Pioneer-CX3168-cdm-sm 维修电路原理图.pdf
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1、 ORDER NO.PIONEER CORPORATION 4-1, Meguro 1-chome, Meguro-ku, Tokyo 153-8654, JapanPIONEER ELECTRONICS (USA) INC. P.O. Box 1760, Long Beach, CA 90801-1760, U.S.A.PIONEER EUROPE NV Haven 1087, Keetberglaan 1, 9120 Melsele, BelgiumPIONEER ELECTRONICS ASIACENTRE PTE. LTD. 253 Alexandra Road, #04-01, Si
2、ngapore 159936 PIONEER CORPORATION 2005 CRT3467 CD MECHANISM MODULE(G3) CX-3168 CX-3116 K-ZZU. APR. 2005 Printed in Japan X-3168 : TOYOTAX-3116 : FORD - This service manual describes the operation of the CD mechanism module incorporated in models listedin the table below. - When performing repairs u
3、se this manual together with the specific manual for model under repair. ModelService ManualCD Mechanism ModuleAVIC-XD1057ZF/UCAVIC-XD1557ZF/UCAVIC-XD1957ZF/UCCRT3458CXK7300DEH-MG2057ZF/XU/UCCRT3480CXK7300DEX-MG8157ZT/UCDEX-MG8057ZT/XU/UCCRT3486CXK7310DEH-MG8257ZT/UCCRT3487CXK7310 CONTENTS 1. CIRCUI
4、T OVER VIEW . . . . . . . . . . . . . . . . . . . . . . . . . . . 22. MECHANISM OVER VIEW . . . . . . . . . . . . . . . . . . . . . . 233. DISASSEMBLY . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 354. HOW TO ASSEMBLE . . . . . . . . . . . . . . . . . . . . . . . . . . 45RadioFans.CN
5、 收音机爱 好者资料库 CX-3168212341234CDFABE1. CIRCUIT OVER VIEWFig.1 UPD63763AGJ(X-3168),UPD63761AGJ(X-3116) block diagramA-FUPD63763AGJ,UPD63761AGJAudio outputSDRAM16MbitMicrocomputerDigital servoRF ampCD-ROM decoderEFMSignal processingBuilt-in SRAM (1M bit)Buffer memory controller (BMC)MP3/WMA decoderDACCo
6、ncerning CD LSI, beside the core DSP, LSI which unifies DAC once used as peripheral circuit or RF amp is the mainstream, and UPD63763AGJ,UPD63761AGJ is a multifunction LSI which has a plenty of functions such as existing CD and replay CD-ROM storing MP3/WMA file by embedding CD-ROM decoder or MP3/WM
7、A decoder.*X-3116 has built-in WMA decoder by each LSI function, but is not corresponded to its specification.RadioFans.CN 收音机爱 好者资料库 CX-3168356785678CDFABE1.1 PREAMP SECTION1.1.1 APC circuit (Automatic Power Control)Fig.2 APCPU unitCD core unitMDVRLD-LD+111310911131091000PCTF13890.1F15/3R32SB11322R
8、4 x 22R7+-+-+-PDVREFREG 1.25VAPNLDSUPD63763AGJ,UPD63761AGJLD1431426R5K1K6R5K1K110K100K100K3PThe preamp section is processing pick-up output signal and generating signal to servo section, demodulator section and control section of the next stage. The signal from pick-up is I-V converted by photodetec
9、tor-built-in preamp in the pick-up, then added by RF amp and created RF, FE, TE, TE empty cross signal. This preamp section is embedded in CD LSI UPD63763AGJ,UPD63761AGJ (IC201), and each section of it is explained below. Since the spec of this LSI is single power supply (+3.3V), reference voltage o
10、f this LSI and pick-up should be all REFO (1.65V). REFO is the output from REFOUT in the LSI through buffer amp, and its output comes from the number 133 pin of the LSI. All measurement is based on the REFO.NOTE: Never short-circuit REFO and GND.Since light output has large minus temperature charact
11、eristics when laser diode is operated under constant current, it is necessary to control current by monitor diode so that constant output is maintained. This is APC circuit. LD current is generated by measuring current between LD1 and V3 R3 and dividing the value by 7.5 , and its current value shoul
12、d be about 30mA. CX-3168412341234CDFABE1.1.3 Focus error amp1.1.4 RFOK circuit1.1.5 Tracking error ampFig.3 TEP5VERFE11FEF9119P6P1P10130112K160K129112K160K160K63K80K181K45R36K45R36K+-63K+-+-VREFTEOFF settingTE A/D+-+-+-+-60K20KInternal TEC139TEO138TE-140TE2141TEC47P68PCD core unitPU unitUPD63763AGJ,
13、UPD63761AGJThe photodetector output (A+C), (B+D) comes from the number 91 pin as FE signal which is (A+C-B-D) through differential amp and then error amp. The low frequency of voltage FE is showed in the following formula.FE=(A+C-B-D) X 8.8k / 10k X 111k / 61k X 160k / 64k =(A+C-B-D) X 4The FE outpu
14、t generates 1.5Vpp of S curve based on REFO. The cut-off frequency of the amp in back stage is 14.6kHz.This circuit is signal expressing timing of focus-close and focus-close condition during playing, and output from the number 55 pin as RFOK signal output. During playing at focus-close, H is output
15、 as signal.Since RFOK signal holds a peak of DC level of RFAGCI at digital section in back stage and is converted and generated by certain threshold level, RFOK is H without a bit. Therefore, focus-close is also performed in disc mirror surface. This signal is supplied to a microcomputer via LPF as
16、FOK signal and used for protection and switching gain of RF amp.The photodetector output E, F comes from the number 139 pin, taking (E-F) as TE signal through a differential amp and then an error amp. The low frequency of TE is showed in the following formula.TEO=(E-F) X 63k / 112k X 160k / 160k X 1
17、81k / 45.4k X 160k / 80k = (E-F) X 4.48TE output generates 1.15Vpp level TE waveform based on REFO. The cut-off frequency of the amp in back stage is 21.1kHz. CX-3168556785678CDFABE1.1.6 Tracking empty cross amp1.1.7 EFM circuit Fig.4 EFM1142K100K40K40KVDDVDD+-+-+-RFIUPD63763AGJ,UPD63761AGJEFM signa
18、l111EFM112ASYThe tracking empty cross signal (hereafter, TEC signal) is the signal amplifying TE signal for 4 times and used to find an empty cross point of tracking error. The purpose for finding the empty cross point is;1 To use for track count at carriage movement and track jump2 To use for detec
19、ting direction of lens movement at tracking close (used in a tracking brake circuit described later)The frequency range of TEC signal is 300 Hz - 20kHz, and voltage TEC=TE level X 4.That is, TEC level is 4.62V as calculated, and this level is over D range of an operation amp and so that the signal i
20、s clipped, but only empty cross point is used in CD LSI, so there is no problem.EFM circuit is the circuit for converting RF signal into 0 1 digital signal. AGCO signal output from the number 116 pin is AC-combined, input to the number 114 pin, and supplied to EFM circuit.Since RF vertical asymmetry
21、 occurred because of the lack of RF signal by a scratch or dirt on a disc, and quality variation of disc production is not deleted only by AC-combination, reference voltage ASY of EFM comparator is controlled, taking advantage of the fact that the occurring rate of 0 1 in EFM signal is 50%. In this
22、way, the comparator level is always around the center of RFO signal. This reference voltage ASY is generated with passing EFM comparator output through LPF. EFM signal is output from the number 111 pin. CX-3168612341234CDFABE1.2 SERVO SECTION (UPD63763AGJ,UPD63761AGJ: IC 201)1) Focus servo systemFEA
23、MPDIG.EQ125A+CB+DFDFO+FO-IC302BD7962FMLENSIC201 UPD63763AGJ,UPD63761AGJ1281011817FOCUS SEARCHTRIANGULAR WAVE GENERATORDACCONTROLA/DR21810KR311C2191000pF8R2KR31327KC302150P1011Fig.5 Focus servo block diagramThe servo section operates servo control such as equalizing of error signal, in-focus, track j
24、ump, carriage move, etc. DSP is section for signal processing and operates data decoding, error correction, interpolation processing, etc. FE, TE signal generated in preamp stage is A/D converted and outputs drive signal of focus, tracking, and carriage system via servo block. And EFM signal is deco
25、ded in the signal processing section and outputs audio signal after D/A convert via D/A converter finally. In addition, in this decoding process, error signal of a spindle servo is generated, and supplied to the spindle servo section, and outputs drive signal for the spindle. Each drive signal of fo
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