Sony CPD-G410R Service Manual

Self Diagnosis
Supported model
SERVICE MANUAL
CPD-G410R
CPD-G410R
Chassis No: SCC-L42C-A
CPD-G410R
Chassis No: SCC-L42H-A
19CRV
CHASSIS
SPECIFICATIONS
Picture tube 0.24 mm aperture grill pitch (center)
19 inches measured diagonally 90-degree defl ection
Video image area (18.0" maximum viewing image) Approx. 365 X 274 mm (w/h) (14
Resolution Horizontal: Max. 1920 dots Vertical: Max. 1440 lines
Standard image area Approx. 352 x 264 mm (w/h) (13
Input signal
Video Analog RGB (75 ohms typical)
0.700 Vp-p, Positive
Sync H/V separate or composite sync: TTL 2k ohms Polarity Free Sync on Green: 0.3 Vp-p (negative)
3/8
x 10
7/8
x 10
7/8
inches)
1/2
inches)
Power Consumption 135 W
Defl ection frequency Horizontal: 30 to 110 kHz
Vertical: 48 to 170 Hz
AC input voltage/current 100 to 240 V, 50 - 60 Hz, 2.0 - 1.0 A
Dimensions 451 x 471 x 461 mm (w/h/d)
(17
Mass Approx. 25.5 kg (56 lb 3 oz.)
Plug and Play DDC2B/DDC2Bi
GTF
Design and specifi cations are subject to change without notice.
7/8
x 18
5/8
x 18
1/4
inches)
9-978-882-01
TRINITRON® COLOR MONITOR
TABLE OF CONTENTS
SECTION TITLE PAGE
Power Management.................................................................................................................................. 3
Self Diagnosis Function ............................................................................................................................ 3
Timing SpeciÞ cation.................................................................................................................................. 3
Safety Check Out Instructions .................................................................................................................. 4
Warnings and Cautions............................................................................................................................. 4
1. Disassembly
1-1. Cabinet Removal ............................................................................................................................... 5
1-2. Service Position................................................................................................................................. 5
1-3. A & D Board Removal........................................................................................................................ 6
1-4. Picture Tube Removal ....................................................................................................................... 7
CPD-G410R
2. Safety Related Adjustments
2-1. HV Regulator Check.......................................................................................................................... 8
2-2. HV Protector Circuit Check................................................................................................................ 8
2-3. Beam Protector Check (Software Logic) ........................................................................................... 8
2-4. B+ Voltage Check.............................................................................................................................. 8
3. Adjustments
3-1. Landing Rough Adjustment ............................................................................................................... 9
3-2. Landing Fine Adjustment................................................................................................................... 9
3-3. Convergence Rough Adjustment..................................................................................................... 10
3-4. Convergence SpeciÞ cation.............................................................................................................. 10
4. Diagrams
4-1. Circuit Boards Location ....................................................................................................................11
4-2. Schematic Diagrams And Printed Wiring Boards .............................................................................11
4-3. Diagrams
Block Diagram................................................................................................................................. 12
A Board - Schematic Diagram......................................................................................................... 15
D Board - Schematic Diagram ........................................................................................................ 18
H1 Board - Schematic Diagram ...................................................................................................... 20
N Board - Schematic Diagram ....................................................................................................... 21
DA Board - Schematic Diagram ...................................................................................................... 22
4-4. Semiconductors............................................................................................................................... 23
5. Exploded Views
5-1. Picture Tube .................................................................................................................................... 24
5-2. Chassis............................................................................................................................................ 25
5-2. Packing Materials ............................................................................................................................ 26
6. Electrical Parts List ....................................................................................................................................... 27
— 2 —
CPD-G410R

POWER MANAGEMENT

The power saving mode complies with the VESA Display Power Management Signaling standard. Each state of power management shall be activated by the host computer terminating the appropriate sync signals. Blanking the video must precede termination of the sync signals. The elapsed time counter shall also be controlled by the host computer. Reactivation of the monitor shall be accomplished from the host computer by re-establishing the normal sync signal.
Power consumption Screen Horizontal Vertical Power Recovery time indicator mode (video) sync signal sync signal consumption
1 Normal operation active yes yes < 135 W -- Green
2 Active-off (3rd mode) blank no* no* < 3 W Approx. 10 sec. Amber
3 Power-off -- -- -- 0 W (approx) -- Off
* In this mode, the signal will appear in one of three ways: The Horizontal Sync Signal alone off, the Vertical Sync Signal alone off, or both signals off.

SELF DIAGNOSIS FUNCTION

When a failure occurs, the STANDBY/TIMER lamp will ß ash a set number of times to indicate the possible cause of the problem. If there is more than one error, the lamp will identify the Þ rst of the problem areas.
Status Area of Failure LED Indication 1 Failure 1 +B Failure Amber (0.5 second)/Off (0.5 second) 2 Failure 2 Horizontal/Vertical Deflection Failure, Thermal Protector Amber (1.5 second)/Off (0.5 second) 3 Failure 3 ABL Protector Amber (0.5 second)/Off (1.5 second) 4 Failure 4 HV Failure Amber (0.25 second)/Off (0.25 second)
Amber (0.25 second)/Off (1.25 second)
5 Failure 5 Aging/Self Test Amber (0.5 second)/Off (0.5 second)
Green (0.5 second)/Off (0.5 second)
6 Failure 6 Out of Scan Range Green (OSD Indication)

TIMING SPECIFICATION

MODE 123456
Resolution (H x V) 1792 x 1230 978 x 768 640 x 480 1280 x 1024 1024 X 768 1600 x 1200
Dot Clock (MHz) 78.750 25.175 59.720
HORIZONTAL
Hor. Freq. (kHz) 60.023 31.469 79.976 48.006 106.250
H-Total 9.091 16.660 31.778 12.504 20.831 9.412
H-Blanking 2.479 4.241 6.356 3.022 3.684 2.440
H-Front Porch 0.502 0.495 0.636 0.119 0.887 0.279
H-Sync. 0.738 1.829 3.813 1.067 1.088 0.837
H-Back Porch 1.240 1.917 1.907 1.837 1.708 1.325
H-Active 6.612 12.419 25.422 9.481 17.147 6.972
(µsec)
VERTICAL
Ver. Freq. (Hz) 85.008 75.029 59.940 75.025 60.008 85.000
V-Total 1294 800 525 1066 800 1250
V-Blanking643245423250
V-Front Porch 1 1 10 1 3 1
V-Sync. 3 3 2 3 3 3
V-Back Porch 60 28 33 38 26 46
V-Active 1230 768 480 1024 768 1200
(lines)
SYNC.
Int (G) NO NO NO NO NO NO Ext (H/V)/Polarity YES +/- YES+/- YES +/- YES +/+ YES +/- YES +/+ Ext (C/S)/Polarity NO NO NO NO NO NO
Int/Non Int NON INT NON INT NON INT NON INT NON INT NON INT
271.040
110.000
135.000
229.500
— 3 —
SAFETY CHECK-OUT
CPD-G410R
After correcting the original service problem, perform the following safety checks before releasing the set to the customer:
1. Check the area of your repair for unsoldered or poorly soldered connections. Check the entire board surface for solder splashes and bridges.
2. Check the interboard wiring to ensure that no wires are “pinched” or touching high-wattage resistors.
3. Check that all control knobs, shields, covers, ground straps, and mounting hardware have been replaced. Be absolutely certain that you have replaced all the insulators.
4. Look for unauthorized replacement parts, particularly transistors, that were installed during a previous repair. Point them out to the customer and recommend their replacement.
5. Look for parts which, though functioning, show obvious signs of deterioration. Point them out to the customer and recommend their replacement.
6. Check the line cords for cracks and abrasion. Recommend the replacement of any such line cord to the customer.
7. Check the B+ and HV to see if they are speciÞ ed values. Make sure your instruments are accurate; be suspicious of your HV meter if sets always have low HV.
1. A commercial leakage tester, such as the Simpson 229 or RCA
2. A battery-operated AC milliammeter. The Data Precision 245 digital
3. Measuring the voltage drop across a resistor by means of a VOM
WT-540A. Follow the manufacturers’ instructions to use these instructions.
multimeter is suitable for this job.
or battery-operated AC voltmeter. The “limit” indication is 0.75 V, so analog meters must have an accurate low voltage scale. The Simpson’s 250 and Sanwa SH-63TRD are examples of passive VOMs that are suitable. Nearly all battery-operated digital multimeters that have a 2 VAC range are suitable (see Figure A).
8. Check the antenna terminals, metal trim, “metallized” knobs, screws, and all other exposed metal parts for AC leakage. Check leakage as described below.
Leakage Test
The AC leakage from any exposed metal part to earth ground and from all exposed metal parts to any exposed metal part having a return to chassis, must not exceed 0.5 mA (500 microamperes). Leakage current can be measured by any one of three methods.

WARNINGS AND CAUTIONS

WARNING!!
NEVER TURN ON THE POWER IN A CONDITION IN WHICH THE DEGAUSS COIL HAS BEEN REMOVED.
SAFETY RELATED COMPONENT WARNING!!
COMPONENTS IDENTIFIED BY SHADING MARK ! ON THE SCHEMATIC DIAGRAMS, EXPLODED VIEWS AND IN THE PARTS LIST ARE CRITICAL FOR SAFE OPERATION. REPLACE THESE COMPONENTS WITH SONY PARTS WHOSE PART NUMBERS APPEAR AS SHOWN IN THIS MANUAL OR IN SUPPLEMENTS PUBLISHED BY SONY. CIRCUIT ADJUSTMENTS THAT ARE CRITICAL FOR SAFE OPERATION ARE IDENTIFIED IN THIS MANUAL. FOLLOW THESE PROCEDURES WHENEVER CRITICAL COMPONENTS ARE REPLACED OR IMPROPER OPERATION IS SUSPECTED.
NE JAMAIS METTRE SOUS TENSION QUAND LA BOBINE DE DEMAGNETISATION EST ENLEVEE.
LES COMPOSANTS IDENTIFIES PAR UNE TRAME ET PAR UNE MARQUE SUR LES SCHEMAS DE PRINCIPE, LES VUES EXPLOSEES ET LES LISTES DE PIECES SONT D’UNE IMPORTANCE CRITIQUE POUR LA SECURITE DU FONCTIONNEMENT. NE LES REMPLACER QUE PAR DES COMPOSANTS SONY DONT LE NUMERO DE PIECE EST INDIQUE DANS LE PRESENT MANUEL OU DANS DES SUPPLEMENTS PUBLIES PAR SONY. LES REGLAGES DE CIRCUIT DONT L’IMPORTANCE EST CRITIQUE POUR LA SECURITE DU FONCTIONNEMENT SONT IDENTIFIES DANS LE PRESENT MANUEL. SUIVRE CES PROCEDURES LORS DE CHAQUE REMPLACEMENT DE COMPOSANTS CRITIQUES, OU LORSQU’UN MAUVAIS FONTIONNEMENT SUSPECTE.
Figure A. Using an AC voltmeter to check AC leakage.
AVERTISSEMENT!!
ATTENTION AUX COMPOSANTS RELATIFS A LA SECURITE!!
— 4 —

1-1. CABINET REMOVAL

CPD-G410R
SECTION 1: DISASSEMBLY
Remove (2) Screws (+BVTP 4 x 16)
Release side claw - Insert the tip of a ß athead
screwdriver approximately 0.25" to unlock the claw.
Release top claw - Working from the same
side as the the claw in step 2, insert the tip of a ß athead screwdriver to unlock the top claw.
Release top claw - Repeat Step 3 on the
opposite side.
Release side claw - Repeat Step 2 on the
opposite side and gently lift up and then back to remove the cabinet.

1-2. SERVICE POSITION

Adaptor board (XT Mount) is reconstructed to use for this set.
Prepare a connector (10 Pin: Black) (1-766-921-11), cut of
the boss on the 10 pin side.
Remove the connector (17 Pin: Black) (CN9997), from
Adaptor Board (XT MOUNT) (A-1391-123-A).
Install the connector (10 Pin: Black) onto XT Mount.
Remove the D Board.
Remove the Video Block Assembly.
Install the Adaptor Board (XT MOUNT) (A-1391-123-A).
Lay the Video Block Assembly over 90°.
7
Install the Video Block Assembly.
8
Put a box which is about 15 cm in height under the D Board
to Þ x it. (Please disconnect the CN 701 Þ rst)
1. When the D-board is placed in service position, the Safety Earth Wire (green and yellow wire) is disconnected.
2. After service is completed and the D-board reinstalled, the Safety Earth Wire must be reattached to the chassis with the proper screw. This must be conÞ rmed before any subsequent procedures are attempted.
— 5 —

1-3. A & D BOARD REMOVAL

CPD-G410R
Remove (6) screws (+BVTP 3 x 8) from the sides of the
EMI shield. Slide back and remove.
Gently wiggle the A board back and forth, and pull it to
remove.
Remove (2) screws (+BVTP 3 x 8) from the rear of the
chassis base and remove.
Remove (4) screws (+BVTP 4 x 16) from the chassis
base and slide out to remove.
Remove (7) screws (+BVTP 3 x 8) from the D Board.
Lift the board up and out to remove.
— 6 —

1-4. PICTURE TUBE REMOVAL

Place the unit face down on a cushion to avoid
scratching.
Remove the anode cap.
Remove (4) screws (Screw (5) Tapping) from
the CRT.
Remove the picture tube shield.
Remove the deß ection yoke.
Remove the neck assembly.
Remove the A board and C Block.
7
Remove the demagnetization coil.
8
Remove (2) screws (BVTP 4 x 16) from the
chassis assembly and slide out to remove.
CPD-G410R
ANODE CAP REMOVAL
WARNING: High voltage remains in the CRT even after the power is disconnected. To avoid electric shock, discharge CRT before attempting to remove the anode cap. After removing the anode cap, short circuit to either the metal chassis, CRT shield, or carbon painted on the CRT.
REMOVAL PROCEDURES
Turn up one side of the rubber cap inthe direction indicated by arrow a .
Use your thumb to pull the rubber cap Þ rmly in the direction indicated by arrow b .
When one side of the rubber cap separates from the anode button, the anode cap can be removed by turning the rubber cap and pulling it in the direction of arrow c .
HOW TO HANDLE AN ANODE CAP
1. Do not use sharp objects which may cause damage to the surface of the anode cap.
2. To avoid damaging the anode cap, do not squeeze the rubber covering too hard. A material Þ tting called a shatter-hook terminalis built into the rubber.
3. Do not force turn the foot of the rubber cover. This may cause the shatter-hook terminal to protrude and damage the rubber.
— 7 —
SECTION 2: SAFETY RELATED ADJUSTMENTS
CPD-G410R
When replacing parts shown in the table below, the following operational checks must be performed as a safety precaution against X-ray emissions from the unit.
Part Replaced ( )
HV ADJ
HV Regulator Circuit Check
HV Protector Circuit Check
Beam Current Protector Circuit Check
D board C909, IC501, R901, R902, R906,
D board
N board
D board
N board
RV901
Part Replaced ( )
R910, R913, RV901 T901 (FBT) Mounted D Board
C920, C923, D911, D912, R903, R917, R918, R919, R920, R923, T901 (FBT) Mounted D Board
IC1001, RB1001 Mounted N Board
C930, D917, R921, R932, R933, R935 T901 (FBT) Mounted D Board
IC1001, RB1001 Mounted N Board
ConÞ rm one minute after turning on the power.
Allow the unit to warm up for one minute prior to checking the
following conditions:

2-2. HV PROTECTOR CIRCUIT CHECK

1. Using external DC Power Supply, apply the voltage shown below
between cathode of D912 and GND, and check that the RASTER
disappears.
[SpeciÞ cation]: 19.85 + 0.00/-0.05 V
2-3. BEAM PROTECTOR CHECK
(SOFTWARE LOGIC)
1. Connect constant current source to a section between T901 (FBT) pin and GND, and check that the RASTER disappears when the
speciÞ ed current ß ows to the
pin.
[SpeciÞ cation]: 1.92 + 0.00/-0.01 mA

2-4. B+ VOLTAGE CHECK

1. Input white cross hatch (fH = 69 kHz) signal.
2. CONT (max) & BRT (center).
3. Input voltage: 110 ± 10 VAC.
Note: Use NF power supply or make sure that dis tortion factor is
3% or less.
4. ConÞ rm that the voltage is within the range shown below:
Standard voltage: 200 ± 3.0 VDC

2-1. HV REGULATOR CHECK

1. Turn the RV901 slowly, and adjust so that high voltage is in
in the speciÞ ed range.
[SpeciÞ cation]: 27.00 ± 0.20 kV
2. Check that the voltage of D912 cathode on the D Board is
17.0 V or more.
RV901
— 8 —
CPD-G410R
SECTION 3: ADJUSTMENTS
Connect the communication cable of the connector located on the D board on the monitor. Run the service software and then follow the instructions
Allow a 30 minute warm-up period prior to making the following
adjustments:

3-1. LANDING ROUGH ADJUSTMENT

1. Display all white pattern (or black dot pattern).
2. Set contrast to 255.
3. Display green plain pattern.
4. Slide the DY back and roughly adjust the green plain pattern to
be centered on the useful screen with Purity Magnet.
5. Adjust DY tilt.
Note: Set ROTATION to 128 and LCC_NS to 128 when adjusting DY tilt.
6. Lightly tighten the DY screw.
9. Attach wobbling coil to the speciÞ ed place on CRT neck.
10. With landing checker, adjust DY position, purity, DY center and
11. Check landing of the 4 corners, and adjust using magnet if they
[SpeciÞ cations]
Adjust so that the green is within the
speciÞ cation given right.
4 corner adjust target: within ± 1.

3-2. LANDING FINE ADJUSTMENT

Note: (1) After adjust W/B (9300k), measure the average of ΣΙΚ with all
white video input, while CONTRAST is maximum and BRIGHTNESS is center. Adjustment shall be made so that the miss-landing become least after aging 2H with the IK 30% of measured value shown above.
(2) The magnetic Þ eld shall be BH = 0.
(3) When adjusting at other than BH = 0, calculate the shifted value
from BH = 0.
1. Place the monitor in the Helmholtz coil.
2. Set as follows:
LCC_SW = 0 (LCC Correction Current = 0)
FUNCTION _SW bit 1 = (Auto Degauss = On)
CONTRAST = 255
3. Display plain green pattern.
4. Degauss the iron part of chassis with a hand degausser and degauss coil.
5. Degauss CRT face with a hand degausser again.
6. Input AC 230V to AC IN and turn the monitor off and on. Then auto-degauss works.
7. Reset FUNCTION_SW bit 1 to 0 (auto-degauss = off).
8. Deguass CRT face with a hand degausser again.
The red and blue must be within the
speciÞ cation given right with respect to
the green.
A difference between red and blue must
be within the speciÞ cation given right.
Note: (1) Do not attach more than 2 magnets on one corner.
(2) Attach magnets within the range of 80 - 100 mm from DY.
(3) Be sure to degauss and check when used magnets.
12. Tighten DY screw within speciÞ ed torque, and auto-deguass.
Note: Torque 22 ± 2 dgcm (2.2 ± 0.2 Nm)
landing of the 4 corners.
are not in the speciÞ cation.
0
± 3 0 ± 7.5 0 ± 3
0
± 3 0 ± 7.5 0 ± 3
0
± 3 0 ± 7.5 0 ± 3
± 6 ± 6 ± 6
± 6 ± 6 ± 6
± 6 ± 6 ± 6
10
10 10
10
7 10
10
10 10
µm)
(
(
µm)
(
µm)
— 9 —
CPD-G410R
13. Adjust the vertical angle of DY to make top and bottom pins equal (a = b). The horizontal angle shall not be changed (straight). Settle DY upright without leaning, and insert wedges Þ rmly so that DY shall not move.
[How to place wedge]
Green plain crosshatch pattern
[c]
a and b should be equal.
c and d should be equal.
Plaster RTV to both sides for the upper wedge. Make
[d]
sure that they settle inside DY.
Plaster RTV to one side for other wedges.
14. Adjust top and bottom pins correction VR.
15. Adjust the horizontal trapezoid distortion by DY horizontal trapezoid correction VR.
16. Check landing at each corner and in case not in speciÞ cation, adjust landing of 4 corners with landing magnet.
17. Remove the sensor and wobbling coil.
18. Switch signals to R, G and B and then check that the pure colors have good color purity.
19. Fix purity magnets with white paint.
XBV Movement YBH Movement
R
B
B
R
3-4. CONVERGENCE SPECIFICATION
V
A 0.20 mm B 0.24 mm

3-3. CONVERGENCE ROUGH ADJUSTMENT

1. Display white crosshatch pattern.
2. Pile the convex parts of 6-pole magnet for convergence together.
3. Roughly adjust H. CONV and V. CONV with 4-pole magnet.
2-pole Mg
XCV Movement TLH Movement
YCH Movement TLV Movement
R B B R
— 10 —

4-1. CIRCUIT BOARDS LOCATION

CPD-G410R
SECTION 4: DIAGRAMS
The components identiÞ ed by shading and !symbol are critical for safety. Replace only with part number speciÞ ed.
A Board
H1Board
DA Board
N Board
D Board
4-2. PRINTED WIRING BOARDS AND
SCHEMATIC DIAGRAMS INFORMATION
All capacitors are in µF unless otherwise noted. pF : µµF 50WV or less are not indicated except for electrolytics and tantalums.
All electrolytics are in 50V unless otherwise speciÞ ed.
All resistors are in ohms. K=1000, M=1000k
Indication of resistance, which does not have one for rating electrical power, is as follows: Pitch : 5mm Rating electrical power :
1
/
W in resistance, 1/
4
W and 1/
10
W in chip resistance.
8
: nonß ammable resistor.
: fusible resistor.
: internal component.
: panel designation and adjustment for repair.
All variable and adjustable resistors have characteristic curve B, unless otherwise noted.
Readings are taken with a color-bar signal input.
Readings are taken with a 10M digital multimeter.
Voltages are DC with respect to ground unless otherwise noted.
Voltage variations may be noted due to normal production tolerances.
All voltages are in V.
S : Measurement impossibillity.
: B+line.
: B-line. (Actual measured value may be different).
: signal path. (RF)
Circled numbers are waveform references.
1
/
W
4
The symbol side of the board. Replace only with fuse of the same rating as marked.
Les composants identiÞ es per un trame et une marque la securite. Ne les remplacer que par une piece portant le numero speciÞ e.
Le symbole indique une fusible a action rapide. Doit etre remplace par une fusible de meme yaleur, comme maque.
indicates a fast operating fuse and is displayed on the component
!
sont critiques pour
The components identiÞ ed by X in this basic schematic diagram have been carefully factory-selected for each set in order to satisfy regulations regarding X-ray radiation. Should replacement be necessary, replace only with the value originally used.
When replacing components identiÞ ed by
, make the necessary
Y
adjustments as indicated. If the results do not meet the speciÞ ed value, change the component identiÞ ed by until the speciÞ ed value is achieved.
and repeat the adjustment
X
When replacing the parts listed in the table below, it is important to perform the related adjustments.
Part Replaced ( )
HV ADJ
HV Regulator Circuit Check
HV Protector Circuit Check
Beam Current Protector Circuit Check
D board C909, IC501, R901, R902, R906,
D board
N board
D board
N board
RV901
Part Replaced ( )
R910, R913, RV901 T901 (FBT) Mounted D Board
C920, C923, D911, D912, R903, R917, R918, R919, R920, R923, T901 (FBT) Mounted D Board
IC1001, RB1001 Mounted N Board
C930, D917, R921, R932, R933, R935 T901 (FBT) Mounted D Board
IC1001, RB1001 Mounted N Board
REFERENCE INFORMATION
RESISTOR : RN METAL FILM : RC SOLID : FPRD NONFLAMMABLE CARBON : FUSE NONFLAMMABLE FUSIBLE : RW NONFLAMMABLE WIREWOUND : RS NONFLAMMABLE METAL OXIDE : RB NONFLAMMABLE CEMENT : ADJUSTMENT RESISTOR
COIL : LF-8L MICRO INDUCTOR
CAPACITOR : TA TANTALUM : PS STYROL : PP POLYPROPYLENE : PT MYLAR : MPS METALIZED POLYESTER : MPP METALIZED POLYPROPYLENE : ALB BIPOLAR : ALT HIGH TEMPERATURE : ALR HIGH RIPPLE
— 11 —
CPD-G410R

4-3. DIAGRAMS

0
1
5
5
1
4
4
1
S
8
3
3
1
7
2
2
1
6
1
1
1
R
E
O
N
T
N
C
O
C
B
U
S
N
-
I
D
P
5
1
BLOCK DIAGRAM (1/3)
3
3
1
N
C
P
9
L
:
X
A
1
D
N
G
.
B
E
U
L
B
2
3
D
N
G
.
G
N
E
E
R
G
4
5
D
N
G
.
R
D
E
R
6
7
D
N
G
D
V
8
9
D
N
A
L
I
N
I
G
D
O
T
C
H
4
0
3
C
N
P
4
L
A
:
X
V
5
S
T
O
H
D
D
O
H
D
R
A
O
B
2
0
1
1
N
I
I
D
D
D
D
V
H
1
L
C
S
C
D
2
A
D
S
C
D
3
D
G
N
T
S
4
C
N
3
1
1
1
0
P
W
T
H
A
D
S
C
I
I
D
D
H
0
1
L
C
S
C
9
D
N
G
8
S
A
D
C
7
S
L
C
C
6
G
D
N
C
5
D
N
G
4
T
U
O
S
3
T
U
O
S
2
K
L
B
1
0
6
C
0
I
I
V
N
.
/
1
2
V
5
8
9
0
C
I
0
C
C
V
7
K
L
C
V
Q
0 S
6
0
I
0
C
2
/
2
.
I
V
N
M
O
R
A
D
S
L
C
S
5
6
4
U
O
4
Q
0
0
5
0 W
S
W
0
5
I
0
C
I
4
2
S
N
V
I
5
2
N
I
S
H
4
1
I
L
N
A
T
X
T
2
N
I
.
N
V
A
D
S
4
5
S
L
C
O
I
C
0
3
1
T
U
O
S
V
2
1
T
U
O
S
H
2
Y
L
F
H
8
1
D
S
O
-
R
2
0
D
S
O
-
G
9
1
-
D
B
S
O
1
2
K
B
-
D
L
S
O
S
D
3
0
2
N
-
B
I
4
N
I
-
G
7
-
N
I
R
P
R
E
-
A
M
I
C
0
0
1
5
1
D
S
O
-
R
4
1
D
S
O
-
G
3
1
-
D
B
S
O
2
1
K
L
S
B
O
-
D
L
C
S
A
D
S
0
2
9
1
6
2
T
U
O
-
R
8
2
O
-
T
G
U
0
3
O
-
T
B
U
P
2
2
F
O
R
C
3
2
G
C
F
O
4
2
F
O
B
C
8
-
R
N
I
C
R
T
D
R
I
V
9
N
I
-
G
1
1
N
I
-
B
3
N
I
-
R
4
N
I
-
G
5
N
I
-
B
V 3
V
.
5
3
E
I
C
0
0
2
C
U
T
O
F
F
A
M
P
0
4
I
C
0
V
V
2
0
V
1
8
7
+
+
5
U
O
-
T
R
3
T
U
O
-
G
1
T
U
O
-
B
7
T
U
O
-
R
8
U
O
-
T
G
9
T
B
U
O
-
VADJ
C
I
E
T
H
A
E
B +
C
N
3
1
5
P
8
:
X
A
1
2
3
4
5
6
7
8
O
T
OUT
1
0
1
.
R
G
E
R
C
N
3
1
6
1
0
0
J
F
V
G
1
D
N
F
B
K
1
2
D
N
G
G
K
3
4
D
N
G
R
K
5
6
D
N
G
R
E
T
A
E
H
7
8
D
N
G
2
G
1
2
G
2
P
3
N
1
8
2
C
D
R
A
O
B
D
4
0
6
N
C
G
3
1
F
C
G
N
D
1
G
1
H
1
3
1
4
H
2
5
G
1
6
R
M
1
0
1
9
G
2
K
D
V
I
(
I
7
K
R
8
K
G
B
O
)
E
C
F
V
F
O
O
O
T
J
D
R
A
O
B
D
O
T
B
T
F
1
E
T
U
B
E
T
U
R
P
I
C
V
H
)
T
B
T
F
(
O
9
8
7
5
6
4
3
1
2
1
2
3
N
C
P
V
V
V
D
V
2
0
3
N
5V
7
1
8
.
G
+
+
3
9
T
W
H
B
C
B
+
N
+
D
R
A
O
B
D
O
T
4
0
6
N
C
6
9
-
9
R
C
<
1
0
-
2
8
8
5
-
3
F
O
1
D
B
>
9
1
-
V
— 12 —
BLOCK DIAGRAM (2/3)
C
G
D
D
T
O
D
R
B
O
A
C
N
1
1
0
4
C
N
5
0
2
O
F
4
0
2
0
T
O
N
B
O
A
R
D
C
N
1
0
0
1
C
N
1
1
0
4
2
5
O
F
4
4
CPD-G410R
T
I
D
L
.
T
V
0
2
R
T
S
1
0
T
6
C
6
N
0
0
3
P
W
T
H V
:
H
1
L
C
A
1
C
N
2
2
N
A
C
3
3
1
0
6
H
T
5
.
4
S
O
P
:
1
1
1
0
6
Y
R
2
1
2
2
1
2
3
3
1
C
G
D
2
C
N
3
C
N
4
C
D
G
F
D
H
.
1
.
D
F
V
2
V
S
A
W
N
1
0
D
D
C
2
2
1
6
1
H
.
L
I
N
B
A
L
L
C
C
_
N
S
2
2
H
A
H
P
S
E
2
3
3
R
3
E
F
D
C
3
4
H
D
T
O
U
5
3
C
Y
D
3
6
F
B
P
H
X
D
C
3
7
3
8
D
.
T
I
L
T
3
9
Y
S
C
0
4
X
S
C
1
1
V
S
O
U
T
3
1
H
S
O
U
T
5
1
B
L
H
K
P
O
C
P
5
L
L
K
L
O
C
7
3
9
P
L
L
L
O
C
K
C
O
P
0
4
I
I
C
S
D
A
0
2
9
1
C
S
I
C
L
I D
G
D
N
C
D
1
1
1
D
D
C
C
L
1
S
9
D
D
D
C
A
1
S
7
6
6
H
H
V
V
D
D
E
E
T
T
A
A
B
B
L
L
D
D
E
E
T
T
8
8
G
G
2
2
1
1
0
0
2
2
1
1
S
S
6
6
1
1
4
4
S
S
5
5
6
6
1
1
4
4
S
S
3
3
S
S
8
8
1
1
2
2
S
S
4
4
2
2
1
2
H
T
R
S
W
3
3
P
2
P
2
W
W
R
R
S
S
W
W
D
D
G
G
S
S
S
S
W
W
2
2
5
5
B
P
B
P
V
.
F
V
3
3
.
0
0
F
4
R
X
D
D
T
X
2
T
-
A
M
B
4
2
K
E
Y
S
C
A
N
3
5
L
E
D
1
3
3
3
1
L
E
D
2
C
1
N
1
0
3
6
P
H
W
T
:
-
S
M
I
C
R
8
6
0
Q
D
G
S
V
+
5
6
5
4
3
2
1
KEY SCAN
LED1
LED2
GND
+5V
T-AMB
T
O
O
2
1
2
1
1
2
0
0
6
H
3
4
3
4
3
4
2
6
0
F
L
T
F
:
L
S
W
H
1
B
O
A
R
D
C
N
3
1
1
T
2
2
-
D
6
2
0
6
Y
R
1
2
1
2
H
.
D
F
V
.
D
F
G
2
F
B
P
H
H
O
H
U
D
T
H
P
S
E
H
A
S
2
T
O
S
6
H
.
L
I
N
B
A
L
+
5
V
4
3
2
1
D GND
RXD
TXD
+5V
S
E
C
1
5
Q
S
C
N
1
1
0
1
P
4
W
T
H
6
3
5
7
4
F
F
U
B
E
V
I
R
D
3
0
5
1
-
0
5
Q
5
1
Q
5
-
1
A
P
C
3
0
6
Q
8
3
0
6
Y
R
6
C
I
O
F
D
H
5
7
0
-
1
0
7
Q
F
D
V
,
0
6
7
Q
C
H
L
:
2
0
5
L
L
0
6
1
6
5
m
H
2
1
1
1
1
2
3
4
9
5
8
6
7
1
1
0
2
6
Q
T
U
8
0
7
,
U
T
O
7
0
7
V
E
I
R
D
H
4
0
5
Q
8
R
D
H
-
2
H
S
-
H
T
C
L
:
3
0
5
T
W
S
0
1
5
Q
1
2
3
4
5
7
6
8
DDC GND
DDC SCL
DDC SDA
VS OUT
HS OUT
H BLK
GND
GND
V
I
P
A
P
IIC SCL
1
2
1
2
1
0
6
Q
D
:
T
7
H
E
A
E
S
0
5
C
I
W
M
C
O
0
9
1
IIC SDA
O
B
O
2
0
6
S
T
F
1
0
T
-
V
H
R
I
D
-
V
A
H
L
_
B
P
-
E
Z
I
D
-
S
H
1
T
N
N
C
1
1
1
0
B
L
3
0
6
C
I
R
V
E
I
D
R
L
T
R
V
C
E
N
S
S
E
I
F
R
E
I
V
X
A
U
D
S
E
M
D
T
T
D
H
1
0
5
H
1
8
M
W
P
9
1
E
V
3
1
D
R
0
2
M
W
3
T
E
T
O
U
N
I
P
6
0
5
Q
S
0
2 P K
T
O
A
B
O
A
R
D
C
1
N
3
1
5
0
Q
6
1
0
6
C
1
4
2
3
C
I
6
7
0
L
P
6
2
D
1
-
4
Y
L
-
F
2
T
C
O
N
T
L
O
R
C
R
C
U
B
5
Q
E
V
I
R
D
0
5
5
Q
0
1
5
L
4
9
5
0
L
2
5
0
1
9
0
6
Q
3
8
0
6
C
1
1
R
O
R
R
E
P
M
A
F
F
7
0
5
1
V
5
G
E
R
2
5
0
6
C
I
R
E
T
A
E
H
G
.
E
R
1
7
W S
R T H
U
O
2
G
0
9
Q
U
M
2
G
9
0
Q
V
5
6
C
I
V
M
P
W
-
V
H
V
H
E
V
R
I
D
-
V
H
0
9
C
I
T
5
E
T
6
G
0
V
0
8
V
5
1
4
0
6
C
I
0
1
G
R
E
0
Q
9
U
O
V
H
0
Q
9
2
U
M
2
0
9
Q
V
2
1
V
7
V
5
1
-
V
0
4
V
5
6
6
0
Q
W
S
P
7
0
6
Q
V
3
3
.
W
S
W
S
0
2
9
T
1
T
2
E
T
7
T E D
V H
X
S
C
3
V
.
3
3
S
C
Y
X
D
C
Y
D
C
R
E
F
D
C
W
W
R
R
P
P
S
S
W
S
W
R
W
W
S
_
N
L
C
C
T E D
L B A
I
4
I
6
I
7
I
5
4
3
2
0
1
T
F
B
:
1
9
0
T
H
_
L
B
A
A
M
P
7
0
I
1
C
C
Y
-
A
N
+
N
A
+
B
N
-
N
B
I
C
7
0
2
C
Y
)
X
(
N
A
I
-
)
X
(
A
I
N
+
Y
)
(
N
B
+
I
)
Y
B
(
I
N
-
B
Y
S
T
1
A
U
T
I
O
2
A
U
T
O
8
T
B
O
U
9
B
U
T
O
I
M
P
A
6
)
(
X
A
T
O
U
1
Y
)
(
B
U
T
O
7
I
C
1
6
C
C
L
9
0
3
A
M
P
+
+
8
0
+
1
2
3
.
3
R
D
A
I
C
4
0
1
O
U
V
T
7
1
N
2
W
C
A
D
S
D
V
5
T
U
O
6
3
P B F . V
C
T
I
O
N
,
H
D
F
F
(
L
D
E
E (
H
V
,
P
O
W
S
E
U
R
P
-
0
1
<
9
-
9
6
5
-
8
8
2
0
3
7
C
I
V
.
3
3
E
V
I
R
D
O
N
I
T
A
T
O
R 1
4
2
B
V
V
7
V
V
V
5
,
)
V
D
F
P
L
Y
)
R
V
-
C
1
9
>
B
D
2
O
F
3
1
7
0
N
C
P
1
0
T
W
H
R
O
C
I
-
M
S
:
0
1
O
T
A
T
I
O
N
-
R
A
T
I
O
N
+
R
O
T
9
8
X
S
C
-
X
S
C
+
7
6
Y
S
C
-
S
C
+
5
Y
4
X
D
C
-
X
D
C
+
3
2
Y
D
C
-
Y
D
C
+
1
2
0
6
N
1
C
P
3
T
W
H
O
R
C
M
I
-
:
S
)
L
C
C
(
+
1
2
L
C
C
(
-
)
3
D
A
T
O
B
O
A
R
C
N
3
1
2
4
0
C
N
6
9
P
B
L
K
1
+
B
+
B
2
3
N
C
4
+
8
0
V
5
G
N
D
6
1
2
V
+
7
7
V
8
V
3
.
3
9
5
V
N
C
5
1
0
1
2
G
0
C
1
N
5
1
V
+
V
-
2
H
-
4
H
+
6
— 13 —
BLOCK DIAGRAM (3/3)
CPD-G410R
D
R
A
O
B
D
O
T
2
0
5
N
D
R
A
O
B
D
O
T
4
0
1
1
N
C
1
0
0
1
N
C
4
4
O
F
4
3
2
4
B
M
A
_
T
0
4
C
O
P
2
1
6
S
4
1
5
S
4
6
S
1
3
S
8
1
2
S
4
2
1
S
6
2
T
E
D
B
L
2
3
N
A
C
S
Y
E
K
N
I
D
P
H D
D
H
P
I
I
D
D
3
4
3
A
5
3
2
D
E
L
1
3
1
D
E
L
3
3
0
3
P
B
F
.
V
W
S
T
9
U
2
P
W
S
S
G
5
2
3
2
W
S
R
W
1
2
W
S
R
T
L
C
S
C
D
9
A
D
S
C
D
7
6
T
E
D
V
9
3
K
C
O
L
L
L
4
D
X
R
L
C
S
C
I
3
D
X
T
2
A
D
S
C
I
1
1
1
1
D
N
G
C
2
0
2
2
8
9
1
2
V
5
+
T
E
D
L
B
2
G
1
V
5
+
7
8
0
S
N
I
P
S
N
I
P
S
N
I
P
S
N
I
P
5
S
N
I
P
3
S
N
I
P
6
1
4
0
N
A
/
4
5
P
1
3
7
O
T
2
3
2
O
T
2
2
9
7
O
T
8
7
0
1
0
8
0
6
O
T
8
5
2
5
O
T
1
9
1
8
3
O
T
4
1
7
0
2
8
2
5
N
I
/
0
N
I
0
B
T
/
3
7
P
T
U
O
7
A
T
/
6
3
P
N
1
6
A
T
/
5
3
P
4
3
P
T
I
A
W
/
3
3
P
R
W
H
/
2
3
P
R
W
/
1
3
P
0
1
N
A
/
2
4
P
1
1
N
A
/
2
4
P
1
2
A
/
5
A
/
5
2
P
2
2
A
/
6
A
/
6
2
P
1
T
N
I
/
0
S
T
C
/
1
6
P
3
2
A
/
7
A
/
7
2
P
4
D
A
/
4
0
P
5
D
A
/
5
0
P
6
D
A
/
6
0
P
1
L
C
S
/
7
8
P
1
A
D
S
/
6
8
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7
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6
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<
— 14 —
A BOARD SCHEMATIC DIAGRAM
N
N
O
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9
1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | 10 | 11 | 12 | 13
CPD-G410R
A
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(
A BOARD IC VOLTAGE LIST
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IC001 IC002 IC004
pin volt pin volt pin volt
1 GND 1 56.6 1 GND
2 3.6 2 GND 2 11.8
3 12.0 3 56.3 3 4.9
4 3.6 4 GND 4 4.9
5 2.3 5 54.4 5 4.9
6 GND 6 79.4 6 NC
7 3.6 7 GND 7 105.4
8 GND 8 2.1 8 109.4
9 0.6 9 2.0 9 112.9
10 4.4 10 11.9 10 NC
11 5 11 2 11 199.6
12 0
13 0 pin volt pin volt
14 0 1 GN D 1 N C
15 0 2 0.4 2 2.3
16 GND 3 2.2 3 GND
17 0.8 4 4.7 4 2.1
18 0.1 5 4.5 5 5.0
19 4.7 6 GND
20 4.5 7 4.4 pin volt
21 NC 8 GND 1 0.3
IC003 IC005
IC006
22 3.2 9 5.0 2 4.5
23 3.3 10 0.1 3 0.0
24 3 11 0.8 4 4.9
25 GND 12 0.3 5 4.6
26 2.6 13 0 6 0.3
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28 2.6 15 NC 8 4.6
29 12 16 GND 9 0. 2
30 2.6 17 5 10 0.0
31 5 18 0 11 4 .9
32 GND 19 0 12 0 .4
20 0 13 4.5 21 0 14 5.0
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32 N C
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C
A BOARD IC VOLTAGE LIST
N
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C BLOCK
CPD-G410R
[VIDEO]
COMPONENT SIDE
CONDUCTOR SIDE
1 | 2 | 3 | 4 |
1
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8
2
3
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0
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8
7
4
1
C
3
5
1
3
5
2
C
5
8
C
3
1
2
4
1
1
J
R
6
J
R
7
3
2
1
C
2
2
C
2
0
1
C
2
1
3
1
0
C
3
1
3
B
0
F
0
1
0
4
1
F
B
2
R
2
3
2
2
2
R
1
0
9
C
3
2
3
C
0
1
8
N
C
9
1
R
2
D
3
1
1
1
2
C
1
C
2
1
1
J
R
5
0
1
C
1
1
0
9
R
2
C
2
2
3
1
1
C
I
3
1
9
-72
(
0228-
1
C BLOCK
1
0
1
N
3
C
0
8
0
1
R
3
0
3
3
N
1
C
R
2
6
1
3
0
2
1
D
1
R
0
9
8
C
1
1
1
R
1
1
0
C
1
C
1
1
3
9
3
C
0
C
5
0
0
4
1
C
N
3
1
8
G
2
C03
5
S
G
0
0
1
9
D
0
4
0
1
R
6
1
5
C
2
1
C
2
5
2
0
1
R
3
1
D
1
1
1
3
C
0
1
6
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3
1
7
0
1
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0
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2
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1
1
0
5
2
)
J
2
1
R
1
3
1
0
D
5
3
C
3
0
6
F
B
3
0
2
3
R
3
3
F
B
2
0
2
R
2
3
3
1
0
2
B
F
R
1
3
3
2
R
0
7
1
6
0
R
2
J
R
C
2
1
0
5
R
3
0
7
(
1
6
C
0
I
B
C
D
— 16 —
A
0
7
1
1
8
2
C
0
R
J
I
I
C
S
I
C
I
S
C
G
N
D
D
D
C
S
D
A
D
D
C
S
C
L
D
D
N
C
G
D
G
N
D
V
S
OU
H
S
U
T
O
H
B
3
.
3
V
7
V
+
1
2
V
G
N
+
8
0
V
N
+
B
4
3
0
6
C
6
1
3
R
0
2
1
D
A
L
R
0
2
0
R
0
1
T
R
0
3
1
L
K
C
0
4
3
5
V
F
D
C
+
B
H
• A BOARD WAVEFORMS
1
0.74 Vp-p (H)
2
1.12 Vp-p (H)
3
H
0.73 Vp-p (H)
4
54.5 Vp-p (H)
5
54.5 Vp-p (H)
A BOARD LOCATOR LIST
DIODE IC
COMP COND COMP COND D001 -- A-3 IC001 B-3 -­D002 A-4 -- IC002 B-3 -­D003 C-4 -- IC003 -- B-2 D004 -- A-5 IC004 B-1 -­D005 -- B-3 IC005 -- B-3 D007 C-4 -- IC006 -- A-1 D008 C-4 -- IC009 -- B-3 D014 -- C-1 IC011 C-2 -­D104 -- D-4 D105 -- D-4 COMP COND D106 -- D-4 Q004 -- C-2 D111 -- B-4 Q005 -- C-2 D204 -- D-4 D205 -- C-4 COMP COND D206 -- D-4 X001 C-3 -­D211 -- B-4 D304 -- D-4 D305 -- C-4 D306 -- D-3 D311 -- B-3
TRANSISTOR
CRYSTAL
CPD-G410R
6
56.0 Vp-p (H)
— 17 —
D BOARD SCHEMATIC DIAGRAM
1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | 10 | 11 | 12 | 13 | 14 | 15 | 16 | 17 | 18 | 19 | 20 | 21 | 22 |
A
CPD-G410R
R
O
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A
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1
C
6
F
5
B
1
0
S
G
Q
6
0
5
4
9
0
5
T
5
4
3
C
I
0
6
2
1
6
D
6
8
C
1
0
2
6
3
6
R
1
2
6
D
9
1
6
D
2
2
1
3
R
6
5
1
3
R
6
1
1
R
7
5
C
0
5
N
2
2
1
4
R
E
1
2
3
0
5
D
7
2
0
5
D
2
6
3
R
R
J
0
6
5
0
6
Q
1
E
B
7
2
6
R
1
1
1
6
D
6
R
7
3
3
1
6
D
2
3
6
D
1
5
0
1
5
Q
B
9
R
J
5
8
5
R
G
5
0
6
Q
0
1
6
C
7
C
0
6
A
R
1
N
C
0
6
2
3
1
2
4
0
4
C
4
5
6
R
1
6
5
0
5
Q
0
1
5
R
B
0
4
6
R
2
0
6
R
8
3
6
R
1
6
5
R
S
6
T
2
0
2
6
C
1
3
5
7
5
L
1
0
1
0
4
C
6
H
D
Y
+
E
C
1
0
6
R
4
6
1
8
0
6
L
5
2
6
R
0
6
D
9
4
2
6
C
3
3
5
7
R
1
3
2
1
-
8
-
8
-
6
1
1
6
2
C
I
0
4
1
7
R
7
7
0
4
C
4
9
R
0
4
0
R
1
4
8
R
0
Y
H
D
1
0
5
N
C
J
1
7
2
R
3
0
4
C
4
8
C
0
R
6
0
4
5
0
4
R
3
0
4
R
+
D
Y
V
-
1
D
Y
V
-
2
0
4
R
9
0
5
C
4
0
5
D
5
7
1
R
7
0
5
Q
C
1
5
3
5
9
R
1
4
1
0
7
D
1
0
4
H
T
5
6
R
1
2
C
1
5
5
8
R
1
1
1
0
7
T
8
2
0
6
D
1
2
6
R
6
C
I
6
R
R
2
0
6
Q
6
4
R
1
1
4
0
6
2
C
1
1
5
8
1
3
6
R
1
6
6
R
4
0
6
D
4
0
6
R
L
0
6
3
3
0
4
3
9
R
7
0
C
2
0
7
5
R
0
4
7
3
2
7
C
5
6
0
3
9
R
D
G
N
5
0
6
D
2
6
1
R
8
1
6
R
D
2
6
0
6
C
4
0
9
B
F
9
C
9
2
D
0
7
0
9
C
6
0
9
R
7
0
9
R
4
0
9
N
C
R
6
7
2
0
0
1
B
F
0
0
0
1
B
F
4
3
4
4
G
S
1
1
0
9
Q
3
1
R
1
1
9
7
1
9
D
0
3
9
C
9
3
R
3
9
0
C
1
R
0
7
4
6
3
6
C
2
0
6
B
F
7
3
6
C
6
0
6
0
2
3
6
D
3
0
6
Y
R
1
0
6
L
1
3
0
1
1
N
C
6
1
R
6
7
0
9
D
1
9
L
1
0
8
5
1
2
1
1
2
6
0
1
L
1
0
1
2
R
J
8
5
9
R
5
1
9
R
4
1
3
9
R
4
2
0
6
F
L
3
6
C
8
3
5
R
1
9
5
0
R
9
S
0
9
Q
2
8
1
9
C
0
4
R
9
3
R
5
9
2
R
J
6
0
7
R
7
Q
3
1
0
6
H
F
S
4
0
1
1
N
C
1
2
R
2
9
5
5
3
R
9
G
3
9
4
C
2
R
4
9
4
R
5
9
R
1
9
7
0
7
Q
4
7
R
6
0
4
9
5
R
9
0
9
R
9
0
9
D
9
C
6
1
5
9
5
R
8
3
9
C
9
3
R
4
6
8
6
C
3
9
E
5
0
9
Q
7
1
9
R
V
5
0
2
1
F
0
6
H
2
3
1
0
6
H
T
0
0
6
A
3
0
6
G
C
I
9
0
4
5
V
4
Q
6
E
H
H
S
V
S
D
D
2
1
D
D
D
D
8
I
I
I
IC
D
C
R
D
9
1
9
B
9
6
R
4
1
4
9
R 0
1
5
N
C
.
2
K
1
2
1
9
D
1
2
9
R
9
0
9
C
R
1
1
C
0
6
N
8
0
B
B
C
C
C
C
2
9
9
3
5
9
V
R
1
9
+
B
+
B
N
C
+80
V
N
G
D
1
2
+
V
7
V
3
.
3
V
5
V
L
K
O
U
T
OUT
G
N
D
N
G
D
C
L
S
S
D
A
G
N
D
S
C
L
S
D
A 0 5
2
C
7
3
9
R
4
9
4
4
9
5
R
C
3
3
9
1
9
9
2
R
2
9
T
D
X
R
D
X
+
5
V
D
GN
D
0
D BOARD LOCATOR LIST
DIODE DIODE
COMP COND COMP COND COMP COND
D401 F-6 -- D630 B-10 -- Q501 D405 F-6 -- D631 D-8 -- Q502 -- E-2 D501 I-11 -- D632 B-8 -- Q503 -- E-1 D502 I-8 -- D633 -- A-5 Q504 -- I-1 D503 G-8 -- D634 -- A-5 Q505 -- H-5 D504 H-6 -- D635 D-10 -- Q506 -- F-4 D505 G-9 -- D636 -- A-5 Q507 -- H-7 D506 H-5 -- D639 D-10 -- Q510 -- F-5 D507 H-9 -- D701 F-5 -- Q511 F-10 -- D510 H-9 -- D702 F-5 -- Q512 G-10 -- D516 G-7 -- D703 F-5 -- Q513 G-12 -- D517 I-9 -- D902 G-4 -- Q514 G-12 -- D520 H-9 -- D906 -- F-9 Q515 H-12 -- D521 H-9 -- D907 E-4 -- Q601 A-7 -- D601 A-4 -- D909 E-2 -- Q602 -- A-8 D602 A-5 -- D910 G-2 -- Q603 B-5 -- D603 -- A-8 D911 H-2 -- Q605 B-7 -- D605 A-4 -- D912 H-1 -- Q607 -- D-3 D606 A-4 -- D914 G-4 -- Q608 D-1 -- D608 A-9 -- D917 F-4 -- Q609 B-10 -- D609 B-7 -- D918 -- F-12 Q701 G-5 -- D610 A-9 -- D919 -- F-12 Q702 F-5 -- D611 B-7 -- D920 -- F-12 Q703 G-5 -- D612 A-8 -- D923 -- F-11 Q704 G-5 -- D613 B-8 -- Q705 G-5 -- D614 D-5 -- COMP COND Q706 I-2 -- D615 B-9 -- IC401 F-6 -- Q707 -- H-10 D616
B-10 -- IC501 E-11 -- Q708 -- F-7
D617 B-10 -- IC601 D-9 -- Q901 -- E-9 D618 D619
D-6 -- IC603 A-8 -- Q902 -- E-10 D-8 -- IC604 D-10 -- Q905 -- G-11
D620 D-9 -- IC605 D-9 -- Q906 -- F-11 D621 D-8 -- IC607 -- A-2 Q907 -- F-11 D622 C-9 -- IC608 B-11 -- D623
B-4 -- IC610 D-10 --
D624 -- B-9 IC611 D625 D626 D627 D628 D629
C-5 -- IC701 C-11 -- D-2 -- IC702 D-12 --
B-8 -- IC703 B-12 --
D-2 -- IC902 -- F-11
-- B-3 IC1603 -- E-4
IC
-- A-8
TRANSISTOR
-- E-2
— 19 —
H1 BOARD SCHEMATIC DIAGRAM
1 | 2 | 3 | 4 | 5
1
0
4
1
A
B
R
0
0
4
1
R
0
2
2
N
R
:
5
0
4
1
S
U
N
E
M
0
0
4
Q
1
P
T
A
-
S
E
1
4
1
T
C
D
E
I
V
R
D
D
E
L
6
0
4
1
R
0
5
1
7
0
4
1
R
0
2
2
A
G
R
E
W
O
P
S
R
0
2
2
N
R
:
R
B
-
-
T
N
O
C
1
0
4
1
Q
A
S
4
T
1
C
1
T
D
E
V
R
I
D
D
E
L
0
0
4
D
1
5
1
T
P
-
3
C
2
9
4
7
L
M
3
0
2
4
1
0
4
R
1
0
0
0
1
0
1
N
R
:
N
R
:
+
T
6
0
4
1
S
+
1
2
4
1
R
k
0
1
N
R
:
4
2
4
1
R
k
2
2
N
R
:
4
0
4
1
R
0
7
4
N
R
:
CPD-G410R
0
0
1
4
N
C
P
8
)
(
L
O
C
R
I
M
S
-
:
B
M
A
-
T
2
0
4
1
B
F
3
0
4
1
B
F
8
9
4
1
C
1
.
0
B
:
4
0
4
1
B
9
F
1
4
1
R
0
0
4
1
H
T
0
2
4
1
R
k
0
1
9
-
9
M
M
5
W
J
k
0
0
1
7
0
4
1
C
7
4
V
6
1
P
T
O
N
R
F
V
R
C
<
0
1
-
2
8
8
-
5
6
1
0uH
0uH
L
N
E
A
1
H
>
9
1
-
N
A
C
S
E
Y
K
2
1
D
E
L
3
2
D
E
L
4
D
N
G
5
V
5
+
6
D
N
G
7
D
N
G
8
D
R
A
O
B
D
O
T
3
0
1
1
N
C
A
[FRONT PANEL]
1 | 2 | 3 | 4 | 5 | 6 | 7 |
1
0
4
1
Q
1
0
4
1
0
0
4
1
H
-
4
1
9
-
1
1
-
7
2
0
4
4
7
-
3
0
7
-
1
A
1
A
-
LED 1
LED 2
GND
+5V
GND
GND
T_AMB
8
KEY SCAN
R1420
7
0
4
1
C
1
T
R1419
C
1
4
9
8
4
0
4
1
B
F
R1403
8
FB1402
1
0
4
N
C
0
1
R1401
R1402
R1400
M
E
N
U
5
0
4
1
S
3
0
4
1
B
F
-
S
— 20 —
D
4
0
4
1
R
+
R1424
6
0
4
1
B
B
1
2
4
1
R
2
0
4
1
C
W
J
-
2
6
7
7
8
6
-
1
R1407
E
1
D
P
E
0
0
4
1
Q
R1406
1
1
1
-
0
0
4
O
W
E
R
1
N BOARD SCHEMATIC DIAGRAM
1 | 2 | 3 | 4 | 5 | 6 | 7 |
A
B
R
D
A
B
T
O
D
O
C
D
E
F
G
4
0
1
1
N
C
1
0
0
N
1
C
4
P
4
4
C
4
N
4
D
N
G
C
N
4
C
N
4
C
O
P
4
K
C
O
L
L
L
P
3
D
N
G
3
7
S
3
P
U
3
E
K
A
W
N
A
C
S
Y
E
K
3
A
M
G
I
S
K
I
3
1
D
E
L
3
T
E
D
B
L
3
2
D
E
L
3
P
B
F
.
V
3
W
S
T
U
P
N
I
2
0
S
2
V
5
+
2
1
S
2
W
S
S
G
D
2
2
S
2
W
S
R
W
P
2
D
N
G
2
W
S
R
T
H
2
D
N
G
2
D
N
G
1
3
S
1
2
D
N
G
C
D
D
1
4
S
1
2
L
C
S
C
D
D
1
5
S
1
2
A
D
S
C
D
D
1
6
S
1
1
D
N
G
C
D
D
1
2
G
1
1
L
C
S
C
D
D
T
D
E
L
B
A
1
A
D
S
C
D
D
T
E
D
V
H
W
S
O
C
E
D
X
R
L
S
C
C
I
I
D
X
T
A
S
D
C
I
I
9
0
0
1
B
R
0
0
1
3
P
I
H
C
:
2
1
0
9
8
7
6
6
0
0
1
B
R
5
4
3
2
1
0
9
8
7
6
5
4
3
2
1
0
9
8
7
6
5
4
3
2
1
0
9
8
7
6
5
4
3
2
1
P
I
H
C
:
0
0
1
V
5
1
0
0
1
H
B
U
F
O
P
I
H
C
:
7
4
0
2
0
1
R
P
I
H
C
7
:
4
1
2
0
1
R
P
I
H
C
7
:
4
8
1
0
1
R
P
I
H
C
:
7
4
9
1
0
1
R
P
I
0
4
H
0
0
1
0
C
:
R
1
P
I
H
C
:
7
1
0
1
k
R
1
P
I
H
C
:
6
1
0
0
0
1
1
R
4
4
0
1
R
3
4
0
1
R
M
1
M
1
P
I
H
C
:
P
I
H
C
:
CPD-G410R
P
U
E
K
A
W
W
S
T
U
P
N
I
0
S
1
S
2
S
3
S
4
S
5
S
6
S
7
S
W
S
O
C
E
P
B
F
V
T
E
D
V
H
T
E
D
L
B
A
A
M
G
I
S
K
I
T
E
D
B
L
N
A
C
S
Y
E
K
1
0
0
1
C
1
0
.
0
P
I
H
C
:
B
4
1
0
1
C
7
4
8
2
0
1
C
V
3
.
6
1
.
0
P
I
H
C
:
P
I
H
C
:
B
2
4
0
1
R
k
0
1
P
I
H
C
:
V
5
4
0
0
1
R
k
7
.
4
P
I
H
C
:
1
4
0
1
R
k
7
.
4
P
I
H
C
:
C
O
P
0
3
0
1
C
1
0
.
0
P
I
H
C
:
B
K
C
O
L
A
D
S
L
C
S
D
X
T
D
X
R
B
5
1
0
1
C
1
0
.
0
P
I
H
C
:
B
5
2
2
6
7
2
8
2
6
0
0
1
R
2
9
k
7
.
4
P
I
H
C
:
3
0
1
3
5
0
0
1
R
k
7
.
4
2
3
P
I
H
C
:
3
3
4
3
5
3
3
6
0
1
0
1
R
P
I
H
C
k
:
1
7
3
8
3
5
V
9
2
0
1
C
9
3
1
0
.
0
P
I
H
C
:
4
0
7
1
0
1
C
1
0
.
0
P
I
H
C
:
B
C
V
5
0
2
0
1
C
0
0
1
V
3
.
6
P
I
H
C
:
C
B
0
0
2
I
C
1
P
S
5
T
4
7
C
M
T
-
E
T
E
R
S
E
T
O
M
E
R
R
E
T
A
E
H
S
S
U
A
G
E
D
1
D
N
G
C
D
D
2
D
E
L
1
D
E
L
2
D
N
G
C
D
D
2
L
C
S
D
2
A
D
S
D
1
L
C
S
D
1
A
D
S
D
1
0
0
1
R
M
5
.
1
P
I
H
C
:
1
0
0
1
D
X
T
1
-
1
1
M
A
3
0
0
1
R
0
0
1
P
I
H
C
:
7
2
0
1
C
1
0
.
0
P
I
H
C
:
B
4
H
0
1
F
1
1
E
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P
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R
C
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N
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9
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1
V
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C
<
1
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N
[MICRO]
COMPONENT SIDE
A
-
1
3
9
1
-
1
5
4
-
A
1
1
0
N
0
3
C
R
D1001
RB1009
RB1006
1
4
3
4
4
-
1
-
7
2
R
B
1
0
0
5
C
1
0
1
3
8
0
1
6
R
B
1
0
0
4
R
0
B
1
3
0
F
B
1
0
0
5
RB1002
RB1001
R
1
1
0
0
0
0
1
3
C
1
0
1
4
2
4
2
5
C
1
1
0
3
6
8
0
2
-
3
8
4
-
1
C
1
0
2
9
0
-
2
2
9
-
1
CONDUCTOR SIDE
RB1007
R
1
C
0
1
0
0
9
1
6
C
I
1
0
0
1
65
6
4
4
1
4
0
C
1
0
1
7
C
1
0
N
R
1
0
4
1
R
1
0
0
6
0
R
1
0
0
4
R
1
0
0
5
1
1
4
3
0
0
1
C
I
5
8
IC1002
1
X1001
1
C1022
C1019
C1020
C
1
0
1
8
0
1
8
R
1
R
1
0
1
9
R
1
0
4
4
1
2
4
4
4
3
0
C
1
1
C
N
0
1
0
R
1
0
3
5
C
1
0
C
1
0
2
7
1
3
0
0
1
N
C
F
B
1
0
0
1
C
1
0
0
1
C
1
0
1
5
8
2
0
1
2
4
0
2
1
-
7
2
C
0
1
0
C
1
C
1
0
1
2
6
C
1
0
C
R
1
0
4
2
0
2
6
C
1
C
1
0
2
9
-
1
0
-
2
1
0
0
8
1
1
1
2
1
0
0
1
Q
R
4
1
0
1
R
1
0
0
8
R
1
0
R
2
1
2
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>
2 1
5
C
1
0
2
1
R
1
0
1
1
0
1
2
<
)
N
G
+
W
G
(
-
P
— 21 —
DA BOARD SCHEMATIC DIAGRAM
1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 |
A
B
C
D
E
F
R
D
A
B
O
D
T
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2
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