3127 F,U,S
4822 117 10833 10k 1% 0.1W
QP11710833
3129 F,U,S
4822 117 12955 2k7 1% 0.1W 0805
QP11712955
3130 F,U,S
4822 117 11373 100R 1% RC12H 0805
QP11711373
3131 F,U,S
4822 117 10833 10k 1% 0.1W
QP11710833
3132 F,U,S
4822 117 12955 2k7 1% 0.1W 0805
QP11712955
3135 F,U,S
5322 117 12487 1k RC12G 1% 0.125W
QQ11712487
3136 F,U,S
5322 117 12487 1k RC12G 1% 0.125W
QQ11712487
3137 F,U,S
4822 117 12635 10R 1% 0.125W
QP11712635
3138 F,U,S
4822 117 11139 1k5 1% 0.1W
QP11711139
3139 F,U,S
4822 117 11931 750R 1% 0.1W
QP11711931
3140 F,U,S
2120 108 92619 2k2 SM0805 ERJ6EN PM1
*E10892619
3141 F,U,S
5322 117 12487 1k RC12G 1% 0.125W
QQ11712487
3142 F,U,S
5322 117 12487 1k RC12G 1% 0.125W
QQ11712487
3143 F,U,S
5322 117 12487 1k RC12G 1% 0.125W
QQ11712487
3144 F,U,S
4822 117 11953 560R 1% 0.1W
QP11711953
3145 F,U,S
2120 108 92625 5K6 0805 ERJ6EN PM1
*E10892625
3146 F,U,S
4822 051 20008 0R00 JUMP. (0805)
QP05120008
3147 F,U,S
2120 108 92616 1k2 0805 ERJ6EN PM1
*E10892616
3148 F,U,S
5322 117 12487 1k RC12G 1% 0.125W
QQ11712487
3150 F,U,S
4822 117 11927 75R 1% 0.1W
QP11711927
3153 F,U,S
4822 117 11373 100R 1% RC12H 0805
QP11711373
3154 F,U,S
4822 117 11927 75R 1% 0.1W
QP11711927
3157 F,U,S
4822 117 11927 75R 1% 0.1W
QP11711927
3158 F,U,S
4822 117 11449 2k2 5% 0.1W 0805
QP11711449
3159 F,U,S
4822 117 11373 100R 1% RC12H 0805
QP11711373
3160 F,U,S
4822 117 10833 10k 1% 0.1W
QP11710833
4100 F,U,S
4822 051 20008 0R00 JUMP. (0805)
QP05120008
4105 F,U,S
4822 051 20008 0R00 JUMP. (0805)
QP05120008
4112 F,U,S
4822 051 20008 0R00 JUMP. (0805)
QP05120008
AV-SEMICONDUCTORS
6001 F,U,S
4822 130 11087 DIODE BZX284-C15
QP13011087
6002 F,U,S
4822 130 11087 DIODE BZX284-C15
QP13011087
6003 F,U,S
4822 130 11087 DIODE BZX284-C15
QP13011087
6004 F,U,S
4822 130 11087 DIODE BZX284-C15
QP13011087
6005 F,U,S
4822 130 11087 DIODE BZX284-C15
QP13011087
6006 F,U,S
4822 130 11087 DIODE BZX284-C15
QP13011087
6007 F,U,S
4822 130 83757 DIODE BAS216
QP13083757
6008 F,U,S
4822 130 83757 DIODE BAS216
QP13083757
6009 F,U,S
4822 130 83757 DIODE BAS216
QP13083757
6010 F,U,S
4822 130 11087 DIODE BZX284-C15
QP13011087
7000 F,U,S
4822 130 60511 BC847B
QP13060511
7001 F,U,S
4822 130 42804 BC817-25
QP13042804
7002 F,U,S
4822 130 60373 BC856B
QP13060373
7004 F,U,S
4822 130 42804 BC817-25
QP13042804
7005 F,U,S
4822 130 42804 BC817-25
QP13042804
7006 F,U,S
4822 130 60511 BC847B
QP13060511
7007 F,U,S
4822 130 60511 BC847B
QP13060511
7008 F,U,S
4822 130 60511 BC847B
QP13060511
7009 F,U,S
4822 130 60373 BC856B
QP13060373
7010 F,U,S
4822 130 60511 BC847B
QP13060511
7011 F,U,S
4822 130 60511 BC847B
QP13060511
7012 F,U,S
4822 130 60373 BC856B
QP13060373
7013 F,U,S
4822 130 60511 BC847B
QP13060511
7014 F,U,S
4822 130 60511 BC847B
QP13060511
7015 F,U,S
4822 130 60373 BC856B
QP13060373
7016 F,U,S
4822 130 60511 BC847B
QP13060511
7017 F,U,S
4822 130 60511 BC847B
QP13060511
7018 F,U,S
4822 130 60511 BC847B
QP13060511
7019 F,U,S
4822 130 60511 BC847B
QP13060511
198
NOTE : "nsp" PART IS LISTED FOR REFERENCE ONLY, MARANTZ WILL NOT SUPPLY THESE PARTS.
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
AV-SEMICONDUCTORS
7020 F,U,S
9322 155 28667 OPT FIB CON GP1FA550TZ
QA15528667
7103 F,U,S
4822 209 17423 IC UAD1328T
QP20917423
7104 F,U,S
4822 130 42804 BC817-25
QP13042804
7105 F,U,S
4822 130 42804 BC817-25
QP13042804
7108 F,U,S
4822 130 42804 BC817-25
QP13042804
7109 F,U,S
4822 130 42804 BC817-25
QP13042804
7110 F,U,S
4822 209 16978 IC LF33CV
QP20916978
7112 F,U,S
4822 130 42804 BC817-25
QP13042804
7114 F,U,S
4822 130 42804 BC817-25
QP13042804
7115 F,U,S
4822 209 30095 IC LM833D
QP20930095
7116 F,U,S
9322 141 80668 IC AD8073JR
QA14180668
7117 F,U,S
4822 209 72684 IC L7905CV
QP20972684
AV-MISCELLANEOUS
1002 F,U,S
2422 026 05202 SOC CINCH H 6P F RDWHYE B QU02605202
1003 F,U,S
2422 026 05188 CON BM MDIN H 3P
F TCS7927 B
QU02605188
1004 F,U,S
4822 265 11154 52030-2210 (22P)
QP26511154
1005 F,U,S
4822 267 31626
QP26731626
1006 F,U,S
2422 026 05191 CON BM CINCH H 3P
F RDBUGN B
QU02605191
1007 F,U,S
2422 025 16525 FFC CON BM V 16P F 1.00 0.3 QU02516525
5000 F,U,S
4822 157 70601 100µH (920927085A)
QP15770601
5003 F,U,S
4822 242 10756 DSS306-92Y5S221M100
QP24210756
5004 F,U,S
4822 242 10756 DSS306-92Y5S221M100
QP24210756
5005 F,U,S
4822 242 10756 DSS306-92Y5S221M100
QP24210756
5006 F,U,S
4822 242 10756 DSS306-92Y5S221M100
QP24210756
5007 F,U,S
4822 242 10756 DSS306-92Y5S221M100
QP24210756
SWITCHED MODE
POWER SUPPLY UNIT (PZ03)
PZ03
3104 129 22150 POWER SUPPLY UNIT
QW12922150
199
NOTE : "nsp" PART IS LISTED FOR REFERENCE ONLY, MARANTZ WILL NOT SUPPLY THESE PARTS.
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
PF16-RC-6 IN / OUT
CIRCUIT BOARD
PF16-CAPACITORS
CF01
4822 124 90353 ELECT. 100µF M 10V RA-2
OA10701020
CF03
4822 124 90352 ELECT. 10µF M 16V RA-2
OA10601620
CF51
4822 126 11687 CER. 0.1µF GRM39F104Z16
DK98104200
CF52
4822 126 11568 CER. 470pF GR39
DK96471300
PF16-RESISTORS
RF01
4822 051 30472 CHIP 4.7k
±5% 1/16W
NN05472610
RF02
4822 117 12925 CHIP 47k
±5% 1/16W
NN05473610
RF03
4822 051 30101 CHIP 100
±5% 1/16W
NN05101610
RF51
4822 117 12139 CHIP 22
±5% 1/16W
NN05220610
RF52
4822 051 30103 CHIP 10k
±5% 1/16W
NN05103610
RF53
4822 051 30222 CHIP 2.2k
±5% 1/16W
NN05222610
RF54
4822 051 30103 CHIP 10k
±5% 1/16W
NN05103610
PF16-SEMICONDUCTORS
DF01
4822 130 83715 CHIP DIODE 1SS301 DAN202U HZ21005000
QF01
4822 130 61554 CHIP TRS. 2SA1586 Y G
HX115862B0
QF51
4822 130 61541 CHIP TRS. 2SC4116
HX341162B0
PF16-SEMICONDUCTORS
JF52
4822 267 41009 TERMINAL 2P RCA PIN JACK YT02020890
LF01
4822 157 10416 BLM11B102S 1608 EMI FILTER FN31010030
SF51
4822 277 21559 SLIDE SW. INT/EXT
SS02021150
PH16-POWER SUPPLY
CIRCUIT BOARD
PH16-CAPACITORS
C803
4822 124 41458 ELECT. 4700µF 16V RA2
OA47801620
C805
4822 124 22039 ELECT. 220µF 16V ARA
OA22701650
C806
4822 124 41458 ELECT. 4700µF 16V RA2
OA47801620
C815 F
4822 124 12404 ELECT. 220µF M 16V RA-2
OA22701620
C815 N
9965 000 01567 ELECT. 100µF 10V ARA
OA10701050
C815 S
9965 000 01567 ELECT. 100µF 10V ARA
OA10701050
C815 U
4822 124 12404 ELECT. 220µF M 16V RA-2
OA22701620
C817 F
4822 124 90353 ELECT. 100µF M 10V RA-2
OA10701020
C817 U
4822 124 90353 ELECT. 100µF M 10V RA-2
OA10701020
C818 N
9965 000 01567 ELECT. 100µF 10V ARA
OA10701050
C818 S
9965 000 01567 ELECT. 100µF 10V ARA
OA10701050
C823
9965 000 00605 ELECT. 3300µF 25V ±20% HIFI OB33802510
C824
9965 000 00605 ELECT. 3300µF 25V ±20% HIFI OB33802510
C827
4822 124 41535 ELECT. 100µF M 25V RA-2
OA10702520
C828
4822 124 41535 ELECT. 100µF M 25V RA-2
OA10702520
C829 F
4822 124 11574 ELECT. 1000µF M 16V ARA OA10801650
C829 N
9965 000 10843 ELECT. 470µF 25V ARS
OA47702540
C829 S
9965 000 10843 ELECT. 470µF 25V ARS
OA47702540
C829 U
4822 124 11574 ELECT. 1000µF M 16V ARA OA10801650
C830 F
4822 124 11574 ELECT. 1000µF M 16V ARA OA10801650
C830 N
9965 000 10843 ELECT. 470µF 25V ARS
OA47702540
C830 S
9965 000 10843 ELECT. 470µF 25V ARS
OA47702540
C830 U
4822 124 11574 ELECT. 1000µF M 16V ARA OA10801650
C843
4822 124 22723 ELECT. 1000µF M 25V RA-2
OA10802520
C845
4822 124 12404 ELECT. 220µF M 16V RA-2
OA22701620
C851
4822 126 11703 CER. 0.01µF
DK98103300
C852
4822 126 11703 CER. 0.01µF
DK98103300
C853
4822 126 11703 CER. 0.01µF
DK98103300
C854
4822 126 11703 CER. 0.01µF
DK98103300
CN01
4822 124 41543 ELECT. 1µF M 50V RA-2
OA10505020
CN02
4822 124 40763 ELECT. 2.2µF M 50V RA-2
OA22505020
CN03
4822 124 23649 ELECT. 470µF 25V M RA-2
OA47702520
CN21
4822 124 80067 ELECT. 4.7µF M 50V RA-2
OA47505020
CN22
4822 124 22273 ELECT. 0.47µF M 50V RA-2
OA47405020
CN23
5322 122 32654 CER. 0.022µF ±10% XTR 16V DK96223200
PH16-RESISTORS
R801
9965 000 06703 CHIP 1.2k
±1% 1/10W
NI01122110
R802
9965 000 06703 CHIP 1.2k
±1% 1/10W
NI01122110
R804
9965 000 06704 CHIP 2.2k
±1% 1/10W
NI01222110
R823
RES. 680
±5% 1/6W
GD05681160
R824
RES. 680
±5% 1/6W
GD05681160
R825
N
9965 000 10842 METAL 1k
±5% 1W
NK05102010
R825
S
9965 000 10842 METAL 1k
±5% 1W
NK05102010
R826
N
9965 000 10842 METAL 1k
±5% 1W
NK05102010
R826
S
9965 000 10842 METAL 1k
±5% 1W
NK05102010
RN01
4822 051 30102 CHIP 1k
±5% 1/16W
NN05102610
RN02
9965 000 06699 CHIP 3.9M
±5% 1/16W
NN05395610
RN03
4822 116 83819 CHIP 18k
±5% 1/16W
NN05183610
RN04
4822 117 12925 CHIP 47k
±5% 1/16W
NN05473610
RN05
4822 051 30103 CHIP 10k
±5% 1/16W
NN05103610
RN06
4822 051 30222 CHIP 2.2k
±5% 1/16W
NN05222610
RN07
4822 051 30103 CHIP 10k
±5% 1/16W
NN05103610
RN08
4822 051 30472 CHIP 4.7k
±5% 1/16W
NN05472610
RN09
4822 051 30472 CHIP 4.7k
±5% 1/16W
NN05472610
RN10
4822 051 30223 CHIP 22k
±5% 1/16W
NN05223610
RN21
4822 051 30332 CHIP 3.3k
±5% 1/16W
NN05332610
RN22
4822 051 30332 CHIP 3.3k
±5% 1/16W
NN05332610
RN23
4822 117 13632 CHIP 100k
±5% 1/16W
NN05104610
RN24
4822 117 12925 CHIP 47k
±5% 1/16W
NN05473610
RN25
4822 051 30333 CHIP 33k
±5% 1/16W
NN05333610
RN26
4822 051 30103 CHIP 10k
±5% 1/16W
NN05103610
RN27
4822 117 13632 CHIP 100k
±5% 1/16W
NN05104610
PH16-SEMICONDUCTORS
D801
9965 000 09763 DIODE SHOTTKY
HD20055100
D804
11EQS10 1A 100V
D821
D823
9965 000 09763 DIODE SHOTTKY
HD20055100
D824
11EQS10 1A 100V
D825
4822 130 80623 ZENER DIODE 13V
HD31301000
D826
4822 130 80623 ZENER DIODE 13V
HD31301000
D827
4822 130 32362 DIODE 1SS176 MA165 1SS254
30V 0.1A
HD20002000
D828
4822 130 32362 DIODE 1SS176 MA165 1SS254
30V 0.1A
HD20002000
D841
9965 000 09763 DIODE SHOTTKY
HD20055100
D844
11EQS10 1A 100V
DH01
9965 000 09763 DIODE SHOTTKY
11EQS10 1A 100V
HD20055100
DN01
9965 000 09763 DIODE SHOTTKY
HD20055100
DN05
11EQS10 1A 100V
DN06
4822 130 32362 DIODE 1SS176 MA165 1SS254
30V 0.1A
HD20002000
DN07
4822 130 32362 DIODE 1SS176 MA165 1SS254
30V 0.1A
HD20002000
DN08
4822 130 33948 ZENER DIODE 5.6V
HD30561000
DN20
4822 130 83715 CHIP DIODE 1SS301 DAN202U HZ21005000
Q801
9965 000 06702 IC PQ15RW11 3.0 15V
VARIABLE
HC38915320
Q811
4822 209 73096 IC NJM78M05FA
HC38505090
Q812
9965 000 03397 IC BA033FP 3.3V 1A PD=1W
HC96J33210
Q821
4822 130 11604 TRS. 2SB1020
HT21020100
Q822
4822 130 11605 TRS. 2SD1415
HT41415100
Q841
4822 209 82828 IC NJM78M12FA
HC38512090
QN01
4822 130 61541 CHIP TRS. 2SC4116
HX341162B0
QN02
4822 130 61541 CHIP TRS. 2SC4116
HX341162B0
QN03
4822 130 61541 CHIP TRS. 2SC4116
HX341162B0
QN04
4822 130 61554 CHIP TRS. 2SA1586 Y G
HX115862B0
QN05
4822 130 61541 CHIP TRS. 2SC4116
HX341162B0
QN20
4822 209 83312 IC TA7317P
HC10042050
PH16-MISCELLANEOUS
F801
4822 070 32001 FUSE T2A 250V BS LISTED
FS10200850
F821
4822 070 38001 FUSE T800mA 250V
BS LISTED
FS10080850
200
NOTE : "nsp" PART IS LISTED FOR REFERENCE ONLY, MARANTZ WILL NOT SUPPLY THESE PARTS.
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
F822
4822 070 38001 FUSE T800mA 250V
BS LISTED
FS10080850
F841
4822 070 34001 FUSE T400MA 250V
BS LISTED
FS10040850
FH01 F
4822 070 32001 FUSE T2A 250V BS LISTED
FS10200850
FH01 N
9965 000 06705 FUSE T1A H 250V
BUSS MANN S505
FS10100950
FH01 S
9965 000 06705 FUSE T1A H 250V
BUSS MANN S505
FS10100950
FH01 U
4822 070 32001 FUSE T2A 250V BS LISTED FS10200850
GH05
4822 121 43732 FILM CAP. 0.01µF M 250V AC DF77103500
JH01
9965 000 06707 JACK 2P AC INLET M1818-A YJ04002510
JH04
PLUG 4PIN B4P7-VH
YP04000930
JH05
4822 265 20359 PLUG CONNECTOR 2P
YP04000760
LH02
4822 280 80754 RELAY
VS-12MB.TV-5 UL/CSA/SEMKO
LY10120380
SH02
4822 277 21825 SLIDE SW. SDKGA4 SEMKO
SS02021510
PN16-MUTE CIRCUIT BOARD
[ N Only ]
DN92 N
5322 130 11288 CHIP DIODE MA8047-M 4.7V
HZ30471000
DN93 N
4822 130 83715 CHIP DIODE 1SS301 DAN202U HZ21005000
QN91 N
4822 130 61554 CHIP TRS. 2SA1586 Y G
HX115862B0
RN92 N
4822 051 30152 CHIP 1.5kΩ ±5% 1/16W
NN05152610
RN93 N
4822 051 30103 CHIP 10kΩ ±5% 1/16W
NN05103610
PP16-DAC CIRCUIT BOARD
PP16-CAPACITORS
C101 F
FILM 1800pF 100V PP APSV
OF15182540
C101 N
9965 000 10845 FILM 1800pF J 100V NH
OF15182550
C101 S
9965 000 10845 FILM 1800pF J 100V NH
OF15182550
C101 U
FILM 1800pF 100V PP APSV
OF15182540
C102
4822 121 70437 FILM 1000pF J 100V APSV OF15102540
C103
9965 000 05891 FILM 470pF 100V PP APSV
OF15471540
C111 F
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C111 N
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C111 S
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C111 U
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C112 F
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C112 N
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C112 S
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C112 U
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C151 F
FILM 1800pF 100V PP APSV
OF15182540
C151 N
9965 000 10845 FILM 1800pF J 100V NH
OF15182550
C151 S
9965 000 10845 FILM 1800pF J 100V NH
OF15182550
C151 U
FILM 1800pF 100V PP APSV
OF15182540
C152
4822 121 70437 FILM 1000pF J 100V APSV OF15102540
C153
9965 000 05891 FILM 470pF 100V PP APSV
OF15471540
C161 F
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C161 N
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C161 S
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C161 U
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C162 F
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C162 N
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C162 S
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C162 U
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C201 F
FILM 1800pF 100V PP APSV
OF15182540
C201 N
9965 000 10845 FILM 1800pF J 100V NH
OF15182550
C201 S
9965 000 10845 FILM 1800pF J 100V NH
OF15182550
C201 U
FILM 1800pF 100V PP APSV
OF15182540
C202
4822 121 70437 FILM 1000pF J 100V APSV OF15102540
C203
9965 000 05891 FILM 470pF 100V PP APSV
OF15471540
C211 F
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C211 N
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C211 S
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C211 U
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C212 F
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C212 N
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C212 S
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C212
U
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C251
F
FILM 1800pF 100V PP APSV
OF15182540
C251
N
9965 000 10845 FILM 1800pF J 100V NH
OF15182550
C251
S
9965 000 10845 FILM 1800pF J 100V NH
OF15182550
C251
U
FILM 1800pF 100V PP APSV
OF15182540
C252
4822 121 70437 FILM 1000pF J 100V APSV OF15102540
C253
9965 000 05891
FILM 470pF 100V PP APSV
OF15471540
C261
F
4822 124 90051
ELECT. 220µF M 25 V ARA
OA22702550
C261
N
4822 124 80123
ELECT. 220µF 16V ARS
OA22701640
C261
S
4822 124 80123
ELECT. 220µF 16V ARS
OA22701640
C261
U
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C262
F
4822 124 90051
ELECT. 220µF M 25 V ARA
OA22702550
C262
N
4822 124 80123
ELECT. 220µF 16V ARS
OA22701640
C262
S
4822 124 80123
ELECT. 220µF 16V ARS
OA22701640
C262
U
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C301
F
FILM 560pF ±5% 100V
OFC LEAD APF
OF55561540
C301
N
9965 000 10846
FILM 560pF J 100V NH
OF15561550
C301
S
9965 000 10846
FILM 560pF J 100V NH
OF15561550
C301
U
FILM 560pF ±5% 100V
OFC LEAD APF
OF55561540
C302
F
FILM 150pF ±5% 100V
OFC LEAD APF
OF55151540
C302
N
9965 000 10844
FILM 150pF J 100V NH
OF15151550
C302
S
9965 000 10844
FILM 150pF J 100V NH
OF15151550
C302
U
FILM 150pF ±5% 100V
OFC LEAD APF
OF55151540
C317
F
FILM 560pF ±5% 100V
OFC LEAD APF
OF55561540
C317
N
9965 000 10846
FILM 560pF J 100V NH
OF15561550
C317
S
9965 000 10846
FILM 560pF J 100V NH
OF15561550
C317
U
FILM 560pF ±5% 100V
OFC LEAD APF
OF55561540
C321
F
4822 124 90051
ELECT. 220µF M 25 V ARA
OA22702550
C321
N
4822 124 80123
ELECT. 220µF 16V ARS
OA22701640
C321
S
4822 124 80123
ELECT. 220µF 16V ARS
OA22701640
C321
U
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C322
F
4822 124 90051
ELECT. 220µF M 25 V ARA
OA22702550
C322
N
4822 124 80123
ELECT. 220µF 16V ARS
OA22701640
C322
S
4822 124 80123
ELECT. 220µF 16V ARS
OA22701640
C322
U
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C351
F
FILM 560pF ±5% 100V
OFC LEAD
OF55561540
C351
N
9965 000 10846
FILM 560pF J 100V NH
OF15561550
C351
S
9965 000 10846
FILM 560pF J 100V NH
OF15561550
C351
U
FILM 560pF ±5% 100V
OFC LEAD APF
OF55561540
C352
F
FILM 150pF ±5% 100V
OFC LEAD APF
OF55151540
C352
N
9965 000 10844
FILM 150pF J 100V NH
OF15151550
C352
S
9965 000 10844
FILM 150pF J 100V NH
OF15151550
C352
U
FILM 150pF ±5% 100V
OFC LEAD APF
OF55151540
C367
F
FILM 560pF ±5% 100V
OFC LEAD APF
OF55561540
C367
N
9965 000 10846
FILM 560pF J 100V NH
OF15561550
C367
S
9965 000 10846
FILM 560pF J 100V NH
OF15561550
C367
U
FILM 560pF ±5% 100V
OFC LEAD APF
OF55561540
C371
F
4822 124 90051
ELECT. 220µF M 25 V ARA
OA22702550
C371
N
4822 124 80123
ELECT. 220µF 16V ARS
OA22701640
C371
S
4822 124 80123
ELECT. 220µF 16V ARS
OA22701640
C371
U
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C372
F
4822 124 90051
ELECT. 220µF M 25 V ARA
OA22702550
C372
N
4822 124 80123
ELECT. 220µF 16V ARS
OA22701640
C372
S
4822 124 80123
ELECT. 220µF 16V ARS
OA22701640
C372
U
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
201
NOTE : "nsp" PART IS LISTED FOR REFERENCE ONLY, MARANTZ WILL NOT SUPPLY THESE PARTS.
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
C401 F
FILM 560pF ±5% 100V
OFC LEAD APF
OF55561540
C401 N
9965 000 10846 FILM 560pF J 100V NH
OF15561550
C401 S
9965 000 10846 FILM 560pF J 100V NH
OF15561550
C401 U
FILM 560pF ±5% 100V
OFC LEAD APF
OF55561540
C402 F
FILM 150pF ±5% 100V
OFC LEAD APF
OF55151540
C402 N
9965 000 10844 FILM 150pF J 100V NH
OF15151550
C402 S
9965 000 10844 FILM 150pF J 100V NH
OF15151550
C402 U
FILM 150pF ±5% 100V
OFC LEAD APF
OF55151540
C417 F
FILM 560pF ±5% 100V
OFC LEAD APF
OF55561540
C417 N
9965 000 10846 FILM 560pF J 100V NH
OF15561550
C417 S
9965 000 10846 FILM 560pF J 100V NH
OF15561550
C417 U
FILM 560pF ±5% 100V
OFC LEAD APF
OF55561540
C421 F
4822 124 90051 ELECT. 220µF M 25V ARA OA22702550
C421 N
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C421 S
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C421 U
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C422 F
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C422 N
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C422 S
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C422 U
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C451 F
FILM 560pF ±5% 100V
OFC LEAD APF
OF55561540
C451 N
9965 000 10846 FILM 560pF J 100V NH
OF15561550
C451 S
9965 000 10846 FILM 560pF J 100V NH
OF15561550
C451 U
FILM 560pF ±5% 100V
OFC LEAD APF
OF55561540
C452 F
FILM 150pF ±5% 100V
OFC LEAD APF
OF55151540
C452 N
9965 000 10844 FILM 150pF J 100V NH
OF15151550
C452 S
9965 000 10844 FILM 150pF J 100V NH
OF15151550
C452 U
FILM 150pF ±5% 100V
OFC LEAD APF
OF55151540
C467 F
FILM 560pF ±5% 100V
OFC LEAD APF
OF55561540
C467 N
9965 000 10846 FILM 560pF J 100V NH
OF15561550
C467 S
9965 000 10846 FILM 560pF J 100V NH
OF15561550
C467 U
FILM 560pF ±5% 100V
OFC LEAD APF
OF55561540
C471 F
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C471 N
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C471 S
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C471 U
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C472 F
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C472 N
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C472 S
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C472 U
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C501 F
FILM 560pF ±5% 100V
OFC LEAD APF
OF55561540
C501 N
9965 000 10846 FILM 560pF J 100V NH
OF15561550
C501 S
9965 000 10846 FILM 560pF J 100V NH
OF15561550
C501 U
FILM 560pF ±5% 100V
OFC LEAD APF
OF55561540
C502 F
FILM 150pF ±5% 100V
OFC LEAD APF
OF55151540
C502 N
9965 000 10844 FILM 150pF J 100V NH
OF15151550
C502 S
9965 000 10844 FILM 150pF J 100V NH
OF15151550
C502 U
FILM 150pF ±5% 100V
OFC LEAD APF
OF55151540
C517 F
FILM 560pF ±5% 100V
OFC LEAD APF
OF55561540
C517 N
9965 000 10846 FILM 560pF J 100V NH
OF15561550
C517 S
9965 000 10846 FILM 560pF J 100V NH
OF15561550
C517 U
FILM 560pF ±5% 100V
OF55561540
OFC LEAD APF
C521
F
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C521
N
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C521
S
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C521
U
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C522
F
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C522
N
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C522
S
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C522
U
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C551
F
FILM 560pF ±5% 100V
OFC LEAD APF
OF55561540
C551
N
9965 000 10846 FILM 560pF J 100V NH
OF15561550
C551
S
9965 000 10846 FILM 560pF J 100V NH
OF15561550
C551
U
FILM 560pF ±5% 100V
OFC LEAD APF
OF55561540
C552
F
FILM 150pF ±5% 100V
OFC LEAD APF
OF55151540
C552
N
9965 000 10844 FILM 150pF J 100V NH
OF15151550
C552
S
9965 000 10844 FILM 150pF J 100V NH
OF15151550
C552
U
FILM 150pF ±5% 100V
OFC LEAD APF
OF55151540
C567
F
FILM 560pF ±5% 100V
OFC LEAD APF
OF55561540
C567
N
9965 000 10846 FILM 560pF J 100V NH
OF15561550
C567
S
9965 000 10846 FILM 560pF J 100V NH
OF15561550
C567
U
FILM 560pF ±5% 100V
OFC LEAD APF
OF55561540
C571
F
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C571
N
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C571
S
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C571
U
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C572
F
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C572
N
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C572
S
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C572
U
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C601
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C602
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C604
N
8220 200 62290 FILM 100pF J 100V
OF15101550
C604
S
8220 200 62290 FILM 100pF J 100V
OF15101550
C604
U
9965 000 01344 FILM 100pF J 100V APSV
OF15101540
C611
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C612
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C614
N
8220 200 62290 FILM 100pF J 100V
OF15101550
C614
S
8220 200 62290 FILM 100pF J 100V
OF15101550
C614
U
9965 000 01344 FILM 100pF J 100V APSV
OF15101540
C621
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C622
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C624
N
8220 200 62290 FILM 100pF J 100V
OF15101550
C624
S
8220 200 62290 FILM 100pF J 100V
OF15101550
C624
U
9965 000 01344 FILM 100pF J 100V APSV
OF15101540
C631
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C632
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C634
N
8220 200 62290 FILM 100pF J 100V
OF15101550
C634
S
8220 200 62290 FILM 100pF J 100V
OF15101550
C634
U
9965 000 01344 FILM 100pF J 100V APSV
OF15101540
C641
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C642
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C644
N
8220 200 62290 FILM 100pF J 100V
OF15101550
C644
S
8220 200 62290 FILM 100pF J 100V
OF15101550
C644
U
9965 000 01344 FILM 100pF J 100V APSV
OF15101540
C651
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C652
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C654
N
8220 200 62290 FILM 100pF J 100V
OF15101550
C654
S
8220 200 62290 FILM 100pF J 100V
OF15101550
C654
U
9965 000 01344 FILM 100pF J 100V APSV
OF15101540
C701
F
FILM 1800pF 100V PP APSV
OF15182540
C701
N
9965 000 10845 FILM 1800pF J 100V NH
OF15182550
C701
S
9965 000 10845 FILM 1800pF J 100V NH
OF15182550
202
NOTE : "nsp" PART IS LISTED FOR REFERENCE ONLY, MARANTZ WILL NOT SUPPLY THESE PARTS.
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
C701 U
FILM 1800pF 100V PP APSV
OF15182540
C702
4822 121 70437 FILM 1000pF J 100V APSV OF15102540
C703
9965 000 05891 FILM 470pF 100V PP APSV
OF15471540
C711 F
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C711 N
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C711 S
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C711 U
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C712 F
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C712 N
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C712 S
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C712 U
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C751 F
FILM 1800pF 100V PP APSV
OF15182540
C751 N
9965 000 10845 FILM 1800pF J 100V NH
OF15182550
C751 S
9965 000 10845 FILM 1800pF J 100V NH
OF15182550
C751 U
FILM 1800pF 100V PP APSV
OF15182540
C752
4822 121 70437 FILM 1000pF J 100V APSV OF15102540
C753
9965 000 05891 FILM 470pF 100V PP APSV
OF15471540
C761 F
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C761 N
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C761 S
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C761 U
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C762 F
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
C762 N
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C762 S
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
C762 U
4822 124 90051 ELECT. 220µF M 25 V ARA
OA22702550
CD01 F
9965 000 01567 ELECT. 100µF 10V ARA
OA10701050
CD01 N
4822 124 40433 ELECT. 47µF M 16V ARS
OA47601640
CD01 S
4822 124 40433 ELECT. 47µF M 16V ARS
OA47601640
CD01 U
9965 000 01567 ELECT. 100µF 10V ARA
OA10701050
CD02
4822 126 11687 CER. 0.1µF GRM39F104Z16
DK98104200
CD03
9965 000 05913 CER. 22pF ±2.0% 50V
DD942203A0
CD04
9965 000 05913 CER. 22pF ±2.0% 50V
DD942203A0
CD05
4822 126 11687 CER. 0.1µF GRM39F104Z16
DK98104200
CD06
4822 126 11687 CER. 0.1µF GRM39F104Z16
DK98104200
CD07
4822 126 11687 CER. 0.1µF GRM39F104Z16
DK98104200
CD08
9965 000 06692 CER. 20pF CH
DD95200300
CD09
4822 126 11687 CER. 0.1µF GRM39F104Z16
DK98104200
CD11
4822 122 33753 CER. 150pF ±5% CG 50V GR39 DD95151300
CD12
4822 122 33753 CER. 150pF ±5% CG 50V GR39 DD95151300
CD17
4822 122 33753 CER. 150pF ±5% CG 50V GR39 DD95151300
CD18
4822 122 33753 CER. 150pF ±5% CG 50V GR39 DD95151300
CD21
4822 126 11687 CER. 0.1µF GRM39F104Z16
DK98104200
CD23 F
4822 124 22039 ELECT. 220µF 16V ARA
OA22701650
CD23 N
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
CD23 S
4822 124 80123 ELECT. 220µF 16V ARS
OA22701640
CD23 U
4822 124 22039 ELECT. 220µF 16V ARA
OA22701650
CD24 F
4822 124 22241 ELECT. 47µF 16V ARA
OA47601650
CD24 N
4822 124 40433 ELECT. 47µF M 16V ARS
OA47601640
CD24 S
4822 124 40433 ELECT. 47µF M 16V ARS
OA47601640
CD24 U
4822 124 22241 ELECT. 47µF 16V ARA
OA47601650
CD31
4822 124 90353 ELECT. 100µF M 10V RA-2
OA10701020
CD32
4822 124 90352 ELECT. 10µF M 16V RA-2
OA10601620
CD33
4822 124 90353 ELECT. 100µF M 10V RA-2
OA10701020
CD41 F
9965 000 01318 ELECT. 220µF M 10V RA-2
OA22701020
CD41 N
4822 124 40433 ELECT. 47µF M 16V ARS
OA47601640
CD41 S
4822 124 40433 ELECT. 47µF M 16V ARS
OA47601640
CD41 U
9965 000 01318 ELECT. 220µF M 10V RA-2
OA22701020
CD42
4822 126 11687 CER. 0.1µF GRM39F104Z16
DK98104200
CD43 F
9965 000 01567 ELECT. 100µF 10V ARA
OA10701050
CD43 N
4822 124 40433 ELECT. 47µF M 16V ARS
OA47601640
CD43 S
4822 124 40433 ELECT. 47µF M 16V ARS
OA47601640
CD43 U
9965 000 01567 ELECT. 100µF 10V ARA
OA10701050
CD44
4822 126 11687 CER. 0.1µF GRM39F104Z16
DK98104200
CD45
4822 126 11687 CER. 0.1µF GRM39F104Z16
DK98104200
CD46 F
9965 000 01567 ELECT. 100µF 10V ARA
OA10701050
CD46 N
4822 124 40433 ELECT. 47µF M 16V ARS
OA47601640
CD46 S
4822 124 40433 ELECT. 47µF M 16V ARS
OA47601640
CD46 U
9965 000 01567 ELECT. 100µF 10V ARA
OA10701050
CD47
4822 126 11687
CER. 0.1µF GRM39F104Z16
DK98104200
CD48 F
4822 124 22237
ELECT. 10µF 16V ARA
OA10601650
CD48 N
4822 124 80543
ELECT. 10µF 35V ARS
OA10603540
CD48 S
4822 124 80543
ELECT. 10µF 35V ARS
OA10603540
CD48 U
4822 124 22237
ELECT. 10µF 16V ARA
OA10601650
CD49
4822 126 11687
CER. 0.1µF GRM39F104Z16
DK98104200
CD51 F
9965 000 01318 ELECT. 220µF M 10V RA-2
OA22701020
CD51 N
4822 124 40433 ELECT. 47µF M 16V ARS
OA47601640
CD51 S
4822 124 40433 ELECT. 47µF M 16V ARS
OA47601640
CD51 U
9965 000 01318 ELECT. 220µF M 10V RA-2
OA22701020
CD52
4822 126 11687
CER. 0.1µF GRM39F104Z16
DK98104200
CD53 F
9965 000 01567
ELECT. 100µF 10V ARA
OA10701050
CD53 N
4822 124 40433 ELECT. 47µF M 16V ARS
OA47601640
CD53 S
4822 124 40433 ELECT. 47µF M 16V ARS
OA47601640
CD53 U
9965 000 01567
ELECT. 100µF 10V ARA
OA10701050
CD54
4822 126 11687
CER. 0.1µF GRM39F104Z16
DK98104200
CD55
4822 126 11687
CER. 0.1µF GRM39F104Z16
DK98104200
CD56 F
9965 000 01567
ELECT. 100µF 10V ARA
OA10701050
CD56 N
4822 124 40433 ELECT. 47µF M 16V ARS
OA47601640
CD56 S
4822 124 40433 ELECT. 47µF M 16V ARS
OA47601640
CD56 U
9965 000 01567
ELECT. 100µF 10V ARA
OA10701050
CD57
4822 126 11687
CER. 0.1µF GRM39F104Z16
DK98104200
CD58 F
4822 124 22237
ELECT. 10µF 16V ARA
OA10601650
CD58 N
4822 124 80543
ELECT. 10µF 35V ARS
OA10603540
CD58 S
4822 124 80543
ELECT. 10µF 35V ARS
OA10603540
CD58 U
4822 124 22237
ELECT. 10µF 16V ARA
OA10601650
CD59
4822 126 11687
CER. 0.1µF GRM39F104Z16
DK98104200
CD61 F
9965 000 01318 ELECT. 220µF M 10V RA-2
OA22701020
CD61 N
4822 124 40433 ELECT. 47µF M 16V ARS
OA47601640
CD61 S
4822 124 40433 ELECT. 47µF M 16V ARS
OA47601640
CD61 U
9965 000 01318 ELECT. 220µF M 10V RA-2
OA22701020
CD62
4822 126 11687
CER. 0.1µF GRM39F104Z16
DK98104200
CD63 F
9965 000 01567
ELECT. 100µF 10V ARA
OA10701050
CD63 N
4822 124 40433 ELECT. 47µF M 16V ARS
OA47601640
CD63 S
4822 124 40433 ELECT. 47µF M 16V ARS
OA47601640
CD63 U
9965 000 01567
ELECT. 100µF 10V ARA
OA10701050
CD64
4822 126 11687
CER. 0.1µF GRM39F104Z16
DK98104200
CD65
4822 126 11687
CER. 0.1µF GRM39F104Z16
DK98104200
CD66 F
9965 000 01567
ELECT. 100µF 10V ARA
OA10701050
CD66 N
4822 124 40433 ELECT. 47µF M 16V ARS
OA47601640
CD66 S
4822 124 40433 ELECT. 47µF M 16V ARS
OA47601640
CD66 U
9965 000 01567
ELECT. 100µF 10V ARA
OA10701050
CD67
4822 126 11687
CER. 0.1µF GRM39F104Z16
DK98104200
CD68 F
4822 124 22237
ELECT. 10µF 16V ARA
OA10601650
CD68 N
4822 124 80543
ELECT. 10µF 35V ARS
OA10603540
CD68 S
4822 124 80543
ELECT. 10µF 35V ARS
OA10603540
CD68 U
4822 124 22237
ELECT. 10µF 16V ARA
OA10601650
CD69
4822 126 11687
CER. 0.1µF GRM39F104Z16
DK98104200
CD71
4822 126 11687
CER. 0.1µF GRM39F104Z16
DK98104200
CD72
4822 126 11687
CER. 0.1µF GRM39F104Z16
DK98104200
CD91
CER. 0.01µF
DK98103300
CD96
PP16-RESISTORS
R104
4822 051 20121 CHIP 120Ω ±5% 1/10W
NI05121110
R105
4822 051 20121 CHIP 120Ω ±5% 1/10W
NI05121110
R106
4822 117 12521 CHIP 68Ω ±5% 1/10W
NI05680110
R107
4822 051 20228 CHIP 2.2Ω ±5% 1/10W
NI05022110
R108
4822 051 20228 CHIP 2.2Ω ±5% 1/10W
NI05022110
R109
4822 117 12367 CHIP 33kΩ ±1% 1/10W
NI01333110
R110
4822 051 20102 CHIP 1kΩ ±5% 1/10W
NI05102110
R111
4822 051 20102 CHIP 1kΩ ±5% 1/10W
NI05102110
R112
4822 051 20101 CHIP 100Ω ±5% 1/10W
NI05101110
R154
4822 051 20121 CHIP 120Ω ±5% 1/10W
NI05121110
R155
4822 051 20121 CHIP 120Ω ±5% 1/10W
NI05121110
R156
4822 117 12521 CHIP 68Ω ±5% 1/10W
NI05680110
R157
4822 051 20228 CHIP 2.2Ω ±5% 1/10W
NI05022110
R158
4822 051 20228 CHIP 2.2Ω ±5% 1/10W
NI05022110
203
NOTE : "nsp" PART IS LISTED FOR REFERENCE ONLY, MARANTZ WILL NOT SUPPLY THESE PARTS.
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
R159
4822 117 12367 CHIP 33kΩ ±1% 1/10W
NI01333110
R160
4822 051 20102 CHIP 1kΩ ±5% 1/10W
NI05102110
R161
4822 051 20102 CHIP 1kΩ ±5% 1/10W
NI05102110
R162
4822 051 20101 CHIP 100Ω ±5% 1/10W
NI05101110
R204
4822 051 20121 CHIP 120Ω ±5% 1/10W
NI05121110
R205
4822 051 20121 CHIP 120Ω ±5% 1/10W
NI05121110
R206
4822 117 12521 CHIP 68Ω ±5% 1/10W
NI05680110
R207
4822 051 20228 CHIP 2.2Ω ±5% 1/10W
NI05022110
R208
4822 051 20228 CHIP 2.2Ω ±5% 1/10W
NI05022110
R209
4822 117 12367 CHIP 33kΩ ±1% 1/10W
NI01333110
R210
4822 051 20102 CHIP 1kΩ ±5% 1/10W
NI05102110
R211
4822 051 20102 CHIP 1kΩ ±5% 1/10W
NI05102110
R212
4822 051 20101 CHIP 100Ω ±5% 1/10W
NI05101110
R254
4822 051 20121 CHIP 120Ω ±5% 1/10W
NI05121110
R255
4822 051 20121 CHIP 120Ω ±5% 1/10W
NI05121110
R256
4822 117 12521 CHIP 68Ω ±5% 1/10W
NI05680110
R257
4822 051 20228 CHIP 2.2Ω ±5% 1/10W
NI05022110
R258
4822 051 20228 CHIP 2.2Ω ±5% 1/10W
NI05022110
R259
4822 117 12367 CHIP 33kΩ ±1% 1/10W
NI01333110
R260
4822 051 20102 CHIP 1kΩ ±5% 1/10W
NI05102110
R261
4822 051 20102 CHIP 1kΩ ±5% 1/10W
NI05102110
R262
4822 051 20101 CHIP 100Ω ±5% 1/10W
NI05101110
R304
4822 051 20121 CHIP 120Ω ±5% 1/10W
NI05121110
R305
4822 051 20121 CHIP 120Ω ±5% 1/10W
NI05121110
R306
4822 117 12521 CHIP 68Ω ±5% 1/10W
NI05680110
R307
4822 051 20228 CHIP 2.2Ω ±5% 1/10W
NI05022110
R308
4822 051 20228 CHIP 2.2Ω ±5% 1/10W
NI05022110
R309
4822 117 12367 CHIP 33kΩ ±1% 1/10W
NI01333110
R310
4822 051 20102 CHIP 1kΩ ±5% 1/10W
NI05102110
R311
4822 051 20102 CHIP 1kΩ ±5% 1/10W
NI05102110
R312
4822 051 20101 CHIP 100Ω ±5% 1/10W
NI05101110
R354
4822 051 20121 CHIP 120Ω ±5% 1/10W
NI05121110
R355
4822 051 20121 CHIP 120Ω ±5% 1/10W
NI05121110
R356
4822 117 12521 CHIP 68Ω ±5% 1/10W
NI05680110
R357
4822 051 20228 CHIP 2.2Ω ±5% 1/10W
NI05022110
R358
4822 051 20228 CHIP 2.2Ω ±5% 1/10W
NI05022110
R359
4822 117 12367 CHIP 33kΩ ±1% 1/10W
NI01333110
R360
4822 051 20102 CHIP 1kΩ ±5% 1/10W
NI05102110
R361
4822 051 20102 CHIP 1kΩ ±5% 1/10W
NI05102110
R362
4822 051 20101 CHIP 100Ω ±5% 1/10W
NI05101110
R404
4822 051 20121 CHIP 120Ω ±5% 1/10W
NI05121110
R405
4822 051 20121 CHIP 120Ω ±5% 1/10W
NI05121110
R406
4822 117 12521 CHIP 68Ω ±5% 1/10W
NI05680110
R407
4822 051 20228 CHIP 2.2Ω ±5% 1/10W
NI05022110
R408
4822 051 20228 CHIP 2.2Ω ±5% 1/10W
NI05022110
R409
4822 117 12367 CHIP 33kΩ ±1% 1/10W
NI01333110
R410
4822 051 20102 CHIP 1kΩ ±5% 1/10W
NI05102110
R411
4822 051 20102 CHIP 1kΩ ±5% 1/10W
NI05102110
R412
4822 051 20101 CHIP 100Ω ±5% 1/10W
NI05101110
R454
4822 051 20121 CHIP 120Ω ±5% 1/10W
NI05121110
R455
4822 051 20121 CHIP 120Ω ±5% 1/10W
NI05121110
R456
4822 117 12521 CHIP 68Ω ±5% 1/10W
NI05680110
R457
4822 051 20228 CHIP 2.2Ω ±5% 1/10W
NI05022110
R458
4822 051 20228 CHIP 2.2Ω ±5% 1/10W
NI05022110
R459
4822 117 12367 CHIP 33kΩ ±1% 1/10W
NI01333110
R460
4822 051 20102 CHIP 1kΩ ±5% 1/10W
NI05102110
R461
4822 051 20102 CHIP 1kΩ ±5% 1/10W
NI05102110
R462
4822 051 20101 CHIP 100Ω ±5% 1/10W
NI05101110
R504
4822 051 20121 CHIP 120Ω ±5% 1/10W
NI05121110
R505
4822 051 20121 CHIP 120Ω ±5% 1/10W
NI05121110
R506
4822 117 12521 CHIP 68Ω ±5% 1/10W
NI05680110
R507
4822 051 20228 CHIP 2.2Ω ±5% 1/10W
NI05022110
R508
4822 051 20228 CHIP 2.2Ω ±5% 1/10W
NI05022110
R509
4822 117 12367 CHIP 33kΩ ±1% 1/10W
NI01333110
R510
4822 051 20102 CHIP 1kΩ ±5% 1/10W
NI05102110
R511
4822 051 20102 CHIP 1kΩ ±5% 1/10W
NI05102110
R512
4822 051 20101 CHIP 100Ω ±5% 1/10W
NI05101110
R554
4822 051 20121 CHIP 120Ω ±5% 1/10W
NI05121110
R555
4822 051 20121 CHIP 120Ω ±5% 1/10W
NI05121110
R556
4822 117 12521 CHIP 68Ω ±5% 1/10W
NI05680110
R557
4822 051 20228 CHIP 2.2Ω ±5% 1/10W
NI05022110
R558
4822 051 20228 CHIP 2.2Ω ±5% 1/10W
NI05022110
R559
4822 117 12367 CHIP 33kΩ ±1% 1/10W
NI01333110
R560
4822 051 20102 CHIP 1kΩ ±5% 1/10W
NI05102110
R561
4822 051 20102 CHIP 1kΩ ±5% 1/10W
NI05102110
R562
4822 051 20101 CHIP 100Ω ±5% 1/10W
NI05101110
R602
4822 117 10833 CHIP 10kΩ ±5% 1/10W
NI05103110
R603
4822 111 90896 CHIP 100kΩ ±5% 1/10W
NI05104110
R612
4822 117 10833 CHIP 10kΩ ±5% 1/10W
NI05103110
R613
4822 111 90896 CHIP 100kΩ ±5% 1/10W
NI05104110
R622
4822 117 10833 CHIP 10kΩ ±5% 1/10W
NI05103110
R623
4822 111 90896 CHIP 100kΩ ±5% 1/10W
NI05104110
R632
4822 117 10833 CHIP 10kΩ ±5% 1/10W
NI05103110
R633
4822 111 90896 CHIP 100kΩ ±5% 1/10W
NI05104110
R642
4822 117 10833 CHIP 10kΩ ±5% 1/10W
NI05103110
R643
4822 111 90896 CHIP 100kΩ ±5% 1/10W
NI05104110
R652
4822 117 10833 CHIP 10kΩ ±5% 1/10W
NI05103110
R653
4822 111 90896 CHIP 100kΩ ±5% 1/10W
NI05104110
R704
4822 051 20121 CHIP 120Ω ±5% 1/10W
NI05121110
R705
4822 051 20121 CHIP 120Ω ±5% 1/10W
NI05121110
R706
4822 117 12521 CHIP 68Ω ±5% 1/10W
NI05680110
R707
4822 051 20228 CHIP 2.2Ω ±5% 1/10W
NI05022110
R708
4822 051 20228 CHIP 2.2Ω ±5% 1/10W
NI05022110
R709
4822 117 12367 CHIP 33kΩ ±1% 1/10W
NI01333110
R710
4822 051 20102 CHIP 1kΩ ±5% 1/10W
NI05102110
R711
4822 051 20102 CHIP 1kΩ ±5% 1/10W
NI05102110
R712
4822 051 20101 CHIP 100Ω ±5% 1/10W
NI05101110
R754
4822 051 20121 CHIP 120Ω ±5% 1/10W
NI05121110
R755
4822 051 20121 CHIP 120Ω ±5% 1/10W
NI05121110
R756
4822 117 12521 CHIP 68Ω ±5% 1/10W
NI05680110
R757
4822 051 20228 CHIP 2.2Ω ±5% 1/10W
NI05022110
R758
4822 051 20228 CHIP 2.2Ω ±5% 1/10W
NI05022110
R759
4822 117 12367 CHIP 33kΩ ±1% 1/10W
NI01333110
R760
4822 051 20102 CHIP 1kΩ ±5% 1/10W
NI05102110
R761
4822 051 20102 CHIP 1kΩ ±5% 1/10W
NI05102110
R762
4822 051 20101 CHIP 100Ω ±5% 1/10W
NI05101110
RD01
4822 051 30105 CHIP 1MΩ ±5% 1/16W
NN05105610
RD02
4822 051 30221 CHIP 220Ω ±5% 1/16W
NN05221610
RD03
4822 116 82487 CHIP 0Ω ±5% 1/16W
NN05000610
RD04
4822 051 30479 CHIP 47Ω ±5% 1/16W
NN05470610
RD05
4822 051 30479 CHIP 47Ω ±5% 1/16W
NN05470610
RD06
4822 051 30479 CHIP 47Ω ±5% 1/16W
NN05470610
RD07
4822 051 30223 CHIP 22kΩ ±5% 1/16W
NN05223610
RD08
4822 051 30223 CHIP 22kΩ ±5% 1/16W
NN05223610
RD09
4822 051 30479 CHIP 47Ω ±5% 1/16W
NN05470610
RD11
4822 051 30339 CHIP 33Ω ±5% 1/16W
NN05330610
RD18
RD20
4822 051 30223 CHIP 22kΩ ±5% 1/16W
NN05223610
RD30
RD31
4822 051 20338 FUSIBLE 3.3Ω ±5% 1/10W
NH85033110
RD32
4822 051 30103 CHIP 10kΩ ±5% 1/16W
NN05103610
RD33
4822 051 30563 CHIP 56kΩ ±5% 1/16W
NN05563610
RD34
4822 051 30472 CHIP 4.7kΩ ±5% 1/16W
NN05472610
RD35
4822 051 30152 CHIP 1.5kΩ ±5% 1/16W
NN05152610
RD36
4822 051 30472 CHIP 4.7kΩ ±5% 1/16W
NN05472610
RD39
4822 051 30472 CHIP 4.7kΩ ±5% 1/16W
NN05472610
RD41
4822 116 82487 CHIP 0Ω ±5% 1/16W
NN05000610
RD42
4822 116 82487 CHIP 0Ω ±5% 1/16W
NN05000610
RD43
4822 051 30223 CHIP 22kΩ ±5% 1/16W
NN05223610
RD46
4822 051 30102 CHIP 1kΩ ±5% 1/16W
NN05102610
RD51
4822 116 82487 CHIP 0Ω ±5% 1/16W
NN05000610
204
NOTE : "nsp" PART IS LISTED FOR REFERENCE ONLY, MARANTZ WILL NOT SUPPLY THESE PARTS.
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
RD52
4822 051 30223 CHIP 22kΩ ±5% 1/16W
NN05223610
RD53
4822 051 30223 CHIP 22kΩ ±5% 1/16W
NN05223610
RD56
4822 051 30102 CHIP 1kΩ ±5% 1/16W
NN05102610
RD61
4822 051 30223 CHIP 22kΩ ±5% 1/16W
NN05223610
RD62
4822 116 82487 CHIP 0Ω ±5% 1/16W
NN05000610
RD63
4822 051 30223 CHIP 22kΩ ±5% 1/16W
NN05223610
RD66
4822 051 30102 CHIP 1kΩ ±5% 1/16W
NN05102610
RD71
4822 051 30223 CHIP 22kΩ ±5% 1/16W
NN05223610
RD75
RD76
4822 051 30101 CHIP 100Ω ±5% 1/16W
NN05101610
RD77
4822 051 30223 CHIP 22kΩ ±5% 1/16W
NN05223610
RD78
4822 051 30102 CHIP 1kΩ ±5% 1/16W
NN05102610
RD79
4822 117 12139 CHIP 22Ω ±5% 1/16W
NN05220610
RD80
4822 117 12891 CHIP 220kΩ ±5% 1/16W
NN05224610
RD81
4822 051 30223 CHIP 22kΩ ±5% 1/16W
NN05223610
RD85
RD86
4822 051 30101 CHIP 100Ω ±5% 1/16W
NN05101610
RD87
4822 051 30223 CHIP 22kΩ ±5% 1/16W
NN05223610
RD88
4822 051 30102 CHIP 1kΩ ±5% 1/16W
NN05102610
RD89
4822 117 12139 CHIP 22Ω ±5% 1/16W
NN05220610
RD90
4822 117 12891 CHIP 220kΩ ±5% 1/16W
NN05224610
PP16-SEMICONDUCTORS
D101
4822 130 32362 DIODE 1SS176 MA165 1SS254
30V 0.1A
HD20002000
D102
4822 130 81324 CHIP DIODE 1SS302
HZ20018050
D103
4822 130 81324 CHIP DIODE 1SS302
HZ20018050
D151
4822 130 32362 DIODE 1SS176 MA165 1SS254
30V 0.1A
HD20002000
D152
4822 130 81324 CHIP DIODE 1SS302
HZ20018050
D153
4822 130 81324 CHIP DIODE 1SS302
HZ20018050
D201
4822 130 32362 DIODE 1SS176 MA165 1SS254
30V 0.1A
HD20002000
D202
4822 130 81324 CHIP DIODE 1SS302
HZ20018050
D203
4822 130 81324 CHIP DIODE 1SS302
HZ20018050
D251
4822 130 32362 DIODE 1SS176 MA165 1SS254
30V 0.1A
HD20002000
D252
4822 130 81324 CHIP DIODE 1SS302
HZ20018050
D253
4822 130 81324 CHIP DIODE 1SS302
HZ20018050
D301
4822 130 32362 DIODE 1SS176 MA165 1SS254
30V 0.1A
HD20002000
D302
4822 130 81324 CHIP DIODE 1SS302
HZ20018050
D303
4822 130 81324 CHIP DIODE 1SS302
HZ20018050
D351
4822 130 32362 DIODE 1SS176 MA165 1SS254
30V 0.1A
HD20002000
D352
4822 130 81324 CHIP DIODE 1SS302
HZ20018050
D353
4822 130 81324 CHIP DIODE 1SS302
HZ20018050
D401
4822 130 32362 DIODE 1SS176 MA165 1SS254
30V 0.1A
HD20002000
D402
4822 130 81324 CHIP DIODE 1SS302
HZ20018050
D403
4822 130 81324 CHIP DIODE 1SS302
HZ20018050
D451
4822 130 32362 DIODE 1SS176 MA165 1SS254
30V 0.1A
HD20002000
D452
4822 130 81324 CHIP DIODE 1SS302
HZ20018050
D453
4822 130 81324 CHIP DIODE 1SS302
HZ20018050
D501
4822 130 32362 DIODE 1SS176 MA165 1SS254
30V 0.1A
HD20002000
D502
4822 130 81324 CHIP DIODE 1SS302
HZ20018050
D503
4822 130 81324 CHIP DIODE 1SS302
HZ20018050
D551
4822 130 32362 DIODE 1SS176 MA165 1SS254
30V 0.1A
HD20002000
D552
4822 130 81324 CHIP DIODE 1SS302
HZ20018050
D553
4822 130 81324 CHIP DIODE 1SS302
HZ20018050
D601
4822 130 32362 DIODE 1SS176 MA165 1SS254
30V 0.1A
HD20002000
D621
4822 130 32362 DIODE 1SS176 MA165 1SS254
30V 0.1A
HD20002000
D641
4822 130 32362
DIODE 1SS176 MA165 1SS254
30V 0.1A
HD20002000
D701
4822 130 32362
DIODE 1SS176 MA165 1SS254
30V 0.1A
HD20002000
D702
4822 130 81324 CHIP DIODE 1SS302
HZ20018050
D703
4822 130 81324 CHIP DIODE 1SS302
HZ20018050
D751
4822 130 32362
DIODE 1SS176 MA165 1SS254
30V 0.1A
HD20002000
D752
4822 130 81324 CHIP DIODE 1SS302
HZ20018050
D753
4822 130 81324 CHIP DIODE 1SS302
HZ20018050
DD21
4822 130 83715 CHIP DIODE 1SS301 DAN202U HZ21005000
DD23
9965 000 09763 DIODE SHOTTKY
11EQS10 1A 100V
HD20055100
DN31
4822 130 32362 DIODE 1SS176 MA165 1SS254
30V 0.1A
HD20002000
DN32
4822 130 32362 DIODE 1SS176 MA165 1SS254
30V 0.1A
HD20002000
DN33
4822 130 32362 DIODE 1SS176 MA165 1SS254
30V 0.1A
HD20002000
Q101
4822 130 42843
F.E.T. 2SK389 GR OR BL
HF203892A0
Q102
4822 130 61425
CHIP TRS. 2SC2873 Y
HX328731B0
Q103
4822 130 63928
CHIP TRS. 2SA1312 B
HX113121B0
Q104
4822 130 63928
CHIP TRS. 2SA1312 B
HX113121B0
Q105
4822 130 63929
CHIP TRS. 2SC3324 B
HX333241B0
Q106
5322 130 41844 F.E.T. 2SK170 V LANK
HF201701H0
Q107
4822 130 62649 F.E.T. 2SJ74 V LANK
HF100741H0
Q151
4822 130 42843
F.E.T. 2SK389 GR OR BL
HF203892A0
Q152
4822 130 61425
CHIP TRS. 2SC2873 Y
HX328731B0
Q153
4822 130 63928
CHIP TRS. 2SA1312 B
HX113121B0
Q154
4822 130 63928
CHIP TRS. 2SA1312 B
HX113121B0
Q155
4822 130 63929
CHIP TRS. 2SC3324 B
HX333241B0
Q156
5322 130 41844 F.E.T. 2SK170 V LANK
HF201701H0
Q157
4822 130 62649 F.E.T. 2SJ74 V LANK
HF100741H0
Q201
4822 130 42843
F.E.T. 2SK389 GR OR BL
HF203892A0
Q202
4822 130 61425
CHIP TRS. 2SC2873 Y
HX328731B0
Q203
4822 130 63928
CHIP TRS. 2SA1312 B
HX113121B0
Q204
4822 130 63928
CHIP TRS. 2SA1312 B
HX113121B0
Q205
4822 130 63929
CHIP TRS. 2SC3324 B
HX333241B0
Q206
5322 130 41844 F.E.T. 2SK170 V LANK
HF201701H0
Q207
4822 130 62649 F.E.T. 2SJ74 V LANK
HF100741H0
Q251
4822 130 42843
F.E.T. 2SK389 GR OR BL
HF203892A0
Q252
4822 130 61425
CHIP TRS. 2SC2873 Y
HX328731B0
Q253
4822 130 63928
CHIP TRS. 2SA1312 B
HX113121B0
Q254
4822 130 63928
CHIP TRS. 2SA1312 B
HX113121B0
Q255
4822 130 63929
CHIP TRS. 2SC3324 B
HX333241B0
Q256
5322 130 41844 F.E.T. 2SK170 V LANK
HF201701H0
Q257
4822 130 62649 F.E.T. 2SJ74 V LANK
HF100741H0
Q301
4822 130 42843
F.E.T. 2SK389 GR OR BL
HF203892A0
Q302
4822 130 61425
CHIP TRS. 2SC2873 Y
HX328731B0
Q303
4822 130 63928
CHIP TRS. 2SA1312 B
HX113121B0
Q304
4822 130 63928
CHIP TRS. 2SA1312 B
HX113121B0
Q305
4822 130 63929
CHIP TRS. 2SC3324 B
HX333241B0
Q306
5322 130 41844 F.E.T. 2SK170 V LANK
HF201701H0
Q307
4822 130 62649 F.E.T. 2SJ74 V LANK
HF100741H0
Q351
4822 130 42843
F.E.T. 2SK389 GR OR BL
HF203892A0
Q352
4822 130 61425
CHIP TRS. 2SC2873 Y
HX328731B0
Q353
4822 130 63928
CHIP TRS. 2SA1312 B
HX113121B0
Q354
4822 130 63928
CHIP TRS. 2SA1312 B
HX113121B0
Q355
4822 130 63929
CHIP TRS. 2SC3324 B
HX333241B0
Q356
5322 130 41844 F.E.T. 2SK170 V LANK
HF201701H0
Q357
4822 130 62649 F.E.T. 2SJ74 V LANK
HF100741H0
Q401
4822 130 42843
F.E.T. 2SK389 GR OR BL
HF203892A0
Q402
4822 130 61425
CHIP TRS. 2SC2873 Y
HX328731B0
Q403
4822 130 63928
CHIP TRS. 2SA1312 B
HX113121B0
Q404
4822 130 63928
CHIP TRS. 2SA1312 B
HX113121B0
Q405
4822 130 63929
CHIP TRS. 2SC3324 B
HX333241B0
205
NOTE : "nsp" PART IS LISTED FOR REFERENCE ONLY, MARANTZ WILL NOT SUPPLY THESE PARTS.
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
Q406
5322 130 41844 F.E.T. 2SK170 V LANK
HF201701H0
Q407
4822 130 62649 F.E.T. 2SJ74 V LANK
HF100741H0
Q451
4822 130 42843 F.E.T. 2SK389 GR OR BL
HF203892A0
Q452
4822 130 61425 CHIP TRS. 2SC2873 Y
HX328731B0
Q453
4822 130 63928 CHIP TRS. 2SA1312 B
HX113121B0
Q454
4822 130 63928 CHIP TRS. 2SA1312 B
HX113121B0
Q455
4822 130 63929 CHIP TRS. 2SC3324 B
HX333241B0
Q456
5322 130 41844 F.E.T. 2SK170 V LANK
HF201701H0
Q457
4822 130 62649 F.E.T. 2SJ74 V LANK
HF100741H0
Q501
4822 130 42843 F.E.T. 2SK389 GR OR BL
HF203892A0
Q502
4822 130 61425 CHIP TRS. 2SC2873 Y
HX328731B0
Q503
4822 130 63928 CHIP TRS. 2SA1312 B
HX113121B0
Q504
4822 130 63928 CHIP TRS. 2SA1312 B
HX113121B0
Q505
4822 130 63929 CHIP TRS. 2SC3324 B
HX333241B0
Q506
5322 130 41844 F.E.T. 2SK170 V LANK
HF201701H0
Q507
4822 130 62649 F.E.T. 2SJ74 V LANK
HF100741H0
Q551
4822 130 42843 F.E.T. 2SK389 GR OR BL
HF203892A0
Q552
4822 130 61425 CHIP TRS. 2SC2873 Y
HX328731B0
Q553
4822 130 63928 CHIP TRS. 2SA1312 B
HX113121B0
Q554
4822 130 63928 CHIP TRS. 2SA1312 B
HX113121B0
Q555
4822 130 63929 CHIP TRS. 2SC3324 B
HX333241B0
Q556
5322 130 41844 F.E.T. 2SK170 V LANK
HF201701H0
Q557
4822 130 62649 F.E.T. 2SJ74 V LANK
HF100741H0
Q701
4822 130 42843 F.E.T. 2SK389 GR OR BL
HF203892A0
Q702
4822 130 61425 CHIP TRS. 2SC2873 Y
HX328731B0
Q703
4822 130 63928 CHIP TRS. 2SA1312 B
HX113121B0
Q704
4822 130 63928 CHIP TRS. 2SA1312 B
HX113121B0
Q705
4822 130 63929 CHIP TRS. 2SC3324 B
HX333241B0
Q706
5322 130 41844 F.E.T. 2SK170 V LANK
HF201701H0
Q707
4822 130 62649 F.E.T. 2SJ74 V LANK
HF100741H0
Q751
4822 130 42843 F.E.T. 2SK389 GR OR BL
HF203892A0
Q752
4822 130 61425 CHIP TRS. 2SC2873 Y
HX328731B0
Q753
4822 130 63928 CHIP TRS. 2SA1312 B
HX113121B0
Q754
4822 130 63928 CHIP TRS. 2SA1312 B
HX113121B0
Q755
4822 130 63929 CHIP TRS. 2SC3324 B
HX333241B0
Q756
5322 130 41844 F.E.T. 2SK170 V LANK
HF201701H0
Q757
4822 130 62649 F.E.T. 2SJ74 V LANK
HF100741H0
QD01
9965 000 06673 IC TC7WHU04FU
HC008005K0
QD02
9965 000 04632 IC TC74VHC00FS
HC005105K0
QD03
9965 000 04632 IC TC74VHC00FS
HC005105K0
QD04
4822 130 61541 CHIP TRS. 2SC4116
HX341162B0
QD05
9965 000 06674 IC TC7WH74FU
HC007905K0
QD06
9965 000 06673 IC TC7WHU04FU
TRIPLE INVERTER
HC008005K0
QD21
5322 209 11578 IC PCF8574T I/O EXPANDER HC10068490
QD22
4822 130 61541 CHIP TRS. 2SC4116
HX341162B0
QD23
9965 000 03397 IC BA033FP 3.3V 1A PD=1W HC96J33210
QD32
4822 130 61541 CHIP TRS. 2SC4116
HX341162B0
QD35
4822 130 61554 CHIP TRS. 2SA1586 Y G
HX115862B0
QD36
4822 130 61541 CHIP TRS. 2SC4116
HX341162B0
QD37
4822 130 43818 TRS. 2SC2878 A OR B RANK HT328782A0
QD38
4822 130 61541 CHIP TRS. 2SC4116
HX341162B0
QD41
9965 000 06675 IC CS4397 24BIT 192kHz DAC HC10008880
QD51
9965 000 06675 IC CS4397 24BIT 192kHz DAC HC10008880
QD61
9965 000 06675 IC CS4397 24BIT 192kHz DAC HC10008880
QD71
4822 130 61554 CHIP TRS. 2SA1586 Y G
HX115862B0
QD72
4822 130 61541 CHIP TRS. 2SC4116
HX341162B0
QD73
4822 130 61541 CHIP TRS. 2SC4116
HX341162B0
QD74
4822 130 61541 CHIP TRS. 2SC4116
HX341162B0
QD75
4822 130 61554 CHIP TRS. 2SA1586 Y G
HX115862B0
QD76
4822 130 61541 CHIP TRS. 2SC4116
HX341162B0
QD77
4822 130 61541 CHIP TRS. 2SC4116
HX341162B0
QD78
4822 130 61541 CHIP TRS. 2SC4116
HX341162B0
PP16-MISCELLANEOUS
L602
9965 000 06669 RELAY ED2-12NU
LY20120620
L622
9965 000 06669 RELAY ED2-12NU
LY20120620
L642
9965 000 06669 RELAY ED2-12NU
LY20120620
LD01
4822 158 60654 FERRITE CORE BLM31A02
CHIP INDUCTOR
FC90030070
LD02
4822 158 60654 FERRITE CORE BLM31A02
CHIP INDUCTOR
FC90030070
LD41
9965 000 03109 FERRITE CORE
FB M J2125HM330-T
FC90020100
LD51
9965 000 03109 FERRITE CORE
FB M J2125HM330-T
FC90020100
LD61
9965 000 03109 FERRITE CORE
FB M J2125HM330-T
FC90020100
LN31
9965 000 06669 RELAY ED2-12NU
LY20120620
LN32
9965 000 06669 RELAY ED2-12NU
LY20120620
LN33
9965 000 06669 RELAY ED2-12NU
LY20120620
SD71
9965 000 06676 SLIDE SW. SSSF113-S06N1
SS01030300
XD01
9965 000 06677 CRYSTAL 16.9344MHz UM-5
JX16001270
4822 124 41539
9965 000 08352
4822 124 22276
9965 000 08352
4822 122 33761
4822 122 33761
4822 126 11687
9965 000 08352
4822 124 90352
5322 126 11578
4822 126 12105
5322 126 11578
4822 124 41539
4822 126 12105
4822 122 33761
4822 124 90362
4822 124 90362
4822 124 90353
4822 126 11687
4822 122 31765
4822 122 31765
4822 122 31765
4822 051 30103
4822 051 30103
4822 051 30331
4822 051 30103
4822 116 83829
4822 051 30331
4822 051 30103
4822 116 83829
4822 117 13632
4822 051 30103
4822 051 30102
4822 051 30109
4822 051 30109
4822 051 30109
4822 051 30472
4822 051 30472
4822 051 30103
PY16-FRONT CIRCUIT BOARD
PY16-CAPACITORS
CY01
ELECT. 47µF M 16V RA-2
OA47601620
CY02
CER. 0.1µF 50V F
DK98104300
CY03
ELECT. 47µF M 50V RA-2
OA47605020
CY04
CER. 0.1µF 50V F
DK98104300
CY05
CER. 22pF ±5% CG 50V GR39
DD95220300
CY06
CER. 22pF ±5% CG 50V GR39
DD95220300
CY11
CER. 0.1µF GRM39F104Z16
DK98104200
CY12
CER. 0.1µF 50V F
DK98104300
CY20
ELECT. 10µF M 16V RA-2
OA10601620
CY21
CER. 1000pF ±10% B 50V
DK96102300
CY22
CER. 0.033µF ± 10%
DK96333200
CY23
CER. 1000pF ±10% B 50V
DK96102300
CY30
ELECT. 47µF M 16V RA-2
OA47601620
CY31
CER. 0.033µF ± 10%
DK96333200
CY32
CER. 22pF ±5% CG 50V GR39
DD95220300
CY33
ELECT. 22µF M 50V RA-2
OA22605020
CY34
ELECT. 22µF M 50V RA-2
OA22605020
CY50
ELECT. 100µF M 10V RA-2
OA10701020
CY51
CER. 0.1µF GRM39F104Z16
DK98104200
CY70
CER. 100pF ±5% CG 50V GR39 DD95101300
CY71
CER. 100pF ±5% CG 50V GR39 DD95101300
CY72
CER. 100pF ±5% CG 50V GR39 DD95101300
PY16-RESISTORS
RY01
CHIP 10kΩ ±5% 1/16W
NN05103610
RY03
CHIP 10kΩ ±5% 1/16W
NN05103610
RY10
CHIP 330Ω ±5% 1/16W
NN05331610
RY11
CHIP 10kΩ ±5% 1/16W
NN05103610
RY12
CHIP 270Ω ±5% 1/16W
NN05271610
RY13
CHIP 330Ω ±5% 1/16W
NN05331610
RY14
CHIP 10kΩ ±5% 1/16W
NN05103610
RY15
CHIP 270Ω ±5% 1/16W
NN05271610
RY20
CHIP 100kΩ ±5% 1/16W
NN05104610
RY21
CHIP 10kΩ ±5% 1/16W
NN05103610
RY23
CHIP 1kΩ ±5% 1/16W
NN05102610
RY25
CHIP 10Ω ±5% 1/16W
NN05100610
RY26
CHIP 10Ω ±5% 1/16W
NN05100610
RY27
CHIP 10Ω ±5% 1/16W
NN05100610
RY28
CHIP 4.7kΩ ±5% 1/16W
NN05472610
RY30
CHIP 4.7kΩ ±5% 1/16W
NN05472610
RY31
CHIP 10kΩ ±5% 1/16W
NN05103610
RY32
4822 051 30102
4822 051 30471
4822 051 30471
4822 051 30109
4822 051 30103
4822 051 30331
4822 051 30121
4822 051 30103
CHIP 1kΩ ±5% 1/16W
NN05102610
RY37
RY38
CHIP 470Ω ±5% 1/16W
NN05471610
RY39
CHIP 470Ω ±5% 1/16W
NN05471610
RY40
CHIP 10Ω ±5% 1/16W
NN05100610
RY41
CHIP 10kΩ ±5% 1/16W
NN05103610
RY42
CHIP 330Ω ±5% 1/16W
NN05331610
RY43
CHIP 120Ω ±5% 1/16W
NN05121610
RY45
CHIP 10kΩ ±5% 1/16W
NN05103610
206
NOTE : "nsp" PART IS LISTED FOR REFERENCE ONLY, MARANTZ WILL NOT SUPPLY THESE PARTS.
POS.
NO
VERS.
COLOR
PART NO.
(FOR PCS)
DESCRIPTION
PART NO.
(MJI)
RY50
4822 051 30331
4822 117 12925
4822 117 13632
4822 051 30472
4822 051 30103
4822 051 30103
4822 051 30331
4822 051 30331
CHIP 330Ω ±5% 1/16W
NN05331610
RY51
CHIP 47kΩ ±5% 1/16W
NN05473610
RY52
CHIP 100kΩ ±5% 1/16W
NN05104610
RY53
CHIP 4.7kΩ ±5% 1/16W
NN05472610
RY54
CHIP 10kΩ ±5% 1/16W
NN05103610
RY55
CHIP 10kΩ ±5% 1/16W
NN05103610
RY56
CHIP 330Ω ±5% 1/16W
NN05331610
RY57
CHIP 330Ω ±5% 1/16W
NN05331610
RY60
4822 051 30472
4822 051 30103
4822 117 12864
CHIP 4.7kΩ ±5% 1/16W
NN05472610
RY66
RY67
CHIP 10kΩ ±5% 1/16W
NN05103610
RY70
CHIP 82kΩ ±5% 1/16W
NN05823610
RY71
CHIP 82kΩ ±5% 1/16W
NN05823610
RY72
CHIP 82kΩ ±5% 1/16W
NN05823610
RY80
CHIP 330Ω ±5% 1/16W
NN05331610
RY81
CHIP 10kΩ ±5% 1/16W
NN05103610
RY82
CHIP 270Ω ±5% 1/16W
NN05271610
RY83
CHIP 330Ω ±5% 1/16W
NN05331610
RY84
CHIP 10kΩ ±5% 1/16W
NN05103610
RY85
CHIP 270Ω ±5% 1/16W
NN05271610
PY16-SEMICONDUCTORS
DY01
CHIP DIODE UDZ-10B
HZ30009210
DY02
CHIP DIODE
UDZS8.2B MA8082-M
HZ30821000
DY10
4822 130 80326 L.E.D. LT3D8B RED 3O
HI10062320
DY11
4822 130 80326 L.E.D. LT3D8B RED 3O
HI10062320
DY20
4822 130 83715 CHIP DIODE 1SS301 DAN202U HZ21005000
DY80
4822 130 80326 L.E.D. LT3D8B RED 3O
HI10062320
DY81
4822 130 80326 L.E.D. LT3D8B RED 3O
HI10062320
QY01
9965 000 04975 IC NJM79L24A:0.1A-24V
HC39124090
QY10
9965 000 10841 MICROPROCESSOR
TMP87CH74F FL DRIVER
HU413KT000
4822 130 61554 CHIP TRS. 2SA1586 Y G
HX115862B0
QY12
QY20
QY30
4822 130 61554 CHIP TRS. 2SA1586 Y G
HX115862B0
4822 130 61541 CHIP TRS. 2SC4116
HX341162B0
4822 130 61541 CHIP TRS. 2SC4116
HX341162B0
4822 130 43954 CHIP TR.(2SD) 2SD999
HX409992A0
4822 130 42734 CHIP TR.(2SB) 2SB798 DL DK HX207982A0
4822 130 61554 CHIP TRS. 2SA1586 Y G
HX115862B0
4822 130 61554 CHIP TRS. 2SA1586 Y G
HX115862B0
4822 130 61541 CHIP TRS. 2SC4116
HX341162B0
4822 130 61541 CHIP TRS. 2SC4116
HX341162B0
4822 130 61541 CHIP TRS. 2SC4116
HX341162B0
4822 130 61541 CHIP TRS. 2SC4116
HX341162B0
4822 130 61554 CHIP TRS. 2SA1586 Y G
HX115862B0
4822 130 61554 CHIP TRS. 2SA1586 Y G
HX115862B0
PY16-MISCELLANEOUS
9965 000 03109 FERRITE CORE
FB M J2125HM330-T
FC90020100
SY01
4822 276 13408 PUSH SW.
SP01012030
SY10
SKHVBF 260GF RED
VY01
2722 171 07718 DISPLAY UNIT
FTD 15-MT-67GNK
HQ31209410
XY01
2422 540 98518 CER. VIB.
CSTS MG 8MHz 15pF
ZY01
9965 000 06833 PHOTO UNIT RPM6936-H4
PY26-POWER SW.
DY40
4822 130 80326
HI10062320
RY44
4822 051 30121 CHIP 120Ω ±5% 1/16W
NN05121610
SY40
9965 000 10847
SP02022310
4822 117 12864
4822 117 12864
4822 051 30331
4822 051 30103
4822 116 83829
4822 051 30331
4822 051 30103
4822 116 83829
9965 000 07640
9965 000 01598
QY11
QY31
QY32
QY40
QY51
QY52
QY70
QY71
QY72
QY80
QY81
LY01
FQ08004060
HW10008210
CIRCUIT BOARD
L.E.D. LT3D8B RED 3O
PUSH SW. SPPH430100
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