THOMSON 42WM03ST, 42WM04ST Service Manual

Page 1
SERVICE MANUAL DOCUMENTATION TECHNIQUE TECHNISCHE DOKUMENTATION DOCUMENTAZIONE TECNICA DOCUMENTACION TECNICA
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ATTENTION : Avant toute intervention sur ce châssis, lire les recommandations de sécurité.
ACHTUNG : Vor jedem Eingriff auf diesem Chassis, die Sicherheitsvorschriften lesen.
ATTENZIONE : Prima di intervenire sullo chassis, leggere le norme di sicurezza.
IMPORTANTE : Antes de cualquier intervención, leer las recomendaciones de seguridad.
- 1004
42WM03ST 42WM04ST
TV
Plasma
Page 2
Indicates critical safety components, and identical components should be used for replacement. Only then can the
operational safety be garanteed. Le remplacement des éléments de sécurité (repérés avec le symbole ) par des composants non homologués selon la
Norme CEI 65 entraine la non-conformité de l'appareil. Dans ce cas, la responsabilité du fabricant n'est plus engagée. Wenn Sicherheitsteile (mit dem Symbol gekennzeichnet) nicht durch Original - Ersatzteile ersetzt werden, erlischt die
Haftung des Herstellers. La sostituzione dei componenti di sicurezza (evidenziati con il segno ) con componenti non omologati secondo la
norma CEI 65 comporta la non conformitá dell'apparecchio. In tal caso è "esclusa la responsabilità " del costruttore. La sustitución de elementos de seguridad (marcados con el simbolo ) por componentes no homologados segun la
norma CEI 65, provoca la no conformidad del aparato. En ese caso, el fabricante cesa de ser responsable.
MEASUREMENT CONDITIONS - CONDITIONS DE MESURES - MESSBEDINGUNGEN
CONDIZIONI DI MISURA - CONDICIONES DE MEDIDAS
RICEVITORE :
In UHF, livello d'entrata 1 mV, monoscopio barre :
- PAL, norma G. bianco 100%. Via SCART, livello d'entrata 1 Vpp, monoscopio barre : Colore, Contrasto, Luminositá media, Suono minimo.
Programma selezionato PR 01. Tensioni continue rilevate rispetto alla massa con un voltmetro digitale.
RECEIVER : On UHF,input level : 1 mV, bar test pattern :
- PAL, I standard, 100% white. Via the scart socket, input level : 1 Vpp, bar test pattern : Colour, contrast and brightness at mid-position, sound at minimum.
Programme selected : PR 01. DC voltages measured between the point and earth using a digital
voltmeter.
EMPFÄNGER : Bei UHF Eingangspegel 1 mV, Farbbalken :
- PAL, Norm G, Weiss 100%. Über die Scartbuchse : Eingangspegel 1 Vss, Farbbalken : Farbe, Kontrast, Helligkeit in der Mitte des Bereichs, Ton auf Minimum.
Zugeordnetes Programm PR 01. Gleichspannungen mit einem digitalen Voltmeter zur Masse gemessen.
RECEPTEUR : En UHF, niveau d'entrée 1 mV mire de barres
- SECAM, Norm L, Blanc 100%. Par la prise Péritélévision, niveau d'entrée 1 Vcc, mire de barres . Couleur, contraste, lumière à mi-course, son minimum.
Programme affecté PR 01. Tensions continues relevées par rapport à la masse avec un
voltmètre numérique.
RECEPTOR : En UHF, nivel de entrada 1 mV, mira de barras :
- PAL, norma G, blanco 100%. Por la toma Peritelevision, nivel de entrada 1 Vpp mira de barra. Color, Contraste, luz a mitad de carrera, Sonido minimo.
Programa afectado PR 01. Tensiones continuas marcadas en relacion a la masa con un voltimetro digital.
Do not disconnect modules when they are energized! Repairs on power supply section are to be carried out only with isolating transformer.
Ne pas retirer les modules lorsqu' ils sont sous tension. N'effectuer les travaux de maintenance sur la partie reliée au secteur (Switch Mode) qu'au travers d'un transformateur d'isolement.
Module nicht bei eingeschaltetem Gerät entfernen! Servicearbeiten am Netzteil nur unter Verwendung eines Regeltrenntrafos durchführen.
Non scollegare le piastre quando sono alimentate! Per le riparazioni sulla sezione alimentatore, utilizzare un trasformatore isolatore.
No desconectar los módulos cuando están activados. Las reparaciones en la sección de alimentación de energía deben ser ejecutadas solamente con un transformador de separación.
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First issue 10 / 04 3
Page
SAFETY PRECAUTIONS . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4
DISASSEMBLY
Removing the leg tube assembly . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .6
Removing the rear cover . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7
Removing the filter . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 8
TROUBLESHOOTING
No power . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .10
No picture . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 11
Vertical line fail . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 12
Horizontal line fail . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 13
No command . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 14
ADJUSTMENTS
Power (PLG-421) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 15
Power (DGK-420W) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 16
Color temperature in DVI mode . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .16
Color temperature in RGB mode . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 18
SPECIFICATIONS . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 20
APPENDIX A . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .24
WIRING DIAGRAM . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .26
BLOCK DIAGRAM . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .27
SCHEMATIC DIAGRAMS
Tuner . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 28 - 32
Main . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 33 - 51
SPECIAL MODE . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 52 - 53
EXPLODED VIEW . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 54
CONTENTS
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4 First issue 10 /04
IMPORTANT SAFETY PRECAUTIONS
1. Before returning an instrument to the customer, always make a safety check of the entire instrument, including the following items, but not limited to them.
a. Be sure that no built-in protective devices are defective and/or have been defeated during servicing. (1) Protective
shields are provided on this chassis to protect both the technician and the customer. Correctly replace all missing protective shields, including any removed for servicing convenience. (2) When reinstalling the chassis and/or other assembly in the cabinet, be sure to put back in place all protective devices, including, but not limited to, non-metallic control knobs, insulating fishpapers, adjustment and compartment covers/shields, and isolation resistor/capacitor networks. Do not operate this instrument or permit it to be operated without all protective devices correctly
installed and functioning.
b. Be sure that there are no cabinet openings through which an adult or child might be able to insert their fingers and
contact a hazardous voltage. Such opening include, but are not limited to (1) spacing between the picture tube and the cabinet mask, (2) excessively wide cabinet ventilation slots, and (3) an improperly fitted and/or incorrectly secured cabinet back cover.
c. Leakage Current Hot Check: With the instrument completely reassembled, plug the AC line cord directly into a 230V
AC outlet. (Do not use an isolation transformer during this test.) Use a leakage current tester or a metering system. With the instrument AC, first switch ON and then OFF. Measure from a known earth ground (metal waterpipe, conduit, etc.) to all exposed metal parts of the instrument (antennas, handle bracket, metal cabinet, screwheads, metallic overlays, control shafts, etc.), especially any exposed metal parts that offer an electrical return path to the chassis. Any current measured must not exceed 3.5 mA. Reverse the instrument power cord plug in the outlet and repeat test. ANY MEASUREMENTS NOT WITHIN THE LIMITS SPECIFIED HEREIN INDICATE A POTENTIAL
SHOCK HAZARD THAT MUST BE ELIMINATED BEFORE RETURNING THE INSTRUMENT TO THE CUSTOMER.
2. Read and comply with all caution and safety-related notes on or inside the Monitor cabinet, on the Projection Monitor
chassis or on the picture tube.
+-
Test all exposed metal surfaces
3. Wire cord
Also test with plug reversed (using AC adapter plug as required)
Device
under
test
Earth ground
Leakage
current
tester
AC Leakage test
(Reading
should not
be above
3.5 mA)
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First issue 10 / 04 5
3. Design Alteration Warning: Do not alter or add to the mechanical or electrical design of this unit. Design alterations and additions, including, but not limited to, circuit modifications and the addition of the items such as auxiliary audio and/or video output connections might alter the safety characteristics of this Projection Monitor and create a hazard to the user. Any design alterations or additions will void the manufacturer's warranty and will make you, the service, responsible for personal injury or property damage resulting therefrom.
4. Hot Chassis Warning:
a. Some Monitor chassis are electrically connected directly to one conductor of the AC power cord and may be safely
serviced without an isolation transformer only if the AC power plug is inserted so that the chassis is connected to the ground side of the AC power source. To confirm that the AC power plug is inserted correctly, with an AC voltmeter measure between the chassis and a known earth ground. If a voltage reading in excess of 1.0V is obtained, remove and reinsert the AC power plug in opposite polarity and again measure the voltage potential between the chassis and a known earth ground.
b. Some Monitor chassis normally have 85V AC (RMS.), between chassis and earth ground regardless of the AC plug
polarity. These chassis can be safely serviced only with an isolation transformer inserted in the power line between the receiver and the AC power source, for both personnel and test equipment protection.
c. Some Projection Monitor chassis have a secondary ground system in addition to the main chassis ground. This
secondary ground system is not isolated from the AC power line. Insulating material that must not be defeated or altered electrically separates the two ground systems.
5. Observe original lead dress. Take extra care to assure correct lead dress in the following areas:
a. near sharp edges, b. near thermally hot parts (be sure that leads and components do not touch thermally hot parts), c. the AC supply, d. high voltage, e. antenna wiring. Always inspect in all areas for pinched, out-of-place, or frayed wiring. Do not change spacing
between components and between components and the printed-circuit board. Check AC powers cord for damage.
6. Components, parts, and/or wiring that appear to have overheated or are otherwise damaged should be replaced with components, parts, or wiring that meet original specifications. Additionally, determine the cause of overheating and/or damage and, if necessary, take corrective action to remove any potential safety hazard.
7. PRODUCT SAFETY NOTICE: Many Monitor electrical and mechanical parts have special safety-related characteristics some of which are often not evident from visual inspection, nor can the protection they give necessarily be obtained by replacing them with components rated for higher voltage, wattage, etc. Parts that have special safety characteristics are identified in this service data by shading with a mark on schematics. Use of a substitute replacement part that does not have the same safety characteristics as the recommended replacement part in this service data parts list might create shock, fire, and/or other hazards.
Page 6
1. Removing the Leg Tube Assembly
Unscrew 4 screws from "Leg Tube Assembly." (Specification of screw driver is 15± 2kg), see fig.1
Push the "Leg Tube Assembly." downward to unlock and pull it away from unit, then unscrew 4 screws from rear cover. (Specification of screw -driver is 15± 2 kg),
6 First issue 10 /04
Fig. 1
Fig. 2
HOW TO EXCHANGE THE MASK & PANEL PROCEDURE
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First issue 10 / 04 7
2. Removing the rear cover
Unscrew 12 screws from rear cover, see red arrow (Specification of screw driver is 15± 2 kg) Unscrew 8 screws from rear cover, and unscrew 2 screws from AC power socket, see red arrow (Specification of screw driver is 9± 1 kg) Unscrew 4 screws from rear cover, see red circle (Specification of screw driver is 15± 2 kg)
3. Removing the screws from panel:
Unscrew 20 pieces of screw from panel site (Specification of screw driver is 15± 2 kg)
10 screws
12 screws
4 screws
Fig. 3
20 screws
Fig. 4
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8 First issue 10 /04
4. Removing the Mask and the J5 cable from PCB
5. Removing the filter
Unscrew 10 screws from mask (Specification of screw driver is 15± 2 kg), then remove four angles that hold the PDP filter. (Be careful: Please do not bump or scrape when handling the PDP filter.) Before putting panel back clean PDP filter make sure it's free from dust.
Unscrew 3 screws and remove control board
3 screws
Fig. 6
Fig. 7
J5
Fig. 5
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First issue 10 / 04 9
Remove the Control buttons from old Mask and reinstall them on the new Mask.
Please to aim at red arrow to guide and there is have a channel when you put down glass back to new mask
Assemble 4 irons back to mask. Be careful: When you lock up 4 irons that screws should be to lock up on "SL&G" point.
6. Proceed in reverse order to re-assemble
Control buttons
Fig. 8
Fig. 9
Top side
Top bottom
Fig. 10
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10 First issue 10 /04
TROUBLESHOOTING
No power
Switch the
power on
Check "Power Switch" module
Not correct
Correct
Replace
"Power Switch"
module
Replace
"Main Power"
module
End
End
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First issue 10 / 04 11
No picture
Check Image board
Not correct
Correct
Replace
Image board
Replace
PDP module
End
End
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12 First issue 10 /04
Vertical line fail
Check XR Board
Check Logic Board
Not correct
Correct
Not correct
Correct
Replace
XR
Board
Replace
Logic Board
Replace
PDP module
End
End
End
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First issue 10 / 04 13
Horizontal line fail
Check Y-SUS Board
Check Y DRV-Top
Not correct
Correct
Not correct
Correct
Replace
Y-SUS
Board
Replace
Y DRV-Top
Replace
PDP module
End
Check Z-SUS Board
Not correct
Correct
Replace
Z-SUS
Board
End
End
Check Y DRV-Bottom
Not correct
Correct
Replace Y
DRV-Bottom
End
End
Page 14
14 First issue 10 /04
No command
Switch the
power on
Check remote control
Check Front Button
Control Board
Not correct
Correct
Not correct
Correct
Replace the battery or the remote control
Replace
Front Button
Control Board
Replace Image
Board
End
End
End
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First issue 10 / 04 15
ADJUSTMENTS
PANEL voltage adjustment
1.1 Origin Power (PLG-421)
1. POWER ON
2. Signal Source: No (black screen).
3. Connect Digital Voltage Meter (-) to Panel GND. Connect Digital Voltage Meter (+) to Plug CN806 Pin#10 and adjust the VA (Variable Resistor RV204) value to the VA value recorded on the Panel Voltage Label ±0.5VDC (VA ± 0.5VDC= value adjusted).
4. Connect Digital Voltage Meter (-) to Panel GND. Connect Digital Voltage Meter (+) to Plug CN806 Pin#1 and adjust the VS (Variable Resistor RV203) value to the VS value recorded on the Panel Voltage Label ±0.5VDC (VS ± 0.5VDC= value adjusted).
Remark: The Panel Voltage Label is located at the upper- right corner of the panel.
CN806
RV203
RV204
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16 First issue 10 /04
1.2 Dae Gil Power (DGK-420W)
1. POWER ON
2. Signal Source: No (black screen).
3. Connect Digital Voltage Meter (-) to Panel GND. Connect Digital Voltage Meter (+) to Plug CN806 Pin#10 and adjust the VA (Variable Resistor) value to the VA value recorded on the Panel Voltage Label ± 0.5VDC (VA ± 0.5VDC= value adjusted).
4. Connect Digital Voltage Meter (-) to Panel GND. Connect Digital Voltage Meter (+) to Plug CN806 Pin#1 and adjust the VS (Variable Resistor) value to the VS value recorded on the Panel Voltage Label ± 0.5VDC (VS ± 0.5VDC= value adjusted).
Remark: The Panel Voltage Label is located at the upper-right corner of the panel.
Color Temperature Adjustment
1.1 Color Temperature setting in DVI Mode
1. Turn on PDP set and warm up for over 30 minutes.
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First issue 10 / 04 17
2. Turn on Color Analyzer CA-100 and reset CA-100.
3. Switch PDP input signal source to DVI mode.
4. Set up Video Pattern Generator (Astro, Model= VG-828H). Timing set = 640 x 480 @ 60Hz; Video = Panel Link (the DVI output mode) Connect PDP DVI input connector with Astro to receive DVI signal.
5. Dark level and bright level center block definition: A. Dark level center block definition:
[WINDOW] Mode % Format 1 Window Flicker None Size H/V 28.5/34.0 (%) Analog R/G/B 25/25/25 (10 IRE white output pattern)
B. Bright level center block definition:
[WINDOW] Mode % Format 1 Window Flicker None Size H/V 28.5/34.0 (%) Analog R/G/B 153/153/153 (60 IRE white output pattern)
6. There are 4 different modes (DVI / RGB / AV / YPBPR) color temperature setting; there are 3 different color temperatures
(7180K, 8680K and 10180K) in each mode. Each color temperature needs to adjust dark level, bright level, and R, G, B.
The OSD menu for color temperature factory setting can be viewed by following the ”Factory Setting Procedure”. Factory Setting Procedure: A. Press (Zoom -) key for over 5 seconds and release. B. Press (Zoom+) key for over 5 seconds and release. C. Press ”ok” key. D. Factory setting OSD menu shows up. The values shown up on the OSD menu are the factory default setting values.
The factory default setting values differ from each PDP panel module. The color temperature factory setting OSD menus are as the following:
*Note: When adjusting the color temperature, please note
what is the input source and what input the PDP is, the input source and the PDP input mode should be the same.
7. Put the color analyzer CA-100 in the center of the screen.
A. 7180K
DV I -CT : 718 0
K
[x : 3 0 8 y : 2 9 8] GA IN B IAS RG B RG B
xx xx xx xx xx xx
xx xx
B. 8680K
DV I -CT : 868 0
o
K
[x : 2 8 8 y : 3 0 1] GA IN B IAS RG B RG B
xx xx xx xx xx xx
xx xx
C. 10180K
DV I -CT :10180
o
K
[x : 2 7 0 y : 2 9 2] GA IN B IAS RG B RG B
xx xx xx xx xx xx
xx xx
(GAIN Gamma) (BIAS Gamma)
Page 18
18 First issue 10 /04
1.2 Adjusting procedure
1. Receive Astro VG-828H DVI dark level center block signal (14 IRE), follow the ”Factory Setting Procedure” to go into factory setting mode and you will see the 7180K color temperature setting OSD menu.
2. 7180K dark level center block adjustment procedure: A. Press (Zoom -) or (Zoom+) key in remote control to select G-BIAS, and adjust Y=0.4 FL±0.1FL B. Press(Zoom -) or (Zoom+) key in remote control to select R-BIAS, and adjust x=308±15FL C. Press (Zoom -) or (Zoom+) key in remote control to select B-BIAS, and adjust y=298±15FL D. Adjust R/G/B-BIAS, make sure the final value x=308±15FL, y=298±15FL, Y=0.4FL±0.1FL
3. 7180K bright level center block adjustment procedure: (Please set Astro VG-828H DVI bright level center block signal to 60 IRE) A. Press (Zoom -) or (Zoom+) key in remote control to select G-GAIN, and adjust Y=40±2FL B. Press (Zoom -) or (Zoom+) key in remote control to select R-GAIN, and adjust x=308±15FL C. Press (Zoom -) or (Zoom+) key in remote control to select B-GAIN, and adjust y=298±15F D. Adjust R/G/B-GAIN, make sure the final value x=308±15FL, y=298±15FL, Y=40±2FL. E. Press (Zoom+) key in remote control to select GAIN Gamma, and then press (Zoom -) or (Zoom+) key to adjust to Y=40 F. Press (Zoom+) key in remote control to select BIAS Gamma, and then press (Zoom -) or (Zoom+) key to adjust to Y=0.4
4. When you want to go ahead for next color temperature setting, double check the Gamma values, make sure GAIN Gamma and BIAS Gamma values are correct, and then press the ”ok” key in remote control. For each color temperature setting, please repeat the procedure (1)-(3). Only x and y value will change in different color temperature mode (in 8680K, x=288, y=301; in 10180K, x=270, y=292) and Y values are all the same in each color temperature mode (dark level Y=0.4, bright level Y=40).
2.1 Color Temperature setting in RGB Mode
1. Turn on Color Analyzer CA-100 and reset CA-100.
2. Switch PDP input signal source to RGB mode.
3. Set up Video Pattern Generator (Astro, Model= VG-828H). Timing set = 640 x 480 @ 60Hz; Video = Analog (the RGB output mode) Connect PDP RGB input connector with Astro to receive RGB signal.
4. Dark level and bright level center block definition: A. Dark level center block definition:
[WINDOW] Mode % Format 1 Window Flicker None Size H/V 28.5/34.0 (%) Analog R/G/B 25/25/25 (10 IRE white output pattern)
B. Bright level center block definition:
[WINDOW] Mode % Format 1 Window Flicker None Size H/V 28.5/34.0 (%) Analog R/G/B 153/153/153 (60 IRE white output pattern)
5. There are 4 different modes (DVI / RGB / AV / YPBPR) need color temperature setting; there are 3 different color temperatures (7180K, 8680K and 10180K) in each mode. Each color temperature needs to adjust dark level, bright level, and R, G, B. The OSD menu for color temperature factory setting can be viewed by following the ”Factory Setting Procedure”.
Page 19
First issue 10 / 04 19
Factory Setting Procedure: A. Press (Zoom -) key for over 5 seconds and release. B. Press (Zoom+) key for over 5 seconds and release. C. Press ”ok” key. D. Factory setting OSD menu shows up. The values showed up on the OSD menu are the factory default setting values. The factory default setting values differ from each PDP panel module. The color temperature factory setting OSD menus are as the following:
*Note: GAIN Gamma and BIAS Gamma have no function under RGB mode. *Note: When adjusting the color temperature, please note what is the input source and what input the PDP is, the input source and the PDP input mode should be the same.
6. Put the color analyzer CA-100 in the center of the screen.
2.2 Adjusting procedure:
1. Receive Astro VG-828H RGB dark level center block signal (14 IRE), follow the ”Factory Setting Procedure” to go into factory setting mode and you will see the 7180K color temperature setting OSD menu.
2. 7180K dark level center block adjustment procedure: A. Press (Zoom -) or (Zoom+) key in remote control to select G-BIAS, and adjust Y=0.5 FL±0.1FL B. Press (Zoom -) or (Zoom+) key in remote control to select R-BIAS, and adjust x=308±15FL C. Press (Zoom -) or (Zoom+) key in remote control to select B-BIAS, and adjust y=298±15FL D. Adjust R/G/B-BIAS, make sure the final value x=308±15FL, y=298±15FL, Y=0.5FL±0.1FL
3. 7180K bright level center block adjustment procedure: (Please set Astro VG-828H RGB bright level center block signal to 60 IRE) A. Press (Zoom -) or (Zoom+) key in remote control to select G-GAIN, and adjust Y=40±2FL B. Press (Zoom -) or (Zoom+) key in remote control to select R-GAIN, and adjust x=308±15FL C. Press (Zoom -) or (Zoom+) key in remote control to select B-GAIN, and adjust y=298±15F D. Adjust R/G/B-GAIN, make sure the final value x=308±15FL, y=298±15FL, Y=40±2FL.
4. When you want to go ahead for next color temperature setting, double check the Gamma values, make sure GAIN Gamma and BIAS Gamma values are correct, and then press the ”ok” key in remote control. For each color temperature setting, please repeat the procedure (1)-(3). Only x and y value will change in different color temperature mode (in 8680K, x=288, y=301; in 10180K, x=270, y=292) and Y values are all the same in each color temperature mode (dark level Y=0. 5, bright level Y=40).
3.1 Color Temperature setting in AV Mode
1. Turn on Color Analyzer CA-100 and reset CA-100.
A. 7180K
RGB -CT : 7 1 8 0
o
K
[x : 3 08 y :298]
GA IN B IAS
RG B RG B
xx xx Xx xx xx xx
xx xx
B. 8680K
RGB -CT : 8 6 8 0
o
K
[x : 2 88 y :301]
RGB-CT: 1
[x : 2 70 y :
GA IN B IAS
RG B R
GA IN B
RG B RGB
Xx xx Xx xx xx xx
xx xx
C. 10180K
0180
o
K
:292] IAS
GB
xx xx xx x xx xx
xx xx
(GAIN Gamma) (BIAS Gamma)
Page 20
20 First issue 10 /04
2. Switch PDP input signal source to AV mode.
3. Set up Video Pattern Generator (Astro, Model= VG-828H). Timing set = 640 x 480 @ 60Hz; Video = Analog (the AV output mode) Connect PDP AV input connector with Astro to receive AV signal.
4. Dark level and bright level center block definition: A. Dark level center block definition:
[WINDOW] Mode % Format 1 Window Flicker None Size H/V 28.5/34.0 (%) Analog R/G/B 25/25/25 (10 IRE white output pattern)
B. Bright level center block definition:
[WINDOW] Mode % Format 1 Window Flicker None Size H/V 28.5/34.0 (%) Analog R/G/B 153/153/153 (60 IRE white output pattern)
5. There are 4 different modes (DVI / RGB / AV / YPBPR) need color temperature setting; there are 3 different color temperatures (7180K, 8680K and 10180K) in each mode. Each color temperature needs to adjust dark level, bright level, and R, G, B. The OSD menu for color temperature factory setting can be viewed by following the ”Factory Setting Procedure”.
Factory Setting Procedure: A. Press (Zoom -) key for over 5 seconds and release. B. Press (Zoom+) key for over 5 seconds and release. C. Press ”ok” key. D. Factory setting OSD menu shows up. The values showed up on the OSD menu are the factory default setting values. The factory default setting values differ from each PDP panel module.
6. Put the color analyzer CA-100 in the center of the screen.
3.2 Adjusting procedure:
1. Receive Astro VG-828H AV dark level center block signal (14 IRE), follow the ”Factory Setting Procedure” to go into factory setting mode and you will see the 7180K color temperature setting OSD menu.
2. 7180K dark level center block adjustment procedure: A. Press (Zoom -) or (Zoom+) key in remote control to select G-BIAS, and adjust Y=1.0 FL±0.1FL B. Press (Zoom -) or (Zoom+) key in remote control to select R-BIAS, and adjust x=308±15FL C. Press (Zoom -) or (Zoom+) key in remote control to select B-BIAS, and adjust y=298±15FL D. Adjust R/G/B-BIAS, make sure the final value x=308±15FL, y=298±15FL, Y=1.0FL±0.1FL
3. 7180K bright level center block adjustment procedure: (Please set Astro VG-828H RGB bright level center block signal to 60 IRE) A. Press (Zoom -) or (Zoom+) key in remote control to select G-GAIN, and adjust Y=40±2FL B. Press (Zoom -) or (Zoom+) key in remote control to select R-GAIN, and adjust x=308±15FL C. Press (Zoom -) or (Zoom+) key in remote control to select B-GAIN, and adjust y=298±15F D. Adjust R/G/B-GAIN, make sure the final value x=308±15FL, y=298±15FL, Y=40±2FL.
4. When you want to go ahead for next color temperature setting, double check the Gamma values, make sure GAIN Gamma
Page 21
First issue 10 / 04 21
and BIAS Gamma values are correct, and then press the ”ok” key in remote control. For each color temperature setting, please repeat the procedure (1)-(3). Only x and y value will change in different color temperature mode (in 8680K, x=288, y=301; in 10180K, x=270, y=292) and Y values are all the same in each color temperature mode (dark level Y=1.0, bright level Y=40).
4 .1 Color Temperature setting in YPBPR Mode
1. Turn on Color Analyzer CA-100 and reset CA-100.
2. Switch PDP input signal source to YPBPR mode.
3. Set up Video Pattern Generator (Astro, Model= VG-828H). Timing set = 640 x 480 @ 60Hz; Video = Analog (the YPBPR output mode) Connect PDP YPBPR input connector with Astro to receive YPBPR signal.
4. Dark level and bright level center block definition: A. Dark level center block definition:
[WINDOW] Mode % Format 1 Window Flicker None Size H/V 28.5/34.0 (%) Analog R/G/B 25/25/25 (10 IRE white output pattern)
B. Bright level center block definition:
[WINDOW] Mode % Format 1 Window Flicker None Size H/V 28.5/34.0 (%) Analog R/G/B 153/153/153 (60 IRE white output pattern)
5. There are 4 different modes (DVI / RGB / AV / YPBPR) need color temperature setting; there are 3 different color temperatures (7180K, 8680K and 10180K) in each mode. Each color temperature needs to adjust dark level, bright level, and R, G, B. The OSD menu for color temperature factory setting can be viewed by following the ”Factory Setting Procedure”.
Factory Setting Procedure: A. Press (Zoom -) key for over 5 seconds and release. B. Press (Zoom+) key for over 5 seconds and release. C. Press ”ok” key. D. Factory setting OSD menu shows up. The values showed up on the OSD menu are the factory default setting values. The factory default setting values differ from each PDP panel module.
6. Put the color analyzer CA-100 in the center of the screen.
4.2 Adjusting procedure:
1. Receive Astro VG-828H YPBPR dark level center block signal (14 IRE), follow the ”Factory Setting Procedure” to go into
factory setting mode and you will see the 7180K color temperature setting OSD menu.
2. 7180K dark level center block adjustment procedure: A. Press (Zoom -) or (Zoom+) key in remote control to select G-BIAS, and adjust Y=1.1 FL±0.1FL B. Press (Zoom -) or (Zoom+) key in remote control to select R-BIAS, and adjust x=308±15FL C. Press (Zoom -) or (Zoom+) key in remote control to select B-BIAS, and adjust y=298±15FL D. Adjust R/G/B-BIAS, make sure the final value x=308±15FL, y=298±15FL, Y=1.1 FL±0.1FL
Page 22
22 First issue 10 /04
3. 7180K bright level center block adjustment procedure: (Please set Astro VG-828H RGB bright level center block signal to 60 IRE) A. Press (Zoom -) or (Zoom+) key in remote control to select G-GAIN, and adjust Y=41±2FL B. Press (Zoom -) or (Zoom+) key in remote control to select R-GAIN, and adjust x=308±15FL C. Press (Zoom -) or (Zoom+) key in remote control to select B-GAIN, and adjust y=298±15F D. Adjust R/G/B-GAIN, make sure the final value x=308±15FL, y=298±15FL, Y=41±2FL.
4. When you want to go ahead for next color temperature setting, double check the Gamma values, make sure GAIN Gamma and BIAS Gamma values are correct, and then press the ”ok” key in remote control. For each color temperature setting, please repeat the procedure (1)-(3). Only x and y value will change in different color temperature mode (in 8680K, x=288, y=301; in 10180K, x=270, y=292) and Y values are all the same in each color temperature mode (dark level Y=1.1, bright level Y=41).
SPECIFICATIONS
Pin assignments
D-SUB Connector
DVI-Connector
1
15
9
15
824
610
11 15
Pin Pin PinSignal Signal Signal
Pin Pin PinSignal Signal Signal
1
2
3
4
5
RED
GREEN
BLUE
GND
GND
RED GND
GREEN GND
BLUE GND
NC
GND
GND
SDA
H_SYNC
V_SYNC
SCL
6
7
8
9
10
11
12
13
14
15
1
2
3
4
5
6
7
8
TMDS Data 2-
TMDS Data 2+
TMDS Data
2/4Shield
TMDS Data 4-
TMDS Data 4+
DDC Clock
DDC Data
NC
TMDS Data 0-
TMDS Data 0+
TMDS Data
0/5 Shield
TMDS Data 5-
TMDS Data 5+
TMDS Clock
Shield
TMDS Clock+
TMDS Clock-
TMDS Data 1-
TMDS Data 1+
TMDS Data
1/3 Shield
TMDS Data 3-
TMDS Data 3+
+5V Power
GND (for +5V)
Hot Plug
Detect
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
Page 23
First issue 10 / 04 23
Mode list for RGB / DVI
Note: 1. * : DVI is not supported.
2. Mode 24 to 26 are for use with Apple Macintosh computers.
Y/PB/PR for component
Refresh Horizontal Vertical Vertical Horizontal
Mode No Resolution Rate Frequency Frequency Sync Sync Dot rate
Polarity Polarity
(Hz) (K Hz) (Hz) (TTL) (TTL) (MHz) 1 640(VGA)x480 60 31.5 59.94 - - 25.175 2 640(VGA)x480 72 37.9 72.81 - - 31.500
3 640(VGA)x480 75 37.5 75 - - 31.500 4 640(VGA)x480 85 43.3 85.01 - - 36.000 5 800(SVGA)x600 56 35.1 56.25 + + 36.000 6 800(SVGA)x600 60 37.9 60.317 + + 40.000 7 800(SVGA)x600 72 48.1 72.19 + + 50.000 8 800(SVGA)x600 75 46.9 75 + + 49.500 9 800(SVGA)x600 85 53.7 85.06 + + 56.250
10 1024(XGA)x768 60 48.4 60.01 - - 65.000 11 1024(XGA)x768 70 56.5 70.07 - - 75.000 12 1024(XGA)x768 75 60.0 75.03 + + 78.750 13 1024(XGA)x768 85 68.7 84.99 + + 94.500
14 1280(SXGA)x1024 60 63.98 60.02 + + 108.00 15* 1280(SXGA)x1024 75 79.98 75.03 + + 135.00 16* 1280(SXGA)x1024 85 91.15 85.02 + + 157.50
18 720(DOS)x400 70 31.46 70.08 + - 28.320
19 640(VGA)x480 50 31.5 50 - - 25.175 20* 1280(HDTV)x720P 60 45.15 60 - - 74.250 21* 1920(HDTV)x1080I 60(I) 33.75 60 - - 74.250
22 640(VGA)x350 70 31.50 70 - + 25.175
23 852(WGA)x480 60 31.413 59.835 - - 30.00
24 640x480 67 35.00 66.67 - - 30.240
25 832 x 624 75 49.73 74.55 - - 57.283
26 1152 x 870 75 68.68 75.06 - - 100.000
Mode No Resolution Refresh Rate
1 640x480P 60 Hz 2 1920x1080I 60 Hz
3 1280x720P 60 Hz 4 720x576P 50 Hz 5 1920x1080I 50 Hz 6 1280x720P 50 Hz
Page 24
24 First issue 10 /04
APPENDIX A : Preset Timing Chart
Item Description:
A Total time B Active display area including borders C Active display area excluding borders D Left/Top border E Right/bottom border
F Blanking time G Front porch H Sync -width
I Back porch
Mode No 1 2 3 4 5 6 7 8 9
Resolution & Refresh Rate
640 480
60
640 480
72
640 480
75
640 480
85
800 600
56
800 600
60
800 600
72
800 600
75
800 600
85
Hz Pixel clock 25.175 31.5 31.5 36 36 40 50 49.5 56.25 MHz Horizontal visible 640 640 640 640 800 800 800 800 800 Dots Horizontal total 800 832 840 832 1024 1056 1040 1056 1048 Dots Horizontal front porch 16 24 16 56 24 40 56 16 32 Dots Horizontal sync 96 40 64 56 72 128 120 80 64 Dots Horizontal back porch 48 128 120 80 128 88 64 160 152 Dots Horiz blanking time 160 192 200 192 224 256 240 256 248 Dots Vertical visible 480 480 480 480 600 600 600 600 600 Lines Vertical total 525 520 500 509 625 628 666 625 631 Lines Vertical front porch 10 9 1 1 1 1 37 1 1 Lines Vertical sync 2 3 3 3 2 4 6 3 3 Lines Vertical back porch 33 28 16 25 22 23 23 21 27 Lines Vertical blanking time 45 40 20 29 25 28 66 25 31 Lines Horizontal frequency 31.469 37.861 37.5 43.269 35.156 37.879 48.077 46.875 53.674 kHz Vertical frequency 59.94 72.809 75 85.008 56.25 60.317 72.188 75 85.061 Hz Vertical sync polarity - - - - + + + + + TTL Horiz sync polarity - - - - + + + + + TTL
Page 25
First issue 10 / 04 25
Mode No 10 11 12 13 14 15 16 18 19 Resolution & Refresh Rate
1024
768
60
1024
768
70
1024
768
75
1024
768
85
1280 1024
60
1280 1024
75
1280 1024
85
720 400
70
640 480
50 Hz Pixel clock 65 75 78.75 94.5 108 135 157.5 28.320 25.175 MHz Horizontal visible 1024 1024 1024 1024 1280 1280 1280 720 640 Dots Horizontal total 1344 1328 1312 1376 1688 1688 1728 900 800 Dots Horizontal front porch 24 24 16 48 48 16 64 18 16 Dots Horizontal sync 136 136 96 96 112 144 160 108 96 Dots Horizontal back porch 160 144 176 208 248 248 224 54 48 Dots Horiz blanking time 320 304 288 352 408 408 448 180 160 Dots Vertical visible 768 768 768 768 1024 1024 1024 400 480 Lines Vertical total 806 806 800 808 1066 1066 1072 449 629 Lines Vertical front porch 3 3 1 1 1 1 1 12 62 Lines Vertical sync 6 6 3 3 3 3 3 2 2 Lines Vertical back porch 29 29 28 36 38 38 44 35 85 Lines Vertical blanking time 38 38 32 40 42 42 48 49 149 Lines Horizontal frequency 48.364 56.476 60.023 68.677 63.981 79.976 91.146 31.469 31.469 kHz Vertical frequency 60.004 70.069 75.029 84.997 60.020 75.025 85.024 70.087 50.030 Hz Vertical sync polarity - - + + + + + + - TTL Horiz sync polarity - - + + + + + - - TTL
Mode No 20 21 22 23 24 25 26 Resolution & Refresh Rate
1280
720P
60
1920
1080I
60I
640 350
70
852 480
60
640 480
67
832 624
75
1152
870
75
Hz Pixel clock 74.250 74.25 25.175 30 30.24 57.283 100.000 MHz Horizontal visible 1280 1920 640 852 640 832 1152 Dots Horizontal total 1650 2200 800 955 864 1152 1456 Dots Horizontal front porch 110 88 16 19 64 32 32 Dots Horizontal sync 40 44 96 48 64 64 128 Dots Horizontal back porch 220 148 48 36 96 224 144 Dots Horiz blanking time 370 280 160 103 224 320 304 Dots Vertical visible 720 540 350 480 480 624 870 Lines Vertical total 750 562.5 449 525 525 667 915 Lines Vertical front porch 5 3 37 10 3 1 3 Lines Vertical sync 5 5 2 2 3 3 3 Lines Vertical back porch 20 15 60 33 39 39 39 Lines Vertical blanking time 30 23 99 45 45 43 45 Lines Horizontal frequency 45.000 33.750 31.469 31.414 35.000 49.725 68.681 kHz Vertical frequency 60 60 70.087 59.835 66.667 74.55 75.062 Hz Vertical sync polarity - - - - - - - TTL Horiz sync polarity - - + - - - - TTL
Page 26
First issue 06 / 04 26
WIRING DIAGRAM
Power SW
CN02
P21
J1
JP4
(Key)
AC IN
Image Board Ass'y
(9V)
(RLYON VSON)
(24V,9V)
AV Module Board(with Tuner) Assy
CN802/CN809
J11
(5V,SB DET)
Logic Board
JA2
J28
CN803
(Audio DC,Supply)
J14
J21
JA3
(Audio Signal)
CN801
Main Power
Y-SUS
AC Filter
JP5
(5V)
AC_IN
JP2
Front Button Control Board Assy
Y DRV_TOP
Z-SUS
Audio Amplifier Board Ass'y
JA1
J5
J25
J12
J15
JP1
Y DRV_BOTTOM
CN03
XR BOARD
(TMDS)
PDP Module
Page 27
27 First issue 10 / 04
BLOCK DIAGRAM
P A N E L
IC7
LVDS
TRANSMITTER
IC3
AD
Converter
SIL161 DVI
MULTIPLEX
SWITCH
C
C711/C713
MULTIPLEX
SWITCH
Y
U23
MAIN Board Signal Block Diagram
PB1_CB1
VIDEO
C
U32
YPBPR
Y
U29
TA1276
Color Space
Conveter
YCBCR
R,G,B
U46
6630/6730 SUB Video Porcessor
YP BPR(DOUBLE SCAN)
U45
6630/6730
MAIN Video
Processor
CPU
MULTIPLEX
SWITCH
IC1
U4
U43
IC2
TA8551CH
AV
SWITCH
SCALE IC
SDRAM
Clock
Generator
9161A(PLL)
DVI IN
MULTIPLEX
SWITCH
U34
RGB I/P
Connector
SDRAM
SDRAM
Philips
UOC
R
TA1287P G B
RGB TO
YUV
Y2 CB2 CR2
R G
FB
SCART
B
Y
Comb filter
C
TDA9181
TV_CVBS
74HC211
HOUT
VDRA
74HC4538
TV_CVBS
S-VIDEO
TUNER
TU1
ICT5
ICT6
ICT8
ICT9
ICT7
CVBSO
U48,49
U50,51
U25,26,27
JP4
JPT1
JP4JPT1
S-VIDEO TV_CVBS
COMPOSITE(AV)
COMPOSITE(AV)
COMPOSITE(AV)
S-VIDEO Connecter
Component Connecter
Monostable
Multivibrator
Monostable
Multivibrator
CR2
CB2
Y2
Y1
PR1_CR1
(48 Pin)
(48 Pin) (48 Pin)
(48 Pin)
(48 Pin)
JP4
JPT1
(48 Pin)
PR1_CR1
PB1_CB1
Y1
Tuner Board Signal Block Diagram
RGB O/P
Connector
RS232
Connector
74HC4053
ICT11
H V
R
B
G
for SUB-picture
YCBCR
LH
COMP.UOC
CON1 CON2 CON3
IC3
CON3
H
L
CON2
IC7
UOCCOMP.
CON1
CON3
COMP.
I/P
HIC2
CON1 CON2 Trident
L
(480P720P1080I)
Page 28
First issue 10 / 04 28
TUNER BOARD SCHEMATIC DIAGRAM: TUNER & MSP
SIF
P9V P[4,5]
SCL2P[3,5]
SDA2P[3,5]
D_CTLP[5]
SCL2P[3,5]
SDA2P[3,5]
RESETQP[5]
5V_MTS1P[3,4]
S2_LP[2]
S2_RP[2]
SOUND_IN _LP[2]
SOUND_IN _RP[2]
9V G ND
MTS GND
DVI_L P[2]
DVI_R P[2]
YUV_L P[2]
YUV_R P[2]
SD P[5]
AUX_OUT_R P[2]
AUX_OUT_L P[2]
SOUND_OUT_RP[2]
DACM_R P[5]
SOUND_OUT_L P[2]
DACM_L P[5]
SCART_OUT_CVBSP[2]
TV P[3,5]
TPT1
A
A
A
A
A
A
A
A
SB5V_CPU
D
SB2V5
V
V
V
SB2V5
P9V
P9V
RT7
4.7K
1/16W
RT6 22K
1/16W
RT32
3.3K 1/16W
CT36 1000PF 50V
RT202
68
1/16W
DT2 RLS4148
ICT3
MSP3450G
123456789
101112131415161718192021222324
6463626160595857565554535251504948474645444342
41
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
40
39
38
37
36
35
34
33
32
31
30
29
28
27
26
25
NC
I2C_CL
I2C_DA
I2S_CL
I2S_WS
I2S_DA_OUT
I2S_DA_IN1
ADR_DA
ADR_WS
ADR_CL
DVSUP
DVSUP
DVSUP
DVSS
DVSS
DVSS
I2S_DA_IN2NCNCNCRESETQNCNC
DACA_R
NC
NC
AVSS
AVSS
MONO_IN
NC
VREFTOP
SC1_IN_R
SC1_IN_L
ASG
SC2_IN_R
SC2_IN_L
ASG
SC3_IN_R
SC3_IN_L
ASG
SC4_IN_R
SC4_IN_L
NC
AGNDC
AHVSS
AHVSS
NC
NC
AVSUP
AVSUP
ANA_IN1+
ANA_IN-
ANA_IN2+
TESTEN
XTAL_IN
XTAL_OUT
TP
AUD_CL_OUT
NC
NC
D_CTR_I/O_1
D_CTR_I/O_0
ADR_SEL
STBYQ
CAPL_M
AHVSUP
CAPL_A
SC1_OUT_L
SC1_OUT_R
VREF1
SC2_OUT_L
SC2_OUT_R
NC
NC
DACM_SUB
NC
DACM_L
DACM_R
VREF2
DACA_L
T
CT26
100PF
50V
+
CT38 10uF 50V
T
CT34 100PF 50V
T
CT22
100PF
50V
RT46 330 1/16W
CT33
0.47uF
16V
CT74
1000PF
50V
RT50 1001/16W
RT18 100 1/16W
LT1 330uH
RT49 1001/16W
T
CT60 5PF 50V D
CT17
0.01uF 50V
RT40 15K 1/16W
T
CT19 100PF 50V
DT1 RLS4148
+
CT157 10uF 50V
RT22 47K 1/16W
RT12 1K 1/16W
RT27
100
1/16W
ICT2 NJM7805FA
1
2
3
VIN
GND
VOUT
PLT4
10uH
RT52
330
1/16W
RT5 470 1/16W
RT39
5.6 3W
T
CT31 100PF 50V
CT7
0.01uF 50V
QT1 2SA1037KQ
+
CT189 47uF 16V
T CT2 56PF 50V
T
CT76 470PF 50V
+
CT51 100uF 16V
T
CT48 470PF
50V
RT54
0
1/16W
RT29
3.3K 1/16W
+ CT11
100uF 16V
ICT1 LA7213
12345
VIDEO IN
H.D. OUT
GND
V.D. OUT
VCC
CT180
0.1uF 16V
T
CT64 100PF
50V
ZDT1 UDZ3.0B
DT8 RLS4148
RT208 15K 1/16W
+
CT56
2.2uF
50V
CT43
0.1uF 16V
CT12
0.01uF 50V
RT19
2.2K 1/16W
T
CT35 100PF 50V
+
CT40
3.3uF 50V
RT36
3.3K 1/16W
CT73
1000PF
50V
CT20
0.47uF 16V
FBT3 200
QT6 2SC2412KBQ
T
CT23
100PF
50V
RT17
15K
1/16W
P
LT2 10uH
CT77
0.1uF
16V
+
CT55 10uF
50V
+
CT6 10uF 50V
RT24 10 1/16W
RT47 0 1/16W
P
LT12 15uH
T
CT62 100PF 50V
+
CT49 100uF 16V
+
CT41 100uF
16V
CT21
0.47uF 16V
DT7 RLS4148
+
CT53 10uF
50V
T
CT30
100PF
50V
QT4 2SC2412KBQ
QT15 2SC2412KBQ
RT8
4.7K 1/16W
T
CT57 56PF 50V
FBT4 200
CT29
0.47uF 16V
RT160 22 1/16W
RT206 10K 1/16W
+
CT190 47uF 16V
CT15 1uF 10V Z
T
CT63 100PF
50V
+
CT78 100uF
16V
CT75
1000PF
50V
QT5 2SC2412KBQ
RT56 100 1/16W
CT28
0.47uF16V
QT2 2SC2412KBQ
+
CT16 100uF 16V
RT28 100 1/16W
+
CT45 100uF 16V
RT42 1K 1/16W
CT71
0.47uF 16V
CT25
0.47uF 16V
RT45 1K 1/16W
CT44
0.1uF 16V
RT10
4.7K 1/16W
+
CT9
3.3uF 50V
TU1 FQ1216MEIH3
1234567
8
11
109121314
NCNC5V
SCL
SDAAS-
-
SIFNCNC
ANT IN
VIDEO
5V IF
AF
+
CT8 100uF 16V
QT3 2SC2412KBQ
RT33
3.3K
1/16W
PLT3
10uH
+
CT192 47uF 16V
+
CT59
2.2uF
50V
CT72
0.47uF 16V
CT188
0.1uF 25V Z
+
CT4 10uF 50V
CT70
1000PF
50V
RT31
3.3K
1/16W
XT1
18.432MHz
RT14
8.2K 1/16W
CT10
0.1uF 16V
T
CT54 56PF 50V
T
CT65 100PF
50V
QT8
2SC2412KBQ
+
CT39 10uF 50V
RT15 330 1/16W
ICT13 LD1117S
3
1
2
VIN
GND
VOUT
RT20 390 1/16W
RT57
100
1/16W
CT32
0.47uF 16V
RT48 1001/16W
RT37 100 1/16W
CT3
0.47uF 16V
RT16 220K 1/16W
T
CT18
100PF
50V
RT21 10K 1/16W
CT47
0.1uF 16V
ICT14 ILC6383
1
2
3
4
5
6
7
8
Lx
Vin
LBI/SD
SELVFB
LBO
GND
Vout
RT23 47K 1/16W
+
CT66
2.2uF
50V
RT35
3.3K 1/16W
CT191
0.1uF 25V Z
ICT10 NJM2930L08
3
2
1
VIN
GND
VOUT
CT79
0.1uF 16V
CT14
1uF 10V
Z
RT55
100 1/16W
RT9
6.8K 1/16W
RT51 1M 1/16W
T
CT27
100PF
50V
RT30
3.3K 1/16W
+
CT61
2.2uF
50V
RT210 205 1/16W F
CT5
0.47uF 16V
RT53 330 1/16W
CT52
0.1uF 16V
RT34
3.3K 1/16W
RT26 15K 1/16W
QT9 2SC2412KBQ
RT11
1.8K 1/16W
+
CT13 10uF 50V
T
CT67 5PF 50V D
+
CT46 100uF 16V
CT37
0.1uF 16V
RT25 100K 1/16W
RT43 1001/16W
CT42
0.1uF 16V
RT44
3.3K 1/16W
RT161
1K
1/16W
RT13
1/16W
0
CT24
0.47uF 16V
RT162 560 1/16W
RT209 124 1/16W F
RT41
1.5K 1/16W
RT207 62K 1/16W
T
CT58 33PF
50V
Page 29
29 First issue 10 / 04
TUNER BOARD SCHEMATIC DIAGRAM: SOURCE INPUT
YUV_R
YUV_L
PR1/CR1
PB1/CB1
SVIDEO_L
SVIDEO_R
SCART_R
SCART_L
DVI_R
DVI_L
CVBS 0~0.4V RGB 1~3V
Y1
C0805
SCART_RGB_R P[3]
COMPOSITEP[3,5]
SOUND_IN_RP[1]
SOUND_IN_L
P[1]
SCART_RGB_B P[3]
SCART_RGB_G P[3]
SCART_OUT_CVBS P[1]
SOUND_OUT_L P[1]
SOUND_OUT_R P[1]
SCART_FB
P[3,5]
SCART_CTLP[3,5]
AUX_OUT_L P[1]
AUX_OUT_R
P[1]
DVI_L P[1]
DVI_R P[1]
YUV_L P[1]
YUV_R P[1]
S2_R P[1]
S2_L P[1]
Y1 P[5]
PB1_CB1 P[5]
PR1_CR1 P[5]
S2_C P[3,5]
S2_Y P[3,5]
ZDT10 UDZ6.8B
RT73 100 1/16W
RT75 0 1/16W R0603
RT62 47K 1/16W
T
CT87 47PF 50V
RT67
4.7K 1/16W
RT82 47K 1/16W
ZDT9 UDZ6.8B
RT66
6.8K 1/16W
RT81 N/75 1/16W
RT79 47K 1/16W
RT77 75 1/16W
RT104 47K 1/16W
CT89 1000PF 50V
RT65 1K 1/16W
RT61 1K 1/16W
ZDT3 UDZ6.8B
FB2 120
CT91 1000PF 50V
FBT10 120
FET6 RFILN1020-1---A
1
2
3
FBT12 120
JT2C P1159-1-4-C
4
5
FB3 120
FET13 RFILN1020-1---A
1
2
3
FBT8 120
RT205 47K 1/16W
FET10 RFILN1020-1---A
1
2
3
CT97 1000PF 50V
RT85 47K 1/16W
ZDT11 UDZ6.8B
T
CT86 47PF 50V
FET7 RFILN1020-1---A
1
2
3
RT69 75 1/16W
CT168
0.1uF 16V
RT83 N/75 1/16W
JT3D P1159-1-4-C
6
5
FET9 RFILN1020-1---A
1
2
3
RT68 100 1/16W R0603
FBT6 120
RT86 47K 1/16W
ST1B
P1177-1---A
7
8
CT82 1000PF 50V
ZDT8 UDZ5.1B
CT95 1000PF 50V
FB4 120
T
CT99 100PF 50V
T
CT167 220PF 50V
RT72 100 1/16W R0603
JT2B P1159-1-4-C
3
2
RT76 47K 1/16W
T
CT92 47PF 50V
RT204 47K 1/16W
RT87 N/75 1/16W
T
CT81 470PF
50V
FBT7 120
RT80 N/75 1/16W
JT3A P1159-1-4-C
1
2
T
CT96 100PF
50V
RT71 47K 1/16W
ST1A P1177-1---A
4
2
5
1
3
6
CT83 1000PF 50V
ZDT7 UDZ6.8B
RT84 N/75 1/16W
ZDT5 UDZ6.8B
JT1B M1076-1--- A
3
2
FBT11 120
FB5 120
R O/P
L O/P
B-GND
B
G-GND
G
R-GND
R
NC
NC
shield
R I/P
AGND
L I/P
Video status
NC
NC
RGB return
RGB status
SYNC return
AV/S/SYNC
SOT1 CS1630-1----
1
3
5
7
9
11
13
15
17
19
2
4
6
8
10
12
14
16
18
20
21
RT60 47K 1/16W
CT93 1000PF 50V
ZDT2 UDZ6.8B
FBT13 120
JT2A P1159-1-4-C
1
2
JT2D P1159-1-4-C
6
5
T
CT84 470PF 50V
JT3C P1159-1-4-C
4
5
RT63 100 1/16W R0603
RT78 N/75 1/16W
FBT9 120
CT98 1000PF 50V
CT85 1000PF 50V
T
CT166 220PF
50V
T
CT170
470PF 50V
RT74 75 1/16W
T
CT88 47PF 50V
T
CT90 47PF 50V
T
CT169 470PF 50V
RT97 47K 1/16W
RT58 220 1/16W
RT70 75 1/16W
JT3B P1159-1-4-C
3
2
JT1A M1076-1--- A
1
2
T
CT94 100PF
50V
RT64 75 1/16W
CT80 1000PF 50V
ZDT6 UDZ5.1B
ZDT4 UDZ6.8B
RT59 220 1/16W
Page 30
First issue 10 / 04 30
TUNER BOARD SCHEMATIC DIAGRAM: UOC
Hflyback
SCL
SDA
SYS1
INPSEU
Bnd0
SYS2
INPSEU
SYS2
SYS1
SCL2P[1,5]
SDA2P[1,5]
1AP[4]
Hdrive P[4]
3V3P[5]
SCART_CTLP[2,5]
Hflyback P[4]
SCART_FB P[2,5]
SCART_RGB_R P[2]
SCART_RGB_G P[2]
SCART_RGB_B P[2]
S2_C P[2,5]
S2_Y P[2,5]
3V3P[5]
3V3P[5]
3V3P[5]
COMPOSIT E P[2,5]
TV P[1,5]
5V_MTS1 P[1,4]
LINK _INP[5]
LINK_OUTP[5]
BOUT P[4]
GOUT P[4]
ROUT P[4]
5V_MTS1
5V_MTS1
P9V
P9V
TPT4
TPT5
TPT6
TPT8
TPT9
5V_MTS1
5V_MTS1
TPT3
5V_MTS1
TPT7
TP17
RT112
470 1/16W
CT111
0.022uF 50V
RT98 100 1/16W
RT109
3.3K 1/16W
T
CT195 220PF 50V
CT132
0.1uF 16V
CT101
0.022uF 50V
P
LT17 15uH
RT122 12K 1/16W
CT138
0.22uF 16V
LT9 10uH
RT88
100 1/16W
CT171
0.1uF 16V
CT123 0.022uF 50V
T
CT194 33PF 50V
RT120 100 1/16W
RT90
3.3K 1/16W
+
CT112 100uF
16V
CT122 1000PF 50V
RT121 390 1/16W
T
CT202 33PF 50V
T
CT183 33PF 50V
CT127
0.1uF 16V
RT123 100 1/16W
+
CT139 10uF 50V
RT197
N/0 1/16W
RT137 0 1/16W
CT140
0.1uF 16V
+
CT117
4.7uF 50V
RT92
3.3K 1/16W
P
LT6 10uH
RT115
N/100
1/16W
P
LT16 15uH
RT193 0 1/16W
RT94 15K 1/16W
RT99
100
1/16W
+
CT131 100uF 16V
CT134
0.1uF 16V
+
CT102 100uF 16V
RT113
N/1K
1/16W
CT133 1000PF 50V
P
LT5 10uH
P
LT18 15uH
CT124 1000PF 50V
P
LT13 15uH
T
CT193 68PF 50V
T
CT197 220PF 50V
ICT6
TDA9181T
1
2
3
4
5
6
7
89
10
11
12
13
14
15
16
CIN
INPSEL
Y/CVBS2
DGND
VDDD
VCCA
SC
FSCSELFSC
SYS2
SYS1
Y/CVBS1
AGND
Y/CVBSOUT
OUTSEL
COUT
RT117 100 1/16W
T
CT187 33PF 50V
LT7 10uH
T
CT198 220PF 50V
RT93
3.3K 1/16W
RT138 470 1/16W
T
CT201 68PF 50V
RT1
3.3K1/16W
T
CT182 68PF 50V
CT104
0.022uF 50V
T
CT200 33PF 50V
RT95 100 1/16W
+
CT172 10uF 50V
XT2 12MHz
CT109 0.22uF 16V
RT134 N/0 1/16W
RT124
100 1/16W
RT105 100 1/16W
CT114
0.22uF 16V
CT119 0.022uF 50V
RT101
100 1/16W
RT201 1K 1/16W
RT195 0 1/16W
T
CT141 33PF 50V
+
CT100 10uF 50V
CT128 0.022uF 50V
CT137
0.1uF 16V
RT96
0
1/16W
RT110 470
1/16W
RT139 470 1/16W
CT159
0.1uF 16V
CT108
0.022uF 50V
P
LT8 10uH
T
CT136 15PF 50V
RT119
2.2K 1/16W
RT118 N/22K 1/16W
T
CT196 220PF 50V
RT114
2.2K 1/16W
P
LT14 15uH
RT159 470 1/16W
DT4 RLS4148
+
CT105 10uF 50V
RT116 22K 1/16W
T
CT103 33PF 50V
CT126 0.022uF 50V
RT103 100 1/16W
RT111
470 1/16W
CT118 4700PF 50V
RT125 100K 1/16W
T
CT121 220PF 50V
T
CT199 220PF 50V
CT174
0.22uF 16V
CT130
0.022uF 50V
RT200 1K
1/16W
CT175
0.1uF 16V
+
CT116 1uF 50V
CT158
0.01uF 50V
RT140 N/0 1/16W
RT126 47K 1/16W
CT110 0.22uF 16V
ICT5
TDA9561H
123456789
101112131415161718192021222324
6463626160595857565554535251504948474645444342
41
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
40
39
38
37
36
35
34
33
32
31
30
29
28
27
26
25
P3.1/ADC1
P3.2/ADC2
P3.3/ADC3
VSSC/P
P0.5
P0.6/CVBSTD
VSSA
SECPLL
VP2
DECDIG
PH2LF
PH1LF
GND3
DECBG
AVL/EWD
VDRB
VDRA
IFIN1
IFIN2
IREF
VSC
AGCOUT
SIFIN1
SIFIN2
XTALOUT
XTALIN
OSCGND
VDDC
VPE
VDDA
BO
GO
RO
BLKIN
BCLIN
B2/UIN
G2/BIN
R2/BIN
INSSW2
IFVO2
AUDOUT/AMOUT
CVBSO
WHSTR
C
CVBS3/Y
GND
CVBS2
GND
RESET
VDDP
P1.0/INT1
P1.1/T0
P1.2/INT0
P1.3/T1
P1.6/SCL
P1.7/SDA
P2.0/TPWM
P2.1/PWM0
P2.2/PWM1
P2.3/PWM2
P2.4/PWM3
P2.5/PWM4
SYNC_FILTER
P3.0/ADC0
CVBS1
VP1
IFVO/SVO
QSSO
SIFAGC
PLLIF
EHTO
QSSO/AMOUTAUDEEM
DECSDEM
FBISO
HOUT
AUDIO3
AUDIO2
AVL/REF0/SNDIF
SNDPLL
GND2
RT89
100 1/16W
CT115 2200PF 50V
ICT4
AT24C16P27
1
2
3
4 5
6
7
8
A0
A1
A2
VSS SDA
SCL
TEST
VCC
P
LT10 10uH
CT135
0.22uF 16V
QT10 2SC2412KBQ
RT91
3.3K 1/16W
CT160
0.1uF 16V
RT2 10K 1/16W
+
CT120
2.2uF 50V
RT146 N/0 1/16W
RT108
18K
1/16W
QT11 2SC2412KBQ
+
CT113 100uF 16V
+
CT179
N/100uF
16V
DT3 RLS4148
CT129
0.1uF 16V
CT165
0.1uF 16V
RT163 39K 1/16W
RT100 100 1/16W
CT125 1000PF 50V
T
CT181 33PF 50V
T
CT107 33PF 50V
P
LT15 15uH
P LT11 10uH
Page 31
31 First issue 10 / 04
TUNER BOARD SCHEMATIC DIAGRAM: SYNCHRONISATION & RGB TO YUV
CR2 P[5]
Y2 P[5]
CB2 P[5]
P9V P[1,5]
Hflyback
P[3]
ROUTP[3]
GOUTP[3]
BOUTP[3]
Hdrive
P[3]
5V_MTS1
P[1,3]
1AP[3]
T
CT155 270PF 50V
RT127 10K 1/16W
RT133
220
1/16W
RT149 1K 1/16W
+
CT142 47uF 16V
RT153 27K 1/16W
ICT8
74HC221D
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
1A
1B
1RD
1Q
2Q
2CEXT
1Q
GND 2A
2B
2RD
2Q
1Q
1CEXT
1RCEXT
VCC
RT143 N/0 1/16W
T
CT203 33PF 50V
RT152 10K 1/16W
CT178
0.1uF 16V
RT148 N/1K 1/16W
RT136 15K 1/16W
T
CT184 22PF 50V
+
CT150 1uF 50V
ICT11
74HC4053DT
11109
12
13
2
1
5
3
14
15
4
6
7
16
8
S1S2S3
1Y0
1Y1
2Y0
2Y1
3Y0
3Y1
1Z
2Z
3Z
E_
VEE
VCC
GND
T
CT154 220PF 50V
RT151 N/1K 1/16W
+
CT176
2.2uF 50V
T
CT201 68PF 50V
RT131
5.1K 1/16W
T
CT153 N/180PF 50V
P
LT19 15uH
+
CT151 1uF 50V
+
CT177 47uF 16V
RT107 N/150K 1/16W
RT132
3.3K 1/16W
RT147 N/0 1/16W
RT148 39K 1/16W
RT141
2.7K
1/16W
RT155 1K 1/16W
T
CT186 22PF 50V
DT5 RLS4148
T
CT185 22PF 50V
T
CT152 220PF 50V
CT143
0.1uF 16V
RT144 10K 1/16W
CT147
0.1uF 16V
T
CT202 33PF 50V
P
LT20 15uH
RT145 10K 1/16W
RT154 1M 1/16W
CT144
0.1uF 16V
CT148
0.1uF 16V
QT7 2SC2412KBQ
T
CT146 12PF 50V
RT150 N/100K 1/16W
T
CT173 100PF 50V
RT129
2.2K 1/16W
RT167 470 1/16W
CT145
0.1uF 16V
ICT9
74HC4538D
1
2
3
4
5
6
7
8 9
10
11
12
13
14
15
16
1CTC
1RCTC
1RD
1A1
1A0
1Q
1Q
GND 2Q
2Q
2A0
2A1
2RD
2RCTC
2CTC
VCC
RT135
220
1/16W
RT170 470 1/16W
RT142 N/0 1/16W
+
CT149 1uF 50V
RT130
220
1/16W
RT3 620 1/16W
ICT7
TA1287P
8
7
6
5
4
3
2
1
9
10
11
12
13
14
15
16
B IN
G IN
R IN
GND
CP IN
U IN
Y IN
V IN
YS1
YS2
YS3
VCC
V OUT
Y OUT
U OUT
Matrix
RT4
8.2K 1/16W
Page 32
First issue 10 / 04 32
TUNER BOARD SCHEMATIC DIAGRAM: CONNECTIONS
(LINK O/P) (LINK I/P)
PCSI
Y2
PB1_CB1
COMPOSITE
CB2
PR1_CR1
S2_C
S2_Y
TV
CR2
Y1
SB5V_CPU
AV_B_DET
TDO
TDI
3V3
TMS
TCK
SCART_FB
DACM_L
SDA2
DACM_R
CTL2
CTL1
SCL2
PCSCLK
SDA_MP
SCL_MP
PCn_MPU
SDA2
PCSCS
SCL2
SSO
SD P[1]
A
DD D DD
A
TP21
TP22
TP23
TPT25
TP24
TP25
RT158
0
1/16W
CT164 1000PF 50V
RT165 0 1/16W
CT163 1000PF 50V
RT128
0
1/16W
RT178 N/0 1/16W
RT102 N/0 1/16W
JPT2A
CP1615-148-B
B1 B2 B3 B4 B5 B6 B7 B8
B9 B10 B11 B12 B13 B14 B15 B16
A1 A2 A3 A4 A5 A6 A7 A8 A9 A10 A11 A12 A13 A14 A15 A16
RT179 N/0 1/16W
RT169 N/0 1/16W
RT192 N/0 1/16W
CT161 1000PF 50V
FBT2 120
RT106 N/0 1/16W
RT157 0 1/16W
RT156 N/0 1/16W
JPT1B
CP1615-148-B
C1 C2 C3 C4 C5 C6 C7 C8
C9 C10 C11 C12 C13 C14 C15 C16
FBT1 120
RT168 0 1/16W
JPT2B
CP1615-148-B
C1 C2 C3 C4 C5 C6 C7 C8
C9 C10 C11 C12 C13 C14 C15 C16
RT164 0 1/16W
RT166 10K 1/16W
CT162
1000PF
50V
JPT1A
CP1615-148-B
B1 B2 B3 B4 B5 B6 B7 B8
B9 B10 B11 B12 B13 B14 B15 B16
A1 A2 A3 A4 A5 A6 A7 A8 A9 A10 A11 A12 A13 A14 A15 A16
CR2P[4]
Y2P[4]
PB1_CB1P[2]
TVP[1,3]
CB2P[4]
PR1_CR1P[2]
Y1P[2]
COMPOSITEP[2,3]
S2_YP[2,3] S2_CP[2,3]
PCn_MPU PCSCS PCSI PCSCLK
SCL_MP SDA_MP
SCL2_33 SDA2_33
SSO
D_CTL P[1] RESETQ P[1]
P5V
SB5V_CPU
AV_B_DET
TDO TDI
3V3 P[3] TMS
TCK
SCART_CTL P[2,3]
CTL2P[3]
SDP[1]
DACM_LP[1]
SCART_FBP[2,3]
DACM_RP[1]
CTL1P[3]
P9VP[1,4]
SDA2P[1,3]
TUN_DETn
SCL2P[1,3]
Page 33
33 First issue 10 / 04
MAIN BOARD SCHEMATIC DIAGRAM: DIGITAL SYSTEM (CPU & EEPROM)
MPU
EEPROM(DIP32)
(LINK O/P)
(LINK I/P)
RGBn_DVI
SCL2 SDA2
SDA1
RC_IN
SB_LED
POWER_ON
ON_LED
KEYPAD_IN
PLLCLK PLLDATA
SDA0
SCL0
NMI
PLLDATA
PLLCLK
P4
KEYPAD_IN
SCL2
P2
P3
SOGn
P1
P0
INT_RTC
HSYNC_MP
VS_POL
HS_POL
INT_DPTV_S
INT_DPTV
P7
GIHS
HSYNC_SP
GIVS
REMOTE
INT_USB
NMI
PGMn
CEn
AVB_DETn TUN_DETn
V2B_DETn
P4
P2
P7
P1
P5
P0
P3
P6
P0 P1 P2 P3 P4
P7
P[0..7]
P6
P5P5P6
A4
A12
A15
A6
A13
A3
A2
TDI
TDO
A13
A9
A17
P0
A18
A0
A8
A4
A16
A11
A3
A2
A0
CEn
A5
A0
A1
A10
A9
A7
A15
A6
A13
A1
A16
A16
A11
A6
A1
A5
A17
A2
PGMn
A19
A14
A3
A5
A12
A1
TMS
A[0..19]
A7
A0
A9
A19
A10
A18
A8
A8
A12
A17
A3
A15
A14
A2
A4
TCK
A14
A7
A10
A11
SD
SI
SCLK
SCS
SO
A17
SDA0
SCL0
SB5V
SW_IN
STANDBY
REMOTE
SCL1
SCL1
SDA1
SDA2
POWER_ON
STANDBY
NEC_PSO
RESET
NEC_PSM
GND
AVB_DETn P[18] TUN_DETn P[18]
GIHS P[7]
GIVS P[7]
HSYNC_SP P[11]
HSYNC_MP P[11]
SD P[18]
OCKINV P[8]
RDn_DPTV P[13]
RGBn_DVI P[3,10]
S_DET P[18]
ALE_DPTV P[13]
FREEZE P[5]
SOGn P[9]
INT_RTCP[2]
INT_DPTV_SP[14]
INT_DPTVP[13]
INT_USB
RXDP[2]
15Kn_MP P[11,12]
A_MUTEn P[18] YUVn_RGB P[9]
YUV_SW P[11]
SCL2 P[2,7, 10,12,13,14,18]
PLLDATA P[3]
PLLCLK P[3]
SDA2 P[2,7,10,12,13,14,18]
P[0..7] P[13]
SB P[18]
PNL_CTLn P[4] PS_DPTV YUV_SPSW P[11]
LG_VS P[18] RST_DPTV P[13,14] AO_SEL P[18] SURR1 P[18] SURR2 P[18] RESETQ P[18] SPK_CTL P[18]
WRn_DPTV P[13]
PD_DVIn P[8]
PD_9884n P[7]
TDO
P[18]
TDI
P[18]
TMS
P[18]
TCK
P[18]
SCS P[5]
SI P[5]
SCLK P[5]
SO P[5]
TXDP[2]
AC_DET P[18]
SCART_CTL1
CTL2P[18]
SCART_CTL3
TELETEXT_ON P[18,19]
RSTnC711 P[5,8]
CTL1 P[18]
LGDISPEN P[4]PNL_CTLnP[4]
SCART_CTL P[18]
SCART_FB P[18]
SB5V_CPU
SB5V
SB5V SB5V_IO
SB5V_IO
SB5V_IO
SB5V_IO
SB5V_CPU
SB5V
SB5V
SB5V SB5V
SB5V_M
SB5V_M
D
D
D
D
D
D D
D
D
D
D
D
D
D
D
SB5V_CPU
SB5V
SB5V_CPU
D
D
SB5V_CPU
SB5V_CPU
D
SB5V_CPU
D
D
SB5V_CPU
D
SB5V_M
D
D
CPU5V
SB5V_CPU
CPU5V
SB5V_CPU
SB5V_CPU
D
D
SB5V
SB5V_M
D
D
SB5V
SB5V_CPU
D
SB5V_CPU
D
D
D
P5V
P5V
D
D D
D DD
Q1 2SC2412KBQ
R45 560K 1/16W
J5 CP0316-EJST-
1
2
3
4
5
6
R11
N/47
1/16W
R417 180 1/16W
R8
47 1/16W
L1 N/0 1/8W
L2
0
1/8W
U1
A5-32-10VC4
1 2 3 8
2512
16 38
6
17
9 10 11
13 14
5 27
28
39
4726
29
15
18 19 20 21 22 23 24
30 31 32 33 34 35 36 37
40 41 42
43 44
I/O5 I/O6 I/O7 I/O8
I/O23I/O12
VCC VCC
GND
GND
I/O9 I/O10 I/O11
I/O13 I/O14
CLK0 CLK1
GND
GND
TD1
TCK
TMS
TDO
I/O15
I/O16 I/O17 I/O18 I/O19 I/O20 I/O21 I/O22
I/O24 I/O25 I/O26 I/O27 I/O28 I/O29 I/O30 I/O31
I/O0 I/O01 I/O02
I/O03 I/O04
R396 N/10 1/16W
R25
5.6K 1/16W
C12
0.1uF 25V Z
R15
3.3K 1/16W
+C9
10uF 16V
R39 10K 1/16W
R2 N/1.5K 1/16W
F2 0 1/8W
RP5 10K ohm
1827364
5
R342
0
1/16W
U7
M24C16WBN6
1
2
3
45
6
7
8
A0
A1
A2
VSSSDA
SCL
TEST
VCC
U6D 74LVT04
9 8
14
7
R52 N/820 1/16W
T
C19 120PF 50V
R38 10 1/16W
TP7
RT15 N/0 1/16W
F4 0 1/8W
C5
0.1uF 25V
Z
R34 22K 1/16W
R70
0
1/16W
R9
47
1/16W
R33
33 1/16W
T
C17 120PF 50V
R20 33 1/16W
TP3
RT6 N/560K 1/16W
R344 0 1/16W
LD002 N/LED
T
C375 120PF 50V
R1
10K 1/16W
U8
EM83010
18
10 11 12 13 14 15 16 17
9
1 2
8
7
6
5
4
3
VDD
P10 P11 P12 P13 P14 P15 P16 P17
VSS
SDT SCK
P05
P04
P03
P02
P01
P00
+
C15 10uF 16V
C23
0.1uF 25V Z
R26
N/10K
1/16W
R3 N/1.5K 1/16W
R412 10K 1/16W
Q2 2SC2412KBQ
TP4
R411 10K 1/16W
R51
N/820
1/16W
R10 33 1/16W
R40 10 1/16W
Y1
16MHz
U6B
74LVT04
3 4
14
7
LD001 N/LED
R12 33 1/16W
C25
0.1uF 25V Z
U6C 74LVT04
5 6
14
7
R44 560K 1/16W
RP3 10K ohm
18 27 36 45
R349 N/1M 1/16W
R13 47 1/16W
R32
4.7K 1/16W
J2
N/CON3
1 2 3
R17
3.3K 1/16W
R36 10K 1/16W
L3 0
1/8W
R4
0 1/16W
U6F 74LVT04
13
12
14
7
R41
0 1/16W
U6A 74LVT04
1 2
14
7
U4 HD6413079F
22 23 24 25 26 27 28 29 31 32 33 34 35 36 37 38 39 40
13141516171819
20
45
44
51
52
46
47
48
57
49
54
55
56
69
70
71
72
9
10
11
43
41 42
73
74
75
76
77
78
79
80
1
2
3
4
5
6
7
8
59
60
61
62
63
64
65
66
21
68
53
12
58
50
30
67
A0 A1 A2 A3 A4 A5 A6 A7 A8
A9 A10 A11 A12 A13 A14 A15 A16 A17
D0D1D2D3D4D5D6
D7
MD1
MD0
EXTAL
XTAL
@
STBY
RES
RESO
NMI
AS
RD
WR
P80/IRQ0
P81/IRQ1
P82/IRQ2
P83/IRQ3
P90/TXD
P92/RXD
P94/SCK/IRQ4
P60/WAIT
A18 A19
PA0/TCLKA
PA1/TCLKB
PA2/TIOCA0/TCLKC
PA3/TIOCB0/TCLKD
PA4/TIOCA1/A23
PA5/TIOCB1/A22
PA6/TIOCA2/A21
PA7/TIOCB2/A20
PB0/TIOCA3
PB1/TIOCB3
PB2/TIOCA4
PB3/TIOCB4
PB4/TOCXA4
PB5/TOCXB4
PB6
PB7/ADTRG
P70/AN0
P71/AN1
P72/AN2
P73/AN3
P74/AN4
P75/AN5
P76/AN6
P77/AN7
VCC
AVCC
VCC
VSS
AVSS
VSS
VSS
VREF
R50 N/820 1/16W
JP1
N/HEADER 3X2
12 34 56
U3
29C020CP90BS
12 11 10
9 8 7 6
5 27 26 23 25
4 28 29
3
2
22
24
13 14 15 17 18 19 20 21
32 1
31
16
30
A0 A1 A2 A3 A4 A5 A6 A7 A8 A9 A10 A11 A12 A13 A14 A15 A16
CE
OE
D0 D1 D2 D3 D4 D5 D6 D7
VCC VPP
PGM
GND
A17
R37 10K 1/16W
T
C2 33PF 50V
RP1 10K ohm
1827364
5
T
C16 120PF 50V
R22 10 1/16W
R29
5.6K 1/16W
RP9 10K ohm
1827364
5
R27 22K 1/16W
+
C428
4.7uF 16V
R345 0
1/16W
R16
3.3K 1/16W
R30 22K 1/16W
T
C7 10PF 50V
R19 33 1/16W
R35 22K 1/16W
U6E
74LVT04
11
10
14
7
R24 33 1/16W
C8
0.1uF 25V Z
R23 10 1/16W
R413
N/0
1/16W
U68
AMC7630-5
1
2
3
4 5
6
7
8
VIN
GND
GND
EN GND
GND
GND
VOUT
C1
0.1uF 25V
Z
T
C20 120PF 50V
R31
33 1/16W
TP1
+ C13
10uF 16V
R21 33 1/16W
R18
33 1/16W
J4 N/CON3
1 2 3
+
C14 10uF 16V
R71
0 1/16W
R394 N/10 1/16W
+C4 10uF 16V
Q3 2SC2412KBQ
+
C10 10uF 16V
R399 0 1/16W
TP5
RP2 10K ohm
1 8 2 7 3 6 4 5
RP8 10K ohm
1827364
5
R6 100K 1/16W
SO1
N/W27C010_5
22
24
13 14 15 17 18 19 20 21
31
32
1
16
12 11 10
9 8 7 6
5 27 26 23 25
4 28 29
3
2 30
CE
OE
Q0 O1 O2 O3 O4 O5 O6 O7
PGM
VCC
VPP
GND
A0 A1 A2 A3 A4 A5 A6 A7 A8 A9 A10 A11 A12 A13 A14 A15 A16 A17
C11
0.1uF 25V Z
R28
4.7K
1/16W
D1 RLS4148
T
C6 10PF 50V
R7
3.3K 1/16W
R14 N/3.3K 1/16W
R46 560K 1/16W
R410 10K 1/16W
R5
10K
1/16W
J3 N/CON4
1 2 3 4
T
C18 120PF 50V
T
C3 33PF 50V
V I N
V O U TGND
U5
S80845ANUP
12
3
Q4 2SC2412KBQ
TP6
C24
0.1uF 25V
Z
F1 0 1/8W
TP2
+
C426 1uF 50V
Page 34
First issue 10 / 04 34
MAIN BOARD SCHEMATIC DIAGRAM: DIGITAL SYSTEM (OSD/USB/RS232)
RTC IIC ADDR:A2H(W),A3H(W)
G(1) S(2)
D(3)
BSN20
M8p
RXD
TXD
SDA2_33
SCL2
SDA2
INTENSITY
DSR
PD RTS
DTR CTS
RD
SCL2
SCL2_33
SDA2_33
SDA2
SCL 2_33
INT_RTCP[1]
TXD P[1]
SCL2_33P[4,7,13,18]
RXD P[1]
SDA2_33P[4,7,13,18]
DTEN P[5]
SDA2P[1,7,10,12,13,14,18]
POCLKOSDP[3]
SCL2P[1,7,10,12,13,14,18]
R_OSD P[5]
HSYNCOP[4,5]
G_OSD P[5]
B_OSD P[5]
VSYNCO P[4,5]
SB5V
V33
V33V33
SB5V
SB5V
P5V
D
D
D
D
D
D
D
V33SB
SB5V
D
P5V
5V_OSD
D
5V_OSD
D
D
D
D
D
5V_OSD
D
USB5V
D
D
D
D
D
SB5V
R65 100 1/16W
+
C37 47uF 16V
+
C32 N/10uF 16V
C33
0.1uF 25V Z
Q5 BSN20
3
1
2
R56 N/1K 1/16W
+
C34 1uF 50V
T
C36 180PF 50V
C39
0.1uF 25V Z
Q6 BSN20
3
1
2
TP9
R59 47
1/16W
D51 N/RLS4148
R68 33 1/16W
T
C26 N/12PF 50V
T
C30 100PF 50V
D52 N/RLS4148
TP10
T
C35 180PF 50V
R314 N/0 1/16W
R54 22 1/16W
R62 0 1/16W
TP11
R55 N/1K 1/16W
D53 N/RLS4148
R58 1K 1/16W
R57 N/1K 1/16W
C44 N/0.1uF 25V Z
TP12
+
C41 N/10uF 16V
RP12 10K ohm
1 8
2 7
3 6
4 5
C28
0.1uF 25V Z
R61 47 1/16W
C38
0.1uF 25V Z
+
C31 1uF 50V
Y4 N/32.768KHZ
+
C27 10uF 16V
U11
MTV130
8
7
6
5
4
3
2
1
9
10
11
12
13
14
15
16
SCK
SDA
SSB
HFLB
VDD
NC
XIN
VSS
VDD
VFLB
INT
FBKG
B-OUT
G-OUT
R-OUT
VSS
R313 10K 1/16W
L4
0 1/8W
C42 N/0.1uF 25V Z
T
C22 N/12PF 50V
R66
100 1/16W
P1
D1553-109-­5 9 4 8 3 7 2 6 11011
L7 0 1/8W
R316 220 1/16W
R60 47 1/16W
T
C29 N/100PF 50V
R67 100 1/16W
R64 N/220 1/16W
L6 0 1/8W
U65
N/PCF8563T
8
7
6
54 3 2 1
VCC
CLKO
SCL
SDA
VSS INT OSCO OSCI
C40
0.1uF 25V Z
U12
HIN232CB
16
15
11
12
13
14
7
8
9
10
1
3
4
5
2
6
VCC
GND
T1-IN
R1-OUT
R1-IN
T1-OUT
T2-OUT
R2-IN
R2-OUT
T2-IN
C1+
C1-
C2+
C2-
V+
V-
R315
N/4.7K 1/16W
R69 33 1/16W
+
C43 10uF 16V
TP8
C21 N/0.1uF 25V Z
R63 47 1/16W
T
C416 22PF 50V
Page 35
35 First issue 10 / 04
MAIN BOARD SCHEMATIC DIAGRAM: DIGITAL SYSTEM (HSYN SW & CLOCK GEN.)
DVI-H,V, CLK
1
A/B Y
0
RGB-H,V,CLK
FGHS
FGVS
DATACK
P[7]
DVI_HSP[8]
DVI_PICK
P[5]
PIHS P[5]
PIHSS P[7]
FGVSP[7,8,9]
PICLK P[5]
RGBn_DVI
P[1,10]
DVI_VSP[8]
PIVS P[5]
FGHS
P[7,9]
PLLHSOP[7]
DDCVSYNC P[7]
D
V33SB
D
D
D
C49 N
U15
74LVC157
2
3
5
6
11
10
14
13
1
15
4
7
9
12
16
8
1A
1B
2A
2B
3A
3B
4A
4B
A/B
G
1Y
2Y
3Y
4Y
VCC
GND
R78
33 1/16W
C50
0.1uF 25V Z
T
C404 22PF
50V
R77 33 1/16W
R386
150
1/16W
R79
33 1/16W
FROM CPU
POCLK
CLK
POCLKOSD P[2]
PLLCLK
P[1]
PLLDATA
P[1]
CLK P[5,6]
POCLK P[4,5]
D
D
D
D
D
VCCPLL
V33
D
D
VCCPLL
D
C57
0.1uF 25V Z
TP13
T
C53
N/47PF
50V
C56
0.1uF 25V Z
U16
ICS9161A
13
3
6
7
5
1
2
4
8
9
10
11
12
14
15
16
VDD
AVDD
X1
X2
GND
SEL0_CLK
SEL1_DATA
OE
MCLK
VCLK
ERROUT
EXTCLK
INIT0
INIT1
EXTSEL
PD
T
C52
12PF
50V
R82
4.7 1/16W
R350 N/1M 1/16W
R83
33 1/16W
Y3
14.318MHz
T
C51 12PF 50V
T
C54 33PF 50V
L13
0 1/8W
+
C55 47uF 16V
R80 33 1/16W
R81
33 1/16W
Page 36
First issue 10 / 04 36
MAIN BOARD SCHEMATIC DIAGRAM: DIGITAL SYSTEM (BUFFER & PDP CONNECTOR)
Connect to TMDS PDP Module
For SAMSUNG LVDS P DP
Note: All polarized CAPs should be Tantalum
TMDS INTERFACE
DBLANKN
TX2+
BRGOUT4
TXC+
BRROUT7
DBLANKN
SD2_33
BRBOUT6
BRGOUT2
BRGOUT0
SC2_33
BRGOUT3
SDA2_33
TX2-
PNLCTL33
BRROUT2
BRROUT5
BRROUT3
DSHSYNCO
BRROUT1
TX0+
BRGOUT6
SD2_33
BRROUT4
SCL2_33
BRROUT0
BRBOUT7
BRROUT6
BRGOUT5
TX0-
SC2_33
TX1+
BRGOUT1
BRGOUT7
TXC-
TX1-
BRROUT6
BRROUT3
BRROUT0
BRGOUT5
BRROUT2
BRROUT5
BRGOUT6
BRGOUT1
BRROUT4
BRROUT7
BRGOUT2
BRROUT1
BRBOUT6
BRGOUT1
BRGOUT4
BRBOUT0
RXIN3+
BRBOUT6
BRROUT4
BRBOUT1
RXCLKIN+
BRROUT2
BRBOUT3
RXIN0-
BRROUT5
BRGOUT0
DBLANKN
RXIN0+
BRROUT0
RXIN1+
BRBOUT4
BRGOUT2
BRBOUT5
BRROUT1
RXIN1-
BRGOUT6 BRGOUT7
SC2
RXIN2-
SD2
BRBOUT7
RXIN2+
RXCLKIN-
BRGOUT3
DSHSYNCO
BRBOUT2
BRROUT3
BRROUT6 BRROUT7
RXIN3-
BRGOUT5
PNLCTL33 PNL_CTLn
BRGOUT7
BRGOUT0
BRGOUT4
BRGOUT3
BRBOUT7
BRBOUT3 BRBOUT4
BRBOUT1
BRBOUT0
PCLK_LG
BRBOUT5
BRBOUT5
BRBOUT1
PCLK_LG
BRBOUT2
BRBOUT2
BRBOUT4
BRBOUT3
BRBOUT0
TXC-
TX1-
TX2-
TXC+
TX1+
TX0+
TX2+
TX0-
BROUT5
BROUT0
ROUT6 BROUT6
GOUT2
ROUT[0..7]
BGOUT1 BGOUT0
GOUT4
VSYNCO
GOUT[0..7]
BBOUT5
ROUT5
BOUT6
BBOUT7
BGOUT7
BGOUT3
BROUT3
BOUT5
BGOUT5
PNL_CTLn
ROUT3
BBOUT6
BOUT0
GOUT3
BBOUT2
PNL_CTLn
BOUT4
HSYNCO
BBOUT0
ROUT4
BLANKn
PNL_CTLn
GOUT0
BOUT7
BOUT2
BROUT2 BROUT4
GOUT1
BGOUT4
BPCLKO
BOUT3
ROUT2
PNL_CTLn
GOUT5
BHSYNCO
ROUT0
BOUT1
BOUT[0..7]
BROUT1
POCLK
GOUT7
PCLK_LG
BGOUT2
ROUT1
GOUT6
ROUT7
BBOUT3 BBOUT1
BBOUT4
BGOUT6
BROUT7
BGOUT5
BGOUT7
BGOUT1 BGOUT2
BROUT0
BGOUT3
BROUT3
BROUT1
BGOUT4
BROUT5
BGOUT6
BROUT2
BROUT6
BGOUT0
BROUT7
BROUT4
PCLK_LG
DSVSYNCO
BRGOUT5
BRBOUT5
BRBOUT3
BRGOUT0
BRBOUT6
BRGOUT1
BRBOUT0
BRROUT7
BRROUT0
BRROUT1
BRROUT6
DBLANKN
BRGOUT3
BRROUT4
BRROUT3
BRGOUT2
BRGOUT4
BRGOUT7
LGDISPEN
DSHSYNCO
BRBOUT1
BRBOUT2
BRGOUT6
BRBOUT7
BRROUT5
BRBOUT4
BRROUT2
BBLANKN
BVSYNCO
DSHSYNCO
DSVSYNCO
DSVSYNCO
DSVSYNCO
BBOUT7
BBOUT2
BBOUT0 BBOUT1
BBOUT5
BBOUT4
BBOUT6
BBOUT3
SCL2_33 P[2,7,13,18]
SDA2_33 P[2,7,13,18]
PNL_CTLnP[1]
HSYNCOP[2,5]
VSYNCOP[2,5]
POCLKP[3,5]
GOUT[0..7]P[5]
BOUT[0..7]P[5]
ROUT[0..7]P[5]
BLANKnP[5]
LGDISPEN P[1]
D
VCCBF
V33
PGND
AVCC
TMDS33
TMDS33
TMDS33
PGND
PVCC
TMDS33
TMDS33
PVCC
TMDS33
LVDS33
LVDS33
LVDS33
V33
TMDS33
PVCC
AVCC
V33
PGND
DD DD D DD D
D DD D D DDD
D DD D D DDD
D
VCCBF
D
VCCBF
D
VCCBF
D
VCCBF
D D
VCCBF
LVDS33
TMDS33
R324 N/0 1/16W
T
C370 47PF 50V
C396 N/0.1uF 25V Z
RP37 22 ohm
1 8 2 7 3 6 4 5
R441
0
1/16W
TP15
C400 N/10uF 16V
R392 0 1/16W
R434
2.2K 1/16W
J1 N/CP1623-140-A
1 2 3 4 5 6 7 8
9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40
R430 0 1/16W
TP20
TP16
+
C447 10uF
16V
C63
0.1uF 25V Z
J18
CP1623-140-A
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
R442 100 1/16W
T
C373 47PF 50V
+
C399 N/10uF 16V
L51 200+ Ohm
+
C446 10uF 16V
RP40
22 ohm 1 8 2 7 3 6 4 5
R444 10K 1/16W
T
C361 47PF 50V
C441
0.1uF 16V Z
TP21
T
C364 47PF 50V
R439 N/0
1/16W
R436 0 1/16W
U69 SII164CT64
1
16 15 14 13 12 11 10 9
6 5 4 3 2
48
495051525354555657585960616263
64
7
8
171819202122232425262728293031
32
33 34 35 36 37 38 39 40 41 42 43 44 45 46 47
VCC
GND BSEL/SCL DSEL/SDA ISEL/RST
VCC
MSEN
PD
EDGE/HTPLG
CTL3/A3/DK3
VSYNC HSYNC
VREF
DE
GND
PVCC2
D11
D10D9D8D7D6
IDCK-
IDCK+D5D4D3D2D1D0
GND
CTL2/A2/DK2
CTL1/A1/DK1
PGND
PVCC1
EXT_SWING
AGND
TXC-
TXC+
AVCC
TX0-
TX0+
AGND
TX1-
TX1+
AVCC
TX2-
TX2+
AGND
VCC RESERVED DKEN D23 D22 D21 D20 D19 D18 D17 D16 D15 D14 D13 D12
T
C358 47PF 50V
R440 N/0 1/16W
+
C59 47uF 16V
+
C401 N/10uF 16V
C395 N/0.1uF 25V Z
RP38
22 ohm 1 8 2 7 3 6 4 5
C437
0.1uF 16V Z
C397 N/0.1uF 25V Z
T
C353 47PF 50V
+
C448 10uF 16V
C439
0.1uF 16V Z
R348 510 1/16W
U24'F 74LVT04
1312
14
7
R437 N/10K 1/16W
R382 22 1/16W
T
C360 47PF 50V
R86 N/22 1/16W
R43 0 1/16W
L50 N/0 1/8W
C436
0.1uF 16V Z
U19
74LVC244ADB
2 4 6
8 11 13 15 17
1
19
18 16 14 12 9 7 5 3
20
10
1A1 1A2 1A3 1A4 2A1 2A2 2A3 2A4
1G
2G
1Y1 1Y2 1Y3 1Y4 2Y1 2Y2 2Y3 2Y4
VCC
GND
R130 N/0 1/16W
R73 N/0 1/16W
T
C359 47PF 50V
C60
0.1uF 25V Z
TP17
C444
0.1uF 16V Z
T
C371 47PF 50V
L53 0
T
C351 47PF 50V
C435
0.1uF 25V Z
R131 N/0 1/16W
R447 N/10K 1/16W
R347
0 1/16W
L54
0 1/8W
R446 5.6K 1/16W
TP18
T
C366 47PF 50V
L17 0 1/8W
R390
N/0 1/16W
R84
N/0 1/16W
T
C362 47PF 50V
C443
0.1uF 25V Z
C394 N/0.1uF 25V Z
T
C357 47PF 50V
TP19
C438
0.1uF 16V Z
U21
74LVC244ADB
2
4
6
8
11 13 15 17
1
19
18 16 14 12 9 7 5 3
20
10
1A1 1A2 1A3 1A4 2A1 2A2 2A3 2A4
1G
2G
1Y1 1Y2 1Y3 1Y4 2Y1 2Y2 2Y3 2Y4
VCC
GND
+
C434 10uF 16V
T
C352 47PF 50V
C440
0.1uF 16V Z
R445 10K 1/16W
C398
N/0.1uF 25V Z
R42
N/0 1/16W
R435 N/10K 1/16W
L52 200+ Ohm
R402
N/0 1/16W
C61
0.1uF 25V Z
T
C369 47PF 50V
T
C365 47PF 50V
T
C372 47PF 50V
TP68
RP41 22 ohm
1 8 2 7 3 6 4 5
+
C433 10uF 16V
R429 N/10K 1/16W
R391
N/0 1/16W
R432
N/0
1/16W
R438 10K 1/16W
U20
74LVC244ADB
2 4 6
8 11 13 15 17
1
19
18 16 14 12 9 7 5 3
20
10
1A1 1A2 1A3 1A4 2A1 2A2 2A3 2A4
1G
2G
1Y1 1Y2 1Y3 1Y4 2Y1 2Y2 2Y3 2Y4
VCC
GND
T
C354 47PF 50V
T
C355 47PF 50V
U18
74LVC244ADB
2 4 6
8 11 13 15
17
1
19
18 16 14 12 9 7 5
3
20
10
1A1 1A2 1A3 1A4 2A1 2A2 2A3
2A4
1G
2G
1Y1 1Y2 1Y3 1Y4 2Y1 2Y2 2Y3
2Y4
VCC
GND
RP49 22 ohm
1 8 2 7 3 6 4 5
T
C368 47PF 50V
U66 N/DS90CF385A
1
917264434
31
50
2 51 52 54 55 56
3
8 10
4
6
7 11 12 14
5
132129
33
30
25
27
28
32
16 18 15 19 20 22 23 24
3536434953
40
39
48
47
46
45
42
41
38
37
VCC
VCC
R-FB
VCC
LVDS VCC
PLL VCC
TxCLK IN
TxIN27 TxIN5 TxIN0 TxIN1 TxIN2 TxIN3 TxIN4 TxIN6
TxIN10 TxIN11 TXIN7 TxIN8 TxIN9 TxIN12 TxIN13 TxIN14
GND
GND
GND
GND
PLL GND
TxIN26
TxIN23
TxIN24
TxIN25
PWR DWN
TxIN16 TxIN17 TxIN15 TxIN18 TxIN19 TxIN20 TxIN21 TxIN22
PLL GND
LVDS GND
LVDS GND
LVDS GND
GND
TxCLKOUT-
TxCLKOUT+
TxOUT0-
TxOUT0+
TxOUT1-
TxOUT1+
TxOUT2-
TxOUT2+
TxOUT3-
TxOUT3+
RP35 22 ohm
1 8 2 7 3 6 4 5
R393
N/0
1/16W
C442
0.1uF 25V Z
PGND
RP36
22 ohm 1 8 2 7 3 6 4 5
R433
100 1/16W
R408
N/0 1/16W
R448 N/10K 1/16W
T
C367 47PF 50V
R428 10K 1/16W
R325 0 1/16W
R227 N/0 1/16W
C62
0.1uF 25V Z
T
C422 N/22PF 50V
R228 N/0 1/16W
R423 0 1/16W
T
C363 47PF 50V
T
C356 47PF 50V
R431 N/0 1/16W
R226
0 1/16W
J20
CP1626-141--
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
GND
R0
R1
R2
R3
GND
R4
R5
R6
R7
GND
G0
G1
G2
G3
GND
G4
G5
G6
G7
GND
B0
B1
B2
B3
GND
B4
B5
B6
B7
GND
Hsync
GND
Vsync
GND
BLANK
GND
DCLK
GND
DISPEN
GND
TP14
T
C374 47PF 50V
R443
100 1/16W
C390 N/0.1uF 25V Z
+
Page 37
37 First issue 10 / 04
MAIN BOARD SCHEMATIC DIAGRAM: DIGITAL SYSTEM (IMAGE SCALING)
SSCLK SCLKB
MA_IP11
MA_IP13
SCS
SSI
SO
SCLK
SI
SSCLK
PID[16..23]
PCSI
PCSCS
PID[8..15]
PCn_MPU
DVI_CLK DVI_PICK
SSCS
PCSCS
PCn_MPU
PCSI
SSO
PCSCLK
PCSCLK
SSO
PID[24..31]
SSI
SSCS
MD_IP44
MD_IP43
MD_IP37
MD_IP0
GOUT4
PID39
PID3
PID0
SSO
MD_IP19
MD_IP4
PID46
PID17
PID14
SCLKB
MD_IP36
MD_IP30
MA_IP5
MA_IP4
PID42
PID25
PID16
VIP711
MD_IP38
MD_IP22
MD_IP11
MD_IP6
GOUT2
PID41
PID9
MD_IP35
MD_IP26
MD_IP15
MA_IP3
PID47
PID31
PID19
PID13
MD_IP40
MD_IP17
MD_IP9
MD_IP7
PID45
PID34
PID26
PID10
MD_IP41
MD_IP21
MD_IP14
MD_IP46
MD_IP45
MD_IP34
MD_IP10
MD_IP8
MA_IP10
GOUT6
GOUT5
PID32
MD_IP20
MD_IP18
MD_IP5
MA_IP13
PID21
PID6
PID[0..7]
MD_IP25
MD_IP12
MD_IP1
GOUT7
PID44
PID18
PID11
MD_IP39
MD_IP33
MA_IP11
MA_IP8
PID30
VIP711
MD_IP31
MD_IP29
MA_IP9
MA_IP7
GOUT3
PID38
PID37
PID27
VIP711
MA_IP2
POFLD
PID23
PID20
PID2
PID1
MD_IP16
MD_IP3
MA_IP1
GOUT1
PID36
PID24
PID22
PID12
PID[40..47]
PID[32..39]
MD_IP28
MD_IP13
PID35
PID33
PID29
MD_IP42
MD_IP27
MD_IP2
MA_IP6
MA_IP0
MA_IP12
GOUT0
PID40
PID4
MD_IP32
MD_IP24
MD_IP23
PID43
PID28
PID15
PID8
PID7
PID5
MD_IP47
ROUT1
ROUT4
ROUT0
ROUT3
ROUT2
ROUT5
ROUT6 ROUT7
BOUT0
BOUT5
BOUT7
BOUT1
BOUT3 BOUT4
BOUT2
BOUT6
CLK P[3,6]
R_OSD P[2] G_OSD P[2] B_OSD P[2]
DTEN P[2]
SSOP[18]
SIP[1]
SCSP[1]
SCLKP[1]
PID[0..7]P[7,8]
PID[8..15]P[7,8]
PID[16..23]P[7,8]
PID[24..31]P[7,8]
PID[32..39]P[7,8]
PID[40..47]P[7,8]
PICLKP[3]
PIVSP[3] PIHSP[3]
FREEZEP[1]
RSTnC711P[1,8]
BLANKn P[4]
HSYNCO P[2,4]
POCLK P[3,4] VSYNCO P[2,4]
ROUT[0..7] P[4]
GOUT[0..7] P[4]
BOUT[0..7] P[4]
MD_IP[0..47] P[6]
CSn_IP P[6] RASn_IP P[6] CASn_IP P[6] WRn_IP P[6] LDQM P[6] UDQM P[6]
SO P[1]
DVI_CLKP[8]
DVI_PICK P[3]
PCSCSP[18]
PCn_MPUP[18]
PCSIP[18]
SSOP[18]
PCSCLKP[18]
MA_IP[0..13] P[6]
V33
V33
V33
V33P
VIP711
VIP711
VIP711
VIP711
D
D
D
D
D
VIP711
D
D
D D
D
D
VIP711
VIP711
D
D
C77
0.1uF 25V Z
C66
0.1uF 25V Z
TP24
TP27
TP39
TP28
TP30
TP40
C76
0.1uF 25V Z
TP29
+ C65
22uF 16V
C69
0.1uF 25V Z
TP41
U24C 74LVT04
5
6
14
7
C84
0.1uF 25V Z
C78
0.1uF 25V Z
TP23
+C71
22uF 16V
U24A 74LVT04
1
2
14
7
C72 22uF 16V
TP42
C79
0.1uF 25V Z
J8 N/CON6
1 2 3 4 5 6
L15 0 1/8W
R403
N/0 1/16W
TP43
C73 22uF 16V
C83
0.1uF 25V Z
U24E 74LVT04
11
10
14
7
R89 10K 1/16W
TP31
R90 N/0 1/16W
TP44
R95 N/0 1/16W
R92 10K 1/16W
C80
0.1uF 25V Z
C85
0.1uF 25V Z
T
C424 47PF 50V
C68
0.1uF 25V Z
TP22
TP32
TP45
C75
0.1uF 25V Z
U24D 74LVT04
9
8
14
7
TP33
TP46
C70
0.1uF 25V Z
TP34
TP47
RP43 10K ohm
18 27 36 45
C74
0.1uF 25V Z
R96 0 1/16W
TP48
C82
0.1uF 25V Z
U24B 74LVT04
3
4
14
7
U22
74LVC157
2
3
5
6
11
10
14
13
1
15
4
7
9
12
16
8
1A
1B
2A
2B
3A
3B
4A
4B
A/B
G
1Y
2Y
3Y
4Y
VCC
GND
U23 IP00C713
190 191 192 193 194 195 196 197
198 199 201 203 204 205 206 207
208 209 210 211 214 215 216 217
218 219 220 221 222 223 225 226
227 228 229 230 231 232 233 234
235 238 239 240 241 242 243 244
245 246
248
250 251
118 120 122 123 124 125 127 129
130 131 132 135 136 137 138 140
142 143 144 145 148 149 150 151
152 155 156 157 158 159 162 163
164 165 166 169 170 171 172 173
176 177 178 179 181 183 184 185
105 116 115 117 189 104 186
107 110 111 112 106
767580818283868788899091929378910141516171220212223242728293031343536373841424344454849505153555657586162636466686970717327879773499
97
13192633404754606774859498
113
121
128
134
141
147
154
161
168
175
182
188
202
213
237
249
256
1096108
5
11182532394652
59
6572849596
114
119
126
133
139
146
153
160
167
174
180
187
200
212
224
236
247
255
253
2541252
100
101
102
103
PID0 PID1 PID2 PID3 PID4 PID5 PID6 PID7
PID8 PID9 PID10 PID11 PID12 PID13 PID14 PID15
PID16 PID17 PID18 PID19 PID20 PID21 PID22 PID23
PID24 PID25 PID26 PID27 PID28 PID29 PID30 PID31
PID32 PID33 PID34 PID35 PID36 PID37 PID38 PID39
PID40 PID41 PID42 PID43 PID44 PID45 PID46 PID47
PIVS PIHS
PICLK
PIFLD PIVSGO
POD0 POD1 POD2 POD3 POD4 POD5 POD6 POD7
POD8
POD9 POD10 POD11 POD12 POD13 POD14 POD15
POD16 POD17 POD18 POD19 POD20 POD21 POD22 POD23
POD24 POD25 POD26 POD27 POD28 POD29 POD30 POD31
POD32 POD33 POD34 POD35 POD36 POD37 POD38 POD39
POD40 POD41 POD42 POD43 POD44 POD45 POD46 POD47
POCLK
POVS POHS POFLD POEXT
PODMD
POACT
OSDDT0 OSDDT1 OSDDT2 OSDDT3
OSDEN
BA0
BA1
MA0
MA1
MA2
MA3
MA4
MA5
MA6
MA7
MA8
MA9
MA10
MA11
MD0
MD1
MD2
MD3
MD5
MD6
MD7
MD8
MD4
MD9
MD10
MD11
MD12
MD13
MD14
MD15
MD16
MD17
MD18
MD19
MD20
MD21
MD22
MD23
MD24
MD25
MD26
MD27
MD28
MD29
MD30
MD31
MD32
MD33
MD34
MD35
MD36
MD37
MD38
MD39
MD40
MD41
MD42
MD43
MD44
MD45
MD46
MD47
CS
RAS
CAS
MWR
DQM0
DQM1
MCLKSEL
MCLK
VDD
VDD
VDD
VDD
VDD
VDD
VDD
VDD
VDD
VDD
VDD
VDD
VDD
VDD
VDD
VDD
VDD
VDD
VDD
VDD
VDD
VDD
VDD
VDD
VDD
VDD
VDD
VDD
VDD
VDD
AVDD
VDD
AGND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GNDSSSISOSCLK
RST
TEST0
TEST1
TESTH
TP35
TP49
C81
0.1uF 25V Z
R94 N/0 1/16W
C64
0.1uF 25V Z
TP36
R91 0 1/16W
C67
0.1uF 25V Z
TP37
R93 10K 1/16W
TP50
TP25 TP26
TP38
JP3
N/HEADER 1X2
1
2
+ +
D
Page 38
First issue 10 / 04 38
MAIN BOARD SCHEMATIC DIAGRAM: DIGITAL SYSTEM (IMAGE SDRAM 16M)
MD_IP47
MD_IP33
MD_IP29
MD_IP14
CASn_IP
MD_IP23
RASn_IP
MD_IP45
CLK
MD_IP3
MD_IP28
CSn_IP
MD_IP43
MD_IP32
MD_IP9
MD_IP22
MD_IP17
MD_IP10
MD_IP7
MD_IP2
MD_IP27
MD_IP42
MD_IP39
MD_IP4
MD_IP31
WRn_IP
MD_IP18
MD_IP12
MD_IP41
MD_IP26
WRn_IP
MD_IP34
MD_IP30
LDQM
MD_IP0
MD_IP13
MD_IP44
MD_IP37
MD_IP46
MD_IP20
MD_IP16
MD_IP15
MD_IP25
UDQM
CLK
UDQM
MD_IP11
MD_IP19
MD_IP40
MD_IP35
RASn_IP
MD_IP36
MD_IP38
MD_IP6
MD_IP21
LDQM
MD_IP8
MD_IP5
CSn_IP
MD_IP24
MD_IP1
CASn_IP
UDQM
RASn_IP
LDQM
CSn_IP
VDRAM
WRn_IP
CASn_IP
CLK
MA_IP2
MA_IP12
MA_IP0
MA_IP10
MA_IP3
MA_IP6
MA_IP12
MA_IP10
MA_IP1
MA_IP5
MA_IP7
MA_IP9
MA_IP4
MA_IP6
MA_IP0
MA_IP0
MA_IP3
MA_IP9
MA_IP8
MA_IP8
MA_IP3 MA_IP2
MA_IP1
MA_IP5
MA_IP2
MA_IP4
MA_IP6
MA_IP4
MA_IP1
MA_IP10
MA_IP9
MA_IP8
MA_IP7
MA_IP7
MA_IP12
MA_IP5
MA_IP[0..13]P[5]
MD_IP[0..47]P[5]
UDQM P[5]
CASn_IP P[5]
RASn_IP P[5]
CSn_IP P[5]
CLK P[3,5]
LDQM P[5]
WRn_IP P[5]
D
VDRAM
VDRAM
D
V33TMP
VDRAM
D
VDRAM
VDRAM
VDRAM
D
VDRAM
C89
0.1uF 25V Z
L16 0 1/8W
U25
M12L16161A
21 22 23 24 27 28 29 30 31 32 20 19
14 36
18 17 16 15
35 34
33 37
2 3 5 6 8
9 11 12 39 40 42 43 45 46 48 49
1
25
7 44
26 50
10 47
4
13 38
41
A0 A1 A2 A3 A4 A5 A6 A7 A8 A9
A10/AP
BA
LDQM UDQM
CS
RAS
CAS
WE
CLK CKE
NC
NC/RFU
DQ0 DQ1 DQ2 DQ3 DQ4 DQ5 DQ6 DQ7 DQ8 DQ9 DQ10 DQ11 DQ12 DQ13 DQ14 DQ15
VDD
VDD
VDDQ VDDQ
VSS VSS
VSSQ VSSQ
VSSQ
VDDQ VDDQ
VSSQ
C98
0.1uF 25V Z
C94
0.1uF 25V Z
C90
0.1uF 25V Z
C95
0.1uF 25V Z
C91
0.1uF 25V Z
C87
0.1uF 25V Z
U27
M12L16161A
21 22 23 24 27 28 29 30 31 32 20 19
14 36
18 17 16 15
35 34
33 37
2 3 5 6 8
9 11 12 39 40 42 43 45 46 48 49
1
25
7 44
26 50
10 47
4
13 38
41
A0 A1 A2 A3 A4 A5 A6 A7 A8 A9
A10/AP
BA
LDQM UDQM
CS RAS CAS
WE
CLK CKE
NC
NC/RFU
DQ0 DQ1 DQ2 DQ3 DQ4 DQ5 DQ6 DQ7 DQ8 DQ9 DQ10 DQ11 DQ12 DQ13 DQ14 DQ15
VDD
VDD
VDDQ VDDQ
VSS VSS
VSSQ VSSQ
VSSQ
VDDQ VDDQ
VSSQ
C96
0.1uF 25V Z
C92
0.1uF 25V Z
U26
M12L16161A
21 22 23 24 27 28 29 30 31 32 20 19
14 36
18 17 16 15
35 34
33 37
2 3 5 6 8
9 11 12 39 40 42 43 45 46 48 49
1
25
7 44
26 50
10 47
4
13 38
41
A0 A1 A2 A3 A4 A5 A6 A7 A8 A9
A10/AP
BA
LDQM
UDQM
CS
RAS
CAS
WE
CLK CKE
NC
NC/RFU
DQ0 DQ1 DQ2 DQ3 DQ4 DQ5 DQ6 DQ7 DQ8 DQ9 DQ10 DQ11 DQ12 DQ13 DQ14 DQ15
VDD
VDD
VDDQ VDDQ
VSS VSS
VSSQ VSSQ
VSSQ
VDDQ VDDQ
VSSQ
C88
0.1uF 25V Z
+
C86 100uF 16V
C97
0.1uF 25V Z
C93
0.1uF 25V Z
Page 39
39 First issue 10 / 04
MAIN BOARD SCHEMATIC DIAGRAM: DIGITAL SYSTEM (FLAT PANEL INTERFACE)
FOR GIVS & GIHS
IIC ADDR:98H(W), 99(R)
PID19
DGA0
PID7
DGA3
DBB5
DRA5
DRA7
DGB2
DBA7
PID14
DGA1
DRA0
DGB1
DRA6
DBB4
DBA6
DRB1
DDCVSYNC
DBA3
DGA4
DGA7
DRB2
V33ADC
PID18
PID15
PID3
PID1
DRB5
DBB1
DGB5
PID21
DBA0
DBA5
DGB0
DRB4
DRA2
PID23
DRA4
PID8
DBB7
PID16
PID13
PID6
DGA6
PID9
DRB7
PID20
DRA3
DBB6
DBB2
DGA2
DRB6
DGB4
DGB6
PID2
DRB3
PID12
PID22
DBA2
PID0
DBA1
PLLHS
PID11
DGB3
DBB3
DBA4
DATACKn
DGB7
DRB0
DRA1
PID5
DBB0
PID4
DGA5
PID10
PID17
SCL2_33
SDA2_33
PID34
PID36
PID38
PID29
PID26
PID46
PID30
PID42
PID31
PID37
PID28
PID25
PID43
PID40
PID33
PID32
PID41
PID45
PID24
PID47
PID35
PID44
PID39
PID27
PD_9884nP[1]
SDA2P[1,2,10,12,13,14,18]
FGRINP[9]
FGGINP[9]
FGBINP[9]
FGHSP[3,9]
FGVSP[3,8,9]
DDCVSYNCP[3]
PIHSSP[3]
GIVS P[1]
GIHS P[1]
DATACK P[3]
PLLHSO P[3]
PID[40..47] P[5,8]
PID[16..23] P[5,8]
PID[24..31] P[5,8]
PID[32..39] P[5,8]
PID[0..7] P[5,8]
PID[8..15] P[5,8]
SCL2P[1,2,10,12,13,14,18]
SDA2_33P[2,4,13,18]
SCL2_33P[2,4,13,18]
V33SB
V33
D
V33PLL
V33ADC
D
V33ADC
D
V33PLL
VDD33
VDD33
VDD33
P5V
P5V
D
D
D
D
D
D
D
D
V33PLL
V33PLL
V33ADC
D
D
P5V
+ C115
10uF 16V
R108 33 1/16W
U30D
74LVT14
9
8
14
7
C116
0.1uF 25V Z
R389 0 1/16W
RP22 33 ohm
1 8 2 7 3 6 4 5
C121
0.1uF 25V Z
R102 75 1/16W
C102
0.1uF 25V Z
RP18 33 ohm
1 8 2 7 3 6 4 5
C138
0.1uF 25V Z
L40 200
C113
0.039uF 16V
RP20 33 ohm
1 8 2 7 3 6 4 5
L18 200
R318 33 1/16W
C105
0.1uF 25V Z
R113 33 1/16W
C134
0.1uF 25V Z
C131
0.1uF 25V Z
R98 0 1/16W
C126
0.01uF 50V
RP16 33 ohm
1 8 2 7 3 6 4 5
C117
0.1uF 25V Z
RP14 33 ohm
1 8 2 7 3 6 4 5
C122
0.1uF 25V Z
R99 N/150 1/16W
R103 75 1/16W
R111 33 1/16W
C420 N
C109
0.047uF 16V
C103
0.1uF 25V Z
R106 10K 1/16W
RP11 33 ohm
1 8 2 7 3 6 4 5
C107
0.1uF 25V Z
U29
AD9884AKS
35394247495152
53
122
123
637383
93
103
113
119
121
33344348505464748494104
114
120
112 111 110 109 108 107 106 105
102 101 100 99 98 97 96 95
92 91 90 89 88 87 86 85
82 81 80 79 78 77 76 75
72 71 70 69 68 67 66 65
62 61 60 59 58 57 56 55
115 116 117
1 2 3
4
8 10 11 16 18 19 23 25
124 128
125
27 28
29 30 31 32
7 15 22
127 126
36 37 38
40 41 44 45
5
6
9 12 13 14 17 20 21 24 26
46
118
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
GND
PVD
PVD
PVD
PVD
PVD
VDD
VDD
VDD
VDD
VDD
VDD
VDD
VDD
DRA0 DRA1 DRA2 DRA3 DRA4 DRA5 DRA6 DRA7
DRB0 DRB1 DRB2 DRB3 DRB4 DRB5 DRB6 DRB7
DGA0 DGA1 DGA2 DGA3 DGA4 DGA5 DGA6 DGA7
DGB0 DGB1 DGB2 DGB3 DGB4 DGB5 DGB6 DGB7
DBA0 DBA1 DBA2 DBA3 DBA4 DBA5 DBA6 DBA7
DBB0 DBB1 DBB2 DBB3 DBB4 DBB5 DBB6 DBB7
DATACK /DATACK
HSOUT
NC NC NC
VD VD VD VD VD VD VD VD VD VD VD
/PWRDWN CKINV CLAMP
SDA SCL A0 A1
RAIN GAIN BAIN
REFIN REFOUT
NC NC NC
HSYNC COAST CKEXT FILT
GND GND GND GND GND GND GND GND GND GND GND
NC NC
C135
0.1uF 25V Z
C132
0.1uF 25V Z
C128
0.01uF 50V
C118
0.1uF 25V Z
C108
0.047uF 16V
+
C99 10uF 16V
C106
0.01uF 50V
R97 N/10K 1/16W
T
C414 22PF 50V
C111
0.1uF 25V Z
R107 N/33 1/16W
C123
0.1uF 25V Z
R100 N/150 1/16W
R104 75 1/16W
R114 33 1/16W
C110
0.047uF 16V
C104
0.1uF 25V Z
RP21 33 ohm
1 8 2 7 3 6 4 5
C125
0.1uF 25V Z
C112 3900PF 50V
C100
0.1uF 25V Z
C136
0.1uF 25V Z
C139
0.1uF 25V Z
C133
0.1uF 25V Z
RP17 33 ohm
1 8 2 7 3 6 4 5
U30E
74LVT14
11
10
14
7
U30B
74LVT14
3
4
14
7
U28
BA033LBSG
1
2
3 4
5
VCC
GND
CTL C
OUT
U30A
74LVT14
1
2
14
7
RP19 33 ohm
1 8 2 7 3 6 4 5
C129
0.1uF 25V Z
C119
0.1uF 25V Z
TP51
R105 33 1/16W
R101 0 1/16W
C114
0.1uF 25V Z
RP15 33 ohm
1 8 2 7 3 6 4 5
R110 N/33 1/16W
TP52
RP10 33 ohm
1 8 2 7 3 6 4 5
U31
BA033
1
2
3
VIN
GND
VOUT
U30F
74LVT14
13
12
14
7
U30C
74LVT14
5
6
14
7
R317 33 1/16W
R48 N/0 1/16W
RP13 33 ohm
1 8 2 7 3 6 4 5
C120
0.1uF 25V Z
C127
0.1uF 25V Z
C101
0.1uF 25V Z
C137
0.1uF 25V Z
L19 200
+ C124
100uF 16V
R109
3.3K 1/16W
C130
0.1uF 25V Z
D
Page 40
First issue 10 / 04 40
MAIN BOARD SCHEMATIC DIAGRAM: DIGITAL SYSTEM (PANEL LINK RECEIVER DVI SIL161)
Hot Plug Detection
(SDA16
9)
(SDA169)
SiI161A
R238
O
R249
RESET*
DFO
X
X
SiI169
I2C Voltage Level Shifting
X
R116
O
O
X
X
O
R233
O
X
X
X
390 ohm
O
R233
R135
X
OCK_INV
X
R136
O
470 ohm
XO
X
RP45 R249 R231 Q20 Q21
EXT_RES
SCL
SiI161BParts
X
X
HS_DJTR
XX
Func.
R234
ST
SDA
X
R231
R251
X
O
X
O
X
X
O
R139
O
390 ohm
G(1)
M8p
S(2)
BSN20
D(3)
TMDSD2P TMDSD2N
RX0N
RX1N
TMDSD0P
TMDSD1N
RXCN
TMDSCP
TMDSD0N
RX1PTMDSD1P
RXCP
RX0P
RX2P
TMDSCN
RX2N
SDADVI
TMDSD2P
TMDSCN
C5
TMDSD2N
DVI_VS
PPP5V
TMDSD5N
TMDSD5P TMDSD4P
C5
TMDSCP
TMDSD4N
ANGVS
TMDSD0P
TMDSD1P
TMDSD1N
TMDSD0N
TMDSD3P
SCLDVI
TMDSD3N
SDADVITMDSD0P
DFO
SCLDVI
STAGOUT
TMDSD2P
TMDSD0N
ST
TMDSD2N
RESERVED
TMDSCP
TMDSCN
HS_DJTR
TMDSD1N
OCKINV
TMDSD1P
PIXS
ST
RX2P RX2N
SCL169
RESERVED
VDVID
RX1P
RXCP
RX1N
HS_DJTR
VDVIA
VDVIA
RX0N
DFO
RXCN
RX0P
OCKINV
DVI_VS
PIXS
SCDT
STAGOUT
PDO
DFO
SCLDVI
SCL169
ST
SDADVI
PID19
PID26
PID44
PID3
PID40
PID23
PID8
PID24
PID43
PID38
PID29
PID9
PID4
PID42
PID14
PID47
PID34
PID12
PID27
PID2
PID18
PID21
PID10
PID25
PID46
PID5
PID28
PID6
PID1
PID0
PID11
PID36
PID22
PID31
PID15
PID17
PID16
PID30
PID32
PID39
PID41
PID35
PID7
PID37
PID33
PID45
PID20
PID13
VDVID
FGVS P[3,7,9]
OCKINVP[1]
DVI_CLKP[5]
PD_DVInP[1]
DVI_VSP[3]
DVI_HSP[3]
PID[40..47] P[5,7]
PID[0..7] P[5,7]
PID[24..31] P[5,7]
PID[32..39] P[5,7]
PID[16..23] P[5,7]
PID[8..15] P[5,7]
RSTnC711 P[1,5]
D
D
D
D
SB5V
DVI_5V
D
D
D
D
DVI_5V
D
PPP5V
D
V33SB
D
D
V33
VDVIA
V33SB
V33SB
V33SB
SB5V
RP34 33 ohm
1 8 2 7 3 6 4 5
R116 390 1/16W
RP29 33 ohm
1 8 2 7 3 6 4 5
RP45 10K ohm
1827364
5
C145 330PF 50V
R136 N/0 1/16W
Q21 BSN20
3
1
2
RP32 33 ohm
1 8 2 7 3 6 4 5
R143 N/0 1/16W
R238 0 1/16W
R144 10K 1/16W
Q20 BSN20
3
1
2
RP27 33 ohm
1 8 2 7 3 6 4 5
+
C152 10uF 10V M
D15 BAV99
R231 33 1/16W
R249 33 1/16W
C146 330PF 50V
R127 N/0 1/16W
RP25 33 ohm
1 8 2 7 3 6 4 5
R140 N/0 1/16W
C157
0.1uF 25V Z
C151 330PF 50V
D2 RLS4148
C149 330PF 50V
T
C144 330PF 50V
J24 T128A-BJST
1 2 3 4 5 6 7 8 9 10
RP23 33 ohm
1 8 2 7 3 6 4 5
R138 10K 1/16W
R122 33 1/16W
C153 100PF 50V
U33
AT24C21
1
2
3
45
6
7
8
A0
A1
A2
VSSSDA
SCL
TEST
VCC
R141 N/0 1/16WD13
BAV99
T
C140
100PF
50V
TP57
R121 33 1/16W
R233 0 1/16W
C154 100PF 50V
C155 100PF 50V
+
C142 10uF 10V M
R137 N/0 1/16W
R87 120 /2A
TP58
RP30 33 ohm
1 8 2 7 3 6 4 5
R142 10K 1/16W
R133 N/0 1/16W
RP33 33 ohm
1 8 2 7 3 6 4 5
L20 N/0 1/8W
R123 0 1/16W
R117
4.7 1/16W
R124 0 1/16W
+
C141 10uF 10V M
TP59
D17 BAV99
RP28 33 ohm
1 8 2 7 3 6 4 5
D14 BAV99
RP31 33 ohm
1 8 2 7 3 6 4 5
D16 BAV99
R251 10K 1/16W
TP60
R120 10K 1/16W
J9 D1555-128--
1
2
3
4
5
6
7
8
17
18
19
20
21
22
23
24
9
11
13
15
10
12
14
16
C1
C5C5
C2
C3
C4
L22 120 /2A
RP26 33 ohm
1 8 2 7 3 6 4 5
C148 330PF 50V
R134 10K 1/16W
R252 N/0 1/16W
+
C158 10uF
16V
TP53
L21 120 /2A
C150 330PF 50V
R128 N/0 1/16W
R126
N/1K
1/16W
D18 BAV99
RP24 33 ohm
1 8 2 7 3 6 4 5
R118 2K 1/16W
R234 0 1/16W
C156 100PF 50V
TP54
L23
120 /2A
D8 BAV99
R139 0 1/16W
D12 BAV99
R115
4.7 1/16W
R135 0 1/16W
D3 RLS4148
TP55
J23 T128A-BJST
1 2 3 4 5 6 7 8 9 10
+
C143 10uF 10V M
U32
SII161BCT
49 50 51 52 53 54 55 56
59 60 61 62 63 64 65 66
69 70 71 72 73 74 75 77
10 11 12 13 14 15 16 17
20 21 22 23 24 25 26 27
30 31 32 33 34 35 36 37
18 29 43 57 78
6 38 67
19 28 45 58 76
5 39 68
97 98
79 83 87 89 92 82 84 88 95
80 81
85 86
90 91
93 94
96
99
100
1
2
3
4
7 8 9
48 47 46 44
40 41 42
QO0 QO1 QO2 QO3 QO4 QO5 QO6 QO7
QO8
QO9 QO10 QO11 QO12 QO13 QO14 QO15
QO16 QO17 QO18 QO19 QO20 QO21 QO22 QO23
QE0
QE1
QE2
QE3
QE4
QE5
QE6
QE7
QE8
QE9
QE10 QE11 QE12 QE13 QE14 QE15
QE16 QE17 QE18 QE19 QE20 QE21 QE22 QE23
OVCC OVCC OVCC OVCC OVCC
VCC VCC VCC
OGND OGND OGND OGND OGND
GND GND GND
PVCC PGND
AGND AGND AGND AGND AGND AVCC AVCC AVCC AVCC
RX2+ RX2-
RX1+ RX1-
RX0+ RX0-
RXC+ RXC-
EXT_RES
RESERVED OCK_INV&SCL DFO&RST PD ST&SDA PIXS
STAG_OUT
SCDT
PDO
HSYNC VSYNC DE ODCK
CTL1&HS_DJTR CTL2&OCK_INV CTL3
R119 10K 1/16W
C147 330PF 50V
D11 BAV99
R125 10K 1/16W
D4 BAV99
TP56
T T
T T
T T T T T
P5V
1
3
2
P5V
1
3
2
P5V
1
3
2
P5V
1
3
2
1
3
2
PPP5VP5V
1
3
2
P5V
1
3
2
P5V
1
3
2
P5V
1
3
2
1
3
2
T T
Page 41
41 First issue 10 / 04
MAIN BOARD SCHEMATIC DIAGRAM: DIGITAL SYSTEM (VGA INPUT/OUTPUT)
SYNC SIGNAL PROCESSOR
VGA IN
VGA OUT
HS
VGA_GIN
VGA_BIN
SCL_RGB
VGA_RIN
SCL_RGB
VGAHSOUT
VGA_GOUT
VGA_VSIN
RGB_GIN
SDA_RGB
VGA_ROUT
VGA_HSIN
FGHS
VGAVSOUT
VGA_BOUT
VS
FGVS
FGHS
SC_RGB
SCL_RGB
SD_RGB
SDA_RGB
SDA_RGB
HS
RGB_VS
BOUT
YPBPR_HS
FGVS
BIN
RIN
FGVS
ROUT
YPBPR_VS
RGB_DHS
RGB_DVS
GIN
FGHS
RGB_HS
GOUT
GOUT
VS
YPBPR_RP[12]
FGRIN P[7]
YPBPR_VSP[12]
YPBPR_GP[12]
YPBPR_BP[12]
FGBIN P[7]
FGHS P[3,7]
YUVn_RGB P[1]
FGVS P[3,7,8]
SOGn P[1]
YPBPR_HSP[12]
FGGIN P[7]
VGA_RINP[19]
VGA_GINP[19]
VGA_BINP[19]
BINP[19]
GINP[19]
RINP[19]
RGB_DVSP[19]
RGB_DHSP[19]
RGB_GINP[19]
RGB_VS P[19]
RGB_HS P[19]
P5V
D
D
P9V
SB5V_V
V
V
SB5V
A
V
V
SB5V_V
V
SB5V_V
V
V
SB5V_V
V
V
V
SB5V_V
SB5V_V
SB5V_V
SB5V_V
V
A
VGA_5V
VGA_5V
SB5V_V
SB5V_V
A
SB5V_V
V
V
V
V
V
V
V
V
V
SB5V_V
SB5V_V
V
V
V
A5VA5V
V
V
V
V
V
V
V
V
V
V
V
SB5V_V
SB5V_V
V
V
SB5V_VO
V
S2 D1550-115--
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
R370 220 1/16W
D27 N/RLS4148
+
C58 10uF 16V
T
C383 180PF 50V
Q7 2SC2412KBQ
R152 N/0 1/16W
F11 0 1/8W
+
+
C381 100uF 16V
R374
120 1/16W
C175 47uF 16V
R148
1.2K 1/16W
R387
1.8K 1/16W
C410 47uF 16V
T
C387 560PF 50V
+
C172 47uF 16V
D43 RLS4148
R334 56K 1/16W
R354 0 1/16W
Q11 2SC2412KBQ
R153 470K 1/16W
R158 N/4.7 1/16W
U35 Socket
I1177-108-­1 2 3 4 5
6
7
8
R371 220 1/16W
R418 N/0 1/16W
R160 100 1/16W
Q43 2SC2412KBQ
C386
4.7uF 35V
C408
0.1uF 25V Z
C174
0.01uF 50V
D39 RLS4148
ZD1 MTZJ7.5B
D31 BAV99
1 2
R338 1K 1/16W
Q8
2SC2412KBQ
D45 RLS4148
R168 1K 1/16W
F13 0 1/8W
C388
0.068uF 16V
R151
1.2K 1/16W
R161 10K 1/16W
R88 56K 1/16W
R156 10K 1/16W
R376 10 1/16W
Q44 2SC2412KBQ
R336 56K 1/16W
+
C384
4.7uF 35V
F14 RFILN1020-1---A
1
2
3
C168
0.01uF 50V
R326 0 1/16W
U35
AT24C21
1
2
3
45
6
7
8
A0
A1
A2
VSSSDA
SCL
TEST
VCC
+
C405 10uF 16V
T
C177 470PF 50V
R145 100 1/16W
R377 10 1/16W
D29 BAV99
132
D40 RLS4148
D22 BAV99
132
R337 1K 1/16W
Q9
2SC2412KBQ
R335 1K 1/16W
R155
1.2K 1/16W
R162 10K 1/16W
+
C179 47uF 16V
R129 56K 1/16W
R372 120 1/16W
C171 47uF 16V
D26 BAV99
132
T
C181
100PF
50V
+
C385
4.7uF 35V
C170
0.01uF 50V
R150 100 1/16W
F16 RFILN1020-1---A
1
2
3
R330 0 1/16W
R167 75 1/16W
C178
0.1uF 25V Z
D23 BAV99
132
+
+
+
C391 10uF 16V
D25 RLS4148
R351 0 1/16W
C382
0.01uF 50V
U34
BA7657F
16
12
13
14
24
23
22
15
19
21
1
3
5
7
9
11
20
4
6
8
10
2
CTL
VDINA
VDINB
VDOUT
HDINA
HDINB
HDOUT
BOUT
GOUT
ROUT
RINA
GINA
BINA
RINB
GINB
BINB
VCC
GGND
BGND
RGND
GND
HD-DETEC
R331 47K 1/16W
IC13 HEF4053BT
12
13
2
153
6 11
10
9
14
15416
7
8
X0
X1
Y0
Y1Z0Z1
INH A
B
C
X
Y
Z
VCC
VEE
GND
D42 RLS4148
D50 RLS4148
R419 N/0 1/16W
R369 220 1/16W
R332
6.8K 1/16W
+
C160 22uF 16V
F10 0 1/8W
D41
RLS4148
C409 10uF 16V
R383 10 1/16W
R165
1.2K 1/16W
U64 M53347FP
2019181716
151413
1
2
3
4
5
6
7
8
9
10 11
12
R373
120 1/16W
F9 0 1/8W
C389
4.7uF 35V
+
C173 47uF 16V
C161
0.1uF 25V Z
R339 10K 1/16W
F8 0 1/8W
R154 100 1/16W
Q48 2SC1213C
F17 0 1/8W
D24 BAV99
132
R333 56K 1/16W
R353 0 1/16W
R157
4.7 1/16W
S1 D1550-115--
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
V
V
+
+
BOUT
SB5V_V
SB5V_VO
R159 100 1/16W
R166
1.2K 1/16W
F15
0 1/8W
Q12
2SC2412KBQ
C182
100PF
50V
D30 BAV99
FGVS
SB5V_V
R170 1K 1/16W
F18 0 1/8W
D32 BAV99
R169 75 1/16W
V
V
132
T
3
ROUT
SB5V_V
SB5V_VO
V
V
D28 BAV99
C180
100PF
50V
R163 100 1/16W
132
F12 0 1/8W
R164
1.2K 1/16W
T
Q10 2SC2412KBQ
V
132
+
Page 42
First issue 10 / 04 42
MAIN BOARD SCHEMATIC DIAGRAM: VIDEO SYSTEM (AUDIO & VIDEO SWITCH)
COMPOSITE
AV1_L
AV1_R
S2_L
S2_R
AV3
DVI_L
YUV2_L
YUV1_L
S2_C
S2_Y
RGB_L
DVI_L
RGB_R DVI_R
DVI_R
S3_C
RGB_DVI_L
RGB_DVI_R
RGB_DVI_R
RGB_DVI_L
YUV1_R
S3_Y
M_VIDEOP[13]
M_YP[13]
M_CP[13]
L_INP[18]
R_INP[18]
SDA2 P[1,2 ,7,12,13,14,18]
SCL2 P[1,2,7,12,13,14,18]
S2_Y P[18]
S2_C P[18]
RGB_L P[18]
DVI_L P[18]
RGB_R P[18]
DVI_R P[18]
RGBn_DVI P[1,3]
DV1_RP[18]
DVI_LP[18]
AV3
S2_RP[18]
S2_LP[18]
AV1_RP[18]
AV1_LP[18]
COMPOSITEP[18]
DACM_RP[18]
TVP[18]
DACM_LP[18]
YUV2_LP[18]
YUV2_RP[18]
YUV1_LP[18]
YUV1_RP[18]
S_C P[14]
S_Y P[14]
S_VIDEO P[14]
TEXT_INP[18]
Y1 P[11,18]
C1 P[18]
S3_C
S3_Y
A
A
A
A
A
V
V
V
V
P9V
P9V
P9V
A5V
V
V
V
+9V
V
V
A
R225
1K
1/16W
C188 N/2.2uF 50V
R189 10 1/16W
+
C202 220uF 16V
R201 N/47K 1/16W
RA378 N/22 1/16W
R176 N/3.3K 1/16W
C198 N/2.2uF 50V
C242 22uF 16V
R375 N/75 1/16W
R365 75 1/16W
R211 150 1/16W
R367 N/75 1/16W
C213 N/0.1uF 25V Z
RA174
0
1/16W
R366 75 1/16W
N/R204 N/47K 1/16W
C209
0.01uF 50V
C199 N/2.2uF 50V
R214 N/3.3K 1/16W
C187 N/2.2uF 50V
C193 10uF 16V
Q14 2SC2412KBQ
R190
4.7K 1/16W
R173 N/3.3K 1/16W
C212 N/0.1uF 25V Z
Q15 2SC2412KBQ
R199 N/3.3K 1/16W
C184 N/2.2uF 50V
R364 75 1/16W
R416 N/22 1/16W
R171
N/3.3K 1/16W
R206 N/3.3K 1/16W
RT10 N/0 1/16W
R174 N/47K 1/16W
R179 N/3.3K 1/16W
RA173 0 1/16W
C191 47uF 16V
R208
1.5K 1/16W
R186 N/47K 1/16W
R215
1.5K 1/16W
++
C183 N/2.2uF
50V
Q19
2SC2412KBQ
R221
1.5K 1/16W
L31 0 1/8W
C195 N/47uF 16V
+
C204 N/22uF 16V
R218
1.5K 1/16W
R172 N/47K 1/16W
C393 N/0.1uF 25V Z
R175 N/10 1/16W
R212 N/47K 1/16W
R192 10 1/16W
R193 N/10 1/16W
U42 N/HEF4053BT
1213215
3
6
11109
14
15
4
16
7
8
X0X1Y0
Y1
Z0
Z1
INH
ABC
X
Y
Z
VCC
VEE
GND
R368 N/75 1/16W
C203 22uF 16V
++
C250 N/10uF 16V
C208 N/2.2uF 50V
R207 N/47K 1/16W
C252 N/0.1uF 25V Z
R213
1.5K 1/16W
R181 N/3.3K 1/16W
R205 1K 1/16W
IC1 TA8851CN
1234567891011121314151617
18
192021222324252627
5453525150494847464544434241403938
37
363534333231302928
LIN E2
VIN E2
RIN E2
LIN E1
VIN E1
RIN E1
VIN S1
LIN S1
YIN S1
RIN S1
CIN S1
GND 1
VIN S2
LIN S2
YIN S2
RIN S2
CIN S2
VCC
VIN S3
LIN S3
YIN S3
RIN S3
CIN S3
GND2
MUTE
SDA
SCL
LIN E4
VIN E4
RIN E4
LIN E3
VIN E3
RIN E3
YIN 1
CLAMP 1
VOUT 1
LOUT 1
YOUT 1
ROUT 1
COUT 1
LOUT D
CIN 1
ROUT D
YIN 2
CLAMP 2
VOUT 2
LOUT 2
YOUT 2
ROUT 2
COUT 2
O 3
CIN 2
I/O 2
I/O 1
+
C185 N/10uF 16V
R183 N/47K 1/16W
R184 10K 1/16W
+
C211 N/100uF 16V
C194 N/22uF 16V
C406 N/10uF 16V
R198 100 1/16W
C189 N/2.2uF 50V
L36 N/0 1/8W
R196 N/47K 1/16W
C190 47uF 16V
R414 N/47K 1/16W
R180 N/47K 1/16W
+
C186 N/2.2uF
50V
R195 N/100 1/16W
C192 N/1uF 50V
R188
4.7K 1/16W
C392
0.1uF 25V Z
R200 100 1/16W
R222
1.5K 1/16W
R210 N/3.3K 1/16W
+
C197 220uF 16V
Q17
2SC2412KBQ
R216 N/47K 1/16W
Q16 2SC2412KBQ
C196
0.01uF 50V
C206 N/2.2uF 50V
R378 10 1/16W
R223 150 1/16W
R224 220 1/16W
R194 N/3.3K 1/16W
R219
1.5K 1/16W
R202 220 1/16W
R379 10 1/16W
RT14
0
1/16W
+
C210 220uF 16V
C205 N/2.2uF 50V
R185 N/3.3K 1/16W
RT11
N/0
1/16W
R209
1.5K 1/16W
C407 N/10uF 16V
R187 10 1/16W
R220 150 1/16W
C201
0.01uF 50V
R415 N/47K 1/16W
R182
4.7K 1/16W
R177 N/47K 1/16W
R178 10K 1/16W
R203 N/3.3K 1/16W
RT13 N/0 1/16W
+
++ C207 N/2.2uF 50V
R388
27
1/16W
R191
47K
1/16W
R197
4.7K 1/16W
R217 150 1/16W
Q18
2SC2412KBQ
A
V
A
V
A
A
+
A
+ +
V
V
V
V
+
A
A
+
A
+
AA
+
+
+
+
+
+
+
A
A
V
V
V
V
V
A
V
V
+
A
+
A
V
V
V
Page 43
43 First issue 10 / 04
MAIN BOARD SCHEMATIC DIAGRAM: VIDEO SYSTEM (YUV SWITCH)
A
A
H
CON2
L
B
CON3
CON1
BBA
V12
PTV_Y0
PTV_Y
Y0_IN
PTV_CR
PR_IN
PTV_CR
V11
B1
Y0_IN
V13
V11
PTV_CB
V12
PTV_CB
PB_IN
PR_IN
V13
PB_IN
B1
PTV_Y0
YUV_SPSWP[1]
HSYNC_MP P[1]
DPTV_Y2 P[12]
15Kn_MPP[1,12]
DPTV_CB_S P[14]
PR_IN P[12]
PTV_Y0P[13]
Y2P[18]
PR2_CR2P[18]
HSYNC_SP P[1]
Y0_IN P[12]
PB1_CB1P[18]
Y1P[10,18]
YUV_SWP[1]
DPTV_PR P[13]
DPTV_PB P[13]
PTV_CRP[13]
PR1_CR1P[18]
PB2_CB2P[18]
PTV_CBP[13]
15Kn_MPTP[12]
DPTV_Y_S P[14]
PB_IN P[12]
B1P[12]
DPTV_CR_S P[14]
P5V_COLOR
P9V
V
V
P9V
V
V
V
V
R427 N/0 1/16W
R237 2K 1/16W
R244 N/0 1/16W
R361 75 1/16W
C249 47uF 16V
C229 47uF 16V
+C259
100uF 16V
C251 10uF 16V
C222 10uF 16V
J27 T1286-BJST
1
2
3
4
5
6
R253 N/0 1/16W
+++
C215 47uF 16V
+ + + + + +
C246 10uF 16V
C218
0.01uF 50V
C236 1uF 50V
T
C265 100PF 50V
R248
3.9K 1/16W
R241 180 1/16W
R243 150K
1/16W
IC7
M52055FP
1
14
9 7
12
2
13
6
5
3
15
4
10
16
11
8
I/P 1B
I/P 2B
I/P 3B CON 3
CON 2
CON 1
Vcc
OUT 3
OUT 2
OUT 1
GND 1
GND 2
GND 3
I/P 1A
I/P 2A
I/P 3A
IC3
M52055FP
1
14
9 7
12
2
13
6
5
3
15
4
10
16
11
8
I/P 1B
I/P 2B
I/P 3B CON 3
CON 2
CON 1
Vcc
OUT 3
OUT 2
OUT 1
GND 1
GND 2
GND 3
I/P 1A
I/P 2A
I/P 3A
R250 220K 1/16W
R256 1K 1/16W
RT12 0 1/16W
C231 10uF 16V
IC2
M52055FP
1
14
9 7
12
2
13
6
5
3
15
4
10
16
11
8
I/P 1B
I/P 2B
I/P 3B CON 3
CON 2
CON 1
Vcc
OUT 3
OUT 2
OUT 1
GND 1
GND 2
GND 3
I/P 1A
I/P 2A
I/P 3A
R321 N/0 1/16W
R254 10 1/16W
C253 10uF 16V
C247
0.01uF 50V
R229 0 1/16W
R363 75 1/16W
C228
0.01uF 50V
C221 10uF 16V
C256 47uF 16V
R240 N/0 1/16W
J26 T1286-BJST
1
2
3
4
5
6
R232
3.9K 1/16W
+
C224 100uF 16V
T
C232 100PF 50V
R246 0 1/16W
R319 N/0 1/16W
IC4
LA7213
12345
VIDEO IN
H.D. OUT
GND
V.D. OUT
VCC
R242 N/0 1/16W
R236 0 1/16W
C235
0.01uF 50V
C220 10uF 16V
16V
R362 75 1/16W
IC6
LA7213
12345
VIDEO IN
H.D. OUT
GND
V.D. OUT
VCC
+
+
C219 10uF 16V
R359 680 1/16W
R235 10 1/16W
C225
0.01uF 50V
R405 N/0 1/16W
C237 100uF 16V
R247 180 1/16W
+
C241 100uF 16V
R358 680 1/16W
C227 N/47uF 16V
R255 N/0 1/16W
R239 1K 1/16W
R230 10 1/16W
+
C248 1uF 50V
R407 N/0 1/16W
C223 10uF
C217 47uF 16V
R320 0 1/16W
C260
0.01uF 50V
+
C226 100uF 16V
R360 680 1/16W
C258 10uF 16V
+
C214 10uF 16V
C230 10uF 16V
V
V
V V
V
V V
V
V
V
V V
V
V
V
VV
V
+
+
+
V
V
V
+
V
+
V
+
V
+
+
Page 44
First issue 10 / 04 44
MAIN BOARD SCHEMATIC DIAGRAM: VIDEO SYSTEM (COLOR SPACE)
FBP
YPBPR_HS
FBP
DPTV_Y1P[13]
Y0_INP[11]
YPBPR_HS P[9]
YPBPR_R P[9]
YPBPR_G P[9]
DPTV_Y2P[11]
YPBPR_B P[9]
YPBPR_VS P[9]
B1P[11]
PR_INP[11]
SCL2 P[1,2,7,10,13,14,18]
PB_INP[11]
SDA2 P[1,2,7,10,13,14,18]
DPTV_VSP[13]
DPTV_HSP[13]
15Kn_MPP[1,11]
15Kn_MPTP[11]
P5V_COLOR
P5V_COLOR
V
P5V_COLOR
P9V
P5V_COLOR
P12V
P5V_COLOR
P5V_COLOR
P9V
P5V_COLOR
V
+9V
P9V
V
P5V_COLOR
P9V
P9V
A5V
R272 0 1/16W
Q28
N/2SC2412KBQ
R309 1M 1/16W
C275 1uF 50V
C430 N/1000PF 50V
L38 0 1/8W
R262 18K 1/16W
R275 18K 1/16W
IC12
74HC221D
1
234
5
6
7
8
9
10
11
12
13
14
15
16
1A
1B
1RD1Q2Q
2CEXT1QGND 2A
2B
2RD
2Q
1Q
1CEXT
1RCEXT
VCC
R297 33K 1/16W
Q34 N/2SA1037KQ
R266 N/100K 1/16W
R424 N/0 1/16W
U44
N/ML7809FA
1
2
3
VIN
GND
VOUT
C272
0.01uF 50V
R257 10 1/16W
R264 18K 1/16W
Q39 N/2SA1037KQ
R49 0 1/16W
D35 N/RLS4148
+
C281
2.2uF 50V
R288
2.2K 1/16W
+
C284 N/47uF 16V
R293 N/3.9K 1/16W
Q38 2SC2412KBQ
+
C277 N/22uF 16V
R276 N/1.5K 1/16W
R269 180 1/16W
R263 0 1/16W
R426 N/0 1/16W
R279 N/1K 1/16W
R277 N/3.3K 1/16W
R380 10 1/16W
R274 N/39K 1/16W
RT5 22K 1/16W
C271 10uF 16V
R311 0 1/16W
Q32
N/2SC2412KBQ
C298
0.01uF 50V
R299 82K 1/16W
R278 N/5.6K 1/16W
R265 N/10K 1/16W
R381 10 1/16W
R357
1.2K 1/16W
R355
1.2K 1/16W
C292
0.01uF 50V
Q46
n/DTC144EKA
C267
0.1uF 25V Z
D58 0 1/8W
C288
0.22uF 50V
Q33 2SC2412KBQ
R329
3.3K 1/16W
R294 0 1/16W
R307 30K 1/16W
C286
2.2uF 50V
T
T
C306 180PF 50V
R286 100 1/16W
R305
8.2K 1/16W
Q35 N/2SC2412KBQ
C276
2.2uF 50V
C279
0.1uF 25V Z
L39 0 1/8W
R285 N/1.5K 1/16W
Q45
DTC144EKA
R283 30K 1/16W
CT2
0.1uF 25V Z
R132 N/0 1/16W
T
C300 22PF 50V
RT7 0 1/16W
R302 22K 1/16W
C290
0.01uF 50V
R304 N/27K 1/16W
R356
1.2K 1/16W
R280 820 1/16W
C294
0.01uF 50V
Q36
N/2SC2412KBQ
Q25 2SC2412KBQ
C283 1uF 50V
+
C415 10uF 16V
R267 N/3.3K 1/16W
RT9 0 1/16W
C245 N/100PF 50V
R312 N/3.3K 1/16W
C293 1000PF 50V
C304
0.1uF 25V Z
Q31
N/2SA1037KQ
RT1 0 1/16W
D54 0 1/8W
R258 0 1/16W
R322 N/0 1/16W
R301 22K 1/16W
R295
5.6K 1/16W
U43
TA1276AF
727069676564636261595857545352504947464543424140383735
34
73747678801235678910111315171819202122242527293132
FSC O/P
SCP O/P
SECAM
Y1 O/P
U/Q O/P
V/1 O/P
1H DL
4.43MHz
M PAL
3.58MHz
APC
VCC1(5V)
CHROMA I/P
CGND
Y1/SYNC I/P
V-SEP
HD O/P
SYNC. O/P
DEF GND
AFC
VCO
VCC(9V)
H. O/P
Curve Adjust
FBP I/P
DGND
SDA
SCL
SENSE I/P
R S/H
COLOR
Y2 I/P
U/Q I/P
V/I IN
BPH
APL
VSM O/P
YM I/P
VCC3(9V)
ABCL I/P
TEXTGND2
TEXTGND1
R O/P
G O/P
B O/P
VCC2(9V)
R I/P
G I/P
B I/P
YS1
ANA_R
ANA_G
ANA_B
YS2
VP O/P
G S/H
B S/H
IC9
78M05A
1
2
3
VIN
GND
VOUT
R300 150K 1/16W
Q29 N/2SC2412KBQ
C280
0.1uF 25V Z
D36 N/RLS4148
C307 180PF 50V
C268 22uF 16V
R292 470 1/16W
R270 N/1K 1/16W
IC10
LA7213
12345
VIDEO IN
H.D. OUT
GND
V.D. OUT
VCC
C296 N/100uF 16V
Q30 2SC2412KBQ
R245 N/2K 1/16W
C269 330uF 16V
R259 0 1/16W
R261 0 1/16W
R298 33K 1/16W
Q42
DTC144EKA
+
CT1 1uF 50V
D37 RLS4148
Q40 DTC144EKA
R284 30K 1/16W
RT4 N/0 1/16W
C301 33PF 50V
R327 N/1K 1/16W
Q37
2SC2412KBQ
QT1 2SC2412KBQ
Q41
N/DTC144EKA
R289 N/12K 1/16W
+
C285 N/33uF 16V
D38 RLS4148
C289
2200PF
50V
R260 0 1/16W
+
C273
2.2uF 50V
R308 1K 1/16W
C266 100uF 16V
D57 N/RLS4148
R53 N/0
1/16W
R303 47K 1/16W
RT8 0 1/16W
IC11
74HC4538D
1
2
3
4
5
6
7
8 9
10
11
12
13
14
15
16
1CTC
1RCTC
1RD
1A1
1A01Q1Q
GND 2Q
2Q
2A0
2A1
2RD
2RCTC
2CTC
VCC
R290 N/6.8K 1/16W
RT3 0 1/16W
RT2 0 1/16W
T
C305 47PF 50V
T
R291 N/12K 1/16W
R281 100 1/16W
Q26
2SC2412KBQ
+
C297 1uF 50V
R306 100 1/16W
R406
N/0
1/16W
C274
2.2uF 50V
C287 330uF 16V
R425 N/0 1/16W
C308 100PF 50V
C278
0.1uF 25V Z
R287 10K 1/16W
R273 N/100 1/16W
R296 N/47K 1/16W
D34
N/RLS4148
R328 N/5.6K 1/16W
R271 N/1K 1/16W
+
C291
100uF
16V
R310 100K 1/16W
D55 0 1/8W
C282
2.2uF 50V
Q47 N/DTC144EKA
R268 N/2.7K 1/16W
C295 100uF 16V
C270
0.01uF 50V
R323 N/3.3K 1/16W
T
T
C302 33PF 50V
R282 N/1.2K 1/16W
T
C303 33PF 50V
Q27 N/2SC2412KBQ
C299 100uF 16V
V
V
V
T
V
V
V
+ +
+
+
+
+
+
+ +
+
+
+ +++
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
Page 45
45 First issue 10 / 04
MAIN BOARD SCHEMATIC DIAGRAM: VIDEO SYSTEM (PANEL TV MAIN PICTURE)
PULL LOW
DEFAULT:
PANEL TV MAIN-PICTURE
AGND4
AGND3
AGND3
AGND3
AGND3
AGND3
AGND3
AGND4
AGND3
VSSA 2
VSSA 4
AVDD1
XTLO
PS_DPTV
RT1
VSPIP
CLKPIP
DQM_MP5
MA_MP8
CLKMP
WR#
DQM_MP7
DQM_MP4
MA_MP1
PS_DPTV
P2
DQM_MP2
AVDD-BG
ALE
XTLI
VPROT_M
P5
DQM_MP0
MA_MP9
VLF
HSMP
RD#
AVDD
AVDDA4
MCLK_MP
HSPIP
Cr
CS0n_MP
CASn_MP
AVDDA2
P7
MA_MP3
VSMP
CVBS1
AVDDA1
DQM_MP1
RST
P6
P1
MA_MP5
MLF
CVBS4
C
P4
IRSET
MA_MP4
Cb
P3
P0
Y
RASn_MP
BA_MP
MA_MP7
MA_MP0
WEn_MP
AVDDA3
DQM_MP6
TEST
XTLO
DQM_MP3
MA_MP6
MA_MP2
INT
SC_33
SD_33
AVDDA5
AVDDA5
XTLO
AS_MP
MD_MP47
MD_MP36
MD_MP5
MD_MP54
MD_MP12
MD_MP34
MD_MP29
MD_MP49
MD_MP15
MD_MP52
MD_MP22
MD_MP63
MD_MP19
MD_MP31
MD_MP44
MD_MP3
MD_MP35
MD_MP38
MD_MP41
MD_MP25
MD_MP2
MD_MP57
MD_MP43
MD_MP48
MD_MP6
MD_MP28
MD_MP13
MD_MP46
MD_MP24
MD_MP61
MD_MP39
MD_MP30
MD_MP11
MD_MP62
MD_MP8
MD_MP40
MD_MP0
MD_MP16
MD_MP7
MD_MP23
MD_MP58
MD_MP20
MD_MP18
MD_MP56
MD_MP51
MD_MP27
MD_MP10
MD_MP33
MD_MP50
MD_MP32
MD_MP17
MD_MP1
MD_MP14
MD_MP55
MD_MP21
MD_MP53
MD_MP42
MD_MP26
MD_MP4
MD_MP59
MD_MP9
MD_MP37
MD_MP45
MD_MP60
AVDD-BGP[15]
DQM_MP[0..7]P[15]
MA_MP[0..9]P[15]
MD_MP[0..63]P[15]
AVDD1P[15] AVDD2P[15]
P[0..7]P[1]
RST_DPTVP[1,14]
PS_DPTVP[1]
ALE_DPTVP[1]
WRn_DPTVP[1]
RDn_DPTVP[1]
SDA2P[1,2,7,10,12,14,18]
SCL2P[1,2,7,10,12,14,18]
CLKPIP P[14]
HSPIP P[14]
VSPIP P[14]
VSMP P[14] HSMP P[14] CLKMP P[14]
CAPD23_ P[14] CAPD22_ P[14] CAPD21_ P[14] CAPD20_ P[14] CAPD19_ P[14] CAPD18_ P[14]
CAPD6_ P[14] CAPD5_ P[14] CAPD4_ P[14] CAPD3_ P[14]
CAPD1_ P[14] CAPD0_ P[14]
CAPD7_ P[14]
CAPD13_ P[14]
CAPD17_ P[14]
CAPD15_ P[14]
CAPD9_ P[14]
CAPD12_ P[14]
CAPD14_ P[14]
CAPD8_ P[14]
CAPD16_ P[14]
CAPD10_ P[14]
CAPD11_ P[14]
CAPD2_ P[14]
BA_MP P[15] RASn_MP P[15] CASn_MP P[15] WEn_MP P[15] CS0n_MP P[15] MCLK_MP P[15]
SCL2_33P[2,4,7,18]
SDA2_33P[2,4,7,18]
AVDDA3P[15]
AVDDP[15]
AVDDA2P[15]
AVDDA1P[15]
AVDDA4P[15]
M_CP[10]
M_YP[10]
M_VIDEOP[10]
PTV_Y0P[11]
PTV_CRP[11]
PTV_CBP[11]
DPTV_HS P[12] DPTV_VS P[12] DPTV_PR P[11] DPTV_PB P[11] DPTV_Y1 P[12]
AVDDA5P[15]
INT_DPTVP[1]
XTLO
V25_MP
V25_MP
VCC3
V25_MP
VCC3
VCC3
SB5V
VCC3
VCC3
YD1
14.318MHz
CD104
0.01uF 50V
CD11
0.1uF 25V Z
+
CD13 47uF 16V
RD10 27K
1/16W RD24 N/0 1/16W
+
CD18 220uF 16V
CD31 1000PF 50V
T
CD4 20PF 50V
T
CD21 100PF 50V
RD3 39 1/16W
RD1
0
1/16W
CD106
0.01uF 50V
CD29
0.1uF 25V Z
RD5 39 1/16W
RD26 N/0 1/16W
LD1
0
1/8W
RD35 0 1/16W
LD13 0 1/8W
+
CD8 10uF 16V
CD27
0.1uF 25V Z
CD5
0.1uF 25V Z
+
CD9 47uF 16V
U45
PNLTVP6730
8988878685848382797877767574737271706968656463626160595857565554119
120
121
122
123
124
127
128
129
130
131
132
133
134
135
136
137
138
139
142
143
144
145
146
147
148
149
150
151
152
153
154
102
103
104
105
106
107
108
109
112
157
159
162
160
161
158
31
1
32
33
25 30
113
11499100
1019897
96
90919293115
116
117
118
172
171
170
169
168
167
166
165
1756176
177
178
179
180
36 37
4
5
163 164
53
193
24
126
111
958167
155
34 35 27 28 29
26
44 45 46 47 48 49 50 51
173
141
7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22
205 181 190 194 199
189
206 182 191 195
192
2352668094
110
125
140
156
174
197
207
196
183
184
185
186
188
187
198
208
202
201
203
204
2
3
3839404142
43
200
MD0
MD1
MD2
MD3
MD4
MD5
MD6
MD7
MD8
MD9
MD10
MD11
MD12
MD13
MD14
MD15
MD16
MD17
MD18
MD19
MD20
MD21
MD22
MD23
MD24
MD25
MD26
MD27
MD28
MD29
MD30
MD31
MD32
MD33
MD34
MD35
MD36
MD37
MD38
MD39
MD40
MD41
MD42
MD43
MD44
MD45
MD46
MD47
MD48
MD49
MD50
MD51
MD52
MD53
MD54
MD55
MD56
MD57
MD58
MD59
MD60
MD61
MD62
MD63
MA0
MA1
MA2
MA3
MA4
MA5
MA6
MA7
MA8
AVDD1
AVSS1
AVDD2
AVSS2
VLF
MLF
IRSET
V5SF
AVDDB
AVSSB
AVSSB AVSSB
MA9
BA
RAS#
CAS#
WE#
CS1#
CS0#
MCLK
DQM0
DQM1
DQM2
DQM3
DQM4
DQM5
DQM6
DQM7
AD0
AD1
AD2
AD3
AD4
AD5
AD6
AD7
ALEPSWR#
RD#SDSC
INT
HFLB
VPROT
ADDRSEL
RESET
XTLI/MCLKIN XTLO
VSS
VSS
VSS
VSS
VSS
VSS
VSS
VSS
VSS
HSYNC
VSYNC
R G B
VM
CAPD7/R2 CAPD6/R1 CAPD5/R0 CAPD4/G1 CAPD3/G0 CAPD2/B2 CAPD1/B1 CAPD0/B0
VSS
VSS
CAPD23/R7 CAPD22/R6 CAPD21/R5 CAPD20/R4 CAPD19/R3 CAPD18/G7 CAPD17/G6 CAPD16/G5 CAPD15/G4 CAPD14/G3 CAPD13/G2 CAPD12/B7 CAPD11/B6 CAPD10/B5
CAPD9/B4 CAPD8/B3
AVDDA AVDDA AVDDA AVDDA AVDDA
CVBS_OUT2
AVSSA AVSSA AVSSA AVSSA
VDD_ADC
VDD
VDD
VDD
VDD
VDD
VDD
VDD
VDD
VDD
VDD
CR
CBCCVBS1
CVBS2
CVBS3
CVBS4
CVBS_OUT1
CCLP1
CCLP2
CCLP3
RT1
RB1
RT2
RB2
TEST
INT2
CLKPIP
HSPIP
VSPIP
CLKMP/CLKRGB
HSMP/HSRGB
VSMP/VSRGB
AVSSA
RD19 0 1/16W
CD34
0.1uF 25V Z
CD33
0.1uF 25V Z
RD2 0 1/16W
CD7
0.1uF 25V Z
CD108
0.01uF 50V
CD2 2200PF 50V
RD28 0 1/16W
CD105
0.01uF 50V
RD20 220 1/16W
+
CD14 1uF 50V
CD109
0.01uF 50V
+
CD23 22uF 16V
CD24
0.1uF 25V Z
CD30 1000PF 50V
CD110
0.01uF 50V
T
CD19 N/68PF 50V
CD111
0.01uF 50V
+
CD16 22uF 16V
R352 N/1M 1/16W
RD13 10K 1/16W
CD1 2200PF 50V
RD4 39 1/16W
CD28
0.1uF 25V Z
T
CD20 N/68PF 50V
RD9 560 1/16W
TP61
RD22 N/0 1/16W
CD35
0.1uF 25V Z
+
CD12 1uF 50V
+
CD15 47uF 16V
CD102
0.01uF 50V
RD15 N/10K 1/16W
CD32
0.1uF 25V Z
RD16 220 1/16W
TP62
CD26
0.1uF 25V Z
T
CD25 100PF 50V
T
CD6 100PF 50V
CD107
0.01uF 50V
CD103
0.01uF 50V
+
CD17 10uF
16V
T
CD10 100PF 50V
T
CD3
20PF
50V
RD23 10K 1/16W
LD2
0
1/8W
+
CD22 10uF 16V
RD14
4.7K 1/16W
Page 46
First issue 10 / 04 46
MAIN BOARD SCHEMATIC DIAGRAM: VIDEO SYSTEM (PANEL TV SUB PICTURE)
DEFAULT: PULL LOW
PANELTV SUB-PICTURE
AGND4
AGND3
AGND3
AGND3
AGND3
AGND3
AGND3
AGND3
CS0n_SP
WEn_SP
MD_SP52
MD_SP37
MD_SP13
MD_SP7
MD_SP6
MD_SP0
BA_SP RASn_SP
DQM_SP7
DQM_SP4
MD_SP63
MD_SP33
MD_SP31
MD_SP18
MD_SP12
MD_SP9
DQM_SP1
MD_SP56
MD_SP55
MD_SP39
MD_SP29
MD_SP28
MD_SP24
MD_SP23
MD_SP61
MD_SP53
MD_SP38
MD_SP27
MD_SP4
DQM_SP0
MA_S P2
MD_SP62
MD_SP57
MD_SP49
MD_SP19
MD_SP17
CASn_SP
DQM_SP6
DQM_SP5
DQM_SP2
MA_S P5
MA_S P8
MA_S P3
MA_S P1
MD_SP59
MD_SP20
MD_SP16
MD_SP22
MD_SP15
MD_SP14
MD_SP10
MD_SP3
MD_SP45
MCLK_SP
MD_SP47
MD_SP44
MD_SP41
MD_SP26
MD_SP11
MD_SP8
DQM_SP3
MA_S P7
MD_SP58
MD_SP51
MD_SP50
MD_SP48
MD_SP42
MD_SP40
MD_SP36
MD_SP34
MD_SP30
MD_SP21
MD_SP2
MA_S P9
MD_SP60
MD_SP54
MD_SP35
MD_SP25
MA_S P0
MA_S P6
MA_S P4
MD_SP46
MD_SP5
MD_SP1
MD_SP43
MD_SP32
B
VPROT
G
VSYNC
HSYNC
MLF_S
VLF_S
AVDDA3_S AVDDA1_S AVDDA2_S
AVDD_S
AVDDA4_S
Cb_S
CVBS4_S
Cr_S
CVBS1_S
Y1_S
RST
TEST_S
AVDD1_S
VSSA2_S
VSSA4_S
CLKPIP_S
C1_S
AVDD-BG_S
INT
SD_S
PS1
PS1
XTLO_S
XTLI_S
XTLO_S
XTLI_S
XTLO
IRSET_S
R
AS_SP
AVDDA5_S
AVDDA5_S
DQM_SP[0..7]P[16] MA_SP[0..9]P[16] MD_SP[0..63]P[16]
AVDDA5_SP[16]
INT_DPTV_SP[1]
SCL2P[1,2,7,10,12,13,18]
SDA2P[1,2,7,10,12,13,18]
RST_DPTVP[1,13]
CLKPIP P[13]
CAPD23_ P[13] CAPD22_ P[13] CAPD21_ P[13] CAPD20_ P[13] CAPD19_ P[13] CAPD18_ P[13] CAPD17_ P[13] CAPD16_ P[13] CAPD15_ P[13] CAPD14_ P[13] CAPD13_ P[13] CAPD12_ P[13] CAPD11_ P[13] CAPD10_ P[13] CAPD9_ P[13] CAPD8_ P[13] CAPD7_ P[13] CAPD6_ P[13] CAPD5_ P[13] CAPD4_ P[13] CAPD3_ P[13] CAPD2_ P[13] CAPD1_ P[13] CAPD0_ P[13]
HSPIPP[13]
VSPIPP[13]
HSMPP[13] VSMP P[13]
BA_SP P[16] RASn_SP P[16] CASn_SP P[16] WEn_SP P[16] CS0n_SP P[16] MCLK_SP P[16]
SCL0_33P[18]
SDA0_33P[18]
CLKMP P[13]
AVDD1_SP[16] AVDD2_SP[16]
AVDDA4_SP[16] AVDD_SP[16]
AVDDA1_SP[16] AVDDA2_SP[16]
AVDDA3_SP[16]
S_YP[10]
S_VIDEOP[10]
DPTV_Y_SP[11]
DPTV_CR_SP[11]
DPTV_CB_SP[11]
S_CP[10]
AVDD-BG_SP[16]
XTLOP[13]
V25_SP
VCC3_S
V25_SP
VCC3_S
SB5V
VCC3_S
VCC3_S
VCC3_S
V25_SP
P5V
TP64
RDS26 N/0 1/16W
TP66
RND5 22 ohm
1 8 2 7 3 6 4 5
CDSA8
0.01uF 50V
CDS12 1uF 50V
RDS15 N/10K 1/16W
CDSA9
0.01uF 50V
CDS2 2200PF 50V
T
CDS6 100PF 50V
TP67
CDS23 22uF 16V
CDSB1
0.01uF 50V
RND6 22 ohm
1 8 2 7 3 6 4 5
RDS9 560
1/16W
CDSB0
0.01uF 50V
LDS2 0 1/8W
RDS28 0 1/16W
RDS2 0 1/16W
CDSA5
0.01uF 50V
RDS35 0 1/16W
CDSA7
0.01uF 50V
T
CDS19
N/68PF
50V
CDS11
0.1uF 25V Z
CDSA2
0.01uF 50V
CDS14 1uF 50V
CDS1 2200PF 50V
CDSA3
0.01uF 50V
RDS22 0 1/16W
CDSA4
0.01uF 50V
LDS1 0 1/8W
U67D 74HCT04D
9
8
14
7
CDS15 47uF 16V
CDSA6
0.01uF 50V
T
CDS10 100PF 50V
T
CDS25 100PF 50V
RND1 22 ohm
1 8 2 7 3 6 4 5
CDS9 47uF 16V
RDS23 10K 1/16W
RND3 22 ohm
1 8 2 7 3 6 4 5
RDS24 N/0 1/16W
T
CDS20 N/68PF 50V
RDS13 10K 1/16W
CDS31 1000PF 50V
RDS6 22 1/16W
CDS27
0.1uF 25V Z
CDS17 10uF 16V
U46
PNLTVP6730
8988878685848382797877767574737271706968656463626160595857565554119
120
121
122
123
124
127
128
129
130
131
132
133
134
135
136
137
138
139
142
143
144
145
146
147
148
149
150
151
152
153
154
102
103
104
105
106
107
108
109
112
157
159
162
160
161
158
31
1
32
33
25 30
113
11499100
1019897
96
90919293115
116
117
118
172
171
170
169
168
167
166
165
1756176
177
178
179
180
36 37
4
5
163 164
53
193
24
126
111958167155
34 35 27 28 29
26
44 45 46 47 48 49 50 51
173
141
7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22
205 181 190 194 199
189
206 182 191 195
192
2352668094
110
125
140
156
174
197
207
196
183
184
185
186
188
187
198
208
202
201
203
20423383940414243
200
MD0
MD1
MD2
MD3
MD4
MD5
MD6
MD7
MD8
MD9
MD10
MD11
MD12
MD13
MD14
MD15
MD16
MD17
MD18
MD19
MD20
MD21
MD22
MD23
MD24
MD25
MD26
MD27
MD28
MD29
MD30
MD31
MD32
MD33
MD34
MD35
MD36
MD37
MD38
MD39
MD40
MD41
MD42
MD43
MD44
MD45
MD46
MD47
MD48
MD49
MD50
MD51
MD52
MD53
MD54
MD55
MD56
MD57
MD58
MD59
MD60
MD61
MD62
MD63
MA0
MA1
MA2
MA3
MA4
MA5
MA6
MA7
MA8
AVDD1
AVSS1
AVDD2
AVSS2
VLF
MLF
IRSET
V5SF
AVDDB
AVSSB
AVSSB AVSSB
MA9
BA
RAS#
CAS#
WE#
CS1#
CS0#
MCLK
DQM0
DQM1
DQM2
DQM3
DQM4
DQM5
DQM6
DQM7
AD0
AD1
AD2
AD3
AD4
AD5
AD6
AD7
ALEPSWR#
RD#SDSC
INT
HFLB
VPROT
ADDRSEL
RESET
XTLI/MCLKIN XTLO
VSS
VSS
VSS
VSS
VSS
VSS
VSS
VSS
VSS
HSYNC VSYNC
R G B
VM
CAPD7/R2 CAPD6/R1 CAPD5/R0 CAPD4/G1 CAPD3/G0
CAPD2/B2 CAPD1/B1 CAPD0/B0
VSS
VSS
CAPD23/R7 CAPD22/R6 CAPD21/R5 CAPD20/R4 CAPD19/R3 CAPD18/G7 CAPD17/G6 CAPD16/G5 CAPD15/G4 CAPD14/G3 CAPD13/G2 CAPD12/B7 CAPD11/B6 CAPD10/B5
CAPD9/B4 CAPD8/B3
AVDDA AVDDA AVDDA AVDDA AVDDA
CVBS_OUT2
AVSSA AVSSA AVSSA AVSSA
VDD_ADC
VDD
VDD
VDD
VDD
VDD
VDD
VDD
VDD
VDD
VDD
CR
CBCCVBS1
CVBS2
CVBS3
CVBS4
CVBS_OUT1
CCLP1
CCLP2
CCLP3
RT1
RB1
RT2
RB2
TEST
INT2
CLKPIP
HSPIP
VSPIP
CLKMP/CLKRGB
HSMP/HSRGB
VSMP/VSRGB
AVSSA
RDS16 220 1/16W
CDS33
0.1uF 25V Z
RDS19 0 1/16W
RDS20 220 1/16W
+
CDS18 220uF 16V
CDS28
0.1uF 25V Z
CDS3
0.1uF 25V
Z
TP63
T
CDS21 100PF 50V
CDS7
0.1uF 25V Z
CDS34
0.1uF 25V Z
RDS5 22 1/16W
RND4 22 ohm
1 8 2 7 3 6 4 5
RDS14 N/4.7K 1/16W
CDS29
0.1uF 25V Z
RDS3 22 1/16W
CDS26
0.1uF 25V Z
CDS13 47uF 16V
CDS22 10uF 16V
CDS5
0.1uF 25V Z
RDS12 22 1/16W
CDS32
0.1uF 25V Z
R404 0 1/16W
CDS35
0.1uF 25V Z
RDS4 22 1/16W
+++
CDS8 10uF 16V
TP65
RND2 22 ohm
1 8 2 7 3 6 4 5
+
++
+
CDS16 22uF 16V
RDS10 27K 1/16W
RDS1
0
1/16W
CDS30 1000PF 50V
LDS14 0 1/8W
CDS24
0.1uF 25V Z
+++
Page 47
47 First issue 10 / 04
MAIN BOARD SCHEMATIC DIAGRAM: VIDEO SYSTEM (PANEL TV MP SGRAM)
Place these resistors close to DPTV
SGRAM DECOUPLING CAPACITORS
Option: Do Not stuff
82, 85,99
19, 46,62
VSS:
66, 70,76
82, 85,99
5, 11,16
19, 46,62
OPTION: Do Not stuff
66, 70,76
VSS:
5, 11,16
AGND4
AGND3
AGND3
AGND3
AGND3
AGND3
AGND3
MD_MP42 MD_MP41
MA_MP7
MA_MP7
WEnMP
MD_MP15
MD_MP16
MD_MP17
MD_MP18
MD_MP19
MD_MP20
MA_MP2
MA_MP8
RASnMP
MD_MP62 MD_MP61 MD_MP60 MD_MP59 MD_MP58
MA_MP3
MA_MP2
MD_MP5
MD_MP6
MD_MP7
MD_MP8 MD_MP40
MD_MP39 MD_MP38 MD_MP37 MD_MP36
MA_MP9
MD_MP24
MD_MP31
CASnMP
MD_MP21
MD_MP22
MD_MP23
MD_MP47 MD_MP46
MD_MP11
MD_MP12
MA_MP3
MD_MP13
MD_MP14
MD_MP25
MD_MP26
MD_MP27
MD_MP28
MD_MP29
MD_MP30
MD_MP56 MD_MP55 MD_MP54 MD_MP53
MD_MP45 MD_MP44 MD_MP43
MA_MP8
MD_MP57
MD_MP32
MD_MP35 MD_MP34 MD_MP33
MA_MP4
MA_MP4
MD_MP0
MD_MP1
MD_MP2
MD_MP3
MD_MP4
MD_MP63
MA_MP0
MA_MP1
MA_MP1
MA_MP5
MA_MP5
MA_MP9
MD_MP10 MD_MP9
MD_MP52 MD_MP51 MD_MP50 MD_MP49 MD_MP48
MA_MP0
MA_MP6
MA_MP6
MCLKMP
BAMP
CS0nMP
MA_MP[0..9]
DQM_MP6
DQM_MP4
DQM_MP7
DQM_MP1
DQM_MP2
DQM_MP3
DQM_MP0
DQM_MP5
CS0n_MP P[13]
MD_MP[0..63] P[13]
AVDD2 P[13]
AVDD-BG P[13]
BA_MPP[13]
WEn_MPP[13]
CASn_MPP[13]
RASn_MPP[13]
MCLK_MPP[13]
MA_MP[0..9]P[13]
DQM_MP[0..7] P[13]
AVDDA3 P[13]
AVDD P[13]
AVDDA2 P[13]
AVDDA1 P[13]
AVDDA5 P[13]
AVDDA4 P[13]
AVDD1 P[13]
VCC3_M
VCC3_M
VCC3_M
VCC3_M
VCC3
VCC3_MVCC3_M
VCCA3
VADC3
T
CD44 10PF 50V
CD57
0.1uF 25V Z
CD51 10uF 16V
CD61
0.01uF 50V
CD52
0.1uF 25V Z
RD32 33 1/16W
CD75 1000PF 50V
LD5 0 1/8W
RD31 33 1/16W
T
CD38 10PF 50V
U49
SM84L512K
31323334474849
50
A8
30
51
29
CKE
54
55
26
C\S\
C\S\
28
DQ0
97
DQ1
98
DQ10
63
DQ11
64
DQ12
68
DQ13
69
DQ14
71
DQ15
72
DQ16
9
DQ17
10
DQ18
12
DQ19
13
DQ2
100
DQ20
17
DQ21
18
DQ22
20
DQ23
21
DQ24
74
DQ25
75
DQ26
77
DQ27
78
DQ28
80
DQ29
81
DQ3
1
DQ30
83
DQ31
84
DQ4
3
DQ5
4
DQ6
6
DQ7
7
DQ8
60
DQ9
61
DQM0
23
DQM1
56
DQM2
24
DQM3
57
DSF
53
NC
95
NC(VREF)
58
NC
36
NC
37
NC
38
NC
39
NC
40
NC
41
NC
42
NC
43
NC
44
NC
45
NC
52
NC
86
NC
87
NC
88
NC
89
NC
90
NC
91
NC
92
NC
93
NC
94
27
VCC
96
VCCQ
2
VCCQ
8
VCCQ
14
VCCQ
22
VCCQ
59
VCCQ
67
VCCQ
73
VCCQ
79
VCC
15
VCC
35
VCC
65
25
CD71 10uF 16V
CD56
0.1uF 25V Z
CD58
0.1uF 25V Z
LD11 0 1/8W
LD7 0 1/8W
+
CD36 10uF 16V
RD30 33 1/16W
CD74 1000PF 50V
CD46
0.1uF 25V Z
CD55
0.1uF 25V Z
LD9 N/0 1/8W
CD41 100PF 50V
CD77 1000PF 50V
CD79 1000PF 50V
CD68
0.1uF 25V Z
CD40 10uF 16V
T
CD37 100PF 50V
RD34 33 1/16W
CD80 1000PF 50V
CD60
0.1uF 25V Z
CD64
0.01uF 50V
T
CD39 10PF 50V
LD6 0 1/8W
T
CD42 10PF 50V
CD59
0.1uF 25V Z
CD76 1000PF 50V
CD66
0.01uF 50V
CD53 10uF 16V
CD50
0.1uF 25V Z
LD4 0 1/8W
LD12 0 1/8W
RD33 33 1/16W
CD49 10uF 16V
CD78 1000PF 50V
LD3 0 1/8W
U48
SM84L512K
A031A132A233A334A447A548A649A7
50
A8
30
A9
51BA29
CKE
54
CLK
55
C\A\S\
26
28
DQ0
97
DQ1
98
DQ10
63
DQ11
64
DQ12
68
DQ13
69
DQ14
71
DQ15
72
DQ16
9
DQ17
10
DQ18
12
DQ19
13
DQ2
100
DQ20
17
DQ21
18
DQ22
20
DQ23
21
DQ24
74
DQ25
75
DQ26
77
DQ27
78
DQ28
80
DQ29
81
DQ3
1
DQ30
83
DQ31
84
DQ4
3
DQ5
4
DQ6
6
DQ7
7
DQ8
60
DQ9
61
DQM0
23
DQM1
56
DQM2
24
DQM3
57
DSF
53
NC
95
NC(VREF)
58
NC
36
NC
37
NC
38
NC
39
NC
40
NC
41
NC
42
NC
43
NC
44
NC
45
NC
52
NC
86
NC
87
NC
88
NC
89
NC
90
NC
91
NC
92
NC
93
NC
94
R\A\S\
27
VCC
96
VCCQ
2
VCCQ
8
VCCQ
14
VCCQ
22
VCCQ
59
VCCQ
67
VCCQ
73
VCCQ
79
VCC
15
VCC
35
VCC
65
W\E\
A0A1A2A3A4A5A6A7A9
BA
CLK
C\A\S\
R\A\S\
W\E\
25
LD8 0 1/8W
CD48
0.1uF 25V Z
CD45 10uF 16V
CD63
0.01uF 50V
CD67 10uF 16V
CD47 10uF 16V
RD29 33 1/16W
CD69 22uF 16V
CD73 1000PF 50V
CD65
0.01uF 50V
CD70
0.1uF 25V Z
CD54
0.1uF 25V Z
CD72
0.1uF 25V Z
CD62
0.01uF 50V
LD10 N/0 1/8W
T
CD43 10PF 50V
CD81 1000PF 50V
+
T
+
T
+
T
+
T
+
T
AGND3
+
T
+
T
+
T
+
Page 48
First issue 10 / 04 48
MAIN BOARD SCHEMATIC DIAGRAM: VIDEO SYSTEM (PANEL TV SP SGRAM)
66, 70,76
Place these resistors close to DPTV
Option: Do Not Stuff
19, 46,62
OPTION: Do Not Stuff
SGRAM DECOUPLING CAPACITORS
82, 85,99
5, 11,16
VSS:
AGND3
AGND3
AGND3
AGND3
AGND4
AGND3
AGND3
MA_S P8
DQM_SP4
MA_S P3
MD_SP12
MA_S P3
MD_SP38
MD_SP57
MD_SP54
MA_S P4
MD_SP37
DQM_SP6
MD_SP5
MD_SP27
MA_S P9
DQM_SP7
MD_SP13
MA_S P5
MD_SP30
MA_S P6
MD_SP48
MD_SP8
MD_SP39
MD_SP52
BASP
MD_SP36
DQM_SP3
MD_SP7
MD_SP63
MD_SP35
WEnPS
MA_S P2
MA_S P5
MD_SP19
MA_S P2
MA_S P0
MA_S P8
MD_SP29
MD_SP22
MD_SP16
MD_SP59
DQM_SP1
MA_S P7
MD_SP17
MD_SP4
MD_SP23
MD_SP15
MD_SP18
MD_SP49
MA_S P4
MD_SP45
MD_SP20
MD_SP26
MD_SP60
MD_SP25
MD_SP46
MD_SP28
MD_SP1
MD_SP24
MA_S P1
MD_SP34
MA_S P1
MD_SP33
MD_SP55
MA_S P7
MD_SP51
MD_SP31
MD_SP42
DQM_SP2
MD_SP10
MD_SP62
MA_S P0
MD_SP21
MD_SP11
MCLKSP
DQM_SP5
MD_SP2
MD_SP43
MD_SP61
MD_SP40
MD_SP50
MA_S P9
MD_SP56
DQM_SP0
MD_SP6
MA_SP[0..9]
MD_SP44
MD_SP14
MD_SP9
MD_SP3
MD_SP53
CS0nSP
MD_SP58
MA_S P6
MD_SP41
MD_SP47
MD_SP32
RASnSP
CASnSP
MD_SP0
MA_SP[0..9]P[14]
RASn_SPP[14]
DQM_SP[0..7] P[14]
CS0n_SP P[14]
MCLK_SPP[14]
BA_SPP[14]
WEn_SPP[14]
MD_SP[0..63] P[14]
CASn_SPP[14]
AVDDA1_S P[14]
AVDDA2_S P[14]
AVDDA3_S P[14]
AVDDA4_S P[14]
AVDDA5_S P[14]
AVDD_S P[14]
AVDD1_S P[14]
AVDD2_S P[14]
AVDD-BG_S P[14]
VCC3_M_SVCC3_M_S
VCC3_M_S
VCC3_M_S
VCC3_M_S
VCC3_M_S
VCC3_S
VADC3_S
VCCA3_S
CDS81 1000PF 50V
+
CDS47 10uF 16V
+
CDS67 10uF 16V
+
CDS49 10uF 16V
CDS50
0.1uF 25V Z
CDS72
0.1uF 25V Z
CDS70
0.1uF 25V Z
CDS77 1000PF 50V
RDS33 33 1/16W
CDS73 1000PF 50V
CDS58
0.1uF 25V Z
RDS29 33 1/16W
T
CDS37 100PF 50V
LDS6 0 1/8W
CDS68
0.1uF 25V Z
CDS64
0.01uF 50V
LDS10 N/0 1/8W
LDS7 0 1/8W
+
CDS51 10uF 16V
CDS78 1000PF 50V
CDS46
0.1uF 25V Z
CDS74 1000PF 50V
CDS59
0.1uF 25V Z
T
CDS38 10PF 50V
LDS5 0 1/8W
RDS30 33 1/16W
T
CDS42 10PF 50V
CDS55
0.1uF 25V Z
+
CDS69 22uF 16V
CDS65
0.01uF 50V
+
CDS53 10uF 16V
CDS61
0.01uF 50V
CDS54
0.1uF 25V Z
+
CDS45 10uF 16V
+
CDS40 10uF 16V
CDS79 1000PF 50V
+
CDS36 10uF 16V
T
CDS41 100PF 50V
CDS75 1000PF 50V
CDS60
0.1uF 25V Z
T
CDS39 10PF 50V
RDS31 33 1/16W
T
CDS43 10PF 50V
U50
SM84L512K
31323334474849
503051
295455
26
28
97
98
63
64
68
69
71
72
9
10
12
13
100
17
18
20
21
74
75
77
78
80
81
1
83
84
3
4
6
7
60
61
23
56
24
57
53
95
58
36
37
38
39
40
41
42
43
44
45
52
86
87
88
89
90
91
92
93
94
27
96
2
8
14
22
59
67 73 79
15
35 65
25
CDS56
0.1uF 25V Z
CDS66
0.01uF 50V
CDS52
0.1uF 25V Z
LDS11 0 1/8W
+
CDS71 10uF 16V
CDS62
0.01uF 50V
CDS48
0.1uF 25V Z
LDS3 0 1/8W
CDS80 1000PF 50V
LDS4 0 1/8W
CDS76 1000PF 50V
U51
SM84L512K
A031A132A233A334A447A548A649A7
50
A8
30
A9
51BA29
CKE
54
CLK
55
C\A\S\
26
C\S\
28
DQ0
97
DQ1
98
DQ10
63
DQ11
64
DQ12
68
DQ13
69
DQ14
71
DQ15
72
DQ16
9
DQ17
10
DQ18
12
DQ19
13
DQ2
100
DQ20
17
DQ21
18
DQ22
20
DQ23
21
DQ24
74
DQ25
75
DQ26
77
DQ27
78
DQ28
80
DQ29
81
DQ3
1
DQ30
83
DQ31
84
DQ4
3
DQ5
4
DQ6
6
DQ7
7
DQ8
60
DQ9
61
DQM0
23
DQM1
56
DQM2
24
DQM3
57
DSF
53
NC
95
NC(VREF)
58
NC
36
NC
37
NC
38
NC
39
NC
40
NC
41
NC
42
NC
43
NC
44
NC
45
NC
52
NC
86
NC
87
NC
88
NC
89
NC
90
NC
91
NC
92
NC
93
NC
94
R\A\S\
27
VCC
96
VCCQ
2
VCCQ
8
VCCQ
14
VCCQ
22
VCCQ
59
VCCQ
67
VCCQ
73
VCCQ
79
VCC
15
VCC
35
VCC
65
W\E\
66, 70,76
19, 46,62
82, 85,99
5, 11,16
VSS:
A0A1A2A3A4A5A6
A7A8A9
BA
CKE
CLK
C\A\S\
C\S\
DQ0
DQ1
DQ10
DQ11
DQ12
DQ13
DQ14
DQ15
DQ16
DQ17
DQ18
DQ19
DQ2
DQ20
DQ21
DQ22
DQ23
DQ24
DQ25
DQ26
DQ27
DQ28
DQ29
DQ3
DQ30
DQ31
DQ4
DQ5
DQ6
DQ7
DQ8
DQ9
DQM0
DQM1
DQM2
DQM3
DSF
NC
NC(VREF)
NC
NC
NC
NC
NC
NC
NC
NC
NC
NC
NC
NC
NC
NC
NC
NC
NC
NC
NC
NC
R\A\S\
VCC
VCCQ
VCCQ
VCCQ
VCCQ
VCCQ
VCCQ VCCQ VCCQ
VCC
VCC VCC
W\E\
25
LDS12 0 1/8W
LDS9 N/0 1/8W
RDS32 33 1/16W
RDS34 33 1/16W
T
CDS44 10PF 50V
CDS57
0.1uF 25V Z
LDS8 0 1/8W
CDS63
0.01uF 50V
Page 49
49 First issue 10 / 04
MAIN BOARD SCHEMATIC DIAGRAM: VIDEO SYSTEM (POWER REGULATOR)
AGND6,7
AGND3
AGND3
AGND6,7
P(6)
For IP00C711
VCC3_
5VDDD_
VCCA3
5VDDM_
VADC3_
5VDDA_
VADC3_S
VCCA3_S5VDDA_S_
5VDDD_S_
VCC3_S
5VDDM_S_
5VDDM1_
5VDDM1_S_
V25_SPV25_MP
VCCA3
5VDDM
V25_MP
REG_5V
VCC3
VADC3
5VDDA
5VDDD
5VDDM1
5VDDD_S
VCC3_S
VCCA3_S5VDDA_S
REG_5V_S
5VDDM_S
5VDDM1_S
VADC3_S
P5V
DDD DDDD
V33P
V33TMP
P5V
V25_SP
V33
P5V
SB5V
V33SB
U63
BA033
C328
0.01uF 50V
R400 124 1/16W F
LD18 0 1/8W
LDS17 0 1/8W
+
C323 100uF 16V
C327
0.1uF 25V Z
C316
0.01uF 50V
CD90
0.1uF 25V Z
LDS15 0 1/8W
C317
0.1uF 25V Z
+
CDS97 22uF 16V
LDS13 0 1/8W
U59
LD1085C
3
1
2
VIN
GND
VOUT
+
CD87 22uF 16V
CDS91
0.1uF 25V Z
+
CDS94 22uF 16V
U52
BA033
1
2
3
VIN
GND
2
GND
1
GND
1
GND
VOUT
+
C312 10uF 16V
C330
0.01uF 50V
R397 124 1/16W F
U61
BA033
+
CDS82 22uF 16V
C318
0.01uF 50V
C325
0.1uF 25V Z
U57
LD1085CM33
3
1
2
VIN
GND
VOUT
CD91
0.1uF 25V Z
+
CD94 22uF 16V
+
CD99 22uF 16V
+
C311 100uF 16V
C319
0.1uF 25V Z
LD22 0 1/8W
LDS19 0 1/8W
CDS95
0.1uF 25V Z
+
CD82 22uF 16V
+
C324 10uF 16V
CDS85
0.1uF 25V Z
U54
BA033
13
VIN VOUT
+
CDS89 22uF 16V
LD14 0 1/8W
CD101
0.1uF 25V Z
C332
0.01uF 50V
U55
BA033
1
2
3
VIN
GND
VOUT
C320
0.01uF 50V
R398 124 1/16W F
CD95
0.1uF 25V Z
+
CD97 22uF 16V
C331
0.1uF 25V Z
+
C309 100uF 16V
U53
BA033
1
2
3
VIN
GND
VOUT
U60
BA033
1
2
3
VIN
GND
VOUT
DDD DDDD
1
2
3
VIN
GND
VOUT
DDD DDDD
1
2
3
VIN
GND
VOUT
DDD DDDD
1
2
3
VIN
GND
VOUT
CD85
0.1uF 25V Z
+
CD89 22uF 16V
CDS96
0.1uF 25V Z
C313
0.1uF 25V Z
LD26 0 1/8W
CDS86
0.1uF 25V Z
R401 124 1/16W F
CDSB2
0.1uF 25V Z
+
CDS92 22uF 16V
+
C310 10uF 16V
+
CDS84 22uF 16V
CD100
0.1uF 25V Z
C326
0.01uF 50V
CD96
0.1uF 25V Z
U56
LD1085CM33
32
VIN VOUT
C329
0.1uF 25V Z
C314
0.01uF 50V
+
C321 100uF 16V
CD86
0.1uF 25V Z
+
CD92 22uF 16V
U62
BA033
U58
LD1085C
32
VIN VOUT
C315
0.1uF 25V Z
+
CDSA1 22uF 16V
CD84 22uF 16V
CDS90
0.1uF 25V Z
CDS99
0.1uF 25V Z
+
C322 10uF 16V
+
CDS87 22uF 16V
+
Page 50
First issue 10 / 04 50
MAIN BOARD SCHEMATIC DIAGRAM: VIDEO SYSTEM (CONNECTOR)
TO AUDIO PWB
0805
FROM AUDIO PWB
0805
0805
GND_TUNER
FROM TUNER PWB
(LINK I/P) (LINK O/P)
DVI/RGB
AUDIO I/P
SB
YUV2_L
RGB_L
TV
PR1_CR1
YUV2_R
PCSI
S2_C
YUV1_R
AV1_L
PWR_CTL
PCSCLK
SDA2R_OUT
RGB_R
SCL2
PCSCS
S_DET
SSO
PB2_CB2
L_OUT
AV1_ R
SUB_WFR
AVB_DETn
PB1_CB1
Y1
Y2
S2_Y
S2_R
PR2_CR2
COMPOSITE
LG_VS AC_DET
SB
SCL2
SDA0_33
SCL0_33
SDA2
PCn_MPU
YUV1_L
S2_L
DACM_L
PWR_CTL
DACM_R
DVI_L
TELETEXT_VS
TELETEXT_B
SD
+9VT
+9VT
CTL1
SDA2
TELETEXT_G
TUN_DETn
SUB_WFR
SCL2
DVI_R
CTL2
R_OUT
L_OUT
TELETEXT_R
TDO
TEXT_IN
TDI
TMS
TCK
TELETEXT_HS
Y1
P[10,11]
PB1_CB1
P[11]
COMPOSITE
P[10]
SURR2 P[1]
S2_R P[10]
TV
P[10]
PB2_CB2
P[11]
SCL2 P[1,2,7,10,12,13,14]
AV1_ R P[10]
AVB_DETn
P[1]
SCL0_33 P[14]
RGB_L P[10]
Y2
P[11]
SDA2 P[1,2,7,10,12,13,14]
R_IN
P[10]
YUV2_L P[10]
SDA2_33 P[2,4,7,13]
S2_C
P[10]
RGB_R P[10]
PR1_CR1
P[11]
PCn_MPU P[5]
SSO P[5]
SURR1 P[1]
L_IN
P[10]
PCSI P[5]
SCL2_33 P[2,4,7,13]
AV1_L P[10]
SDA0_33 P[14]
PCSCS P[5]
PR2_CR2
P[11]
PCSCLK P[5]
A_MUTEn P[1]
SPK_CTL
P[1]
YUV1_R P[10]
S_DET P[1]
S2_Y
P[10]
AO_SEL P[1]
YUV2_R P[10]
SB P[1]
AC_DET P[1]
S2_L P[10]
YUV1_L P[10]
DACM_R
P[10]
DVI_L P[10]
DACM_L
P[10]
TUN_DETn
P[1]
SDA2
P[1,2,7,10,12,13,14]
C1 P[10]
SCART_FB
P[1]
CTL2
P[1]
RESETQ P[1]
SCART_CTL P[1]
CTL1
P[1]
TELETEXT_ON P[1,19]
SD
P[1]
Y1 P[10,11]
SCL2
P[1,2,7,10,12,13,14]
DVI_R P[10]
LG_VS P[1]
+5VSB
+5V1
+9V
P24V+24V
A5V+5VA
SB5V
D
V
D
REG_5V_S
+5V1
D
V
V
P12V
V
P9V
+5VSB
V
A
V
D
D
SB5V
D
A
P5V
D
24V
A
DD
D
DD
+5V1
REG_5V
P5V
+9VT
GND_TUNER
+9V
D
+5VSB
V
D
+24V
D
A
V33
SB5V_CPU
V
+5VA
D
C379 1000PF 50V
+
C240 47uF 16V
+
C46 N/2.2uF 50V
L25 10uH
+
C417 47uF 16V
C350
0.1uF 25V Z
C380
0.22uF 50V M
R341 100 1/16W
C200
0.22uF 50V M
C378 1000PF 50V
C47 N/1000PF 50V
+
C239 47uF 16V
C336
0.1uF 25V Z
L26 10uH
L28
L29
0.45uH
+
C48 N/2.2uF 50V
F26 0 1/8W
C338 100uF 16V
C344
0.1uF 25V Z
C427
0.1uF 25V Z
R384 N/0 1/16W
JP4A
CS1680-1----
B1 B2 B3 B4 B5 B6 B7 B8
B9 B10 B11 B12 B13 B14 B15 B16
A1 A2 A3 A4 A5 A6 A7 A8 A9 A10 A11 A12 A13 A14 A15 A16
C403
0.22uF 50V M
F24 0 1/8W
C402
0.22uF 50V M
J11 CP031C-EJST-
1 2 3 4 5 6 7 8 9 10 11 12
R75 N/0 1/16W
C346 100uF 16V
+
C343 100uF 16V
R74 N/47K 1/16W
C345 220uF 16V
C340
0.01uF 50V
F22 0 1/8W
J25 CP0053-JJST-
1 2 3
C423
0.1uF 25V Z
C413
0.1uF 25V Z
J14 CP0056-JJST-
1 2 3 4 5 6
J6A N/P1079-1-2--
1
2
3
4
R421 N/20
R422 N/20
+
C333 220uF 25V
C425
0.1uF 25V Z
C376 1000PF 50V
J21 CP0057-JJST-
1 2 3 4 5 6 7
L30
L27 10uH
R72 N/0 1/16W
R385 0
1/16W R420 N/20
C216 47uF 50V
C419
0.1uF 25V Z
+
C349 100uF 16V
+
C348 220uF 16V
F21 0 1/8W
+
C342 220uF 16V
L33 0 1/8W
+
+
C233 47uF 16V
+
C234 47uF 16V
F23 0 1/8W
F20 0 1/8W
R76 N/47K 1/16W
C334
0.22uF 50V M
JP6 N/JUMPER
J6B N/P1079-1-2--
5
6
7
8
JP5B CS1680-1----
C1 C2 C3 C4 C5 C6 C7 C8
C9 C10 C11 C12 C13 C14 C15 C16
J12
CP031A-EJST­1 2 3 4 5 6 7 8 9
10
C412 100uF 16V
C347
0.1uF 25V Z
C411 220uF 16V
+
C335 220uF 25V
V
R340
100 1/16W
C421
0.1uF 25V Z
J15 CP0054-JJST-
1 2 3 4
L24 330uH
C377 1000PF 50V
JP5A
CS1680-1----
B1 B2 B3 B4 B5 B6 B7 B8
B9 B10 B11 B12 B13 B14 B15 B16
A1 A2 A3 A4 A5 A6 A7 A8 A9 A10 A11 A12 A13 A14 A15 A16
C45 N/1000PF 50V
L32 N/0 1/8W
J28 CP0055-JJST-
1 2 3 4 5
C337 220uF 16V
+
C238 47uF 16V
T
C341 100PF 50V
C339
0.1uF 25V Z
JP4B CS1680-1----
C1 C2 C3 C4 C5 C6 C7 C8
C9 C10 C11 C12 C13 C14 C15 C16
TELETEXT_R P[19]
TELETEXT_B P[19]
TELETEXT_HS P[7,8,10,12,19] TELETEXT_VS P[19]
TELETEXT_G P[19]
TDO P[1]
TEXT_IN P[10]
TDI P[1]
TMS P[1]
TCK P[1]
DD
+
V
+
D
DD
10uH
+
+
1/8W
V
D
DD
10uH
+
+
Page 51
51 First issue 10 / 04
MAIN BOARD SCHEMATIC DIAGRAM:VIDEO SYSTEM (VGA INPUT/OUTPUT)
VGA_GIN
RGB_GIN
GINA
VGA_BIN
VGA_RIN
RINA
BINA
RGB_HS
RGB_VS
RIN P[9]
GIN P[9]
BIN P[9]
TELETEXT_ON P[1,18]
RGB_DVS P[9]
TELETEXT_RP[18]
TELETEXT_GP[18]
TELETEXT_BP[18]
VGA_BINP[9]
VGA_GINP[9]
VGA_RINP[9]
RGB_HSP[9]
TELETEXT_VSP[18]
TELETEXT_HSP[7,8,10,12,18]
RGB_VSP[9]
RGB_GINP[9]
RGB_DHS P[9]
V
V
SB5V_V
P5V
SB5V_V
V
V
SB5V_V
SB5V_V
V
V
V
VV
VV
V
V
T
C169 100PF 50V
T
CA177 N/470PF 50V
RA153 N/470K 1/16W
CA157 N/100PF 50V
CA168 N/0.01uF
+
+
C167 47uF 16V
RA171 0 1/16W
RA157 N/100 1/16W
R146 75 1/16W
D21 BAV99
1
3
2
RA353 0 1/16W
CA158 N/100PF 50V
CA174 N/0.01uF 50V
R149 75 1/16W
RA354 0 1/16W
F7 0 1/8W
RA158 N/100 1/16W
R147 75 1/16W
CA159 N/100PF 50V
RA172 0 1/16W
CA171 N/47uF 16V
CA170 N/0.01uF 50V
RA351 0 1/16W
CA161 N/0.1uF 25V
Z
F5 0 1/8W
RA159 N/100 1/16W
D20 BAV99
1
3
2
+
C162 47uF 16V
F6 0 1/8W
+
CA160 N/22uF 16V
RA160 N/470 1/16W
C159
0.01uF 50V
T
C166 100PF 50V
D19 BAV99
1
3
2
+
CA173 N/47uF 16V
+
CA175 N/47uF 16V
C164
0.01uF 50V
UA34
N/BA7657F
16
12
13
14
24
23
22
15
19
21
1
3
5
7
9
11
20
4
6
8
10
2
CTL
VDINA
VDINB
VDOUT
HDINA
HDINB
HDOUT
BOUT
GOUT
ROUT
RINA
GINA
BINA
RINB
GINB
BINB
VCC
GGND
BGND
RGND
GND
HD-DETEC
RA383 N/10 1/16W
+
C165 47uF 16V
RA156 N/0 1/16W
RA161 N/470 1/16W
C163
0.01uF 50V
T
C176 100PF 50V
Page 52
52 First issue 10 /04
Special Modes
Action
Operation
Remarks
Switch the Set Off.
Press & Hold "Menu" key of local keyboard.
Switch the Set On.
The set must switch to On mode and then to Standby mode.
Switch the set to On mode.
Select Language and Auto Installation is then displayed.
Select Auto Installation.
Select Country "Other".
Last line of the menu indicates the MCU SW version (at left side) and UOC SW version (at right side).
Press "Down" key for 5 s.
Press "Down" key for 5 s.
Press "Up" key for 5 s.
Press "Up" key for 5 s.
Press "Down" key for 5 s.
Press "Up" key for 5 s.
Press "OK" key.
Press "Exit" key.
Press "Menu" key.
Warm "Neutral" "Cold" coordinates adjustment screens are succesively displayed, for each (4) Inputs, Validate and Go to next screen by pressing "OK" key
"Red" "Green" "Blue" and "White" (with PIP window in a different color) screens are succesively displayed.
UOC Service Setup is displayed, see next page for details.
Factory Warm Up Procedure
Exit by pressing 'Exit" key for 5 secs.
"UOC" Service Setup
Procedure
Exit by pressing 'Exit" key.
"OUT OF BOX" condition
MCU & UOC
softwares version
Colorimetry Adjustment
Procedure
Exit after going through the 12
adjustment screens, or Switch
OFF the set.
UOC Service Menu
Page 1
GTV122 V1.0
01011010 10100111 01010000
11000000
1000011X
X = 0 (UOC SW version: 031128); X = 1 (UOC SW version: 031221 and MCU SW version: 031117)
Press "Down" or Up" key of the remote control in order to turn the page.
Page 53
First issue 10 / 04 53
UOC SW version
2 Init TV*
*Init or Reset values to default: Press "Right" key on this line.
3
Sharp-PTV 4 AGC INT 5 Contrast 6 Color 7 Brightness 8 BLR 9 BLG
10 WPR-C 11 WPG-C 12 WPB-C 13 WPR-N 14 WPG-N 15 WPB-N 16 WPR-W 17 WPG-W 18 WPB-W 19 VA 20 VSH 21 HS-VIDEO 22 Sharp-PAV 23 Sharp-SAV 24 Sharp-STV 25 FFI 26 EVG 27 AGC 28 FSL 29 IF 30 SVO 31 SOSD 32 ACL 33 MUS 34 PWL 35 OIF 36 SCL 37 E2D 38 CB 39 BPS 40 FCO 41 OSVE 42 AFN 43 DFL 44 AKB 45 OPC 46 OPT INT
Page
UOC Service Menu
031128
1
31
1 1 0
0 0 0 1
3 0 0
0 1 0
0 0
2
1 0 2 0
16
16
20 12
32 30
10 10 10
10 10 10 10
32 10 10
32
2 34 24 30
0 20
Default Value Default ValueParameter
MCU SW version 031117
0
20
32
2 34 24 31
32 10 10 10 10 10 10 10 10 10
16
16
20 12
32 35
0
0
2
1
0
2
0
3
0
0
0
1
0
1
1
0
0
0
0
1
031221
1
31
Press "Down" or Up" key of the remote control in order to turn the page.
Page 54
First issue 10 / 04 54
EXPLODED VIEW
1
8
9
10
12
13
14
19
15
16
21
22
18
1717
1720
1725
10
23
19
11
7
5
6
26
24
1 FRONT PANEL 2 POWER/INPUT BUTTON 3 MENU/VOLUME BUTTON 4 KEYBOARD 5 FRONT GLASS FILTER 6
PDP Module 7 AUDIO STAND-BY POWER BOARD 8 AUDIO AMPLIFIER BOARD 9 RIGHT TOP SPEAKER HOLDER
10 SPEAKER 11 LEFT TOP SPEAKER HOLDER 12
RIGHT BOTTOM SPEAKER HOLDER
13 POWER SWITCH BOARD 14 ON/OFF BUTTON 15 LEFT BOTTOM SPEAKER HOLDER 16 MAIN (image) BOARD 17 REAR PANEL 18 AV/TUNER BOARD 19 FOOT HOLDER 20 Z_SUS BOARD 21 LOGIC CONTROL BOARD 22 Y_DRIVER BOTTOM BOARD 23 Y_DRIVER TOP BOARD 24 Y_SUS BOARD 25 XR BOARD 26 POWER SUPPLY BOARD
No. Description
2
3
4
Page 55
The description and characteristics given here are of informative significance only, and non committal. To keep up the high quality of our products, we reserve the right to make any changes or improvement without previous notice. • Les descriptions et caractéristiques figurant sur ce document sont données à titre d'information et non d'engagement. En effet, soucieux de la qualité de nos produits, nous nous réservons le droit d'effectuer, sans préavis, toute modification ou amélioration. • Die Beschreibungen und Daten in dieser Anleitung dienen nur zur Information und sind nicht bindend. Um die Qualität unserer Produkte ständig zu verbessern, behalten wir uns das Recht auf Änderungen vor. • Le descr izioni e le caratteristiche date su questo documento sono fornite a semplice titolo informativo e senza impegno. Ci riserviamo il diritto di eseguire, senza preavviso, qualsiasi modifica o miglioramento. • Las descripciones y características que figuran en este documento se dan a título de información y no de compromiso. En efecto, en bien de la calidad de nuestros productos, nos reservamos el derecho de efectuar, sin previo aviso, cualquier modificación o mejora.
Thomson multimedia Sales Europe - S.A. au capital de 115 273 710 - Siège : 46, quai Alphonse Le Gallo 92100 Boulogne France - RCS Nanterre B 322 019 464
Thomson multimedia Sales France
46, quai Alphonse Le Gallo 92648 Boulogne cedex Tel. : 01 41 86 60 00 Internet : www.thomson-network.com
Thomson multimedia Sales UK Limited
30 T ower Vie w Kings Hill, West Malling Kent ME19 4NQ (England)
Tel. : 44 (0) 173 252 0920
Thomson multimedia Sales Italy S.p.A.
Via Leonardo da Vinci,43 20090 Trezzano sul naviglio (Milano) Tel. : (02) 48 414 111
Thomson multimedia Scandinavia AB
Florettgatan 29 C S-25467 Helsingborg (Sweden) Tel. : 042 25 75 00
Thomson multimedia Switzerland
Seewenweg 5 CH-4153 Reinach Tel. : (61) 716 96 60
Thomson Consumer Electronics Poland
ul.Gen.L. Okulickiego 7/9 05-500 Piaseczno (Varsovie) Tel. : (22) 757 10 80
Thomson multimedia Hungary KFT
Lajos u. 78. II.em. H-1036 Budapest Tel.
: 00 36 14 5334/80
Thomson multimedia Czech s.r.o.
ul. Dopravaku - dum Genius 1 Dolni Chabry CZ - 18400 Prague 8 Tel. : (2) 688 67 70
Thomson multimedia Sales Germany GmbH & Co oHG
Karl-Wiechert-Allee 74 30625 Hannover
Thomson multimedia Sales Spain
Avenida Isla Graciosa, 1 Edificio Áncora Parque Empresarial La Marina 28700 San Sebastián de los Reyes (Madrid) Tel. : (91) 384 14 19
Thomson multimedia Sales Portugal
Avenida da Boavista, 3521 4106 Porto Tel. : (2) 26 18 76 41
This technical documentation is for use by maintenance technicians only Documentation technique exclusivement destinée aux professionnels de la maintenance Diese Angaben und Hinweise sind ausschließlich für den Service des Fachhändlers bestimmt Documentazione tecnica destinata esclusivamente ai tecnici dell'assistenza Documentación técnica destinada exclusivamente a los profesionales de mantenimiento
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