Service Information. Service. Service. Service FW-C399. Product Service Group CE Audio A MMPWR 100W MODULE CHANGES DURING PRODUCTION 3CDC MODULE

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1 Service Service Service W 0 7 Product Service Group udio Service Information lready published Service Informations: HNGS URING PROUTION MOUL * rom production wk onwards a new LL module with Sanyo rive is introduced as an alternative module. The new module can be recognized by: a) the label on the left side of the module b) the additional housing over one of the toothed wheels as shown in the picture below MMPWR 00W MOUL * rom wk onwards (begin with /7 versions) the following changes are make to improve reliability of the Power amplifier. elete: 0,, 7 and 7 dd: 00n 0% 00n 0% R7 % W R7 % W hange: to,7n 0% to,7n 0% 70 to STK0i ll components are already provided as provision in the existing schematics & layout drawings. nclosed is the complete new chapter 0 for the new module

2 0 LL ( isc arousel hanger) Layout stage. TL O ONTNTS Service Hints...0 lockdiagram...0 omponent Layout Main oard...0 ircuit iagram part...07 omponent Layout Main oard...0 ircuit iagram part...0 xploded View...00 Partslist...0

3 Service hints UTION 0 HRG PITORS ON TH SRVO OR MY MG TH RIV LTRONIS WHN ONNTING NW MHNISM. THT S WHY, SIS TH STY MSURS LIK SWITH O POWR SUPPLY S PROTTION ITIONL TIONS MUST TKN Y TH RPIR THNIIN. The following steps have to be done when replacing the mechanism:. isconnect flexfoil cable from the old drive. Put a paperclip on the flexfoil to shortcircuit the contacts (fig.). Remove the old drive. Remove paperclip from the flexfoil and connect it to the new drive. Position the new drive in its studs. Remove solder joint from the Laserunit fig. ttention: The laser diode of this drive is protected against S by a solder joint which shortcircuits the laserdiode to ground. or proper functionality of the drive this solder joint must be removed after connection the drive to the set. mergency open In case of a Supply fault, the tray can be opened manually.. Remove the top cover of the set to get access to the hanger Module.. Turn gearwheel clockwise (as shown in picture below).

4 Service hints 0 ismantling of Tray. Open the tray.. Release x catch as shown in fig. and etail. Pull tray out. etail fig. ssembling of Tray. Turn am (pos. ) clockwise to end position.. If necessary move Guiding (pos. ) to the right end position.. Insert the Tray. Pos Guiding Pos am

5 Service Position 0

6 0 0 LOK IGRM LL MHNISM IS MINOR TURNTL OUS O O T O 70 RIL SLG TURNTL R R SLG SLG TTM TTM T R SL MOT MOT SIGNL PROSSOR 0 S7 (S7) LP LN RP RN V ctive low pass ilter T0 70 LT 7 RIGHT 0 nalog udio PHOTO IOS LSR & MONITOR IO L MON 70,70 70,70 RW= V = 70 QSelection L ON V H IN RST SIL R SL S 0 SIL R SIL T ommunication µp Signal Processor INNR SWITH R,R V V OM U OUT,7,,,7,V U OUT 0 OX OX igital udio ROUSL POS. ROGNITION 7 7 SWITH INO 77 SWITH INO TRY POS. SWITH ROUSL TRY, open if carousel is in a valid PlayPosition. closed if carousel is in Position., Open if the drive is in one endposition. losed during movement. RIV UP/OWN SWITH 0 TRY SWITH 77 T707 losed if the tray is in one endposition. Open during movement SHIT RGISTR H0T T SHR_L ST V N V Power on t V (pin ) N (pin ) V,V V V V SHRT SHR_L SHR_STR V hanger ontrol Logic Supply lockdiagram LL

7 0 0 Mapping opperside omponentside LL opperside view This assembly drawing shows a summary of all possible versions. or components used in a specific version see schematic diagram respectively partslist. Ll Layout stage G 7 0 H G 77 H 7 H 7 G H G 70 G 70 G G 7 G 7 G G H H 7 7 H 0 G G H H H H H 7 G H 0 H H G G H 0 G 7 0 G 7 7 H 7 H 7 H 7 G 7 G H G 77 H H 7 0 G H 7 G 7 G G G H LL omponentside view This assembly drawing shows a summary of all possible versions. or components used in a specific version see schematic diagram respectively partslist. LL Layout stage. 0007

8 G H G G 0 0 H7 0 7 H 0 G 0 7 H 7 0 G H 7 H G H G G 70 MP G G MP G H H MP H 0 H MP H 0 G0 70 G MP G MP H MP7 MP7 MP7 MP7 MP00 MP0 MP0 0 MP G MP MP G MP MP MP7 MP MP 0 MP0 MP MP7 0 MP G MP MP MP MP7 MP G MP G MP0 MP MP H MP G7 MP MP MP H MP7 H MP MP MP0 MP MP G MP G MP G MP 0 MP0 MP7 MP7 H MP7 MP7 MP77 MP7 MP7 MP MP MP G H OUS rive LL mainboard TRK Sanyo T VR MON _ SLI _ IS INNRSW. part V GN L GN T T PHS Vref0 Innersw to 777.7V V_H during ocus search R7 70 K7 # OUS TRK.7V _ IS V SLI 7n V.7V.V.V.V.V _ 0 Servo driver V,, 70 T707 0 K K K K 0 7R 70 Motor river 7R V_H 7R 70 V V 7u.V 0 70 R S sensitive lines! 7u.V.V.V 7.V 00n 0 0.V IS 0.V.V 7.V SLI,, 707 T707 R7 U >00mV >Laser damaged! 7 OUS n TRK 70 LM 7 7 K n K 7u 7u 00n R R7 K7 7 R 0n 0 K V 7K Vref 7K Vref Vref 0K Laser power control n 0K 0 p n 7 R (0) R (0) (0) (0) (0) 70 70K 7 K 7 0K n.v 0K 0n (0) 7 K 7 K7 LON K GN 7n.7V GN K K K 7.V n 70.V 0R 7 0p Vref Vref0 V_H p.v 7 7 K 7K 7K 7K.V K 7 Hmplifier.V 0R 7 K GN 0 00 K 7 K 0.V K servo 0p 0p 0p 0p n 7 70R u 70 7 V 7 K 0p 00p GN 0 0 0p 0p 0 7 0R 0 0p p.7V GN n 70 7 V 0p 0 0p 70R.V 00R # 0K u7 K 00 K7.7V n K p 7n 7n T0 only for digital out versions (Quartz used) 0 p TIMING VR GN. 7 VRIN 0.V 7K 7 IR.V V 0 00K HIN YPTTRN T = 0.us/div 7p 7 V.V RIN.V ROUT.7V.7V.7V.7V.7V.7V _ : _RW : V VSS R R 0.V 0R.V 7 VSS.7V ISLI.7V HIN.7V HR LON 00mVpp 00n.V LN V N RONT INTR VRSTIL.V K servo n LP V.V VNG ITSTRM V Innersw 0 from 0 PROSSING PR VPOS UNTION ONTROL MOTO.V 7 0u V M MO M PLL IG. ONTROL 0 0R.V RN MOTO n M RP VSS.V PROSSOR UIO SRM R 00n SLPLL V R 00n 7 00n V 7.V TST SL.V 7u STGS OUTPUT SL L O Signal Processor T WLK INTR SR. T ORR. RROR R S7 O SLK / S7 LG T. PK 7u INTR. U VP.V 00R KILL OM OM 0 TST INTR. VRST. INTR. LOOPK SR. T MIROONTROLLR INTR SUO PROSSOR VSS 0 R servo.v for digital out version: = R KILL VSS V V WLI SI SLI 7.V RSTn S SL 0 R SIL STTUS TST RK SU SSY 7 SSY L. MHz L for TXT only PIN0 UGN.V 70 0 R either or 0 n 70R #... for provision only drive recognition 7p 7 70R RK SU SSY SSY 70R 70R 77 on sheet (TXT I) to.v LN LP RN RP POR S SIL SIL to 70 on part 0 on part (upinterface) to to dig. out circuitry OM on part V... V voltages measured in PLY MO with following conditions: VM "" = "V" = V G H LL (Sanyo) part

9 0 0 Mapping opperside omponentside LL opperside view This assembly drawing shows a summary of all possible versions. or components used in a specific version see schematic diagram respectively partslist. Ll Layout stage G 7 0 H G 77 H 7 H 7 G H G 70 G 70 G G 7 G 7 G G H H 7 7 H 0 G G H H H H H 7 G H 0 H H G G H 0 G 7 0 G 7 7 H 7 H 7 H 7 G 7 G H G 77 H H 7 0 G H 7 G 7 G G G H LL omponentside view This assembly drawing shows a summary of all possible versions. or components used in a specific version see schematic diagram respectively partslist. LL Layout stage. 0007

10 H G G H 70 G 70 G 707 G 70 H 7 G 7 7 G 7 7 G G 70 G 7 G 7 G 7 G 7 H G G MP7 MP MP G 77 MP G G MP7 MP7 MP70 H MP7 G MP7 G MP0 MP0 0 MP0 G MP0 MP0 MP07 MP0 MP0 MP MP MP MP MP MP0 7 MP G MP MP MP MP MP7 MP MP MP MP7 MP MP MP7 MP7 MP G MP G MP G MP7 H MP G MP G MP0 MP MP MP7 MP MP 7 0 LL mainboard part digital out circuitry 7Ω version (not on all versions) from 777 on OM part from 777 on OM part 0 0R 0 70R digital out circuitry p 7 70R 7 70R 7n 77 R R 7 n 7 0R (not for 7Ω Versions) OX to 0 OX OX to 0.V ROM 777 ON PRT LP LN RP RN 00R 7 K 70 K 7 K 7 K 70 K GN 0 7 K 7 0u GN V 00p 0p GN V.V GN 70 T0T 7.V 0p GN 7 0p 0u 7 GN V 00p GN V 0 7n 70 T0T.V 0p GN 7 00R 0 0u 00R 0u to/from 777 on part SIL.V SIL S S 7K GN 7K GN 7 00K 7 77 VV log. Level Transformer 7 #.V 7 # G H ROUSL POS rec R00T STVKN POS rec 77 M R00T RWR to M 7 IPMT STVKN 7 IPMT Text circuitry (optional) 777 on part 7.KHz RK SU SSY SSY L 70 K 7n 7 GN TIMING & SYN PROTTION n TST.V.V OUT.V 0.V.V 00R 7 0R V K L70M XK V V 7 70R x SSO QSY 70 70R PORT PU 7 70R SOR RM R INTR SRT 7 70R WK SLK 70 70R R R MK HK SW 0 MHz XMO SW 7 ZXV 7 77 T707.V.V V.V 7.V.ms n 7 0u 7 TXT INO 70R 0u QSY SRT 7 0 K V SLK 0R only during TOreading 7 00K 00K 0R 7K R 7 7K V ZX RIV UP/ OWN 7 S 7 TRY POS u7 K 7 00K 0 7 S 7 S 7 S 7 7 S 7 7.V 0 7 Output enable delay circuitry ST N SRG 77.V H0T changer control logic.v.v.v 7 7n K 0 K 70R.V.V V V.V 77 7p 7 0p 0p 77 7 voltage stab..v 7 77.V R 7 # 7 77.V S ZXV 00R 7 7 V(.V).V version only to 777 on part OX from digitalout circuitry OX UGN GN POR to combiboard LT GN RIGHT 0 V(.V) GN 7 SW_INO SHR_STR SHR_L SIL T SIL GN 0 POR GN OX/V 7 OX/U U_GN GN SRT QSY up_lk GN STVKN SI VRSION ( Pin) IG. OUT ( Pin) TXT ( Pin) G H V... V voltages measured in PLY MO with following conditions: VM "" = "V" = V 7 0 LL part 00 0

11 00 00 XPLO VIW (L MOUL) MHNIL PRTS Loader this page RWR PRSSUR RING 0 70 MTL RING SUPPORT 0 RUR MPR RIV, RR x x x 07 RUR MPR RIV, RONT WSHR RIV TN MUHI R00T ROUSL RM RKTGUIING SPRINGGUIING GR NIL IXTION GR RKTLO M GUIING GR GR PULLYRM RIVINGLTRWR 07 TRY 0 SRW M,X, OVR RUR Pos. 7 Pos. Pos. Pos. Pos. Pos. Pos. 7 Pos. Pos. Pos. x MHNIL PRTS rawer hapter RWR ROUSL PULLYRWR NTRI GR WHL NIL IXTION RIVING LT ROUSL 7 USH RWR (height=,mm,d=,mm) USH RWR (height=,mm,d=mm) RKTIS TUMLR SPRINGIS ONTROLIS GR 7 07 RROUSL 0 X Y spare part non spare part 7 L xploded view

12 0 rawer bottom view x rawer top view 7 0 X spare part Y non spare part L rawer assy 0

13 0 LTRIL PRTSLIST LL MOUL MISLLNOUS PITORS RIV TN 7 0µ 0% V 7 07 ROUSL 0p % 07 TRY 0p % LX OIL ONNTOR Pin n 0% V 0 07 LX OIL ONNTOR Pin 7 0p % 0 LX OIL ONNTOR Pin LX OIL ONNTOR Pin LX OIL ONNTOR Pin SWITH, Tray switch 7 0 SWITH, rive UP/OWN 7 0 SWITH, Pos. recognized 7 0 SWITH, valid Play position LX OIL L P 00mm :n LX OIL L P 70mm :n PITORS p % 0 0p % 0 0 0p % 0 0p % 0 7 7µ 0% V 0 0p % 0 0p % p % 0 0p % ,µ 0% V 0 0 0p % 0p % 7 p % p 70 0n 0% V 0 0p % 7,n 0% 7 0p 0%,n % V 7 n 0% V n 0% V 7,n 0% V 777 7p % V 7 7n 0%,n 0% V 7µ 0% V 7µ 0% V 07 0 n 0% 0 7 7n 0% 7 00p % 7 00p % n % n % 7 0 7µ 0% V 0 0µ 0% V 0 7µ 0% V 0 00n 0% 0 n % 7,n 0% 0 00 n % V 0 7 n 0% V 0µ 0% V 0 0p % 7p % V 7 0n 0% V 0µ 0% V 0 7 0µ 0% V n % 7 0 0µ 0% V 7 7 0µ 0% V 7 0µ 0% V p % V 7 0p % 07,7µ 0% 0 0p % 07,7µ 0% n 0% 0 7µ 0% V 7,n 0% 7 0p % n 0% 0 00n 0% V 0 00n 0% V n 0% V RSISTORS Ω % 0,W Ω % 0,W Ω % 0,W Ω % 0,0W kΩ % 0,W kω % 0,0W kΩ % 0,0W kΩ % 0,0W kω % 0,0W kΩ % 0,W kω % 0,W ,7kΩ % 0,0W 7 7 0,kΩ % 0,0W kΩ % 0,0W kω % 0,W kω % 0,W kω % 0,W kω % 0,W kω % 0,W kΩ % 0,0W kΩ % 0,0W kω % 0,0W kω % 0,0W Ω % 0,0W Ω % 0,0W 7 0 0,kΩ % 0,0W 7 0 0,kΩ % 0,0W 7 7 0Ω % 0,0W 7 7 0Ω % 0,0W 7 0 0,kΩ % 0,0W 7 0 0,kΩ % 0,0W kω % 0,0W kω % 0,0W kΩ % 0,W kΩ % 0,0W kΩ % 0,W kΩ % 0,W kΩ % 0,0W

14 0 LTRIL PRTSLIST LL MOUL RSISTORS RSISTORS kΩ % 0,0W 7 0 0kΩ % 0,W kΩ % 0,0W 7 7kΩ % 0,0W kΩ % 0,0W Ω % 0,0W kΩ % 0,0W 7 0 0kΩ % 0,W 7 0 7kΩ % 0,W Ω % 0,W 0 0,Ω % W 7 0,7Ω % 0,0W 0 0 Ω % 0,0W 0 07,7Ω % NR 0 0,kΩ % 0,0W Ω % 0,W 0 0 0,kΩ % 0,0W 0 0,kΩ % 0,0W 0 0,kΩ % 0,0W 0 00 kω % 0,W 0 0 kω % 0,0W kΩ % 0,W 0 0 kω % 0,W Ω % 0,0W kΩ % 0,0W 0 0 kω % 0,W 0 0 kω % 0,W 0 07,7Ω % NR kω % 0,W 0 00 kω % 0,0W 0 0 0kΩ % 0,W kΩ % 0,0W 7 0 0kΩ % 0,W 7 0 0kΩ % 0,W 7 0 7kΩ % 0,W 0 0,kΩ % 0,0W 7 0 0kΩ % 0,W 7 0 7kΩ % 0,W ,7kΩ % 0,0W 0 0 0kΩ % 0,W kΩ % 0,0W 0 0,Ω % NR 0 0,Ω % 0,W Ω % 0,W 7 7kΩ % 0,0W 7 0 7kΩ % 0,W kΩ % 0,W kΩ % 0,0W 0 0 0Ω % 0,W Ω % 0,W Ω % 0,W Ω % 0,0W Ω % 0,0W Ω % 0,0W ,7kΩ % 0,W kΩ % 0,0W Ω % 0,W kΩ % 0,0W kΩ % 0,0W kΩ % 0,0W kω % 0,0W 0 00 kω % 0,0W Ω % 0,W Ω % 0,0W Ω % 0,0W 7 7 Ω % 0,0W 0 0 0Ω % 0,0W Ω % 0,0W 00 7,7kΩ % 0,W kΩ % 0,W kΩ % 0,0W HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR HIP JUMPR kΩ % 0,0W kΩ % 0,W 0 0 0,kΩ % 0,0W 7 00kΩ % 0,0W 7 7kΩ % 0,0W 7 0 0kΩ % 0,W Ω % 0,0W

15 LTRIL PRTSLIST LL MOUL 0 OILS 0 77 RMI RS.,MHz IOS S S S S 7 0 ZXV 77 ZXV S 7 ZXV TRNSISTORS INTGRT IRUITS 70 0 LM, ual Opamp 70 0 T0T/N, ual Opamp 70 0 T707/N, Servo river T707/N, Motor river 77 0 T707/N, Motor river H0T, SHIT RGISTR S7H/M, 0 SIGN.PRO.

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