BBK 938S2 Service Manual

Page 1
SERVICE MANUAL
BBK938S
Page 2
CONTENTS
1. SAFETY PRECAUTIONS
2. PREVENTION OF ELECTRO STATIC DISCHARGE(ESD)TO ELECTROSTATICALLY
SENSITIVE(ES)DEVICES
3. CONTROL BUTTON LOCATIONS AND EXPLANATIONS
4. PREVERTION OF STATIC ELECTRICITY DISCHARGE
5.1 OPTICAL PICKUP UNIT EXPLOSED VIEW AND PART LIST
5.2 BRACKET EXPLOSED VIEW AND PART LIST
5.3 MISCELLANEOUS
6. ELECTRICAL CONFIRMATION
6.1 VIDEO OUTPUT (LUMINANCE SIGNAL) CONFIRMATION
6.2 VIDEO OUTPUT(CHROMINANCE SIGNAL) CONFIRMATION
1
1
2
4
5
5
7
8
9
9
10
7. MPEG BOARD CHECK WAVEFORM
8. IC BLOCK DIAGRAM & DESCRIPTION
8.1 MT1336 12
8.2 MT1379
8.3 U214 HY29F800 36
8.4 U203 SDRAM-HY57V1610D
9. SCHEMATIC & PCB WIRING DIAGRAM
10. SPARE PARTS LIST 55
11
12
20
39
41
Page 3
1.1 GENERAL GUIDELINES
1. SAFETY PREAUTIONS
2.PREVENTION OF ELECTRO STATIC DISCHARGE(ESD)TO  ELECTROSTATICALLY SENSITIVE(ES)DEVICES
1
1. When servicing, observe the original lead dress. if a short circuit is found, replace all parts which have been overheated or damaged by the short circuit.
2. After servicing, see to it that all the protective devices such as insulation barrier, insulation papers shields are properly installed.
3. After servicing, make the following leakage current checks to prevent the customer from being exposed
to shock hazards.
Some semiconductor(solid state)devices can be damaged easily by static electricity. Such components commonly are called Electrostatically Sensitive(ES)Devices. Examples of typical ES devices are integrated circuits and some field-effect transistors and semiconductor chip components. The following techniques should be used to help reduce the incidence of component damage caused by electro static discharge(ESD).
1. Immediately before handling any semiconductor component or semiconductor-equipped assembly, drain off any ESD on your body by touching a known earth ground. Alternatively, obtain and wear a commercially availabel discharging ESD wrist strap, which should be removed for potential shock reasons prior to applying power to the unit under test.
2. After removing an electrical assembly equipped with ES devices,place the assembly on a conductive surface such as alminum foil, to prevent electrostatic charge buildup or exposure of the assembly.
3. Use only a grounded-tip soldering iron to solder or unsolder ES devices.
4. Use only an anti-static solder removal device. Some solder removal devices not classified as anti-static (ESD protected)can generate electrical charge sufficient to damage ES devices.
5. Do not use freon-propelled chemicals. These can generate electrical charges sufficient to damage ES devices.
6. Do not remove a replacement ES device from its protective package until immediately before you are ready to install it. (Most replacement ES devices are packaged with leads electrically shorted together by conductive foam, alminum foil or comparable conductive material).
7. Immediately before removing the protective material from the leads of a replacement ES device, touch the protective material to the chassis or circuit assembly into which the device will be installed. Caution Be sure no power is applied to the chassis or circuit, and observe all other safety precautions.
8. Minimize bodily motions when handling unpackaged replacement ES devices. (Otherwise harmless motion such as the brushing together of your clothes fabric or the lifting of your foot from a carpeted floor can generate static electricity(ESD).
notice (1885x323x2 tiff)
Page 4
2
3.Control Button Locations and Explanations
Front Panel Illustration
5
POWER switch
Disc tray
2
Playback Indicator
3
7 8 9 10 1112136
2
3
6
MIC VOLUME knob
MIC 1 jack
7
MIC 2 jack
8
11
PLAY Button
12
PAUSE Button
13
STOP Button
4
4
DIRECTION Arrow
ECHO adjustment knob
5
VFD display window
9
10
OPEN/CLOSE button
Page 5
STANDBY EJECT
3
2
3
4
1 2
4
5
OSD
AUDIO
SUBTITLE
ANGLE MUTEGOTO
5
3
6
7 8 9
+10
6
7
8
9
10
11
12
13
14
15
16
17
18
30
MENU Button
Display DVD menu or open/close PBC.
31
27
CLEAR Button
Clear error input numbers.
32
ANGLE Button
Change camera angle, MP3/JPEG playback modes switch.
33
MUTE Button
Press once to mute, twice to unmute.
34
SUBTITLE Button
Change subtitle language, Switch JPEG display modes.
35
EJECT Button
Open or close the disc tray.
0
SELECT
RC-15
35
34
33
32
31
30
29
28
27
26
25
24
23
22
21
20
19
STANDBY Button
Press once to stand by, Press twice to play.
2
OSD Button
Display or hid disc information.
3
GOTO Button
Play from the desired location.
4
AUDIO Button
Change the audio language or audio channel.
5
NUMBER Buttons
6
TITLE Button
DVD title.
7
CURSOR Buttons
8
SETUP Button
Function Setup.
9
P/N Button
Switch the TV system between PAL, NTSC
and AUTO.
10
PROG Button
Program playback titles.
11
STOP Button
Stop playback.
12
PLAY Button
Normal playback.
13
REV Button
Fast backward play.
14
FWD Button
Fast forward play.
15
SLOW Button
Slow play.
16
A-B Button
Repeat the select.
17
KEY Button Fall tone.
18
KEY Button
Rise tone.
19
VOLUME -
Decrease volume.
20
VOLUME +
Increase volume.
21
REPEAT Button
Repeat play.
22
RETURN Button
Back to the previous menu.
23
PREV Button
Skip backward.
24
NEXT Button
Skip forward.
25
PAUSE/STEP Button
Pause or play frame by frame.
26
PSM Button
Power Spectrum Meter on/off.
27
ZOOM Button
Zoom in the displayed frame.
28
MODE Button
JPEG Display Mode.
29
SELECT Button
Page 6
The laser diode in the traverse unit (optical pickup)may brake down due to static electricity of clothes or human
body. Use due caution to electrostatic breakdown when servicing and handling the laser diode.
Some devices such as the DVD player use the optical pickup(laser diode)and the optical pickup will be damaged
by static electricity in the working environment.Proceed servicing works under the working environment where
1. Put a conductive material(sheet)or iron sheet on the area where the optical pickup is placed,and ground the
3. The flexible cable may be cut off if an excessive force is applied to it.Use caution when handling the cable.
4
4.PREVENTION OF STATIC ELECTRICITY DISCHARGE
4.1.Grounding for electrostatic breakdown prevention
grounding works is completed.
4.1.1. Worktable grounding
sheet.
4.1.2.Human body grounding
1 Use the anti-static wrist strap to discharge the static electricity from your body.
safety_3 (1577x409x2 tiff)
4.1.3.Handling of optical pickup
1. To keep the good quality of the optical pickup maintenance parts during transportation and before installation, the both ends of the laser diode are short-circuited.After replacing the parts with new ones, remove the short circuit according to the correct procedure. (See this Technical Guide).
2. Do not use a tester to check the laser diode for the optical pickup .Failure to do so willdamage the laser diode due to the power supply in the tester.
4.2. Handling precautions for Traverse Unit (Optical Pickup)
1. Do not give a considerable shock to the traverse unit(optical pickup)as it has an extremely high-precise structure.
2. When replacing the optical pickup, install the flexible cable and cut is short land with a nipper. See the optical pickup replacement procedure in this Technical Guide. Before replacing the traverse unit, remove the short pin for preventingstatic electricity and install a new unit.Connect the connector as short times as possible.
4. The half-fixed resistor for laser power adjustment cannot be adjusted. Do not turn the resistor.
Page 7
5.1 Optical pickup Unit Explosed View and Part List
5. Assembling and disassembling the mechanism unit
5
Pic (1)
Page 8
Materials to Pic (1)
6
No. PARTS CODE PARTS NAME Q ty
14692200 SF-HD60 1
1
1EA0311A06300 ASSY, CHASSIS, COMPLETE 1
2
Or
3
4
5
6
7
8
9
10
11
21
Or
31
32
1EA0M10A15500 ASSY, MOTOR, SLED 1
1EA0M10A15501 ASSY, MOTOR, SLED 1
1EA2451A24700 HOLDER, SHAFT 3
1EA2511A29100 GEAR, RACK 1
1EA2511A29200 GEAR, DRIVE 1
1EA2511A29300 GEAR, MIDDLE, A 1
1EA2511A29400 GEAR, MIDDLE, B 1
1EA2744A03000 SHAFT, SLIDE 1
1EA2744A03100 SHAFT, SLIDE, SUB 1
1EA2812A15300 SPRING, COMP, TYOUSEI 3
1EA2812A15400 SPRING, COMP, RACK 1
1EA0B10B20100 ASSY, PWB 1
1EA0B10B20200 ASSY, PWB 1
SEXEA25700--- SPECIAL SCREW BIN+-M2X11 3
SEXEA25900--- SPECIAL SCREW M1.7X2.2 2
33
34
35

Note : This parts list is not for service parts supply.
SFBPN204R0SE- SCR S-TPG PAN 2X4 2
SFSFN266R0SE- SCR S-TPG FLT 2.6X6 1
SWXEA15400--- SPECIAL WASHER 1.8X4 X0.25 2
Page 9
5.2 Bracket Explosed View and Part List
7
Pic (2)
Materials to Pic(2)
1.bracket 14. front silicon rubber
2.belt 15. Back silicon rubber
3.screw 16. Pick-up
4.belt wheel 17. Pick-up
5.gearwheel 18. switch
6.iron chip 19. Five-pin flat plug
7. Immobility mechanism equipment 20. screw
8. Magnet 21. PCB
9. Platen 22. motor
10. Bridge bracket 23. Motor wheel
11. screw 24. screw
12. screw 25.tray
13. Big bracket
Before going process with disassembly and installation, please carefully both peruse the chart and confirm the materials.
Page 10
5.3 MISCELLANEOUS
8
5.3.1 Protection of the LD(Laser diode)
Short the parts of LD circuit pattern by soldering.
5.3.2 Cautions on assembly and adjustment
Make sure that the workbenches,jigs,tips,tips of soldering irons and measuring instruments are
grounded,and that personnel wear wrist straps for ground.
Open the LD short lands quickly with a soldering iron after a circuit is connected.
Keep the power source of the pick-up protected from internal and external sources of electrical noise.
Refrain from operation and storage in atmospheres containing corrosive gases (such as H2S,SO2,
NO2 and Cl2)or toxic gases or in locations containing substances(especially from the organic silicon,cyan,
formalin and phenol groups)which emit toxic gases.It is particularly important to ensure that none of the
above substances are present inside the unit.Otherwise,the motor may no longer run.
Page 11
6.1. Video Output (Luminance Signal) Confirmation
6.Electrical Confirmation
9
DO this confirmation after replacing a P.C.B.
Measurement point
Video output terminal
Measuring equipment,tools
200mV/dir,10 sec/dir
Purpose:To maintain video signal output compatibility.
1.Connect the oscilloscope to the video output terminal and terminate at 75 ohms.
2.Confirm that luminance signal(Y+S)level is 1000mVp-p±30mV
PLAY(Title 46):DVDT-S15 PLAY(Title 12):DVDT-S01
Mode Disc
Color bar 75%
Confirmation value
1000mVp-p±30mV
DVDT-S15
or
DVDT-S01
Page 12
Do the confirmation after replacing P.C.B.
Screwdriver,Oscilloscope
6.2 Video Output(Chrominance Signal) Confirmation 
10
Measurement point
Video output terminal
Measuring equipment,tools Confirmation value
200mV/dir,10 sec/dir
Purpose:To maintain video signal output compatibility.
1.Connect the oscilloscope to the video output terminal and terminate at 75 ohme.
2.Confirm that the chrominance signal(C)level is 621 mVp-p±30mV
PLAY(Title 46):DVDT-S15 PLAY(Title 12):DVDT-S01
Mode Disc
Color bar 75%
621mVp-p±30mV
DVDT-S15
or
DVDT-S01
Page 13
7.MPEG BOARD CHECK WAVEFORM
7.1 27MHz WAVEFORM 
7.2 IC5L0380R PIN.2 WAVEFORM DIAGRAM
11
Page 14
8.1 MT1336
8. IC BLOCK DIAGRAM & DESCRIPTION
12
PRELIMINARY, SUBJ ECT TO CHANGE WITHOUT NOTICE MTK CONFIDENTIAL, NO DISCLOSURE
MT1336
GENERAL DESCRIPTION
MT1336 is a high performance CMOS analog front-end IC for both CD_ROM driver up to 48XS and
DVD-ROM driver up to 16XS. It also supports DVD-RAM read up to 4XS Version 2. It contains servo amplifiers to generate focusing error, 3-beam tracking error, 1 beam radial push-pull signal, RF level and SBAD for servo functions. It also includes DPD tracking error signal for DVD_ROM application. For DVD-RAM disks, there are also Differential Push-Pull (DPP) method for generating tracking signal and Differential Astigmatic Detection (DAD) for processing focusing signal. Programmable equalizer and AGC circuits are also incorporated in this chip to optimize read channel performance. In addition, this chip has dual automatic laser power control circuits for DVD-ROM (DVD-RAM) and CD -ROM seperately and reference voltage generators to reduce external components. Programmable functions are implemented by the access of internal register through bi-directional serial port to configure modes selection.
FEATURES
n RF equalizer with programmable
13dB.
n MT1336 supports at least eight different kinds of pick-up heads with versatile input configuration for
both RF input stages and servo signal blocks.
n Versatile on -line AGC.
n 3 beams tracking error signal generator for CD_ROM application.
n One beam differential phase tracking error (DPD) generator for DVD_ROM application.
n Differential push pull tracki ng error (DPP) generator for DVD_RAM application.
n Focusing error signal generator for CD-ROM, DVD-ROM and DVD-RAM (DAD method).
n RF level signal generator.
n Sub-beam added signal for 3 beams CD_ROM.
n One beam push-pull signal generator for central servo application.
n High speed RF envelop detection circuit with bandwidth up to 400KHz for CD-ROM.
n Defect and Blank detection circuits.
from 3MHz to 70 MHz and programmable boost from 3dB to
f
c
n Dual automatic laser power control circuits with programmable level of LD monitor voltage.
n Vref=1.4V voltage and V2ref=2.8V voltage generators.
n V20=2.0V voltage for pick-up head reference.
n Bi-directional serial port to access internal registers.
Page 15
MT1336
13
PRELIMINARY, SUBJ ECT TO CHANGE WITHOUT NOTICE MTK CONFIDENTIAL, NO DISCLOSURE
DVDA
CDA
DVDB
CDB
DVDC
CDC
DVDD
CDD
DVDRFIN
DVDRFIP
DPFN DPFO
DPDMUTE
CDFOP CDFON
RFGC RFGCU
RFGCI
AGC1
AGC2
AGC3
RFSUBO
WOBSO
V20
V2REFO
VREFO
MC
TPI TNI
MA MB
MD
OSP OSN
ATTENUATOR
INPUT MUX
AGC
AGC
SA SB
SC SD
IR
VGA
VGA EQ
ENVELOP
ENVELOP
DETECTOR
DETECTOR
DPD
SBAD
TE
PCS
DVD APC
RFOP
RFON
LRFRP
DEFECT HRFRP CRTP CRTPLP
CSO
LVL
TEO
FEO
REFCOS HALLCOS
COSPHI
REFSIN HALLSIN SINPHI
MDI2
LDO2
RF
LEVEL
FE
CD
APC
MDI1
LDO1
CENTRAL
SERVO
UDGATE
WOBBLE
DET
REF and 2VREF
REF and 2VREF
Voltage Generator
Voltage Generator
SERIAL
PORT
IDGATE VFO13
SDATA SLCK
SDEN
MT1336 FUNCTION BLOCKS DIAGRAM
Page 16
14
MT1336
PRELIMINARY, SUBJ ECT TO CHANGE WITHOUT NOTICE MTK CONFIDENTIAL, NO DISCLOSURE
WGND
WOBSO
WVDD AGNDX AGNDX
AVDDO
RFOP RFON AGNDO
TM1 TM2 TM3
AGNDT TM4
AVDDT
V2REFO VREFO V20
FEO
LVL CSO
TEO VDDP DEFECT LRFRP HRFRP CRTP CRTPLP
TRLPA
TRLP HTRC
GNDP DPFN DPFO
AGNDX
AGNDX
AGNDX
VDD VFO13
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
RFSUBO
LDO2
LDO1
127
126
125
128
3940414243
MDI1
124
WAVDD
MDI2
123
AGC1
AGC2
AGC3
121
120
119
122
MT1336
DVD-ROM
DVD_RAM
454647
44
48
WAGND
TNI
SGND
118
117
116
With
Read
495051
525453
CDFOP
SVDD
TPI
CDFON
115
114
113
112
111
555657585960616263
SASBMC
IR
AVDDSCSD
110
109
108
MD
AGND
107
106
105
104
103
102 101 100
99 98 97 96 95 94 93 92 91 90 89 88 87 86 85 84 83 82 81 80 79 78 77 76 75 74 73 72 71
70 69 68 67 66 65
64
MB MA
DVDA
DVDB DVDC DVDD
DVDRFIP
DVDRFIN CDA
CDB CDC CDD
OSN OSP RFGC RFGCU RFGCI CEQP CEQN AGNDX AGNDX
MON
MOP
SW1 SW2
SWO SINPHI
REFSIN
HALLSIN
AGNDM REFCOS HALLCOS
COSPHI AVDDM AGNDX AVDDF VCON AGNDF
IO0
GND
UDGATE
HDGATE
IO4
IO1
IO5
IO7
IO8
IO9
IO6
IO3
IO2
IOB
IOA
MT1336 PIN ASSIGNMENT
SCLK
VDDS
XCK16M
RST
SDEN
GNDS
SDATA
AGNDP
AGNDX
AVDDP
DPDMUTE
Page 17
15
PRELIMINARY, SUBJ ECT TO CHANGE WITHOUT NOTICE MTK CONFIDENTIAL, NO DISCLOSURE
MT1336
MT1336 PIN DESCRIPTIONS
Pin Numbers Symbol Type Description
LQFP128
RF Flag Interface
23 DEFECT Digital Output Flag of bad data output status
RF SIO interface
56 SCLK Digital Input RF serial clock input
58 SDEN Digital Input RF serial data enable
59 SDATA Digital IO RF serial data IO
60 RST Digital input Reset (active high)
55 XCK16M Digital Input 16.9MHz for verification
RF SERVO interface
40 UDGATE Digital Input Con trol signal for DVD-RAM
41 IDGATE Digital Input Control signal for DVD-RAM
38 VFO13 Digital Input DVD -RAM Header signal
RF
100 DVDA Analog input AC coupled DVD RF signal input A
99 DVDB Analog Input AC coupled DVD RF signal input B
98 DVDC Analog Input AC coupled DVD RF signal input C
97 DVDD Analog Input AC coupled DVD RF signal input D
95 DVDRFIN Analog Input AC coupled DVD RF signal input RFIN
96 DVDRFIP Analog Input AC coupled DVD RF signal input RFIP
94 CDA Analog Input AC coupled CD RF signal input A
93 CDB Analog Input AC coupled CD RF signal input B
92 CDC Analog Input AC coupled CD RF signal input C
91 CDD Analog Input AC coupled CD RF signal input D
90 OSN Analog RF Offset cancellation capacitor connecting
89 OSP Analog RF Offset cancellation capacitor connecting
85 CEQP Analog RF Offset cancellation capacitor connecting
84 CEQN Analog RF Offset cancellation capacitor connecting
88 RFGC Analog RF AGC loop capacitor connecting for DVD -ROM
Page 18
16
PRELIMINARY, SUBJ ECT TO CHANGE WITHOUT NOTICE MTK CONFIDENTIAL, NO DISCLOSURE
87 RFGCU Analog RF AGC loop capacitor connecting for DVD -RAM
86 RFGCI Analog RF AGC loop capacitor connecting for DVD -RAM
101 MA Analog Input DC coupled DVD -RAM main-beam RF signal input A
102 MB Analog Input DC coupled DVD -RAM main-beam RF signal input B 103 MC Analog Input DC coupled DVD -RAM main-beam RF signal input C 104 MD Analog Input DC coupled DVD -RAM main-beam RF signal input D 105 SA Analog Input DC coupled DVD -RAM sub-beam RF signal input A
106 SB Analog Input DC coupled DVD -RAM sub-beam RF signal input B
110 SC Analog Input DC coupled DVD -RAM sub-beam RF signal input C 111 SD Analog Input DC coupled DVD -RAM sub-beam RF signal input D
108 IR Analog External current bias resistor (R=20K)
119 AGC1 Analog Wobble AGC loop1 capacitor 121 AGC2 Analog Wobble AGC loop2 capacitor 122 AGC3 Analog Wobble AGC loop3 capacitor
MT1336
127 RFSUBO Analog output Header push-pull RF output signal
1 WOBSO Digital output Wobble signal output 6 RFOP Analog output RF positive output 7 RFON Analog output RF negative output
TRACKING ERROR
32 DPFN Analog DPD amplifier negative input 33 DPFO Analog DPD amplifier output
61 DPDMUTE Digital input DPD mute control input 116 TNI Analog Input 3 beam satellite PD signal negative input 115 TPI Analog Input 3 beam satellite PD signal positive input
21 TEO Analog Output Tracking error output
FOCUSING ERROR & RF LEVEL & CENTRAL SERVO SIGNAL
112 CDFOP Analog Input CD focusing error positive input 113 CDFON Analog Input CD focusing error negative input
18 FEO Analog Output Focusing error output
19 LVL Analog Output RF level output
20 CSO Analog output Central servo signal output
ALPC
Page 19
17
PRELIMINARY, SUBJ ECT TO CHANGE WITHOUT NOTICE MTK CONFIDENTIAL, NO DISCLOSURE
MT1336
124 MDI1 125 LDO1 Analog Ou tput Laser driver output 123 MDI2 126 LDO2 Analog Output Laser driver output
RF RIPPLE
26 CRTP Analog RF top envelop filter capacitor connecting
27 CRTPLP Analog Defect level filter capacitor connecting
25 HRFRP Analog output High frequency RF ripple output or Blank detector’s output
24 LRFRP Analog output Low frequency RF ripple output
POWER
67, 69 AVDD Power Master PLL Filter power 65, 73 AGND GND GND for Master PLL Filter 64 AVDD Power DPD Power 62 AGND GND DPD GND 109 AVDD Power RF path Power 107 AGND GND RF path GND
Analog Input
Analog Input
Laser power monitor input
Laser power monitor input
114 SVDD Power Servo Power 117 SGND GND Servo GND 2,120 WAVDD Power Wobble Power 128,118 WAGND GND Wobble GND 5 AVDDO Power Power for RF output
8 AGNDO GND GND for RF output 14 AVDDT Power Power for Trimming PAD 12 AGNDT GND GND for Trimming PAD 22 VDDP Power Peak Detection Power 31 GNDP GND Peak Detection GND 37,54 VDD Power Serial I/O Power 39,57 GND GND Serial I/O GND
REFERENCE VOLTAGE
16 VREFO Analog output Reference voltage 1.4V
15 V2REFO Analog output Reference voltage 2.8V
17 V20 Analog Output Reference voltage 2.0V
Page 20
18
PRELIMINARY, SUBJ ECT TO CHANGE WITHOUT NOTICE MTK CONFIDENTIAL, NO DISCLOSURE
ALPC TRIMMING
9 TM1 Analog input Trimming pin for ALPC1 10 TM2 Analog input Trimming pin for ALPC1 11 TM3 Analog input Trimming pin for ALPC2 13 TM4 Analog input Trimming pin for ALPC2
HIGH SPEED TRACK COUNTING
29 TRLP Analog Low-pass filter capacitor connecting 28 TRLPA Analog Low-pass filter capacitor connecting 30 HTRC Digital output High speed track counting digital output
PCS
74 HALLSIN Analog input Negative input of amplifier for hall sensor signal
75 REFSIN Analog input Positive input of amplifier for hall sensor signal
76 SINPHI Analog output Amplifier output for hall sensor signal
MT1336
71 HALLCOS Analog input Negative input of amplifier for hall sensor signal
72 REFCOS Analog input Positive input of amplifier for hall sensor signal
70 COSPHI Analog output Amplifier output for hall sensor signal
FOR MONITOR ONLY
81 80
66 VCON Analog output 77 SWO Analog output Output from mux of SW1 & SW2 78 SW2 Analog input External input for servo input select 79 SW1 Analog input External input for servo input select
FOR SERIAL I/O
42 43 IO1 44 IO2 45 IO3 46 IO4
MON Analog output
MOP Analog output
IO0
47 IO5
Page 21
19
PRELIMINARY, SUBJ ECT TO CHANGE WITHOUT NOTICE MTK CONFIDENTIAL, NO DISCLOSURE
48 IO6 49 IO7 50 IO8 51 IO9 52 IOA 53 IOB
MT1336
Page 22
20
8.2 MT1379
Specifications are subject to change without notice
n Super Integration DVD player single chip
§
Servo controller and data channel processing
§
MPEG-1/MPEG-2/JPEG video decoding
§
Dolby AC-3/DTS/DVD-Audio audio decoding
§
Unified track buffer and A/V decoding buffer
§
Video processing for scaling and video quality enhancement
§
OSD & Sub-picture decoding
§
Built-in clock generator
§
Built-in TV encoder
§
Built-in progressive video output
§
Video input port and audio/SPDIF input port
n Speed Performance on Servo and Decoding
§
DVD-ROM up to 8XS
§
CD-ROM up to 24XS
§
Built-in a frequency programmable clock to µP and RSPC Decoder to optimize the performance over power
n Channel Data Processor
§
Provides interface with analog front -end processor
§
Analog data slicer for small jitter capability
§
Built-in high performance data PLL for channel data demodulation
§
EFM/EFM+ data demodulation
§
Enhanced channel data frame sync protection & DVD-ROM sector sync protection
n Servo Control and Spindle Motor Control
§
Programmable frequency error gain and phase error gain of spindle PLL to control spindle motor on CLV and CAV mode
§
Provide a varipitch speed control for CLV and CAV mode
§
Built-in ADCs and DACs for digital servo control
§
Provide 2 general PWM
Progressive Scan DVD Player Combo Chip
§
Tray control can be PWM output or digital output
§
Built-in DSP for digital servo control
n Host Micro controller
§
Built-in 8032 micro controller
§
Built-in internal 373 and 8-bit programmable
MT1379
lower address port
§
1024-bytes on-chip RAM
§
Up to 2M bytes FLASH -programming interface
§
Supports 5/3.3-Volt. FLASH interface
§
Supports power-down mode
§
Supports additional serial port
n DVD-ROM/CD-ROM Decoding Logic
§
Supports CD-ROM Mode 1, CD-ROM XA Mode 2 Form 1, CD-ROM XA Mode 2 Form 2, and CD -DA formats
§
High-speed ECC logic capable of correcting one error per each P -codeword or Q-codeword
§
Automatic sector Mode and Form detection
§
Automatic sector Header verification
§
8-bit counter for decode completion check
§
Programmable descrambling and error correction schemes
§
Automatically repeated error corrections
§
8-bit C2 Pointer counter
§
Decoder Error Notification Interrupt that signals various decoder errors
§
Provide error correction acceleration
n Buffer Memory Controller
§
Supports 16Mb/32Mb/64Mb/128Mb SDRAM
§
Supports 16-bit/32-bit SDRAM data bus interface
§
Build in a DRAM interface programmable clock to optimize the DRAM performance
§
Provide the se lf-refresh mode SDRAM
§
Programmable DRAM access cycle and refresh
Page 23
21
PRELIMINARY, SUBJECT TO CHANGE WITHOUT NOTICE MTK CONFIDENTIAL, NO DISCLOSURE
MT1379
cycle timings
§
Block-based sector addressing
§
Programmable buffering counter for buffer status tracking
§
Maximum DRAM speed is 133MHz
§
Support 5/3.3-Volt. DRAM Interface
n Video Decode
§
Decodes MPEG 1 video and MPEG2 main level, main profile video (720/480 and 720x576)
§
Maximum input bit -rate of 15Mbits/sec
§
Smooth digest view function with I, P and B picture decoding
§
Baseline, extended-sequential and progressive JPEG image decoding
§
RLE and non-RLE BMP image decoding
§
Support CD-G titles
n Video/OSD/SPU/HLI Processor
§
Arbitrary ratio vertical/horizontal scaling of video, from 0.25X to 256X
§
65535/256/16/4/2-color bitmap format OSD,
§
256/16 color RLC format OSD
§
Automatic scrolling of OSD image
§
Provides 4-color/32x32-pixel hardware cursor
§
Fade-in, Fade out, and Wipe functions as specified in the DVD-Audio Specification and other slide show transition effects
§
Progressive scan output
n Audio Processing
§
Decoder format supports:
- Dolby Digital (AC-3) decoding
- DTS decoding
- MLP decoding for DVD-Audio
- MPEG-1 layer 1/layer 2 audio decoding
- MPEG-2 layer1/layer2 2-channel audio decoding
- Dolby Pro Logic decoding
- High Definition Compatible Digital (HDCD) decoding
§
Up to 6 channel linear PCM output for DVD Audio / DVD Video
§
Downmix function
§
Support IEC 60958/61937 output
- PCM / bit stream / mute mode
- Custom IEC latency up to 2 frames
§
Pink noise and white noise generator
§
Karaoke functions
- Microphone echo with adjustable echo level, echo -depth and delay length
- Microphone tone control with three custom second-order IIR filter
- Vocal mute/vocal assistant
- Key shift up to +/- 8 keys controlled by 1/2 key
§
Channel equalizer
§
3D surround processing include virtual surround and speaker separation
§
Power-down control
§
HDCD certified
n TV Encoder
§
Six 54MHz/12bit DA converters
§
Support NTSC, PAL-BDGHI, PAL-N, PAL-M interlace TV format and 480p, 576p progressive TV format
§
Automatically turn off unconnected channel(s).
§
Support PC monitor (VGA)
§
Support Macrovision 7.1
n Progressive Output
§
Automatic detect film or video source
§
3:2 pull down source detection
§
Advanced Motion adaptive de-interlace
§
Minimum external memory requirement
n Audio/Video Output
§
Line-in/SPDIF-in for versatile audio processing
§
CCIR601/656 video input port
§
Support picture -in-picture for video decoding and input source
n Outline
§
216-pin LQFP package
§
3.3/2.5-Volt. Dual operating voltages
Page 24
The 2nd general PWM output
22
PRELIMINARY, SUBJECT TO CHANGE WITHOUT NOTICE MTK CONFIDENTIAL, NO DISCLOSURE
MT1379
P
IN DEFINITIONS
Pin Number Symbol Type Description
1 IREF Analog Input Current reference input. It generates reference current for data
2 PLLVSS Ground Ground pin for data PLL and related analog circuitry 3 LPIOP Analog Output Positive output of the low pass filter 4 LPION Analog Output Negative output of the low pass filter 5 LPFON Analog output Negative output of loop filter amplifier 6 LPFIP Analog Input Positive input of loop filter amplifier 7 LPFIN Analog Input Negative input of loop filter amplifier 8 LPFOP Analog Output Positive output of loop filter amplifier
9 JITFO Analog Output RF jitter meter output 10 JITFN Analog Input Negative input of the operation amplifier for RF jigger meter 11 PLLVDD3 Power 3.3V power pin for data PLL and related analog circuitry 12 FOO Analog Output Focus servo output. PDM output of focus servo compensator 13 TRO Analog Output Tracking servo output. PDM output of tracking servo compensator 14 TROPENPWM Analog Output Tray open output, controlled by microcontroller.
15 PWMOUT1 Analog Output The 1st general PWM output 16 PWMOUT2 Analog Output 17 DVDD2 Power 2.5V power pin for internal fully digital circuitry 18 DMO Analog Output Disk motor control output. PWM output 19 FMO Analog Output Feed motor control. PWM output 20 DVSS Ground Ground pin for internal fully digital circuitry 21 FG Input Motor Hall sensor input 22 HIGHA0 Inout
23 HIGHA1 Inout
24 HIGHA2 Inout
25 HIGHA3 Inout
26 HIGHA4 Inout
27 HIGHA5 Inout
28 DVSS Grou nd Ground pin for internal digital circuitry
PLL. Connect an external 100K resistor to this pin and PLLVSS.
This is PWM output for TRWMEN27hRW2=1 or is digital output for TRWMEN27hRW2=0
Microcontroller address 8
2~16MA, SR
PU
Microcontroller address 9
2~16MA, SR
PU
Microcontroller address 10
2~16MA, SR
PU
Microcontroller address 11
2~16MA, SR
PU
Microcontroller address 12
2~16MA, SR
PU
Microcontroller address 13
2~16MA, SR
PU
Page 25
23
PRELIMINARY, SUBJECT TO CHANGE WITHOUT NOTICE MTK CONFIDENTIAL, NO DISCLOSURE
Pin Number Symbol Type Description
29 HIGHA6 Inout
30 HIGHA7 Inout
31 AD7 Inout
32 AD6 Inout
33 AD5 Inout
34 AD4 Inout
35 DVDD3 Power 3.3V power pin for internal digital circuitry 36 AD3 Inout
37 AD2 Inout
38 AD1 Inout
39 AD0 Inout
40 IOA0 Inout
41 IOA1 Inout
42 DVDD2 Power 2.5V power pin for internal digital circuitry 43 IOA2 Inout
44 IOA3 Inout
45 IOA4 Inout
46 IOA5 Inout
47 IOA6 Inout
Microcontroller address 14
2~16MA, SR
PU
Microcontroller address 15
2~16MA, SR
PU
Microcontroller address/data 7
2~16MA, SR
Microcontroller address/data 6
2~16MA, SR
Microcontroller address/data 5
2~16MA, SR
Microcontroller address/data 4
2~16MA, SR
Microcontroller address/data 3
2~16MA, SR
Microcontroller address/data 2
2~16MA, SR
Microcontroller address/data 1
2~16MA, SR
Microcontroller address/data 0
2~16MA, SR
Microcontroller address 0 / IO
2~16MA, SR
PU
Microcontroller address 1 / IO
2~16MA, SR
PU
Microcontroller address 2 / IO
2~16MA, SR
PU
Microcontroller address 3 / IO
2~16MA, SR
PU
Microcontroller address 4 / IO
2~16MA, SR
PU
Microcontroller address 5 / IO
2~16MA, SR
PU
Microcontroller address 6 / IO
2~16MA, SR
PU
MT1379
Page 26
24
PRELIMINARY, SUBJECT TO CHANGE WITHOUT NOTICE MTK CONFIDENTIAL, NO DISCLOSURE
Pin Number Symbol Type Description
48 IOA7 Inout
49 A16 Output
50 A17 Output
51 IOA18 Inout
52 IOA19 Inout
53 IOA20 Inout
54 APLLVSS Ground Ground pin for audio clock circuitry 55 APLLVDD3 Power 3.3V Power pin for audio clock circuitry 56 ALE Inout
57 IOOE# Inout
58 IOWR# Inout
59 IOCS# Inout
60 DVSS Ground Ground pin for internal digital circuitry 61 UP1_2 Inout
62 UP1_3 Inout
63 UP1_4 Inout
64 UP1_5 Inout
65 UP1_6 Inout
66 DVDD3 Power 3.3V power pin for internal digital circuitry
Microcontroller address 7 / IO
2~16MA, SR
PU
Flash address 16
2~16MA, SR
Flash address 17
2~16MA, SR
Flash address 18 / IO
2~16MA, SR
SMT
Flash address 19 / IO
2~16MA, SR
SMT
Flash address 20 / IO
2~16MA, SR
SMT
2~16MA, SR
PU, SMT
2~16MA, SR
SMT
2~16MA, SR
SMT
2~16MA, SR
PU, SMT
4MA, SR PU, SMT
4MA, SR PU, SMT
4MA, SR PU, SMT
4MA, SR PU, SMT
4MA, SR PU, SMT
OR Videoin Data PortB 0
Microcontroller address latch enable
Flash output enable, active low / IO
Flash write enable, active low / IO
Flash chip select, active low / IO
Microcontroller port 1-2
Microcontroller port 1-3
Microcontroller port 1-4
Microcontroller port 1-5
Microcontroller port 1-6
MT1379
Page 27
25
PRELIMINARY, SUBJECT TO CHANGE WITHOUT NOTICE MTK CONFIDENTIAL, NO DISCLOSURE
Pin Number Symbol Type Description
67 UP1_7 Inout
68 UP3_0 Inout
69 UP3_1 Inout
70 INT0# Inout
71 IR Input
72 DVDD2 Power 2.5V power pin for internal digital circuitry 73 UP3_4 Inout Microcontroller port 3-4 74 UP3_5 Inout Microcontroller port 3-5 75 UWR# Inout
76 URD# Inout
77 DVSS Ground Ground pin for internal digital circuitry 78 RD7 Inout DRAM data 7 79 RD6 Inout DRAM data 6 80 RD5 Inout DRAM data 5 81 RD4 Inout DRAM data 4 82 DVDD2 Power 2.5V power pin for internal digital circuitry 83 RD3 Inout DRAM data 3 84 RD2 Inout DRAM data 2 85 RD1 Inout DRAM data 1 86 RD0 Inout DRAM data 0 87 RWE# Output
88 CAS# Output
89 RAS# Output
90 RCS# Output
91 BA0 Output
92 DVSS Ground Ground pin for internal digital circuitry 93 RD15 Inout
Microcontroller port 1-7 4MA, SR PU, SMT
Microcontroller port 3-0 4MA, SR PU, SMT
Microcontroller port 3-1 4MA, SR PU, SMT
Microcontroller interrupt 0, active low
2~16MA, SR
PU, SMT
IR control signal input
SMT
Microcontroller write s trobe, active low
2~16MA, SR
PU, SMT
Microcontroller read strobe, active low
2~16MA, SR
PU, SMT
DRAM Write enable, active low
2~16MA, SR
DRAM columnaddress strobe, active low
2~16MA, SR
DRAM row address strobe, active low
2~16MA, SR
DRAM chip select, active low
2~16MA, SR
DRAM bank address 0
2~16MA, SR
DRAM data 15
2~16MA, SR PU/PD, SMT
MT1379
Page 28
26
PRELIMINARY, SUBJECT TO CHANGE WITHOUT NOTICE MTK CONFIDENTIAL, NO DISCLOSURE
MT1379
Pin Number Symbol Type Description
94 RD14 Inout
DRAM data 14
2~16MA, SR PU/PD, SMT
95 RD13 Inout
DRAM data 13
2~16MA, SR PU/PD, SMT
96 RD12 Inout
DRAM data 12
2~16MA, SR
PU/PD, SMT 97 DVDD3 Power 3.3V power pin for internal digital circuitry 98 RD11 Inout
DRAM data 11 2~16MA, SR PU/PD, SMT
99 RD10 Inout
DRAM data 10 2~16MA, SR PU/PD, SMT
100 RD9 Inout
DRAM data 9 2~16MA, SR PU/PD, SMT
101 RD8 Inout
DRAM data 8 2~16MA, SR PU/PD, SMT
102 DVSS Ground Ground pin for internal digital circuitry 103 CLK Output
DRAM clock 2~16MA, SR
104 CLE Output
DRAM clock enable 2~16MA, SR
105 RA11 Output
DRAM address bit 11 or audio serial data 3 (channel 7/8) 2~16MA, SR
106 RA9 Output
DRAM address 9 2~16MA, SR
107 RA8 Output
DRAM address 8 2~16MA, SR
108 DMVDD3 Power 3.3V Power pin for DRAM clock circuitry 109 DMVSS Ground Ground pin for DRAM clock circuitry 110 RA7 Output
DRAM address 7 2~16MA, SR
111 DVDD3 Power 3.3V power pin for internal digital circuitry 112 RA6 Output
DRAM address 6 2~16MA, SR
113 RA5 Output
DRAM address 5 2~16MA, SR
114 RA4 Output
DRAM address 4 2~16MA, SR
115 DVSS Ground Ground pin for internal digital circuitry 116 DQM1 Output
Mask for DRAM input/output byte 1 2~16MA, SR
Page 29
27
PRELIMINARY, SUBJECT TO CHANGE WITHOUT NOTICE MTK CONFIDENTIAL, NO DISCLOSURE
Pin Number Symbol Type Description
117 DQM0 Output
118 BA1 Output
119 RA10 Output
120 DVDD2 Power 2.5V power pin for internal digital circuitry 121 RA0 Output
122 RA1 Output
123 RA2 Output
124 RA3 Output
125 DVSS Ground Ground pin for internal digital circuitry 126 RD31 Inout
127 RD30 Inout
128 RD29 Inout
129 RD28 Inout
130 DVDD3 Power 3.3V power pin for internal digital circuitry 131 RD27 Inout
132 RD26 Inout
133 RD25 Inout
134 RD24 Inout
135 DVSS Ground Ground pin for internal digital circuitry 136 DQM3 Output
137 DQM2 Output
Mask for DRAM input/output byte 0 2~16MA, SR
DRAM bank address 0 2~16MA, SR
DRAM address10 2~16MA, SR
DRAM address 0 2~16MA, SR
DRAM address 1 2~16MA, SR
DRAM address 2 2~16MA, SR
DRAM address 3 2~16MA, SR
DRAM data 31 2~16MA, SR PU/PD, SMT
DRAM data 30 2~16MA, SR PU/PD, SMT
DRAM data 29 2~16MA, SR PU/PD, SMT
DRAM data 28 2~16MA, SR PU/PD, SMT
DRAM data 27 2~16MA, SR PU/PD, SMT
DRAM data 26 2~16MA, SR PU/PD, SMT
DRAM data 25 2~16MA, SR PU/PD, SMT
DRAM data 24 2~16MA, SR PU/PD, SMT
Mask for DRAM input/output byte 3 2~16MA, SR
Mask for DRAM input/output byte 2 2~16MA, SR
MT1379
Page 30
28
PRELIMINARY, SUBJECT TO CHANGE WITHOUT NOTICE MTK CONFIDENTIAL, NO DISCLOSURE
Pin Number Symbol Type Description
138 RD23 Inout
139 RD22 Inout
140 DVDD2 Power 2.5V power pin for internal digital circuitry 141 RD21 Inout
142 RD20 Inout
143 RD19 Inout
144 RD18 Inout
145 DVSS Ground Ground pin for internal digital circuitry 146 RD17 Inout
147 RD16 Inout
148 ABCK Output
149 ALRCK Inout
150 DVDD3 Power 3.3V power pin for internal digital circuitry 151 ACLK Inout
152 MC_DATA Input Microphone serial input 153 SPDIF Output
154 ASDATA0 Inout
155 ASDATA1 Inout
156 ASDATA2 Inout
DRAM data 23 / 2~16MA, SR PU/PD, SMT
2~16MA, SR PU/PD, SMT
2~16MA, SR PU/PD, SMT
2~16MA, SR PU/PD, SMT
2~16MA, SR PU/PD, SMT
2~16MA, SR PU/PD, SMT
2~16MA, SR PU/PD, SMT
2~16MA, SR PU/PD, SMT
4MA
4MA,
PD, SMT
4MA
2~16MA,
SR : ON/OFF
4MA
PD SMT
4MA
PD SMT
4MA
PD SMT
Videoin Data PortA 7
DRAM data 22 /
Videoin Data PortA 6
DRAM data 21 /
Videoin Data PortA 5
DRAM data 20 /
Videoin Data PortA 4
DRAM data 19 /
Videoin Data PortA 3
DRAM data 18 /
Videoin Data PortA 2
DRAM data 17 /
Videoin Data PortA 1
DRAM data 16 /
Videoin Data PortA 0
Audio bit clock
(1) Audio left/right channel clock (2) Trap value in power-on reset :
1 : use external 373 0: use internal 373
Audio DAC master clock (384/256 audio sample frequency)
SPDIF output
(1) Audio serial data 0 (left/right channel) (2) Trap value in power-on reset :
1 : manufactory test mode 0 : normal operation
(1) Audio serial data 1 (surround left/surround right channel) (2) Trap value in power-on reset : 1 : manufactory test mode 0 : normal operation (1) Audio serial data 2 (center/left channel) (2) Trap value in power-on reset : 1 : manufactory test mode 0 : normal operation
MT1379
Page 31
Analog Y output
29
PRELIMINARY, SUBJECT TO CHANGE WITHOUT NOTICE MTK CONFIDENTIAL, NO DISCLOSURE
Pin Number Symbol Type Description
157 ASDATA3 Inout
158 ASDATA4 Inout
159 DACVDDC Power 3.3V power pin for VIDEO DAC circuitry 160 VREF Analog input Bandgap reference voltage 161 FS Analog output Full scale adjustment 162 YUV0/CIN Output
163 DACVSSC Ground Ground pin for VIDEO DAC circuitry 164 YUV1/C Output
165 DACVDDB Power 3.3V power pin for VIDEO DAC circuitry 166 YUV2/Y Output
167 DACVSSB Ground Ground pin for VIDEO DAC circuitry 168 YUV3/CVBS Output
169 DACVDDA Power 3.3V power pin for VIDEO DAC circuitry
170 YUV4/G Output
171 DACVSSA Ground Ground pin for VIDEO DAC circuitry 172 YUV5/B Output
173 YUV6/R Output
174 ICE
175 BLANK# Inout
176 VSYN Inout
177 YUV7 Inout
178 DVSS Ground Ground pin for internal digital circuitry 179 HSYN Inout
180 SPMCLK Input Audio DAC master clock of SPDIF input /
(1) Audio serial data 3 (surround left/surround right channel)
4MA
PD SMT
4MA
PD SMT
4MA, SR
4MA, SR
4MA, SR
4MA, SR
4MA, SR
4MA, SR
4MA, SR
Input
PD, SMT
4MA, SR
SMT
4MA, SR
SMT
4MA, SR
SMT
4MA, SR
SMT
(2) Trap value in power-on reset : 1 : manufactory test mode 0 : normal operation OR Videoin Data PortB 1
(1) Audio serial data 4 (center/left channel)
(2) Trap value in power-on reset : 1 : manufactory test mode 0 : norma l operation OR Videoin Data PortB 2
Video data output bit 0 /
Compensation capacitor
Video data output bit 1 /
Analog chroma output
Video data output bit 2 /
Video data output bit 3 /
Analog composite output
Video data output bit 4 /
Green or Y
Video data output bit 5 /
Blue or CB
Video data output bit 6 /
Red or CR
Microcontroller ICE mode enable
Video blank area, active low /
Videoin Field_601
Vertical sync /
Videoin Vsync_601
Video data output bit 7 /
Videoin Data PortB 3
Horizontal sync /
Videoin Hsync_601
Videoin Data PortB 4
MT1379
Page 32
RF serial data output
30
PRELIMINARY, SUBJECT TO CHANGE WITHOUT NOTICE MTK CONFIDENTIAL, NO DISCLOSURE
Pin Number Symbol Type Description
181 SPDATA Input Audio data of SPDIF input /
182 DVDD2 Power 2.5V power pin for internal digital circuitry 183 SPLRCK Input Audio left/right channel clock of SPDIF input /
184 SPBCK Input Audio bit clock of SPDIF input /
185 DVDD3 Power 3.3V power pin for internal digital circuitry 186 XTALO Output Crystal output 187 XTALI Input Crystal input 188 PRST Input
189 DVSS Ground Ground pin for internal digital circuitry 190 VFO13 Output The 1st, 3rd header VFO pulse output 191 IDGATE Output Header detect signal output 192 DVDD3 Power 3.3V power pin for internal digital circuitry 193 UDGATE Output DVD_RAM recording data gate signal output 194 WOBSI Input Wobble signal input 195 SDATA Output 196 SDEN Output RF serial data latch enable 197 SLCK Output RF serial clock output 198 BDO Input Flag of defect data input status 199 ADCVSS Ground Ground pin for ADC circuitry 200 ADIN Analog Input General A/D input 201 RFSUBI Analog Input RF subtraction signal input terminal 202 TEZISLV Analog Input Tracking error zero crossing low pass input 203 TEI Analog Input Tracking error input 204 CSO Analog Input Central servo input 205 FEI Analog Input Focus error input 206 RFLEVEL Analog Input Sub beam add input or RFRP low pass input 207 RFRP_DC A Input RF ripple detect input 208 RFRP_AC Analog Input RF ripple detect input (through AC coupling) 209 HRFZC Analog Input High frequency RF ripple zero crossing 210 PWMVREF A Input A reference voltage input for PWM circuitry. A typical value of 4.0 v 211 PWM2VREF A Input A reference voltage input for PWM circuitry. A typical value of 2.0 v 212 ADCVDD3 Power 3.3V power pin for ADC circuitry 213 RFDTSLVP Analog Output Positive RF data slicer level output 214 RFDTSLVN Analog Output Negative RF data slicer level output 215 RFIN Analog Input Negative input of RF differential signal 216 RFIP Analog Input Positive input of RF differential signal
Videoin Data PortB 5
Videoin Data PortB 6
Videoin Data PortB 7
Power on reset input, active high
PD, SMT
MT1379
Page 33
31
PRELIMINARY, SUBJECT TO CHANGE WITHOUT NOTICE MTK CONFIDENTIAL, NO DISCLOSURE
MT1379
26 Jul, 2002
Page 1 of 2
IREF
PLLVSS
LPIOP LPION
LPFON
LPFIP LPFIN
LPFOP
JITFO
JITFN
PLLVDD3
FOO TRO
TROPENPWM
PWMOUT1 PWMOUT2
DVDD2
DMO
FMO
DVSS
HIGHA0 HIGHA1 HIGHA2 HIGHA3 HIGHA4 HIGHA5
DVSS HIGHA6 HIGHA7
AD7 AD6 AD5 AD4
DVDD3
AD3 AD2 AD1
AD0 IOA0 IOA1
DVDD2
IOA2 IOA3 IOA4 IOA5 IOA6 IOA7
A16
A17 IOA18 IOA19 IOA20
APLLVSS
RFRP_AC
RFRP_DC
FEI
RFLEVEL
RFDTSLVN
RFDTSLVP
ADCVDD3
212
213
214
59
58
575655
PWMVREF
210
211
209
626160
RFIN
RFIP
215
216
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21
FG
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
HRFZC
PWM2VREF
CSO
TEI
ADIN
RFSUBI
TEZISLV
200
201
202
203
204
205
206
207
208
717069
686766
656463
BDO
ADCVSS
198
199
SLCK
197
747372
SDEN
196
SDATA
WOBSI
194
195
777675
UDGATE
193
PRST
VFO13
DVDD3
IDGATE
DVSS
XTALI
XTALO
186
187
188
189
190
191
192
MT1379
(216 pins)
84
838281
807978
DVDD3
SPBCK
184
185
878685
DVDD2
SPLRCK
182
183
89
88
SPDATA
SPMCLK
180
181
HSYN
179
929190
DVSS
178
YUV7
177
VSYN
176
959493
BLANK
175
ICE
174
YUV6/R
YUV5/B
172
173
989796
99
YUV4/G
DACVDDA
DACVSSA
169
170
171
102
101
100
DACVSSB
YUV2/Y
YUV3/CVBS
166
167
168
104
103
105
DACVDDB
DACVSSC
YUV1/C
163
164
165
162 161 160 159 158 157 156 155 154 153 152 151 150 149 148 147 146 145 144 143 142 141 140 139 138 137 136 135 134 133 132 131 130 129 128 127 126 125 124 123 122 121 120 119 118 117 116 115 114 113 112
111 110 109
108
107
106
YUV0/CIN FS VREF DACVDDC ASDATA4 ASDATA3 ASDATA2 ASDATA1 ASDATA0 SPDIF MC_DATA ACLK DVDD3 ALRCK ABCK RD16 RD17 DVSS RD18 RD19 RD20 RD21 DVDD2 RD22 RD23 DQM2 DQM3 DVSS RD24 RD25 RD26 RD27 DVDD3 RD28 RD29 RD30 RD31 DVSS RA3 RA2 RA1 RA0 DVDD2 RA10 BA1 DQM0 DQM1 DVSS RA4 RA5 RA6 DVDD3 RA7 DMVSS
ALE
IOOE#
APLLVDD3
IOCS#
IOWR#
DVSS
UP1_2
UP1_3
UP1_4
UP1_5
UP1_6
DVDD3
UP1_7
UP3_0
UP3_1
INT0#
IR
UP3_4
DVDD2
UP3_5
UWR#
URD#
DVSS
RD7
RD6
RD5
RD4
RD3
DVDD2
RD2
RD1
RD0
RWE#
CAS#
RAS#
RCS#
BA0
DVSS
RD15
RD14
RD13
RD12
RD11
DVDD3
RD10
RD9
RD8
DVSS
CLK
CKE
RA11
RA9
RA8
DMVDD3
Page 34
32
PRELIMINARY, SUBJECT TO CHANGE WITHOUT NOTICE MTK CONFIDENTIAL, NO DISCLOSURE
MT1379
F
UNCTIONAL BLOCK
IR/
VFD
Servo
IO
Servo
DSP
Playback
Controller
System
Controller
DVD module
Analog
Front end
DRAM
Interface
Spindle
Controller
DPU
Processor
Audio
Channel
Decode
Debug
Port
Audio
Output
CSS/
CPPM
System
Parser
Microphone
Input
Video
Decoder
TV encoder
Video
Output
Servo Controller
The servo control is accomplished through the servo DSP (Servo Digital Signal Processor) and its accessory I/O circuits. This servo DSP is capable of performing complex operations an d also provides a friendly interface for the system controller. By issuing type 1 and type 2 commands from the system controller, the servo DSP can accomplish various complicated servo control functions, such as tracking, seeking and MT1336/MT1376 chip register programming. As for the servo I/O circuits, it provides interface between the input servo signals and the Servo DSP. It has built-in ADCs to digitize the servo control signal and DACs to provide signals for the actuator and sledge motor. It also has a serial interface to communicate with the MT1336/MT1376 chip.
Analog Front End
The analog front end contains a data slicer circuit and a data PLL circuit. The RF analog signal from MT1336/MT1376 is quantized by the data slicer to form the EFM/EFM+ bit stream, from which the channel bit clock is extracted by the data PLL.The EFM/EFM+bit stream and bit clock are then output to DPU for channel bit processing.
DPU
Data path unit (DPU) provides protection on data with lost synchronization patterns and demodulates EFM/EFM+ bit stream into the channel raw data that will be corrected by the decoder. The synchronization protection makes data after the synchronization pattern to be extracted even if the synchronization pattern is not found.
Spindle Controller
The sp indle controller is used to control disc spindle motor. It includes a varipitch CLV clock generator, a CLV/CAV controller, and a PWM generator. The varipitch CLV clock enerator generates a reference colck for the speed of operation. The CLV/CAV
DRAMFlash
Audio DAC
SPDIF
MIC
Page 35
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PRELIMINARY, SUBJECT TO CHANGE WITHOUT NOTICE MTK CONFIDENTIAL, NO DISCLOSURE
MT1379
controller changes the mode and speed of operation according to servo register setting. The PWM generator generates pulse-width-modulated signal to drive disc spindle motor driver.
CSS/CPPM
The CSS/CPPM module provides functions necessary for decoding discs conforming to CSS/CPPM specification.
System Parser
The system parser is used to help the system controller to decode DVD/SVCD/VCD bitstream just after the channel decoder performing error correction. Acting as a DMA master, it moves bitstream data from RSPC buffer to video, audio, or sub-picture buffer according to system controller request. It also decrypts the scramble data of the CSS/CPPM sectors. Another function of system parser is providing system controller/DSP a DRAM memory copy controller to enhance system controller/DSP performance.
Video Decoder
The primary function of MT1379 is to support MPEG1 and MPEG2 video decoding. The video decode engine comprises of variable length decoder (VLD), inverse transformer (IT), motion compensator (MC), and block reconstructor (BR). The video decode engine decodes the variable length encoded symbols in MPEG bitstream and performs inverse scan, inverse quantization, mismatch control and inverse discrete cosine transform onto the variable length decoded data. The motion compensator fetches prediction data from reference picture buffer according to motion vectors and motion prediciton mode for P and B pictures. Finally, the block reconstructor combines both the results of inverse transformer and motion compensator to derive the reconstructed image macroblock and write back to picture buffer.
The video decode engine can also support JPEG and BMP file decoding by common image compression hardware kernels.
Video Output
The Video Output unit contains Video Processor, SPU, OSD, Cursor, TV encoder units, it performs
§
§
§
§
§
§
Video Processor
SPU
Reading decoded video from DRAM buffer Scaling the image Gamma/Brightness/Hue/Saturation adjustment and edge enhancement Reading and decoding SPU and OSD data from DRAM buffer Generating hardware cursor image Merging the video data, SPU, OSD and cursor
The Video Processor unit controls the transfer of video data stored in the DRAM to an internal or external TV encoder. It uses FIFOs to buffer outgoing luminance and chrominance data, and performs YUV420 to YUV422 conversion and arbitrary vertical/horizontal decimation/interpolation, from 1/4x to 256x. With this arbitrary ratio scaling capability, the Video Processor can perform arbitrary image conversion, such as PAL to NTSC, NTSC to PAL, MPEG1 to MPEG2, Letterbox, Pan-Scan conversion or zoom in, zoom out. It is also capible of interlace to progressive conversion.
The Video Processor unit performs the following functions:
§
Requests and receives the decoded picture data from the picture buffer in external DRAM for display
§
Resample vertical data to create 4:2:2 sample format
§
Optionally performs vertical/horizontal resampling of both luminance and chrominance data
§
Performs optional Gamma correction, luminance/chrominance adjustment, and edge enhancement
The V ideo Processor unit contains two 2-tap vertical filters for luminance and chrominance . These filters are used to interpolate and reposition luminance and chrominance line to improve picture quality. These filters are capble of generating up to eight, unique subline value between two consecutive scan lines. The generation of lines depends on the ratio between the height of the source image and the target image. In applications where DRAM bandwidth are critical the filters can be configured as simple line-repeating to reduce the DRAM bandwidth required.
The Video Processor unit integrates two separate horizontal postprocessing filter, a simple 2-tap linear horizontal filter and an 8-tap programmable filter. These filters are provided for scaling images horizontally along the scan line. These two filters is capable of generating up to eight, unique subpixel values between two consecutive pixels on a scan line. The generation of pixels depends on the ratio between the width of the source image and the target image.
Page 36
34
PRELIMINARY, SUBJECT TO CHANGE WITHOUT NOTICE MTK CONFIDENTIAL, NO DISCLOSURE
This is a hardware sub-picture decoder. It decodes the compressed SPU image bitstream and CHG_COLCON commands according to SPU header information previously decoded by system controller. The SPU module also allows two SPU objects to be displayed at the same time. SPU image is blended with main video stream.
OSD
The OSD module can operate with 2/4/16/256-color bitmap format (1/2/4/8 bits), and 16/256 color RLC format, all have 16 levels of transparency. In addition, it accepts an special WARP mode, which inserts one programmable RLC code in the bitmap to reduce the image size stored in DRAM. It also features automatic shadow/outline generation in 2-color mode, 2 Hilight areas, 1 ChangeColor area and 1 OSDVoid area. One OSD area can occupy the full or a partial screen, or multiple OSDs can occur in a screen at the same time, only if they don't occupy the same horizontal line. The output image is blended with the video-SPU mixed stream.
Cursor
A hardware cursor generator is integrated in Video Output Unit. The cursor image is a 32x32 4-color bitmap image, each colors are programmable. Cursor can be enlarged by 2 in both vertical and horizontal directions. Cursor image is multiplexed with video-SPU-OSD mixed stream.
Audio Interface
Audio interface consists of Audio Output Interface and Microphone Input Interface.
Audio Output Interface
The MT1379 can support up to 8 channel audio outputs. The output formats can be 16, 24, or 32-bit frames. Left alignment, right alignment, or I2S formats are all supported.
With built-in PLL, MT1379 can provide the audio clock (ACLK) for external audio DAC at 384Fs, where Fs is usually 32KHz,
44.1KHz, 48KHz, 96KHz, or 192KHz. ACLK can also be programmed to be from outside MT1379. When ACLK is input to MT1379, the frequency could be 128*n Fs, where n is from 1 to 7.
Audio raw (encoded) data or cooked (decoded) data can be output on a single line using S/PDIF interface. The output slew rate and driving force of this pad are programmable.
Microphone Input Interface
The MT1379 provides a microphone input interface. Two independent microphones’ data could be input to the MT1379. There are two independent digital volume control for these two input channels. The input data formats can also be left alignment, right alignment, or I2S formats.
MT1379
System Controller
MT1379 uses an embedded Turbo-8032 as System Controller and provide ICE interface to increase the feasibility of F/W development. Also, MT1379 includes an build-in internal 373 to latch lower byte address from 8032 Port 0 and provide a glue-logic free solution. MT1379 supports up to 1M X 16 bits Flash ROM to store 8032 code, H/W related data, User data, etc. F/W upgrade can be achieved either by debug interface or by disk.
Page 37
35
PRELIMINARY, SUBJECT TO CHANGE WITHOUT NOTICE MTK CONFIDENTIAL, NO DISCLOSURE
MT1379
E
LECTRICAL CHARACTERISTICS
Absolute Maximum Rating
Symbol Parameters Value Unit
VDD3 3.3V Supply voltage -0.3 to 3.6 V VDD2 2.5V Supply voltage -0.3 to 3.0 V VDDA Analog Supply voltage -0.3 to 3.6 V
VIN Input Voltage -0.3 to 5.5 V
V
Output Voltage -0.3 to VDD3+0.3 V
OUT
Ta Ambient Temperature 0 to 70 °C
DC Charateristics
Symbol Parameters Min Typ Max Unit
VIH Input voltage high 2.4 - 3.6 V
VIL Input voltage low - - 0.8 V VOH Output voltage high 3.0 - VDD3 V VOL Output voltage low - - 0.5 V
IIH High level input current 10 uA
IIL Low level input current -10 uA
PD Power dissapation 1.0 W
P
Power down mode 0.1 W
Down
Page 38
KEY FEATURES
IC BLOCK DIAGRAM & DESCRIPTION
36
8.3 U214 HY29F800
n 5 Volt Read, Program, and Erase
– Minimizes system-level power requirements
n High Performance
– Access times as fast as 55 ns
n Low Power Consumption
– 20 mA typical active read current in byte
mode, 28 mA typical in word mode – 35 mA typical program/erase current – 5 µA maximum CMOS standby current
n Compatible with JEDEC Standards
– Package, pinout and command-set
compatible with the single-supply Flash
device standard – Provides superior inadvertent write
protection
n Sector Erase Architecture
– Boot sector architecture with top and
bottom boot block options available – One 16 Kbyte, two 8 Kbyte, one 32 Kbyte
and fifteen 64 Kbyte sectors in byte mode – One 8 Kword, two 4 Kword, one 16 Kword
and fifteen 32 Kword sectors in word mode – A command can erase any combination of
sectors – Supports full chip erase
n Erase Suspend/Resume
– Temporarily suspends a sector erase
operation to allow data to be read from, or
programmed into, any sector not being
erased
n Sector Protection
– Any combination of sectors may be
locked to prevent program or erase operations within those sectors
n Temporary Sector Unprotect
– Allows changes in locked sectors
(requires high voltage on RESET# pin)
n Internal Erase Algorithm
– Automatically erases a sector, any
combination of sectors, or the entire chip
n Internal Programming Algorithm
– Automatically programs and verifies data
at a specified address
n Fast Program and Erase Times
– Byte programming time: 7 µs typical – Sector erase time: 1.0 sec typical – Chip erase time: 19 sec typical
n Data# Polling and Toggle Status Bits
– Provide software confirmation of
completion of program or erase operations
n Ready/Busy# Output (RY/BY#)
– Provides hardware confirmation of
completion of program and erase operations
n Minimum 100,000 Program/Erase Cycles n Space Efficient Packaging
– Available in industry-standard 44-pin
PSOP and 48-pin TSOP and reverse TSOP packages
19
A[18:0]
CE#
OE#
WE#
RESET#
BYTE#
8
DQ[7:0]
7
DQ[14:8]
DQ[15]/A-1
RY/BY#
Page 39
BLOCK DIAGRAM
IC BLOCK DIAGRAM & DESCRIPTION
37
DQ[15:0]
A[18:0], A-1
DQ[15:0]
WE#
CE#
OE#
BYTE#
RESET#
RY/BY#
STATE
CONTROL
COMMAND
REGISTER
PROGRAM
VOLTAGE
GENERATOR
VCC DETECTOR TIMER
ERASE VOLTAGE
GENERATOR AND
SECTOR SWITCHES
A[18:0], A-1
I/O CONTROL
Y-DECODER
X-DECODER
ADDRESS LATCH
I/O BUFFERS
DATA LATCH
Y-GATING
8 Mb FLASH
MEMORY
ARRAY
Page 40
PIN CONFIGURATIONS
IC BLOCK DIAGRAM & DESCRIPTION
38
RY/BY#
A18
A17
A7 A6 A5 A4 A3 A2 A1910 A0
CE#1112
V
SS
OE#1314 DQ0 DQ81516 DQ1 DQ91718 DQ2
DQ101920
DQ3
DQ112122
1 2 3 4 5 6 7 8
PSOP44
44 43 42 41 40 39 38 37 36 35 34 33 32 31 30 29 28 27 26 25 24 23
RESET# WE# A8 A9 A10 A11 A12 A13 A14 A15 A16 BYTE# V
SS
DQ15/A-1 DQ7 DQ14 DQ6 DQ13 DQ5 DQ12 DQ4 V
CC
A15 A14 A13 A12 A11 A10
A9
A8 NC NC910
WE#
RESET#1112
NC NC1314
RY/BY#
A181516 A17
A71718
A6
A51920
A4
A32122
A2
A12324
A16
BYTE#
V
SS
DQ15/A-1
DQ7
DQ14
DQ6
DQ13
DQ5
DQ12
DQ4
V
CC
DQ11
DQ3
DQ10
DQ2 DQ9 DQ1 DQ8 DQ0
OE#
V
SS
CE#
A0
10 11 12 13 14 15 16 17 18 19 20
21 22 23 24
A16
1 2 3 4 5 6 7 8
Standard
TSOP48
1 2 3 4 5 6 7 8 9
Reverse TSOP48
48 47 46 45 44 43 42 41 40 39 38 37 36 35 34 33 32 31 30 29 28 27 26 25
48 47 46 45 44 43 42 41 40 39 38 37 36 35 34 33 32 31 30 29 28 27 26 25
BYTE# V
SS
DQ15/A-1 DQ7 DQ14 DQ6 DQ13 DQ5 DQ12 DQ4 V
CC
DQ11 DQ3 DQ10 DQ2 DQ9 DQ1 DQ8 DQ0 OE# V
SS
CE# A0
A15 A14 A13 A12 A11 A10 A9 A8 NC NC WE# RESET# NC NC RY/BY# A18 A17 A7 A6 A5 A4 A3 A2 A1
Page 41
DESCRIPTION
IC BLOCK DIAGRAM & DESCRIPTION
8.4 U203 SDRAM-HY57V1610D
2 Banks x 512k x 16 Bit Synchronous DRAM
39
THE Hynix HY57V161610D is a 16,777,216-bits CMOS Synchronous DRAM, ideally suited for the Mobile applications which require low power consumption and industrial temperature range. HY57V161610D is organized as 2banks of 524,288x16.
HY57V161610D is offering fully synchronous operation referenced to a positive edge clock. All inputs and outputs are synchronized with the rising edge of the clock input. The data paths are internally pipelined to achieve very high band­width. All input and output voltage levels are compatible with LVTTL.
Programmable options include the length of pipeline (Read latency of 1,2 or 3), the number of consecutive read or write cycles initiated by a single control command (Burst length of 1,2,4,8 or full page), and the burst count sequence(sequential or interleave). A burst of read or write cycles in progress can be terminated by a burst terminate command or can be interrupted and replaced by a new burst read or write command on any cycle. (This pipeline design is not restricted by a `2N` rule.)
FEATURES
Single 3.0V to 3.6V power supply
All device pins are compatible with LVTTL interface
JEDEC standard 400mil 50pin TSOP-II with 0.8mm of pin pitch
All inputs and outputs referenced to positive edge of system clock
Data mask function by UDQM/LDQM
Internal two banks operation
Note1)
ORDERING INFORMATION
Part No. Clock Frequency Organization Interface Package
HY57V161610DTC-55I 183MHz
HY57V161610DTC-6I 166MHz
HY57V161610DTC-7I 143MHz
HY57V161610DTC-10I 100MHz
Auto refresh and self refresh
4096 refresh cycles / 64ms
Programmable Burst Length and Burst Type
- 1, 2, 4, 8 and Full Page for Sequence Burst
- 1, 2, 4 and 8 for Interleave Burst
Programmable CAS Latency ; 1, 2, 3 Clocks
2Banks x 512Kbits x 16 LVTTL
400mil
50pin TSOP II
This document is a general product description and is subject to chage without notice. Hyundai Electronics does not assume any responsibility for use of circuits described. No patent licenses are implied
Rev. 0.2/Aug.01
Page 42
PIN CONFIGURATION
IC BLOCK DIAGRAM & DESRIPTION
40
PIN DESCRIPTION
VDD
DQ0 DQ1
VSSQ
DQ2 DQ3
VDDQ
DQ4 DQ5
VSSQ
DQ6
DQ7 VDDQ LDQM
WE CAS RAS
CS A11 A10
A0 A1 A2 A3
VDD
1 2 3 4 5 6 7 8
9 10 11 12
50pin TSOP-II
13
400mil x 825mil
14
0.8mm pin pitch
15 16 17 18 19 20 21 22 23 24 25
50 49 48 47 46 45 44 43 42 41 40 39 38 37 36 35 34 33 32 31 30 29 28 27 26
VSS DQ15 DQ14 VSSQ DQ13 DQ12 VDDQ DQ11 DQ10 VSSQ DQ9 DQ8 VDDQ NC UDQM CLK CKE NC A9 A8 A7 A6
A5 A4 VSS
PIN PIN NAME DESCRIPTION
CLK Clock
CKE Clock Enable
The system clock input. All other inputs are referenced to the SDRAM on the rising edge of CLK.
Controls internal clock signal and when deactivated, the SDRAM will be one of the states among power down, suspend or self refresh.
CS Chip Select Command input enable or mask except CLK, CKE and DQM
BA Bank Address Select either one of banks during both RAS and CAS activity.
A0 ~ A10 Address
Row Address Strobe,
RAS, CAS, WE
Column Address Strobe, Write Enable
Row Address : RA0 ~ RA10, Column Address : CA0 ~ CA7 Auto-precharge flag : A10
RAS, CAS and WE define the operation. Refer function truth table for details
LDQM, UDQM Data Input/Output Mask DQM control output buffer in read mode and mask input data in write mode
DQ0 ~ DQ15 Data Input/Output Multiplexed data input / output pin
V DD/VSS Power Supply/Ground Power supply for internal circuit and input buffer
V DDQ/VSSQ Data Output Power/Ground Power supply for DQ
NC No Connection No connection
Page 43
VFD-35
41
9.SCHEMATIC & P.C.B WIRING DIAGRAM FRONT SCHEMATIC DIAGRAM
VFD401
P164P137P146P155P128P119P10
F11F1
2
KEY4
KEY3
KEY2
KEY1
K404
K403
K407
K408
K401
K402
SEG1
1N4148
K405
K406
D401
SEG2
1N4148
D402
FIL-
GRID4 GRID3 GRID2 GRID1 VCC
SEG16
SEG15
GND
LED401
R405
33K
C401
104
12
R419
470R
VCC
FIL+
R418
33R
C402
100uF/16V
VCC
VCC
R415
100
IR
10P911P812P713P614P515P416P317P218P119
SEG14
SEG13
SEG12
SEG11
SEG10
34
G4
35
G3
36
G2
37
G1
38
VDD
39
LED4
40
LED3
41
LED2
42
LED1
43
VSS
44
OSC
R406
R407
R408
R409
R410
10K
10K
10K
10K
10K
SEG9
MSW SW2 SW3 SW4
SEG8
SEG7
SEG6
GRID5
33
SW11SW22SW33SW4
SEG5
SEG4
SEG3
SEG2
SEG14
SEG15
SEG16
GRID6
UPD16312
4DO5
R416
10K
33K
33K
DIN
R411
R412
NC20NC21NC
SEG1
-25V
SEG13
U401
VSS
6
7
GND
VCC C406
CLK
SEG12
STB
8
NC23NC24NC25NC
22
SEG11
SEG10
S923S1024S1125S12/G126VEE27S13/G128S14/G929S15/G830S16/G731G632G5
KEY110KEY2
9
VFDST
R404
33K
5G316G
1G272G283G294G
26
GRID3
GRID2
GRID1
SEG9
S8 S7 S6 S5 S4 S3 S2 S1
VDD KEY4 KEY3
11
R401
R402
R403
33K
33K
33K
F234F2
32
30
GRID4
22 21 20 19 18 17 16 15 14 13 12
GRID5
GRID6
SEG8 SEG7 SEG6 SEG5 SEG4 SEG3 SEG2 SEG1 VCC
35
FIL+
VFDCK
VFDAT
23415
XS05
GND
VFDST
IR
XS402
GND
VCC
-25V
FIL-
100uF/16V
C407
23415
XS401
XS05
R413
C404
C405
104
123
101
C403
101
U403
HS0038A2
VFDAT
33K
R414
33K
VFDCK
VCC
KEY1
KEY2
KEY3
KEY4
R417
10K
101
Page 44
42
FRONT SCHEMATIC DIAGRAM
Page 45
CN503
43
POWER BOARD SCHEMATIC DIAGRAM
XS10
TC508
100uF/16V
SA+5V
2341568
9107
23415
CN504
XS06
6
3
CN502
XS06
OUT
CN505
XS04
23415
6
234
1
SD+5V
DGND
DGND
+12V
SD+5V
SA+5V
+9V
DGND
DGND
DGND
+9V
C508
104
TC504
470uF/16V
L505
10uH/1A
TC503
470uF/16V
D508
C507
101
HER105
U504
LM7805
GND
2
IN
1
TC511
+3.3V
C510
104
+5V
TC506
1000uF/10V
L507 10uH/2A
TC505
1000uF/10V
C511
HER306
C509
101
D510
TC510
L506
10uH/2ABC502
TC509
1000uF/10V
101
D509
SR360
100uF/16V
1000uF/10V
101
D512
C513
HER105
-9V
DGND
+3.3V
+5V
DGND
+9VOKAGND
VOICE-DET
-9V
R511
220R/1W
D511
HER105
+3.3V
-9V
+9V
AGNDOKDET
+5V
ZD502
9.1V/1W
CN501
TC513
100uF/16V
5.1V ZD501
R510
4.7K
R508
4.7K
C515
104
R507
10K
330
R512
TC512
47uF/50V
101
C514
FL+
23415
FL-
-21V
XS05
DGND
+5V
R509
12K
R
K
A
U503
LM431A
10
11
12
16T501
!
C502
103/1KV
R503
39K/2W
D503
1N4007
D502
1N4007
2 3 4 6
D505
HER107
C503
101/1KV
R502
120K/2W
TC501
D504
1N4007
D501
1N4007
13 14 15
47uF/400V
9
EI28/8
7
C505
101
D506
HER105
TC502
R505
33ohm
47uF/50V
R504
1M
4
1
FB
L503
~275V 104
FB
GND
D
2
VCC
3
U501
!
U502
HS817
C506
223
5L0380R
R501
680K 1/2W
BC503
~400V 471
!
!
!
~220V
BCN501
F501
!
L502
T1.6A/250V
!
!
BCN502
SW-SPST
Page 46
44
POWER BOARD SCHEMATIC DIAGRAM
Page 47
MIC601
OK SCHEMATIC DIAGRAM
45
54321
678
9
+9V +9VA -9V -9VA
L601
FB
R633
100uF/25V
104
100uF/25V
10R/0.25W
TC615
R602
22K
C604
103
C601
R606
10K
R632
10R/0.25W
TC616
TC602
4.7uF/16V
22uF/16V
R604
560R
5
6
U601B
4558
C606
101
7
TC604
4.7uF/16V
DET
54321
678
9MIC602
L602
FB
TC601
R601
22K
TC606
C603
103
R608
1K
R605
10K
+9VA 3
R610
30K
R619
1K
4558
4.7uF/16V
R603
560R
3
2
8 4
U601A
1
22uF/16V
TC605
OK
R607
1K
R609 30K
C605 101
TC603
4.7uF/16V
C602
104
100uF/25V
TC608
+5V
TC607
4.7uF/16V
C609
104
47uF/16V
TC609
R615
18K
C622
104
C623
104
1
VDD
2
REF
3
AGND
4
DGND
5
CLKO
6
VCO
7
CC1
8
CC2
LPF1-IN
LPF1-OUT
LPF2-OUT
LPF2-IN
OP2-OUT
OP2-IN
OP1-IN
OP1-OUT
16
15
14
13
12
11
10
9
U603
PT2399
R622 4.7K
C610
561
R620
C612
561
C613
104
C614
104
R611
1K
VR602
10K
R618
15K
R624
10K
R621
10K
C615
392
C616
103
2
R617 10K
R616 5.6K
10K
1 3
10K
2
R612
10K
13
4.7uF/16V TC621
+9VA
VR601
2
8 4
U602A
4558
1
TC613
4.7uF/16V
15K
C608
392
4.7uF/16V
5
U602B
4558
7
TC610
4.7uF/16V
C607 101
R613
30K
-9VA
R614
TC611
R628
4.7K
R629
6
C620
101
27K
+5V
GND
+9V
-9V
23415
XS601
XS06
OK
DET
6
R626
1K
C619
102
Page 48
OK SCHEMATIC DIAGRAM
46
Page 49
GREEN
47
OUTPUT BOARD SCHEMATIC DIAGRAM
JK703
AV8
WHITE
RED
BLACK
BLUE
RED
2
1
L701
CC
3
C701
102
C702
102
FB
L702
FB
LFE
VCC
R705
5
4
L703
SL
4R7
6
C703
102
C704
102
FB
L704
FB
SR
A+10V
C713
104
V701
8050
AGND
8
7
9
C705
102
L705
FB
L706
FB
L
R
R707
2
4
6
8
A(B)IN
A(A)IN
A-COM
A(B)OUT1A(A)OUT3RETURN5BLUE I/O7RETURN9GREEN I/O11RETURN13RED I/O15RETURN17V-OUT19GND
JK701
FUNC SW
AGND
10
C706
102
12
10
14
16
NC
CONT
BLK I/O
RETURN
11
12
AGND
AGND
20
18
V-IN
TRTURN
VJS3921
21
VGND VGND
JK702
L709
G
Y1
FBSMT
TC702
220uF/16V
3
R701 150R
C710
SPDIF
1234567
JK704
L711
FBSMT
TC705 220uF/16VY
100R
R702
104
L712
FBSMT
TC706 220uF/16V
C
VIEDO
2
1
5
4
L707
FBSMT
B
TC703
220uF/16V
Pb
VGND
L710
FBSMT
R706
2.2R
TC701
220uF
RCA-407
6
VGND
L708
FBSMT
R
TC704
220uF/16V
Pr
VIN1VCC2GND
JK705
3
OPTICAL
C711
104
VCC
R703
SPDIF
AGND
C708
104
68R
PDAT1
R708
1K
V702
8050
AGND
R709
330R
+10V A+10V
R710
2.2K
PDAT0
R704
4.7K
VCC
R711
33
V703
8050
A+10V
R712
AGND
2.2K
PDAT2
C707
104
VGND
SR
SL
R
L
Pb
Y1
Pr
VCC
Y
C
PDAT1
PDAT2
SPDIF
234156891071112141516131718202122192324252628
XS701
VIEDO
PDAT0
LFE
CC
+10V
AGNDVGND
27
XS28
Page 50
48
OUTPUT BOARD SCHEMATIC DIAGRAM
Page 51
GND
49
MIAN SCHEMATIC DIAGRAM
HSYNC#
SW1
C309
10pF
DNS
DNS
C308
153
R3240RR3250RR326
R327
C339
104
C338
104
R304 10K
R303 10K
R305 10K
R306 10K
VCC
37
TRCLOSE
TROPEN
ENDM
STBY
TRIN TROUT LIMIT STBY ENDM
IOA
TRCLOSE
SCLK
SDEN SDATA URST
PWMOUT2
38
VFO13
GND
39
UDGATE
40
HDGATE
41
IO0
42
IO1
43
IO2
44
IO3
45
IO4
46
IO5
47
IO6
48
IO7
49
IO8
50
IO9
51
IOA
52
IOB
53
VDDS
54
XCK16M
55
SCLK
56
GNDS
57
SDEN
58
SDATA
59
RST
60
DPDMUTE
61
AGNDP
62
AGNDX
63
AVDDP
64
HTRC
R302 27K
C310 27pF
28
29
31
33
36
30
VDD
TRLP
DPFN32DPFO
HTRC
GNDP
AGNDX34AGNDX35AGNDX
C307
471
C306
333
R301
100K
C305
391
C304
391
CSO
TEO
BDO
RFRP
CRTP
22
24
25
26
27
21
23
CSO20TEO
CRTP
VDDP
LRFRP
TRLPA
HRFRP
CRTPLP
DEFECT
U301
MT1336E_128
TC307
10uF/16V
C303
104TC306
10uF/16V
C302
104
C301
104
RFON
V2P8
V1P4
V20
FEO
RFL
16
17
19
13
14
15
V20
FEO18LVL
VREFO
AVDDT
V2REFO
RFOP
6
8
7
11
12
TM19TM210TM3
TM4
RFON
AGNDT
AGNDO
C323
104
C322
104
C321
104
RVCC
C320
104
TC305
47uF/16V
1
2
5
RFOP
WVDD
WOBSO
AGNDX3AGNDX4AVDDO
WGND RFSUBO LDO2 LDO1 MD11 MD12 AGC3 AGC2 WAVDD AGC1 WGAND SGND TNI TPI SVDD CDFON CDFOP SD SC AVDD IR AGND SB SA MD MC
C327
104
C326
104
RVCC
C325
104
C324
104
128 127 126 125 124 123 122 121 120 119 118 117 116 115 114 113 112 111 110 109 108 107 106 105 104 103
LDO2 LDO1 MD11
C319
153
E F
R307
33K
AGNDF65VCON66AVDDF67AGNDX68AVDDM69COSPHI70HALLCOS71REFCOS
72
73
OPO
OP-
IOA
R311
10K
R310
AVCC
R309
10K
V305
R308
100K
AVCC
XS301
100K
V304
2SK3018-S
3904-S
V303
2SK3018-S
LDO2
TC302
47uF/16V
AVCC
V301
R314
22R
TC301
220uF/16V
E
MD11
C328
104
FBSMT
FBSMT
FBSMT
10uH
FBSMT
FBSMT
10uH
FBSMT
L310
L308
L307
L306
L305
L304
L303
L301
24
24P0.5mm
LDO1
TC303
2SB1132-S
V302
2SB1132-S
A
F
B
RFO
IOADC
V20
FBSMT
FBSMT
FBSMT
FBSMT
FBSMT
L311
FBSMT
FBSMT
L318
L316
L312
L314
L319
L317
R337 0R
OP+
47uF/16V
AVCC
R315
22R
FBSMT
FBSMT
FBSMT
FBSMT
FBSMT
L320
L321
L322
L323
L324
2341568910711121415161317182021221923
SW1
C311 104
C312 104
C313 104
C315 105
C314 105(DNS)RFO
DABCC
C342
101
DMSO
R317
1R
R318
1R
VCC
14
13
VOFC+
GND
30
GND
29
VOTK+15VOTK-16VOLD+17VOLD-18PGND19VNFTK20PVCC2
R313
C330
104
C329
104
1R
R312
1R
R320 20KR319 10K
SP-
SP+
9
6
7
8
10
11
12
VCC
VO2+
VOFC-
SL+
VOSL
PGND
VOSL-
PVCC1
VINFFC
PREGND22VINLD23CTK224CTK125VINTK26BIAS27STBY
21
C336
104
C335
104
TC304
47uF/16V
VCC
SL-
FMSO
GND
MB
DVDA
DVDB99DVDC98DVDD97DVDRFIP96DVDRFIN95CDA94CDB93CDC92CDD91OSN90OSP89RFFGC88RFGCU87RFGCI86CEOP85CEON84AGNDX83AGNDX82MON81MOP80SW179SW278SW077SINPHI76REFSIN75HALLSIN74AGNDM
102MA101
100
DD#
CC#
BB#
AA#
C316 105
C317 105
C318 105
B
C331 151
R321 20K
V1P4
FOSO
3
4
5
1
CF12CF2
VINFC
VINSL-
VINSL+
U302
BA5954
28
TRSO
V1P4
STBY
C337
104
C334 151
R316 20K
A
D
C332
104
LOAD-
LOAD+
TROUT
TRIN
SP+
SL+
SL-
LIMIT
23415
XS303
XS06
OPO
C333 27pF
6
ADIN
OP-
OP+
V1P4
0R
R335
750K
R332
C341
104
750K
R333
330K
R331
R336
1R
R334
330K
23415
XS302
5P2.0mm
LOAD+
TRCLOSE
TROPEN
(TRCLOSE1)
TC309
47uF/16V
R342
1.5K
SP-
V309
8550
VCC
V306
8550
R338
1.5K
TC308
47uF/16V
R339
10K
R323
470R
V310
9014-S
V308
8050
V307
8050
R322
470R
R341
2.2R\1/4W
(TRCLOSE1) (TROPEN1)
LOAD-
TROPEN
Page 52
VIDEO_Y
50
MIAN SCHEMATIC DIAGRAM
Q215
3906-S
R263
150R
C256
A5V
C255 20pF(DNS)
101
L210
1.8uH C254
101
L243
0R
VGND VGND
R262
150R
R224
0R(DNS)
VIDEO_C
Q217
A5V
U205F
U205E
3906-S
R275
150R
C258 20pF(DNS)
SPDIF#IEC958
HCU04
12 13
HCU04
10 11
R257
0R
A5V
C259
101
L211
1.8uH
101
C257
L244
0R
VGND VGND
R274
150R
VIDEO_COMP
Q216
3906-S
R271
150R
C262
101
L212
C261 20pF(DNS)
1.8uH
L245
0R
R270
150R
Y3
VIDEO_Y1
Q213
3906-S
R272
150R
A5V
C265
L213
C260
101
C264 20pF(DNS)
VGND VGND
Y2
Y1
1.8uH C263
L246
0R
R273
150R
Y4
TC203
VIDEO_U
Q220
3906-S
R277
150R
A5V
101
101
C267 20pF(DNS)
VGND VGND
Y5
10uF/16V
104
C2150
104
C2151
A5V
C268
101
L214
1.8uH C266
101
L247
0R
VGND VGND
R276
150R
VIDEO_V
Q214
3906-S
R281
150R
C271
101
L215
1.8uH C269
C270 20pF(DNS)
101
L248
0R
VGND VGND
R280
150R
Y6
AV33
L205
FB
VCC
+9V-9V RVCC DV33
VOICE-DET
OKA
L239 FBSMT
L240 FBSMT
2341568910711
104
C2152
L209
FB
A5V AVCC
TC211
TC213
220uF/16V
C2154
104
Q201
8050
GND
L242 FB
L241 FB
L249 FB
220uF/16V
V25
C2153
104
OUT
3
GND
2
TC207
220uF/16V
C297
104
TC208
220uF/16V
C296
104
C295
104
C294
104
GND
A5V
L250 FB
12
XS203
XS12
IN
U208
1
BA033FP(DNS)
VCC AV33
VIDEO_U
VIDEO_V
FBSMT(DNS)
FBSMT(DNS)
L228
BRG
GND
GND
HSYNC#
VSYNC#2
341
568910711121415161317
XS205
XS17(DNS)
A5V
IN OUT GND
U209
LM1117MP-2.5(DNS)
VIDEO_Y1
VIDEO_COMP
FBSMT(DNS)
FBSMT(DNS)
FBSMT(DNS)
L225
L227
L224
L226
CVBS
GND
GND
GNDLtGND
VGND
3 2 1
V25 VCC
XS204
Rt
+9V
PDAT0
FBSMT(DNS)
FBSMT(DNS)
L223
L208
L251
FBSMT(DNS)
+5V
2341568
HSYNC#
VSYNC#
R256
9107
1112141516131718202122192324252628
SR
SL
Rt
Lt
R242
0R
VIDEO_COMP
+5V
VIDEO_Y
150R
IEC958
VIDEO_U
VIDEO_V
VIDEO_C
VIDEO_Y1
R241
0R(DNS)
AGND
VDATA3
XS28
27
AGNDVGND
LFE
Cc
0R
R244
R243 0R(DNS)
+9V
AGND
Page 53
U204
51
MIAN SCHEMATIC DIAGRAM
SDRAM 512*16*2
U203
SDRAM 512*16*2
DV33
C2137
L331
FBSMT
C235
104
TC219
10uF/16V
DACV33C
TC202
V1P4
C230
100K
R217
R228
1K
R227
1K
C201
104
DV33
8
VCC
U202
AT24C02/X4050
DC/NC1RST_/NC2WP/RST_3VSS
DQ16
DQ17
DQ18
DQ19
DQ20
DQ21
DQ22
DQ23
DQ24
DQ25
DQ26
DQ27
2
A021A122A223A324A427A528A629A730A831A932A1020BA/A1119CLK
DMA0
DMA1
DMA2
DQ0
DQ1
DQ2
2
A021A122A223A324A427A528A629A730A831A932A1020BA/A1119CLK
DMA0
DMA1
DMA2
104
TC215
C232
10uF/16V
DV33
R236
XTALI
40
DQ712DQ611DQ59DQ48DQ36DQ25DQ13DQ0
DQ839DQ9
DQ1042DQ1143DQ1245DQ1346DQ1448DQ15
DMA3
DMA4
DMA5
DMA6
DMA7
DMA8
DMA9
DMA10
BA0
DQ3
DQ4
DQ5
DQ6
DQ7
DQ8
DQ9
DQ10
DQ11
40
DQ712DQ611DQ59DQ48DQ36DQ25DQ13DQ0
DQ839DQ9
DQ1042DQ1143DQ1245DQ1346DQ1448DQ15
DMA3
DMA4
DMA5
DMA6
DMA7
DMA8
DMA9
DMA10
BA0
R237
1.5K
R214 4.7R(DNS)
104(DNS) C229
VGND
V25
L329
FBSMT
VGND Y1
47uF/16V
DACV33B Y2 VGND Y3
DACV33A Y4
104
VGND Y5 Y6
BLANK#
VSYNC# Y7
L330
FBSMT
VGND
HSYNC#
SPMCLK SPDATA
SPLRCK SPBCK
XO
0R(DNS)
XI URST
SDATA SDEN SCLK BDO
ADIN
18K
TEO
R216
CSO
C231
104
104
0R
0R(DNS)
R219
R218
HTRC
RFRPC
SCL
7
6
SCL
RST/WP
FEO RFL
RFRP
102
RFRPC
C233
RFZC
C234
104
RFIN
RFIP
TC201
10uF/16V
C238 102
C239 102RFOP
RFON
DV33
GND
V2P8
C206
104
C211
104
V25
C205
104
C210
SDA
5
SDA
4
104
C204
104
C209
104
C203
104
C208
104
C202
104
C253
104
C207
104
C227
104
DQ28
DQ29
DQ30
DQ31
SD33
49
25
44
47
VCC1VCC
CKE
34
35
SDCLK
SDCKE
DCS#
DQ12
DQ13
DQ14
DQ15
SD33
49
25
VCC1VCC
CKE
34
35
SDCLK
SDCKE
DCS#
C237
104
163 164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185 186 187 188 189 190 191 192 193 194 195 196 197 198 199 200 201 202 203 204 205 206 207 208 209 210 211 212 213 214 215 216
GND
TC204
47uF/16V
C240
104
C272
104
4.7R
4.7R
R252
R251
AV33
VSSQ4VSSQ10VSSQ41VSSQ
VCCQ13VCCQ7VCCQ38VCCQ
RAS17CS18CAS
16
36
DRAS#
DCAS#
DWE#
DQM2
DQM3
44
47
VSSQ4VSSQ10VSSQ41VSSQ
VCCQ13VCCQ7VCCQ38VCCQ
RAS17CS18CAS
16
36
DRAS#
DCAS#
DWE#
DQM0
DQM1
Y0
FS
VREF
ASDAT1
ASDAT2
DACV33C
159
160
157
158
161
162
155
156
FS
VREF
DACVSSC
ASDATA3
ASDATA4
ASDATA2
YUV0/CIN
YUV1/C
DACVDDC
DACVSSB
YUV2/Y
DACVSSB
YUV3/CVBS
DACVDDA
YUV4/G
DACVSSA YUV5/B YUV6/R
ICE
BLAANK#
VSYN YUV7 DVSS
HSYN
SPMCLK SPDATA
DVDD2
SPLRCK
SPBCK
DVDD3 XTALO
XTALI PRST DVSS
VFO13
IDGATE
DVDD3
UDGATE
WOBSI
SDATA SDEN SLCK
BDO
ADCVSS
ADIN
RFSUBI
TEZISLV
TEI
CSO
FEI
RFLEVEL RFRP_DC RFRP_AC
HRFZC
PWMVREF
PWM2VREF
ADCVDD3
RFDTSLVP
RFDTSLVN RFIN RFIP
IREF1PLLVSS2LPION4LPIOP3LPFON5LPFIP6LPFIN7LPFOP8JITFO9JITFN10PLLVDD311FOO12TRO13TROPENPWM14PWMOUT115PWMOUT216DVDD217DMO18FMO19DVSS20FG21HIGHA022HIGHA123HIGHA224HIGHA325HIGHA527HIGHA426DVSS28HIGHA629HIGHA730AD731AD632AD533DVDD335AD336AD434AD237AD138AD039IOA040IOA141DVDD242IOA243IOA344IOA445IOA546IOA647IOA748A1649A1750IOA1851IOA19
8.2K
C212 103
C215 103
R201
C213
103 C214 103
LPFOP
LPFIP
LPION
LPIOP
47uF/16V
TC206
50
C252
104
VSS26VSS
NC37NC33DQML14WE15DQMH
VSS26VSS
NC37NC33DQML14WE15DQMH
ASDAT0
154
ASDATA0
ASDATA1
C251
104
C250
104
C249
104
C248
104
C247
104
C246
104
SD33
50
C245
104
FB
L204
RST#
DV33
R259
0R
DQ20
DQ19
DQ18
DQ17
DQ16
ABCK
ALRCK
ACLK
AMDAT
ASPDIF
142
143
144
145
146
147
148
149
150
151
152
153
RD20
RD19
RD18
RD17
RD16
DVSS
ACLK
ABCK
SPDIF
ALRCK
DVDD3
MC_DATA
20K
18K
10K
750K
R202
C216
101
JITFO
JITFN
15K
R203
R204
TROPEN
TRSO
FOSO
FGA8A9
R2050RR206
R207
V25
FMSO
DMSO
PWMOUT2
PWMOUT1
UPA[20..0]
UPD[15..0]
DQ23
DQ22
DQ21
138
139
141
140
RD23
RD22
RD21
DVDD2
U201
A10
A11
C221
C220
C219
C218
C217
V1P4
GNDA0AD7
AD14
AD6
A17
48
U214
A16
VD
RDQM3
RDQM2
136
137
DQM2
A12
A13
104
153
AVCC
103(DNS)
331
331
AD13
45
42
46
44
41
47
Vss
A16
DQ6
DQ7
DQ1443DQ13
BYTE
DQ15/A-1
A12
A9
A151A142A133A115A106A88A199WE11RESET
4
7
A15
A14
A13
A12
A11
A10A9DWR#
R2160
1K
DQ28
DQ27
DQ26
DQ25
DQ24
129
131
132
133
134
135
130
RD27
RD26
RD25
RD24
DVSS
DQM3
DVDD3
MT1379E_216
A14
A15
AD7
AD6
AD5
AD4
C2113
104
3 4
R239
U205A
HCU04
1 2
R238
XI
AD5
AD12
AD4VDAD11
38
DQ540DQ4
DQ1239DQ11
NC10NC
A20
R222 4.7K
R223 4.7K R215 4.7K
DQ31
DQ30
DQ29
126
127
128
RD30
RD29
RD28
AD3
AD2
XTALI
U205B
HCU04R208
7 14
0R(DNS)
100K
0R(DNS)
AD3
AD10
AD2
AD9
32
34
35
36
37
Vcc
DQ233DQ3
DQ10
14
13
12
RSET
A18A7A6A5A4A3A2
VP
A19
R221
DMA0
DMA1
DMA2
DMA3
125
120
121
122
123
124
RA0
RA1
RA2
RA3
RD31
DVSS
DVDD2
AD1
AD0A0A1A2A3A4A5A6A7
R209
10R(DNS)
XO
C223
27pF
R255
0R
X201
27MHz
C222
27pF
R240 0R
AD1
AD8
AD0
DRD#
GND
DCE#
A1
29OE28
27
31
25
CE26A0
Vss
DQ830DQ9
DQ0
DQ1
A619A1717RY/BY15A1816NC
18
A8
4.7K(DNS)
BA1
DMA10
119
118
BA1
RA10
VD DV33
A520A421A322A7
A223A1
8M_FLASH(TSOP)
24
AVCC
DMA7
DMA6
DMA5
DMA4
RDQM1
RDQM0
115
110
111
112
113
114
116
117
RA6
RA5
RA4
DVSS
DQM1
DQM0
DVDD3
53
52
A16
A17
A18
A19
A20
C2149
10pF(DNS)
DV33
1
27MHZ
XS202
R220
RA7
VD201
R2157
109
GND
C224
RXD
234
URST
VCC
R2159
0R
L206
FB(DNS)
TC237
47uF/16V
5 6
C2146
104
Q204
9014
1N4148
10K
DQM2
33R
33R
33R
R248
R249
R254
RDQM2
RDQM3 DQM3
ASPDIF SPDIF#
DMVSS
DMVDD3 RA8 RA9 RA11 CLE CLK DVSS RD8 RD9 RD10
99
RD11
98
DVDD3
97
RD12
96
RD13
95
RD14
94
RD15
93
DVSS
92
BA0
91
RCS#
90
RAS#
89
CAS#
88
RWE#
87
RD0
86
RD1
85
RD2
84
RD3
83
DVDD2
82
RD4
81
RD5
80
RD6
79
RD7
78
DVSS
77
URD#
76
UWR#
75
UP3_5
74
UP3_4
73
DVDD2
72
IR
71
INT0#
70
UP3_1
69
UP3_0
68
UP1_7
67
DVDD3
66
UP1_6
65
UP1_5
64
UP1_4
63
UP1_3
62
UP1_2
61
DVSS
60
IOCS#
59
IOWR#
58
IOOE#
57
ALE
56
APLLVDD3
55
APLLVSS54IOA20
C226
225
R212
4.7R
AV33
104
TXD
GND
XS04(DNS)
RSET
0R(DNS)
R2163
0R(DNS)
AVCC
33R
U205C
C2148
R2158
DQM1
DQM0
33R
33R
R246
R247
RDQM0
RDQM1
108 107 106 105 104 103 102 101 100
R260
R2162
0R
89
RST#
HCU04
U205D
HCU04
102
1K
TC217
10uF/16V
SDCKEDCKE
33R
33R
R234
R235
AV33
DCLK SDCLK
R213
4.7R
C228
225
DMA8 DMA9 DMA11 DCKE DCLK
DQ8 DQ9 DQ10 DQ11
DQ12 DQ13 DQ14 DQ15
BA0
R233 33R
DCS#
R232 33R
DRAS#
R231 33R
DCAS#
R230 33R
DWE#
R229 33R
DQ0 DQ1 DQ2 DQ3
DQ4 DQ5 DQ6 DQ7
TXD RXD
IR
VDATA3
SDA
SCL VSTB VSDA VSCK
PCE# PWR# PRD#
IR
RST#
R210
10R(DNS)
GND
VSCK
VSTB
VSDA
VCC
R245
4.7K
FBSMT
FBSMT
R211
FBSMT
10RC225
L201
L202
47pF
23415
6
XS201
6P2.54mm
PDAT0
C274
101
C273
101
GND
DCE#
R2109 33R
DWR#
R2108 33R
DRD#
R2107 33R
C243
47pF
47pF
L203
C241
47pF C242
Page 54
+9V
52
MIAN SCHEMATIC DIAGRAM
VD206
1N4148
TC235
220uF/16V
AGND
R264
TC236
10uF/16V
AVCC
C291
104
LLRSRR
LS
LFE#
MUTE1
27
MUTEC128AOUTA1
VLS1SDIN12SDIN23SDIN34SCLK5LRCK6MCLK7VD8GND9RST10SCL11SDA12CS13VLC
U207
C292
DV33
R226
R225
AVCC
104
0R
TC231
10uF/16V
SDATA0
C293
104
0R(DNS)
OKA
R2132
20K
R2129
C#
MUTE2
26
AOUTB1
SDATA2
SDATA1
C2116
20K
C2111 101
MUTE3
23VA22
19
24
21
20
18VQ17
GND
AOUTB2
AOUTB3
MUTEC225AOUTA2
AOUTA3
MUTEC3
SLRCK
SACLK
SBCLK
SCL
RST#
102
AGND
R2136 6.8K
C2122
122
C2112
102
R2131
4.7K
R2130
4.7K
3
2
U219A
4580
4 8
-9V
+9V
1
TC232
10uF/16V
TC233
10uF/16V
C289
104
C290
104
AGND
15
16
M2
FILT+
CS4360
14
R282
0R
SDA
R2148 6.8K
R2156
20K
R2135
AGND
R2134
6
20K
C2114 101
+9V
R2133
7
RRRSLL
10uF/16V
10uF/16V
TC225
TC226
C2132
683(DNS)
R
L
6.8K
C2129
122
C2115
102
4.7K
AGND
4.7K
20K
5
U219B
4580
4 8
-9V
R2137
C2130
122
R2152
C2118
R2139
4.7K
R2138
4.7K
3
2
C2117 101
+9V
1
LS
TC227
TC228
10uF/16V
10uF/16V
SR#
0R
C2119
0R
C2131
102
AGND
20K
U220A
4580
101
R2141
4 8
C2120
-9V
+9V
LFE#
TC229
10uF/16V
SL#
SW
C2138
683(DNS)
C2133
122
R2153 6.8K
C2121
102
R2143
4.7K
AGND
R2142
4.7K
20K
5
6
U220B
4580
R2145
4 8
-9V
7
VOICE-DET
C#
R297 0R
TC230
10uF/16V
/C
6.8K
C2135
122
R2154
C2124
R2147
4.7K
R2146
4.7K
3
2
U221A
C2123 101
+9V
1
Q219
1015C2134
MUTE-1
VD205
1N4148
Q218
1015
Q212
2SC1815-Y
R266
R267
102
4580
4 8
-9V
1K
1K
+9V
VCC
AGND
R2149
Q211
1015
TC238
2.2uF/16V(DNS)
1K
R2105
R2106
1K
VD207
1N4148
VD208
1N4148
MUTE1
MUTE2
C2128
683(DNS)
6.8K
C2136
R2155
R2151
4.7K
R2150
4.7K
C2126
20K
5
6
101
+9V
7
150R
R250
10K
AGND
TC234
47uF/16V
AGND
R265
10K
R253
330R
-9V
VD209
1N4148
MUTE3
0R
122
C2127
102
AGND
U221B
4580
4 8
-9V
SDATA1
SDATA2
R291 33R
R292 33R
R293 33R
R294 33R
R295 33R
R296 33R
ACLK SACLK
ABCK SBCLK
ALRCK SLRCK
ASDAT0 SDATA0
ASDAT1
ASDAT2
TC224
TC223
TC222
TC221
TC240
10uF/16V
C280
104
C279
104
C278
104
+9V
C283
104
C282
104
C281
104
-9V
AGND
AGND
TC241
10uF/16V
CH-L
CH-R
R2117
1K
Q205
2SC1815-YS
R2119
R2118
1K
AGND
R2111
100K
R2112
100K
10uF/16V
CH-SR
R21211KR2120
1K
1K
Q206
2SC1815-YS
SRRtLt
MUTE-1
R2123
R2122
1K
Q207
2SC1815-YS
R2113
100K
AGND
10uF/16V
CH-SL
1K
R2124
1K
R2125
1K
R2126
1K
Q208
2SC1815-YS
100K
R2114
SL
Q209
100K
R2115
LFE
10uF/16V
CH-SW
R2127
1K
R2128
1K
2SC1815-YS
2SC1815-YS
AGND
100K Q210
R2116
Cc
10uF/16V
CH-C
TC244
TC243
1uF/16V(DNS)
1uF/16V(DNS)
C288
104(DNS)
13
VREF114VREF2
TC242
10uF/16V(DNS)
VL1VR2DGND3VDD4SCKI5BCK6LRCK
U210
C287
104(DNS)
AVCC
C285
105(DNS)
C286
R2180
150R(DNS)
OKA
0R(DNS) R279
R278
AGND
12
10
9
8
VCC11FMT
DOUT
AGND
BYPAS
7
SACLK
SBCLK
SLRCK
105(DNS)
C284
102(DNS)
0R(DNS)
0R(DNS) R269
R268
0R(DNS)
PCM1801(DNS)
AMDAT
Page 55
53
MIAN SCHEMATIC DIAGRAM
Page 56
54
MIAN SCHEMATIC DIAGRAM
Page 57
BBK938S MATERIAL LIST
10.BBK938S MATERIAL LIST
55
1
DECODING BOARD
NO
1 SMD RESISTOR
2 SMD RESISTOR
3
4 SMD RESISTOR
5 SMD RESISTOR
6 SMD RESISTOR
7 SMD RESISTOR
8 SMD RESISTOR
9 SMD RESISTOR
10 SMD RESISTOR
11 SMD RESISTOR
12 SMD RESISTOR 1/16W 1K ±5% 20
MATERIAL SPECIFICATIONS/PART NUMBER QUANTITY LOCATION
C2119,C2128,C2131,L243~L248,R205,R 219,R220,R226,R240,R241,R243,R255,R 257,R259,R282,R297,R324,R325,R332,R 337,R2162
R256
R341
R2107~R2109,R2159,R229~R235,R 246~R249,R254,R291~R296
CARBON FILM RESISTOR
1/16W 0
1/16W 75
1/4W2.2
1/16W1
1/16W 4.7
1/16W 10
1/16W 22
1/16W 33
1/16W 470
1/16W 150
1/16W 330
±5%
±5%
±5%
±5%
±5%
±5%
±5%
±5%
±5%
±5%
±5%
26
1
1
5 R312,R313,R317,R318,R336
4 R212,R213,R251,R252
1 R211
2 R314,R315
22
2 R322,R323
13 R262~R264,R270~R277,R280,R281
1 R253
R227,R228,R266,R267,R2105,R210 6,R2117~R2128,R2158,R2160
13 SMD RESISTOR 1/16W 1.5K ±5% 3 R237,R338,R342
R222,R223,R245,R2130,R2131,R21
14 SMD RESISTOR 1/16W 4.7K ±5% 15
34,R2135,R2138,R2139,R2142,R214 3,R2146,R2147,R2150,R2151
15 SMD RESISTOR 1/16W 6.8K ±5% 6 R2136,R2148,R2152~R2155
16 SMD RESISTOR 1/16W 8.2K ±5% 1 R201
17 SMD RESISTOR 1/16W 10K ±5% 12
R206,R250,R265,R303~R306,R309, R311,R319,R339,R2157
18 SMD RESISTOR 1/16W 15K ±5% 1 R207
19 SMD RESISTOR 1/16W 20K ±5% 4 R203,R316,R320,R321
20 SMD RESISTOR 1/16W 18K ±5% 2 R204,R216
21 SMD RESISTOR 1/16W24K±5% 8
R2129,R2132,R2133,R2137,R2141, R2145,R2149,R2156
22 SMD RESISTOR 1/16W 27K ±5% 1 R302
23 SMD RESISTOR 1/16W 33K ±5% 1 R307
24
25
26 SMD RESISTOR 1/16W 100K ±5% 11
DELICATE SMD RESISTOR DELICATE SMD RESISTOR
1/16W 330K ±1% 2 R333,R334
1/16W 750K ±1% 3 R202,R331,R335
R208,R2111~R2116,R217,R301,R30 8,R310
TC201,TC202,TC203,TC217,TC219
27 CD CD11 16V10U±20%5×11 2 23
,TC221~TC233,TC236,TC240,TC24 1,TC306,TC307
28 CD CD11 16V220U±20%6×12 2.5 6
29 CD CD11 16V47U±20%5×11 2 11
TC207,TC208,TC211,TC213,TC235 ,TC301
TC204,TC206,TC215,TC234,TC237 ,TC302~TC305,TC308,TC309
30 SMD CAPACITOR 50V 10P ±5% NPO 0603 1 C309
31 SMD CAPACITOR 50V 27P ±5% NPO 0603 4 C310,C222,C223,C333
C225,C241,C242,C243,C254,C256,
32 SMD CAPACITOR 50V 47P ±5% NPO 0603 14
C257,C259,C260,C262,C266,C268, C269,C271
Page 58
33 SMD CAPACITOR 50V 101 ±5% NPO 0603 10
56
34 SMD CAPACITOR 50V 331 ±5% NPO 0603 2 C217,C218
35 SMD CAPACITOR 50V 151 ±5% NPO 0603 2 C331,C334
36 SMD CAPACITOR 50V 391 ±10% 0603 2 C304,C305
37 SMD CAPACITOR 50V 471 ±10% 0603 1 C307
38 SMD CAPACITOR 50V 104 +80%-20% 0603 78
38.1 SMD CAPACITOR 25V 104 +80%-20% 0603 78
39 SMD CAPACITOR 16V 105 +80%-20% 0603 4 C315~C318
40 SMD CAPACITOR 10V 225 +80%-20% 0805 2 C226,C228
41 SMD CAPACITOR 50V 102 ±10% 0603 11
42 SMD CAPACITOR 50V 122 ±10% 0603 6
43 SMD CAPACITOR 50V 103 ±10% 0603 4 C212~C215
44 SMD CAPACITOR 50V 153 ±10% 0603 3 C220,C308,C319
45 SMD CAPACITOR 16V 333 ±10% 0603 1 C306
46 SMD INDUCTOR 10UH ±10% 2012 2 L303,L306
47 SMD INDUCTOR 1.8UH ±10% 1608 6 L210~L215
48
49
50 SMD DIODE 1N4148 6 VD201,VD205~VD209
51 TRIODE C8050 3 V307,V308,Q201
52 TRIODE 8550C 2 V306,V309
53 TRIODE 9014C 1 Q204
54 TRIODE C1815Y 1 Q212
55 SMD TRIODE C1815 6 Q205~Q210
56 TRIODE 2SA1015 3 Q211,Q218,Q219
57 SMD TRIODE 3906 6 Q213~Q217,Q220
58 SMD TRIODE 3904 1 V305
59 SMD TRIODE 9014C 1 V310
60 SMD TRIODE 2SK3018 2 V303,V304
61 SMD TRIODE 2SB1132 2 V301,V302
62 IC NJM4558M SOP 3 U219,U220,U221
63 IC MM74HCU04M SOP 1 U205
MAGNETIC BEADS INDUCTOR
SMD MAGNETIC BEADS
SMD DIODE LS4148 6 VD201,VD205~VD209
50.1
SMD DIODE LL4148 6 VD201,VD205~VD209
50.2
62.1 IC 4580 SOP 3 U219,U220,U221
62.2 IC 4558 SOP 3 U219,U220,U221
RH354708 7
FCM1608K-221T05 26
C216,C273,C274,C342,C2111,C2114,C2 117,C2120,C2123,C2126
C201~C211,C221,C224,C227,C230~ C232,C234,C235,C237,C240,C245~ C253,C272,C278~C283,C289~C297, C301~C303,C311~C313,C320~C330 ,C332,C335~C339,C341,C2113,C21 37,C2146,C2150~C2154
C201~C211,C221,C224,C227,C230~ C232,C234,C235,C237,C240,C245~ C253,C272,C278~C283,C289~C297, C301~C303,C311~C313,C320~C330 ,C332,C335~C339,C341,C2113,C21 37,C2146,C2150~C2154
C233,C238,C239,C2112,C2115,C21 16,C2118,C2121,C2124,C2127,C214 8
C2122,C2129,C2130,C2133,C2135, C2136
L204,L205,L209,L241,L242,L249,L 250
L201~L203,L239,L240,L301,L304,L 305,L307,L308,L310,L311,L312,L3 14,L316~L324,L329~L331
Page 59
63.1 IC HCU04 SOP 1 U205
57
64 IC HY57V161610DTC-7 TSOP 2 U203,U204
64.1 IC M12L16161A-7T SOP 2 U203,U204
64.2 IC GM72V161621ET75 SOP 2 U203,U204
64.3 IC AE45C16016T-7 SOP 2 U203,U204
65 IC CS4360 SSOP 1 U207
66 IC 24C02N SOP 1 U202
67 IC MT1336E QFP 1 U301
68 IC MT1379E QFP 1 U201
69 IC BA5954FP HSOP 1 U302
70
71 CABLE SOCKET
72 PCB 2933K-0 1
73 SOCKET 5P 2.0mm 2 XS201,XS302
74 SOCKET 6P 2.0mm 1 XS303
75 SOCKET 11P 2.5mm 1 XS203
76 CABLE SOCKET 24P 0.5mm SMD WITH CLASP 1 XS301
CRYSTAL OSCILLATOR
27.00MHz 49-S 1 X201
14P 1.0mm STRAIGHT DUAL LINE PLUG
1 XS204
POWER BOARD
2
NO
1
2
3
4
5
6
7
8
9
10
11
12
13
14
CARBON FILM RESISTOR CARBON FILM RESISTOR CARBON FILM RESISTOR CARBON FILM RESISTOR CARBON FILM RESISTOR METAL FILM RESISTOR METAL FILM RESISTOR METAL OXIDE FILM RESISTOR METAL OXIDE FILM RESISTOR METAL OXIDE
9.1 FILM RESISTOR
METAL OXIDE FILM RESISTOR HIGH VOLTAGE RESISTOR PORCELAIN CAPACITOR PORCELAIN CAPACITOR PORCELAIN CAPACITOR PORCELAIN
14.1 CAPACITOR
MATERIAL SPECIFICATIONS/PART NUMBER QUANTITY LOCATION
1/4W33
1/4W330
1/4W10K±5% SHAPED 10 1 R507
1/4W4.7K±5% SHAPED 10 1 R510
1/4W1M
1/4W4.7K±1% 1 R508
1/4W12K±1% SHAPED 10 1 R509
1W330
2W39K±5% FLAT SHAPED 15×9 1 R503
2W39K±5% FLAT SHAPED 15×7 1 R503
2W120K±5% FLAT SHAPED 15×7 1 R502
1/2W680K±5% 1 R501
50V 100P ±10% 5mm 6 C505,C507,C509,C511,C513,C514
50V 104 ±20% 5mm 4 C504,C508,C510,C515
1000V 101 +80%-20% 7.5mm 1 C503
1000V 101 ±10% 7.5mm 1 C503
±5% SHAPED 10
±5% SHAPED 10
±5% SHAPED 10
±5% R-SHAPED 15×8
1 R505
1 R506
1 R504
1 R511
Page 60
15
58
16
17
18
PORCELAIN CAPACITOR CERAMIC CAPACITOR CERAMIC
16.1 CAPACITOR
TERYLENE CAPACITOR TERYLENE CAPACITOR TERYLENE
18.1 CAPACITOR
1000V 103 +80%-20% 7.5mm 1 C502
CT81 400V 221±20% 10mm 1 BC503
CT81 400V221±10% 10mm 1 BC503
100V 223 ±10% 5mm 1 C506
275V 104 ±20% 15mm 1 BC502
275V 104 ±10% 15mm 1 BC502
19 CD GZ16V100U±20%6×12 2.5 3 TC508,TC511,TC513
19.1 CD CD11 16V100U±20%6×12 2.5 3 TC508,TC511,TC513
19.2 CD CD110 16V100U±20%6×12 2.5 3 TC508,TC511,TC513
19.3 CD CD11C 16V100U+20%-15%6×7 2.5 3 TC508,TC511,TC513
19.4 CD CD11C 16V100U±20%6×7 2.5 3 TC508,TC511,TC513
20 CD CD11 25V470U+20%-10%10×16 5 2 TC503,TC504
20.1 CD CD11 25V470U±20%10×16 5 2 TC503,TC504
21 CD CD11 50V47U±20%6×12 2.5 2 TC502,TC512
22 CD CD11 10V1000U±20%8×16 3.5 4 TC505,TC506,TC509,TC510
22.1 CD CD11 10V1000U±20%8×14 3.5 4 TC505,TC506,TC509,TC510
22.2 CD GS 10V1000U±20%8×16 3.5 4 TC505,TC506,TC509,TC510
22.3 CD GS 10V1000U±20%8×14 3.5 4 TC505,TC506,TC509,TC510
23 CD LP3 400V47U±20%22×28 10 1 TC501
23.1 CD LS 400V47U±20%22×25 10 1 TC501
24
MAGNETIC BEADS INDUCTOR
RH354708 1 L503
25 CHOKE COIL VERTICAL 10UH 1A 5mm 1 L505
26 CHOKE COIL VERTICAL 10UH 2A 5mm 2 L506,L507
27
SWITCHING POWER TRANSFORMER
BCK-4025B-2876 1 T501
28 DIODE HER105 4 D506,D508,D511,D512
29 DIODE HER306 1 D510
30 SCHOTTKY DIODE SR360 1 D509
31 DIODE HER107 1 D505
32
33
VOLTAGE REGULATOR DIODE
VOLTAGE REGULATOR DIODE
5.1V 1/2W 1 ZD501
9.1V 1W 1 ZD502
34 DIODE 1N4007 4 D501~D504
35 IC 5L0380R YDTU 1 U501
36 IC LM431ACZ TO-92 1 U503
36.1 IC TL431C TO-226AA(LP) 1 U503
36.2 IC 431L TO-92 1 U503
36.3 IC KA431AZ TO-92 1 U503
37
38
POWER GRID FILTER PHOTO ELECTRIC COUPLER
UT-20 40mH ±20% 10×13 1 L502
HS817 1 U502
39 IC LM7805 GOLD SEALED TO-220 1 U504
40 PCB 5933-0 1
41 SOCKET 5P 2.0mm 1 CN501
42 SOCKET 9P 2.5mm 1 CN503
Page 61
43 SOCKET 2P 2.5mm 1 CN502
59
44 SOCKET 6P 2.5mm 1 CN504
45 SOCKET 2P 8.0mm 2# 2 BCN501,BCN502
46
47
48
49 FUSE T1.6AL 250V 1 F501
50 FUSE HOLDER BLX-2 1 FOR F501
51
52
53 TAPPING SCREW BT 3×8 BLACK 2 FIX HEAT RADIATOR BOARD
MAIN FRONT PANEL
3
NO
1
2
3
4
5
6
7
8
9
10 CD CD11C 10V100U±20%5×7 2 2 C402,C407
11 DIODE 1N4148 2
12 IC D16312GB QFP 1 U401
13 VFD HNV 06SS98 1 VFD401
14
15 PCB 4931-0 1
16 LED 3B3SC WHITE BLUISH 1 LED401
CONNECTION CORDS CONNECTION CORDS CONNECTION CORDS
HEAT RADIATOR BOARD HEAT RADIATOR
51.1 BOARD
POWER GRID FILTER
MATERIAL SPECIFICATIONS/PART NUMBER QUANTITY LOCATION
SOFT SPONGE SPACER SOFT SPONGE SPACER CARBON FILM RESISTOR CARBON FILM RESISTOR CARBON FILM RESISTOR CARBON FILM
5.1 RESISTOR
CARBON FILM RESISTOR CARBON FILM
6.1 RESISTOR
CARBON FILM RESISTOR CARBON FILM
7.1 RESISTOR
CARBON FILM RESISTOR PORCELAIN CAPACITOR
12.1 IC PT6312LQ QFP 1 U401
LIGHT TOUCH RESTORE SWITCH
0.6 SHAPED 7.5mm
0.6 SHAPED 10mm
0.6 SHAPED 12.5mm
11×15×25 AB009K 2
11×15×25 SHAPED AB905 2
AB903 2 G501~G502
15×7×3.5 DOUBLE FACED ADHESIVE TAPE, HARD 10×10×5.5 DOUBLE FACED ADHESIVE TAPE, HARD
1/4W270
1/4W2.2
1/4W100
1/4W100
1/4W10K±5% 7
1/4W10K±5% SHAPED 10 7
1/4W33K±5% 8 R401~R404,R411~R414
1/4W33K±5% SHAPED 10 8 R401~R404,R411~R414
1/4W51K±5% 1 R405
50V 103 ±10% 5mm 2 C401,C405
HORIZONTAL 6×6×1 8
±5% SHAPED 10
±5%10
±5%
±5% SHAPED 10
2 J506,J503
4 L501,J501,J505
2 J504,J502
U501,U504 FOR HEAT RADIATION U501,U504 FOR HEAT RADIATION
3
1
1 R419
1 R418
1 R415
1 R415
CONNECT VFD WITH FRONT PANEL PCB CONNECT IR SENSOR WITH FRONT PANEL PCB
R406
R406
D401
K401
R410,R416,R417
R410,R416,R417
D402
K408
Page 62
17 FLAT CABLE
60
18 FLAT CABLE
19 LED BRACKET
20 IR SENSOR HS0038A2 1 U403
OK BOARD
4
NO
1
2
3
4
5
6 CD CD11 16V4.7U±20%5×11 2 9
7 CD CD11 16V22U±20%5×11 2 2 TC605,TC606
8 CD CD11 10V47U±20%5×7 2 1 TC609
9 CD CD11 25V100U±20%6×12 2.5 3 TC608,TC615,TC616
10
11 IC NJM4558D DIP 2 U601,U602
12 IC PT2399 DIP 1 U603
13 FLAT CABLE 6P80 2.5 2 PLUG WITH NEEDLE 1 XS601
15 MIC SOCKET CK3-6.35-106 2 MIC601,MIC602
16
17 SMD RESISTOR
18 SMD RESISTOR 1/16W 1K ±5% 3 R607,R608,R611
19 SMD RESISTOR 1/16W 4.7K ±5% 2 R622,R628
20 SMD RESISTOR 1/16W 5.6K ±5% 1 R616
21 SMD RESISTOR 1/16W 10K ±5% 6 R605,R606,R617,R621,R624,R612
22 SMD RESISTOR 1/16W 15K ±5% 2 R618,R614
23 SMD RESISTOR 1/16W 18K ±5% 1 R615
24 SMD RESISTOR 1/16W 22K ±5% 2 R601,R602
25 SMD RESISTOR 1/16W 27K ±5% 1 R629
26 SMD RESISTOR 1/16W 30K ±5% 3 R609,R610,R613
27 SMD CAPACITOR 50V 101 ±5% NPO 0603 4 C605,C606,C607,C620
28 SMD CAPACITOR 50V 561 ±10% 0603 2 C610,C612
29 SMD CAPACITOR 50V 392 ±10% 0603 2 C608,C615
30 SMD CAPACITOR 50V 103 ±10% 0603 4 C603,C604,C616,C619
31 SMD CAPACITOR 50V104 ±20% 0603 7
31.1 SMD CAPACITOR 50V 104 +80%-20% 0603 7
32 PCB 6931-0 1
MATERIAL SPECIFICATIONS/PART NUMBER QUANTITY LOCATION
CARBON FILM RESISTOR CARBON FILM RESISTOR CARBON FILM RESISTOR ROTATING POTENTIOMETER ROTATING POTENTIOMETER
MAGNETIC BEADS INDUCTOR
CONNECTION CORDS
5P170 2.0 2 PLUG WITH L NEEDLE, REVERSED 5P100 2.0 2 PLUG WITH L NEEDLE, REVERSED
H=5.5mm
1/6W10
1/6W1K±5% SHAPED 7.5 2 R619,R626
1/6W10K±5% SHAPED 7.5 1 R620
R0901N-BA1-B10K 1 VR601
R0901N-BA1-B50K 1 VR602
RH354708 2 L601,L602
0.6 SHAPED 7.5mm
1/16W 560
3.0mm
±5% SHAPED 7.5
±5%
1 XS401
1 XS402
1
2 R632,R633
TC601~TC604,TC607,TC610,TC61 1,TC613,TC621
5 JP601~JP605
2 R603,R604
C601,C602,C609,C613,C614,C622, C623 C601,C602,C609,C613,C614,C622, C623
OUTPUT BOARD
5
Page 63
NO
61
1
2
3
4
5 SMD RESISTOR
6
7
8
MATERIAL SPECIFICATIONS/PART NUMBER QUANTITY LOCATION
CARBON FILM RESISTOR CARBON FILM RESISTOR CARBON FILM RESISTOR CARBON FILM RESISTOR
CARBON FILM RESISTOR CARBON FILM RESISTOR CARBON FILM RESISTOR
1/4W68
1/4W100
1/4W220
1/4W330
1/16W 2.2
±5%
±5%
±5%
±5%
±5%
1/4W1K±5% 1 R711
1/4W33
±5%
1/4W2.2K±5% 2 R710,R712
1 R703
1 R702
1 R701
1 R709
1 R706
1 R708
9 SMD RESISTOR 1/16W 4.7K ±5% 1 R704
10 SMD RESISTOR
1/16W 75
±5%
1 R705
11 SMD CAPACITOR 50V 102 ±10% 0603 6 C701~C706
12 SMD CAPACITOR 16V 105 +80%-20% 0603 1 C707
13
MULTI LAYER CAPACITOR PORCELAIN CAPACITOR PORCELAIN
13.1 CAPACITOR
50V 224 ±10% 5mm 1 C708
50V 104 ±20% 5mm 3 C710,C711,C713
50V 104 +80%-20% 5mm 3 C710,C711,C713
14 TRIODE S8050D 3 V701~V703
15 CD CD11 16V220U±20%6×12 2.5 5 TC701,TC703~TC706
16 CD CD110 16V220U±20%8×11 3.5 1 TC702
17
18
19
20
21
MAGNETIC INDUCTOR SMD MAGNETIC BEADS PHOTO-ELECTRIC CONVERTER PHOTO-ELECTRIC
19.1 CONVERTER
TERMINAL SOCKET
TERMINAL SOCKET
RH354708 12 L701~L712
FCM1608K-221T05 2 L713,L714
TX179ATW 1 JK705
TX179AT 1 JK705
CS-09 1 JK704
AV8-8.4-6G-3 1 JK703
22 SCART SOCKET SCART-01 1 JK701
23 CABLE SOCKET
24
25
26
27
TERMINAL SOCKET
C0NNECTION CORDS CONNECTION CORDS CONNECTION CORDS
14P 1.0mm STRAIGHT DUAL LINE PLUG
1 XS701
AV4-8.4-6G-3 1 JK702
0.6 SHAPED 5mm
0.6 SHAPED 10mm
0.6 SHAPED 7.5mm
6 JP701~JP705,JP708
1 R707
1 JP706
28 PCB 7931-2 1
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