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    Jvc-XLSV-305-GD-Service-Manual电路原理图.pdf

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    Jvc-XLSV-305-GD-Service-Manual电路原理图.pdf

    SERVICE MANUALVIDEO CD PLAYERContentsSafety precautions .1-2Preventing static electricity .1-3Disassembly .1-4Description of major IC .1-5XL-SV302SL/SV305GDXL-SV308BUPOWER 1 MIC VOLUME 2OPEN/CLOSERETURN1 MIC 212 3 4 5+10 678910/0ON / OFFMIN MAX MIN MAXCOMPACTDIGITAL VIDEOVIDEO CDG49G4dG50G4fG52G54G41G4eG54G50G4cG45G41G53G45G20G54G41G4bG45G20G4eG4fG54G45G20G42G45G46G4fG52G45G20G4fG52G44G45G52G49G4eG47G31G2e G4fG72G64G65G72G20G61G6cG6cG20G73G65G72G76G69G63G65G20G70G61G72G74G73G20G74G68G72G6fG75G67G68G20G4aG56G43G20G41G73G69G61G20G50G74G65G20G4cG74G64G2eG2dG20G43G75G73G74G6fG6dG65G72G20G53G61G74G69G73G66G61G63G74G69G6fG6eG20G44G65G70G74G2eG32G2e G54G77G6fG20G6fG72G64G65G72G73G20G61G72G65G20G61G76G61G69G6cG61G62G6cG65G3aG20G49G6eG69G74G69G61G6cG20G6fG72G64G65G72G20G61G6eG64G20G6cG61G73G74G20G6fG72G64G65G72G20G28G42G65G66G6fG72G65G20G45G6eG64G20G4fG66G20G4cG69G6eG65G29G33G2e G4dG69G6eG69G6dG75G6dG20G6fG72G64G65G72G20G71G75G61G6eG74G69G74G79G3aG20G31G30G30G70G63G73G34G2e G44G65G6cG69G76G65G72G79G20G74G65G72G6dG3aG20G4dG69G6eG69G6dG75G6dG20G32G20G6dG6fG6eG74G68G73G20G75G70G6fG6eG20G63G6fG6eG66G69G72G6dG61G74G69G6fG6eG20G6fG66G20G6fG72G64G65G72G2eNo: 28207OCT. 2001COPYRIGHT 2001 VICTOR COMPANY OF JAPAN LTD.XL-SV320SL/305GD/308BUXL-SV320SL/SV305GDXL-SV308BU1-2XL-SV320SL/305GD/308BU1. This design of this product contains special hardware and many circuits and components specially forsafety purposes. For continued protection, no changes should be made to the original design unlessauthorised in writing by the manufacturer. Replacement parts must be identical to those used in theoriginal circuits. Services should be performed by qualified personnel only.2. Alterations of the design or circuitry of the product should not be made. Any design alterations of theproduct should not be made. Any design alterations or additions will void the manufacturers warrantyand will further relieve the manufacture of responsibility for personal injury or property damage resultingtherefrom.3. Many electrical and mechanical parts in the products have special safety-related characteristics.These characteristics are often not evident from visual inspection nor can the protection afforded bythem necessarily be obtained by using replacement components rated for higher voltage, the PartsList of Service Manual. Electrical components having such features are identified by shading on theschematics and by ( ) on the Parts List in the Service Manual. The use of a substitute replacementwhich does not have the same safety characteristics as the recommended replacement parts shownin the Parts List of Service Manual may create shock, fire, or other hazards.4. The leads in the products are routed and dressed with ties, clamps, tubings, barriers and the like tobe separated from live parts, high temperature parts, moving parts and/or sharp edges for the preventionof electric shock and fire hazard. When service is required, the original lead routing and dress shouldbe observed, and it should be confirmed that they have been returned to normal, after re-assembling.5. Leakage current check (Electrical Shock hazard testing)After re-assembling the product, always perform an isolation check on the exposed metal parts of theproduct (antenna terminals, knobs, metal cabinet, screw heads, headphone jack, control shafts, etc.)to be sure the product is safe to operate without danger of electrical shock.Do not use a line isolation transformer during this check. Plug the AC line cord directly into the AC outlet. Using a “Leakage Current Tester”, measure theleakage current from each exposed metal parts of the cabinet, particularly and exposed metalpart having a return path to the chassis, to a known good earth ground. Any leakage current mustnot exceed 0.5mA AC (r.m.s.) Alternate check methodPlug the AC line cord directly into the AC outlet. Use an AC voltmeter having, 1,000 ohms pervolt or more sensitivity in the following manner. Connect a 1,500 10W resistor paralleled by aWarning1. This equipment has been designed and manufactured to meet international safety standards.2. It is the legal responsibility of the repairer to ensure that these safety standards are maintained.3. Repairs must be made in accordance with the relevant safety standards.4. It is essential that safety critical components are replaced by approved parts.5. If mains voltage selector is provided, check setting for local voltage.0.15µF AC-type capacitor between an exposedmetal part and a known good earth ground.Measure the AC voltage across the resistorwith the AC voltmeter.Move the resistor connection to each exposedmetal part, particularly any exposed metal parthaving a return path to the chassis, andmeasure the AC voltage across the resistor.Now, reverse the plug in the AC outlet andrepeat each measurement. voltage measuredAny must not exceed 0.75 V AC (r.m.s.). Thiscorresponds to 0.5 mA AC (r.m.s.).Safety precautions0.15µF AC TYPE1500 10WPlace thisprobe oneach exposedmetal part.Good earth groundAC Voltmeter(Having 1000ohms/volts,or more sensitivityXL-SV320SL/305GD/308BU1-3Preventing static electricityElectrostatic discharge (ESD), which occurs when static electricity stored in the body, fabric, etc. is dis-charged, can destroy the laser diode in the traverse unit (optical pickup). Take care to prevent this whenperforming repairs.1.1. Grounding to prevent damage by static electricityStatic electricity in the work area can destroy the optical pickup (laser diode) in devices such as DVD players.Be careful to use proper grounding in the area where repairs are being performed.1.1.1. Ground the workbench1. Ground the workbench by laying conductive material (such as a conductive sheet) or an iron plate overit before placing the traverse unit (optical pickup) on it.1.1.2. Ground yourself1. Use an anti-static wrist strap to release any static electricity built up in your body.1.1.3. Handling the optical pickup1. In order to maintain quality during transport and before installation, both sides of the laser diode on thereplacement optical pickup are shorted. After replacement, return the shorted parts to their originalcondition. (Refer to the text.)2. Do not use a tester to check the condition of the laser diode in the optical pickup. The testers internalpower source can easily destroy the laser diode.1.2. Handling the traverse unit (optical pickup)1. Do not subject the traverse unit (optical pickup) to strong shocks, as it is a sensitive, complex unit.2. Cut off the shorted part of the flexible cable using nippers, etc. after replacing the optical pickup. For spe-cific details, refer to the replacement procedure in the text. Remove the anti-static pin when replacing thetraverse unit. Be careful not to take too long a time when attaching it to the connector.3. Handle the flexible cable carefully as it may break when subjected to strong force.4. It is not possible to adjust the semi-fixed resistor that adjusts the laser power. Do not turn it.Conductive material(conductive sheet) oriron plate(caption)Anti-static wrist strapXL-SV320SL/SV305GDXL-SV308BU1-4XL-SV320SL/305GD/308BUDisassemblyProcedure of disassemblyNo. Description QTY. Action Remark1 Main part 1 Place2 Plane tray 1 Remove Turn on VCD, open the plane traythen take up the CD door.3 Self screw 1 Loosen screw Loose the screw, remove from the upper cover.4 ¢4.0 Self screw 4 Loosen screw5 Upper cover 1 Remove Loose screws then remove the upper coverfrom the main part.6 Self screw 5 Loosen screw7 Self screw 1 Loosen screw8 Front panel block 1 Remove Remove the front panel block from the main part.XL-SV320SL/305GD/308BU1-5IC lead identification, internal diagram and descriptionIC301: HT16512 (VFD DRIVER)Block diagramPin configuration (Top view)XL-SV320SL/SV305GDXL-SV308BU1-6XL-SV320SL/305GD/308BUPin descriptionSymbol Pin Name Pin No. DescriptionDIN Data input 6 Inputs serial data at the rising edge of the shift clock, starting fromthe low order bit.DOUT Data output 5 Output serial data at the falling edge of the shift clock, starting fromthe low order bit. This is the N-ch open-drain output pin.STB Strobe 9 Initializes the serial interface at the rising or falling edge of the µPD16512.It then waits for reception of a command. Data input after STB has fallen isprocessed as a command. While command data is processed, currentprocessing is stopped, and the serial interface is initialized. While STB ishigh, CLK is ignored.CLK Clock input 8 Reads serial data at the rising edge, and outputs data at the falling edge.OSC Oscillator pin 44 Connect a resistor to this pin to determine the oscillation frequency to this pin.Seg1/KS1 to High-voltage 15 to 20 Segment output pins (Dual function as key source)Seg6/KS6 outputSeg7 to seg11 High-voltage 21 to 25 Segment output pinsoutput (segments)Grid1 to Grid6 High-voltage 37 to 32 Grid output pinsoutput (grid)Seg12/Grid11 to High-voltage 26,28 to 31 These pins are selectable for segment or grid driving.Seg16/Grid7 output(segment/grid)Led to Led Led output 42 to 39 CMOS output. +20 mA max.Key1 to Key4 Key data input 10 to 13 Data input to these pins is latched at the end of the display cycle.SW1 to SW4 Switch input 1 to 4 These pins constitute a 4-bit general-purpose input port.VDD Logic power 14, 38 5V ± 10%Vss Logic ground 7, 43 Connect this pin to system GND.VEE Pull-down level 27 VDD-35 V max.IC201/IC202,U5/U6: BA4558 (OP-AMP)Pin configurationIC101: 7805 (REGULATOR)Block diagramPin descriptionPin Function1 A Output2 A-Input3 A+Input4V-5 B+Input6 B-Input7 B Output8V+XL-SV320SL/305GD/308BU1-7Pin configurationU1: ES3210Block diagramPin configurationXL-SV320SL/SV305GDXL-SV308BU1-8XL-SV320SL/305GD/308BUES3210 Pin descriptionName Number I/O DefinitionVDD 1, 31, 51 I Voltage supply for 3.3V.RAS# 2 O DRAM row address strobe (active low).DWE# 3 O DRAM write enable (active low).DA8:0 12:4 O DRAM multiplexed row and column address bus.DBUS15:0 28:13 I/O DRAM data bus.RESET# 29 I System rest (active low).VSS 30,50,80,100 I Ground.YUV7:0 39:32 O Y is luminance, UV are chrominance data bus for screen video interface.YUV7:0 for 8-bit YUV mode.VSYNC 40 I/O Vertical sync for screen video interface. programmable for rising or falling edge.HSYNC 41 I/O Horizontal sync for screen video interface, programmable for rising or falling edge.CPUCLK 42 I RISC and system clock input. CPUCLK is used only if SEL-PLL1:0=00.PCLK2X 43 I/O Pixel clock; two times the actual pixel clock for screen video interface.PCLK 44 I/O Pixel clock qualifier in for screen video interface.AUX7.0 54,52,53,49:45 I/O Auxiliary control pins (AUX0 and AUX1 are open collectors).LD7:0 62:55 I/O RISC interface data bus.LWR# 63 O RISC interface write enable (active low).LOE# 64 O RISC interface output enable (active low).LCS3,1,0# 65,66,67 O RISC interface chip select (active low).LA17:0 87:82, 79:68 O RISC interface address bus.VPP 81 I Digital supply voltage for 5V.ACLK 88 I/O Master clock for external audio DAC (8.192MHz, 11.2896MHz, 12.288MHz,16.9344MHz,and 18.432MHz).AOUT 89 O Dual-purpose pin. AOUT is the audio interface serial data output./SEL-PLLO I Pins SEL-PLL1:0 select phase-lock loop (PLL) clock frequency CPUCLK for theES3210: 00=bypass PLL.01=54MHz PLL.10=67.5MHz PLL.11=81MHz PLL.ATCLK 90 I/O Audio transmit bit clock.ATFS/ 91 O Dual-purpose pin. ATFS is the audio interface transmit frame sync.SEL-PLL I Pins SEL-PLL1:0 select phase-lick loop(PLL) clock frequency CPUCLK for theES3210. See the SEL-PLL0 pin above for the sttings.DOE# 92 O DRAM output enable (active low).AIN 93 I Audio interface serial data input.ARCLK 94 I Audio receive bit clock.ARFS 95 I Audio interface receive frame sync.TDMCLK 96 I TDM interface serial clock.TDMDR 97 I TDM interface serial data receive.TDMFS 98 I TDM interface frame sync.CAS# 99 O DRAM column address strobe bank 0 (active low).XL-SV320SL/305GD/308BU1-9U4: ES3207Block diagramPin configurationXL-SV320SL/SV305GDXL-SV308BU1-10XL-SV320SL/305GD/308BUES3207 Pin descriptionName Number I/O DefinitionVSS 1,2,25,26,29,30,31, I Ground.72,75,77,91,100VCC 3,4,5,16,32 I Voltage supply 5V.66,73,78,90DSC-C 6 I Clock for programming to access internal registers.AUX15:0 40-38,36-34,20,18, I/O Auxiliary control pins.14,67-70,11,9,7DSC-D7:0 81,83,85,93, I Data for programming to access internal registers.95,97,99,8DSC-S 10 I Strobe for programming to access internal registers.DCLK/ 12 O Dual-purpose pin. DCLK is the mpeg decoder clock.EXT-CLK I EXT-CLK is the external clock. EXT-CLK input during bypass PLL mode.RST# 13 I Video reset (active low).MUTE 15 O Audio mute.MCLK 17 I Audio master clock.TWS/ I Dual-purpose pin. TWS is the transmit audio frame sync.SPLLOUT 19 O SPLLOUT is the select PLL output.TSD 21 I Transmit audio data input.TBCK 22 I Transmit audio bit clock.RWS/ O Dual purpose pin. RWS is the receive audio frame sync.SEL-PLL1 23 I Pins SEL-PLL1:0 select the PLL clock frequency for DCLK output.SEL PLL1 SEL PLL0 DCLK0 0 Bypass PLL (Input Mode)0 1 27MHz (Output Mode)1 0 32.4MHz (Output Mode)1 1 40.5MHz (Output Mode)RSTOUT# 24 O Reset output (active low).NC 27,28,65,76 No connect. Do not connect to these pins.RSD/ 33 O Dual purpose pin. RSD is the receive audio data input.SEL-PLL0 I SEL-PLL0 is the select PLL. See the table for pin no. 23.RBCK 37 O Dual purpose pin. RBCK is the receive audio bit clock.SER-IN I SER-IN is serial input DSC mode.0=Parallel DSC mode.1=Serial DSC mode.VSSA 41,50,51,56,57,62,63 I Analog ground.VREFM 42 I DAC and ADC minimum reference. Bypass to VCMR with 10µF in parallel with 0.1µF.VREFP 43 I DAC and ADC maximum reference. Bypass to VCMR with 10µF in parallel with 0.1µF.VCCA 44,45,59,60 I Analog VCC. 5V.AOR 46 O Right channel output.AOL 47 O Left channel output.MIC2 48 I Microphone input 2.MIC1 49 I Microphone input 1.VREF 52 I Internal resistor divider generates Common Mode Reference (CMR) voltage. Bypass toanalog ground with 0.1µF.VCM 53 I ADC Common Mode Reference (CMR) buffer output. CMR is approximately 2.25V.Bypass to analog ground with 47µF electrolytic in parallel with 0.1µF.RSET 54 I Full scale DAC current adjustment.COMP 55 I Compensation pin.CDAC 58 O Modulated chrominance output.YDAC 61 O Y luminance data bus for screen video port.VDAC 64 O Composite video output.XOUT 71 O Crystal output.XIN 74 I 27MHz crystal input.PCLK 79 I/O 13.5MHz pixel clock.PCLK2X 80 I/O 27MHz (2 times pixel clock).HSYNC# 82 I/O Horizontal sync (active low).VSYNC# 84 I/O Vertical sync (active low).YUV7:0 86-89,92,94,96,98 O YUV luminance and chrominance data bus for screen video port.

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