Sharp 81GF-63E User manual

1
81GF-63E
MODEL 81GF-63E
SHARP CORPORATION
CONTENTS
ELECTRICAL SPECIFICATION.......................2
IMPORTANT SERVICE NOTES.......................3
SERVICE ADJUSTEMENTS.............................4
PRINTED WIRING BOARDS............................7
SCHEMATIC DIAGRAM.................................14
PART LIST......................................................23
BLOCK DIAGRAM..........................................22
PAL B/G, I / SECAM L/L’, B/G, D/K SYSTEM COLOUR TELEVISION
SEJB81GF63E00
DA-50W CHASSIS
SERVICE MANUAL
In the interests of user safety (required by safety
regulations in some countries) the set should restored
to its original condition and only parts identical to
those specified should be used.
Issued: 27th July ‘00
This document has been published to
be used for after sales service only.

2
81GF-63E
ELECTRICAL SPECIFICATIONS
•Power Input .......................220V-240 Volts AC 50Hz
•Power Consumption
•Audio Power Output Rating
Speakers
Left / Right.........................8Ω12W, 6 x 12cm
•Aerial Input Impedance
•Tuning Ranges..............45.75MHz thru 855.25 MHz
•Intermediate Frecuencies
•Adjacent Sound Carrier Trap
•Sound Carrier Trap
L’..........................................................33.9MHz
L, B/G, D/K, I.......................................38.9MHz
L’..........................................................40.4MHz
L, D/K...................................................32.4MHz
B/G.......................................................33.4MHz
VHF/UHF...........................75 ohm Unbalanced
CATV Special Channels
Normal Operating....................................92W
Stand-by Operating...................................1W
Internal Left Speaker.....................10W (MPO)
Internal Right Speaker..................10W (MPO)
Internal Centre Speaker...........10W (MPO)
Centre................................7Ω12W, 6 x 12cm
•White Level
Set brightness control to get total picture tube cathode current of 600 milliamperes under no signal condition.
Maximum necessary correction of each picture tube cathode current to get 8550 degrees K+1MPCD screen
temperature should not exceed 15% of its original value.
X=0.290 Y=0.300
WARNING
The chassis in this receiver is partially hot. Use an isolation transformer between the line
cord plug and power receptable, when servicing this chassis.
To prevent electric shock, do not remove cover. No user-serviceable parts inside. Refer
servicing to qualified sercice personnel.
Convergence.........................Self Converging System
Focus....................................Bi-Potencial Electrostatic
Sweep Deflection...........................................Magnetic
L’..........................................................32.4MHz
L, D/K, B/G..........................................40.4MHz
•Adjacent Picture Carrier Trap
L’..........................................................41.9MHz
L, D/K, I................................................30.9MHz
B/G.......................................................31.9MHz
Specifictions are subject to change without prior notice.
I............................................................32.9MHz
I...........................................................40.9MHz

3
81GF-63E
IMPORTANT SERVICE NOTES
SERVICING OF HIGH VOLTAGE SYSTEM AND PICTURE TUBE
Maintenance and repair of this receiver should be done by qualified service personnel only.
When servicing the high voltage system, remove static charge from it by connecting a 10K ohm
resistor in series with an insulated wire (such as test probe) between picture tube ground tag and
high voltage lead. (AC line cord should be disconnected from AC outlet).
1. Picture tube this receiver employs Integral Implosion protection.
2. Replace with tube of the same type number for continued safety.
3. Do not lift picture tube by the neck.
4. Handle the picture tube only when wearing shatterproof goggles and after discharging the high
voltage completely.
X-RAY
This receiver is designed so that any X-Ray radiation is kept to an absolute minimum. Since certain
malfunctions are servicing may produce potentially hazardous radiation with prolonged exposure at
close range, the following precautions should be observed:
1. When repairing the circuit, be sure not to increase the high voltage to more than 33 KV, (at beam
1600µΑ) for the set.
2. To keep the set in a normal operation, be sure to make it function on 32KV±1KV (at beam 1600µΑ)
in the case of the set. The set has been factory - adjusted to the above mentioned high voltage. If
there is a possibility that high voltage fluctuates as a result of the repairs, never forget to check for
such high voltage after the work.
3. Do not substitute a picture tube with unauthorized types and/or brands which may cause excess
X-Ray radiation.
BEFORE RETURNING THE RECEIVER
In addition to the checks necessary as a result of a repair having been carried out, the following
additional safety checks should also be made before returning the units to the user.
1. Inspect all lead dress to make certain that leads are not pinched or that hardware is not logged
between the chassis and other metal parts in the receiver.
2. Inspect all protective devices such as non-metallic control knobs, insulating fish papers, cabinet
backs, adjustment and compartment covers or shields, insolation resistor-capacity networks,
mechanical insulators etc.

4
81GF-63E
SERVICE ADJUSTMENTS
All the adjustments required for this chassis will be done in Service Mode, except G2 and Focus.
••
••
•G2 ADJUSTMENT
1.Receive cross hatch pattern signal.
2. Set contrast to 80/100 and brightness to 40/100.
3. Connect the oscilloscope to the red cathode and adjsust G2 to read
140V on the sensor pulse as in the drawing:
NOTE:
Oscilloscope should be adjusted for vertical TV field trigger and synchronized
with wideo signal.
••
••
•SERVICE MODE FUNCTION
This mode function is provided to assist with the settings of those adjustments that may vary from one
Picture Tube to another, or between models.
In order to use the Service Mode:
1. Connect Test Pattern signal to antenna terminal.
2. Press main switch to «OFF».
3. Press volume-down and channel-up buttons and
main switch to «ON» simultaneously.
4. Service mode is now entered.
The required adjustments can then be made from the Remote Control Unit.
The only buttons required are the following:
Up/Down-channel for movement in adjustment options menu; Up/Down-volume are used to carry out an
adjustment in said menu; ON/OFF is used to memorize a new adjustment.
Adjustment menu is as follows:
-GREEN GAIN.
-GREEN CUT OFF.
-BLUE CUT OFF.
-ALTER NVM PAGE / ALTER NVM POSITION /
ALTER NVM VALUE.
-TELETEXT MIX MODE CONTRAST.
-TELETEXT CONTRAST.
-OSD CONTRAST.
-DVCO ADJUSTMENT (Only PAL).
-DVCO ADJUSTMENT (Only NTSC).
-AGC ADJUSTMENT.
-AFT ADJUSTMENT.
-OPC VALUE (Not Available in this model).
AUTOINSTALLATION ON/OFF.
To exit service mode, press main switch ot OFF.
Adjustment menu is as follows:
Horizontal:
-Adjust HORIZONTAL SHIFT.
-Adjust E-W WIDTH.
-Adjust PIN PHASE.
-Adjust PIN AMPLITUDE.
-Adjust UPPER CORNER CORRECTION.
-Adjust LOWER CORNER CORRECTION.
All adjustments for Geometries are based on internal pattern (fig.1)
The procedure for making adjustments is as follows:
Vertical:
-Adjust VERTICAL AMPLITUDE.
-Adjust S-CORRECTION.
-Adjust VERTICAL SHIFT.
-Adjust VERTICAL LINEARITY.
Fig.1
-SERVICE SOFTWARE AND HEXADECIMAL
COUNTER DISPLAY: «SW ON XXXX SW OFF
XXXX HOURS ON XXXX
-HORIZONTAL SHIFT.
-EAST WEST WIDTH.
-PIN PHASE.
-PIN AMP.
-UPPER CORNER CORRECTION.
-LOWER CORNER CORRECTION.
-VERTICAL LINEARITY.
-VERTICAL AMPLITUDE.
-S CORRECTION.
-VERTICAL SHIFT.
-RED GAIN.
CH
1
2
140 V
CH1 gnd

5
81GF-63E
Fig. 2
Fig. 3
Fig. 4
Fig. 5
Fig. 6
Fig. 9
Fig. 8
Fig. 7
1− 1−
1− 1−
1− HORIZONTAL SHIFT
a) Internal pattern signal will be displayed.
b) When volume-up button is pressed, picture moves to the left.
c) When volume-down button is pressed, picture moves to the right.
d) Adjust the horizontal location to obtain picture centering (fig. 2).
2− 2−
2− 2−
2− E-W WIDTH
a) Internal pattern signal will be displayed.
b) When volume-up button is pressed, horizontal scanning increases.
c) When volume-down button is pressed, horizontal scanning decreases.
d) Adjust the horizontal amplitude to obtain 9% overscan (fig. 3).
3− 3−
3− 3−
3− PIN PHASE
a) Internal pattern signal will be displayed.
b) When volume-up button is pressed, slide pincushion changes.
c) When volume-down button is pressed, slide pincushion changes.
d) Adjust the PIN PHASE to obtain condition as in (fig. 4).
4− 4−
4− 4−
4− PIN AMPLITUDE
a) Internal pattern signal will be displayed.
b) When volume-up button is pressed, slide pincushion changes from
pincushion to barrel shape.
c) When volume-down button is pressed, slide pincushion changes from
pincushion to barrel shape.
d) Adjust the PIN AMPLITUDE to obtain condition as in (fig. 5).
a) Internal pattern signal will be displayed.
b) When volume-up button is pressed, slide pincushion changes from
pincushion to barrel shape.
c) When volume-down button is pressed, slide pincushion changes from
pincushion to barrel shape.
d) Adjust the UPPER CORNER CORRECTION to obtain condition as in (fig.
6).
6− 6−
6− 6−
6− LOWER CORNER CORRECTION
a) Internal pattern signal will be displayed.
b) When volume-up button is pressed, slide pincushion changes from pincushion
to barrel shape.
c) When volume-down button is pressed, slide pincushion changes from
pincushion to barrel shape.
d) Adjust the LOWER CORNER CORRECTION to obtain condition as in (fig. 7).
7− 7−
7− 7−
7− VERTICAL LINEARITY
a) Internal pattern signal will be displayed.
b) When volume-up button is pressed, upper picture scanning decreases and
lower picture scanning increase.
c) When volume-down button is pressed, upper picture scanning increases and
lower picture scanning decrease.
d) Adjust the vertical symmetry to obtain symmetry scanning between upper and
lower picture (fig. 8).
8− 8−
8− 8−
8− VERTICAL AMPLITUDE
a) Internal pattern signal will be displayed.
b) When volume-up button is pressed, vertical size of picture increases.
c) When volume-down button is pressed, vertical size of picture decreases.
d) Adjust the vertical size to obtain overscan (fig. 9).

6
81GF-63E
9− 9−
9− 9−
9− S-CORRECTION
a) Internal pattern signal will be displayed.
b) When volume-up button is pressed, upper and lower scanning decreases, and
center scanning increases.
c) When volume-down button is pressed, upper and lower scanning increases,
and center scanning decreases.
d) Adjust the S-CORRECTION to obtain a balance between upper, lower and
center (fig. 10).
10− 10−
10− 10−
10− VERTICAL SHIFT
a) Internal pattern signal will be displayed.
b) When volume-up button is pressed, picture moves up.
c) When volume-down button is pressed, picture moves down.
d) Adjust the horizontal location to obtain picture centering (fig. 11).
COLOUR ADJUSTMENT
The following adjustments are only required when Picture Tube,
IC801 or IC1801 are changed:
1. RED CUT OFF / GREEN CUT OFF / BLUE CUT OFF
2. RED GAIN / GREEN GAIN / BLUE BAIN
ACCESS TO NVM
a) Receive Philips pattern signal.
b) When Stand-by button is pressed (Remote Control
Unit), start
DVCO ADJUSTMENT (PAL)
Up/Down volume buttons are used to adjust the
contrast of the following items:
-TELETEXT MIX MODE CONTRAST.
-TELETEXT CONTRAST.
-OSD CONTRAST.
CONTRAST ADJUSTMENT
DVCO ADJUSTMENT (NTSC)
Adjust not required.
AUTO INSTALLATION OFF/ON
When ON is selected, the TV will perform the
autoinstallation sequence as soon as service mode is
removed.
a) Connect Test Pattern signal to antenna terminal.
b) Press main switch to OFF.
c) Press volume-down and channel-up buttons and
main switch to ON simultaneously.
d)»Service Software Vxx.xx» appears o screen.
e)Press main switch to OFF.
PROTECTIONS CANCEL
AGC ADJUSTMENT
a) Tune the TV into CH10 (pattern generator).
b) Adjust the signal strength to 57dB µV
c) Press the stand-by button on the Remote Control
(red button).
The TV will perform automatically the AGC.
AFT ADJUSTMENT PAL BG - I, SECAM L
a) Tune the TV into CH69 (pattern generator).
b) Press the stand-by button on the Remote Control
(red button).
The TV will perform automatically the AFT.
1.1 Adjust G2.
1.2 Tune a white card.
1.3 Adjust colour to minimum.
1.4 Position colourimeter in the center of screen.
1.5 Adjust brightness and contrast to obtain a luminance of
≈20 NITS.
1.6 Operate in Service Mode and select location RED CUT
OFF / GREEN CUT OFF / BLUE CUT OFF, to obtain colour
coordinates:
X=0.290 ± 0.015 Y=0.300 ± 0.015
To increase press volume-up button and to decrease press
volume down button.
RED CUT OFF alter «X» coordinate.
GREEN CUT OFF alter «Y» coordinate.
BLUE CUT OFF alter «X» and «Y» coordinate.
2.1 Using brightness and contrast buttons, select a
luminance of ≈120 NITS.
2.2 Operate in Service Mode and select location RED GAIN
/ GREEN GAIN / BLUE GAIN, to obtain colour coordinates:
X=0.290 ± 0.015 Y=0.300 ± 0.015
To increase press volume-up button and to decrease press
volume down button.
RED CUT OFF alter «X» coordinate.
GREEN CUT OFF alter «Y» coordinate.
BLUE CUT OFF alter «X» and «Y» coordinate.
2.3 Exit Service Mode and check colour coordinates «X»
and «Y» at 20 and 120 NITS. It may be necessary to repeat
procedure 1 and 2 of COLOUR ADJUSTMENT.
Fig. 10
Fig. 11
Press CH ∧ to move in the following sequence:
ALTER NVM PAG⇒ALTER NVM POS ⇒ALTER VNM
VAL to alter presseting adjustments, press up/down-
volume buttons on ALTER NVM VAL.
!
CAUTION: Do not change NVM VALUE to avoid
risk of serious damages to TV set.
AFT ADJUSTMENT SECAM L’
a) Tune the TV into CH04 (pattern generator).
b) Press the stand-by button on the Remote Control
(red button).
The TV will perform automatically the AFT.

7
81GF-63E
ESPA¥A
T1602
C1603
C1602
C1601
(FF)
1
2
3
4
55
4
3
2
1
(F)
EB
CQ1601
F7314BMN0 .
FOCO
DYN.INPUT GND
K7314BM
1
(EW) R1602
R1603
D1601
R1601
D1602
C1604 +
1
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234 567
DINAMIC FOCUS UNIT PRINTED WIRING BOARDS.
T1602
C1603
C1602
C1601
(FF)
1
2
3
4
5
5
4
3
2
1
(F)
Q1601
.
FOCO
GND DYN.INPUT
F7314BMN0
1
(EW)
R1602
R1603
D1601
R1601
D1602
C1604
+

8
81GF-63E
MOTHER UNIT PRINTED WIRING BOARD. Component side.
1
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234567
Page 9
E
Q912
C
D1804
C1825
C1824
+
C1811
+
C1812
J70
D623
R770
C739
+
J344
R771
R703
R778
R721
D734
D731
J17
IC701
L702
C704
D704 D703
POR701
5
1
(STB2)
C632
+
L605
JF50 JF51
R619
J317
J334
+
C721
J321
D722
FB703
FB704
F701
C701
13 (AA)
L611
R614
C637
L612
C638
R536
(H)
5
J326
JF48
FB1002
C1823
+
J327
C713
D720
+
C720
C631
R1
JL2.
D716
C501
+
C723
+
C641
C611
C642
FB501
R503
R643
C509
+
(A)
321
C526
+
C707
+
K7240BM
F7241BMNF
K7241BM
TP602
TP601
L502
J244
J226
D718
R1820
R1822
R1821
C770
L609A
J207
L609
R501
L603
C714
C711
FB702
D711
J69
20
IC501
R1036
R742
IC706
J67
R723
+
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R790
R791
J210
J209
J208
54321
(F)
E
C
B
Q601
E
Q602 B
L701
Q701
12 6
MODULO_DIGITAL
T601
12
11
10
9
87654
3
2
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T701
1
9
10
18
S702 S703
LP701
D1002D1001
S704 S705
20
21
21
20
G
D
S
S701
4
3
2
1
(CW)
1
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D604
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J6
C
IC1801
15
1
214
(K).
IC1008
(L2)
(YC)
DIP
QKIT
JF1
Q605
J171
L606
D621
R623
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R641
R609
J172
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+
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J33
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R728
C719
+
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C610
J173
C615
T3.15AH
(H).
1
C
Q711
E
IS INDICATED WITH
THE ACTIVE SECTION
CAUTION
THE " " SYMBOL
J68
1
CF701
J4
C
+
R533
J177
J176
J175
J174 R616
D610
J134
J133
J101
+
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D702
C703
R715
C710
R741
J10
R792
M1000
D608
JF9
JF8 D609
J306
C634
JF29
J316
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R518
L604
R553
C504
(PW)
3
1
J284
JL14. R408
(AV).
D612
+
C607
R617
R606
D1809
C528
+
C620
+
J264
+
C619
R610
+
C1807
D719
R611A
JL1
J100
J320
R608
R628
(SW1)
(SW2)
(RC)
(OPC) (ST)
(L4)
R730
R713
FB701
(L5)
4
(MO)
1
J300
J288
D516
R763
JL17
C611A
C618
F602
F601
D714
R727 J85
J86
JF28
FB705
L705
JF53 JF54
.
12
(G)
C702
D707
C724
+
D701
D708
C746
L703
JF57
JF56
(EW)
D611
JF55
R604
FB603
C648

9
81GF-63E
MOTHER UNIT PRINTED WIRING BOARD. Component side.
89 10 11 121314
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Page 8
JL31
JL31.
D803
J319
JL7.
JL10.
C802
+
L801
J214
J307
JL28. JL26.
JL27.
JL29.
JL29
J349
J348
J347
JL18
L1801
D206
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C370
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C378
+
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R1064
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(L2)
J337
R1018
J121
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R1058
1
(STB4)
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(STB3)
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50Hz
50Hz
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J323
J269
J270
R1022
J304
1
(RT)
R1003
AV
1
J331
C433
+
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R418
+
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1
(S)
4
3
(HD)
1C341
R315
J130
L318
J93
31
IC1005
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J81
J80
J79
J78
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C372
+
C352
C351
+
L352
C363
+
C361
R359
J87
+
C536
J260
J248
+
C426
C825
+
+
C1001
JL11
J180
J185
J190
R519
J212
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R620
R229
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J119
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J322
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501
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J42
J43
(RGB)
J192
J193
J194
J106
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J114
J113
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JF34
JF33
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TP701
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J95
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J226
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+
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J236
J251
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C219
+
J253
J152
J156
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C520
+
R501
J50
J49
J48
J157
C323
C322
J136
JF6
JF14
J163
C211
+
J146
J147
J150
J164
J165
J166
J167
J168
J125
+
C220
R307
R306
J198
51
SF202
SF201
15
J231
J232
64
33
32 1
IC801
C358
IC304
1
8
J127
J128
J129
IC305
1
32
33 64
C218
+
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J265
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L501
1
6
12
16
12
61
IF2
IF1
33V
B+
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CL
AS
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71 3 5
624
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(AV)
1
2
2
1
R424
R425
11
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L503
J178
J274
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1
2627
52
20
10 1
IC301
+
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J230
1
CF202
C206
+
SF203
15
J278
J275
+
C215
IC203
L350
L351
61
(SB)
(SA)
16 12
IC1002
C329
+
C326
+
C315
C325
C324
J169
L201
C311
+
C314
+
C313
+
J191
R541
J8
J9
L317
J246
R455
+
C343
L803
J151
J162
J161
J160
C210
+
J189
J145
C430 C431
J142
J155
J154
J153
J144
J143
J141
5
6
789
10
11
12
GND
TRC
(K).
C1814
(YB) (YA)
F7240BMNF
ESPA¥A
ITP7240BMNF
C376
J47
R508
J102
J103
J187
J401
C815
+
+
C365
J137
C514
J158
JF19
+
5J216
R419
R426
J280
C228
R233
R232
+
C209
J225
C204
+
C205
J301
+
C332
J83
J12
J13
J14
L301
J46
J45
R1047
J31
J305
J32
J242
J241
J222
J221
C820
R231
C821
C524
R534
C511
+
J314
J64
J249
R533
R436
L203
JL6.
+
C1031
JL11..
J303
R230
Q502
X801
+
C818
+
1
C812
C437
+
JL15
FB302
JL12.., JL12.,
GND
GND
GND
J94
J116
J297
R618
JL12.
100Hz
D1809
R1834
(L3)
R1050
J27
L315
L316
J60
JF31
J91
R1008
J90
R550
R526
11
10
IC302
J199
J200
J201
J309
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L1002
J44
JL2
R1055
J271
C229
+
3
(SS)
1
1
(CC)
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X301
R234
D622
J183
R530
+
C644
JL12,,
J24
+
C1032
JL1.
C1027
+
J62
C353
J300
J288
JL17.
X1002
R1020
R1019
J120
JL11.
(STB1)
C377
+
3
(VS)
1
.
.
R650
C356
C381
C306
+
+
C305
(SC)
JL10
JL12
JL28
JL26
JL27
R814
C804
+
J234
J228
R815
19
(K)
JL14

10
81GF-63E
MOTHER UNIT PRINTED WIRING BOARD. Copper side.
1
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234567
Page 11
C447
D803
J319
R809
C824
J332
R801
+
C802
L801
C801
J214
R406
R404
C405
D1007
K
J354
R405
C411
C413
C412
J219
R804 R803
R1028
C809
R805
C814 R622
K
D801
C316
C318
C317
C328
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C327
C333
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C321
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R502
R512
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R259
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R357
C375 C373
C379
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R372
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+
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C368
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D205 K
R210
R215
R1060 R1035
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C438
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C1021
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J121
J338
J339
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R1058
(STB4)
(STB3)
J122
R1023
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FB801
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J324
J343
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J270
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(RT)
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R1002
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J322
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J310
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C501
R521
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JF38
J28
J42
J43
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R376
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C1025
C1024 C1023
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J193
J194
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L2401
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J114
J113
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C435
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R241
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R252
R251
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J75
J72
J61
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(FV).
(FV)
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TP701
J252
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J95
J118
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R1821
R1836
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R1823
R1824
C1803
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C415
+
J250 R451
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J251
J63
R247
C219
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R205
J253
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J156
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R514
D510
C512
R517
R507
C520
+
R501
R2408
J50
J49
J48
J157
C323
C322
R323
R318
C523
J136
F
IC2401
QKITP7240BMNF
C216
C217
C507
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J163
R321
R322
C211
+
J147
J150
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J166
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J168
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C227
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J232
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C309
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+
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R415
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J265
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FB301
R453
R457
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K
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TU
AS
CL
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B+
IF1
IF2
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JF2
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28
1
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KD411
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26 27
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IC301
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C335
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C206
+
R217
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C208
SF203
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L351
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J342
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116
17
32
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C329
+
C326
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L317
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J160
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C431
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R549
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75 26
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IC1001
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R419
R426
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R416 J280
Q
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E
B
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R313
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R245
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R256
R255
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C529
R211
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C360
C516
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J288
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R1019
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J335
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(STB1)
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.
.
C4
C439
C440 C441
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R362
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R351
C356
C381 J2
R377
R459
JF11
R461
R458
R468
R304
R301
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+
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K
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(SC)
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IC503
C340
J350
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J146
JF52
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J351
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R811
Q803
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+
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R815
Q804
Q805
R817
R816
C826
R818
K
D804
(K)
D422
K
K
D415

11
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MOTHER UNIT PRINTED WIRING BOARD. Copper side.
89 10 11 121314
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Page 10
R502
R512
C540
R539
R562
R561
C640
J346
R1830
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Q912
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C1825
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D404 K
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R703
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D731
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81
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12
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6
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(H).
1
R752 Q711
R754 Q712
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C733
IS INDICATED WITHTHE ACTIVE SECTION
CAUTION THE " " SYMBOL
CF701
R736
R739
J4
+
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529
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(MO)
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C517
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R648
R647
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9
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.
.
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R557
C537
R555
R559
C539
3
C648
C1811
422
D415

12
81GF-63E
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234567
POWER SWITCH UNIT PRINTED WIRING BOARDS.
AF7305BMN0
K7305BM
IC6701
LP6701
OPC ST
R6751
S6701
D6751 D6752
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D6701
RC SW2 SW1
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C6703
C6705
S6704
C6704
R6739
R6738
C6715

13
81GF-63E
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234567
FRONT A/V UNIT PRINTED
WIRING BOARDS.
CENTRAL SPEAKER UNIT PRINTED WIRING BOARDS.
R449
JF3
JF2
JF1
C429 C428
(FV)(CC)
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1(SB) 6
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CRT 12
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CE
R1830
C1815
R1841
R1839C1813
5
(H)
9(K) 1
L1801
C5412
+
R5416
(MO)
R5417
C5408
R5418
R5419
C5410
K
D5410
R5413
J75
R5414
R1618
C1611
R1615
R1624
C5409
R5412
1
IC1601
C1609
+
C1809
D5404 R5420
R5424
E
B
Q5408
C5415
J73
Q5406
C5417
D5403 K
R5421
(PU) 13
R1619
C1608
+
R5434
Q5412
R5432
L1603
Q5411
R5433
R5435
R1620
C1812
+
C1825
R1837 C1610
R1616
+
A
J78
R1623
(Q) 1
D5412
D5411
R1621
F7273BMN2
K7273BM
C1807
+
C1824
ESPA¥A
R5426
C5405
L1604
R1834
(RT)
CRT
4
10 11
12
9
8
6
7
5
R5423
R5428
R5422
(L2)
+
C1612
C1613
+
J72
1
(B)
J70
D1809
R1821
R1822
R1832
C1814
G2
R1836
C5414
D5405
R5425
Q5407 BE
(L3)
+
C1811
R1820
J327
+
C1823
CQ912
E
D1804
R1841
5
(H)
9
(K) 1
L1801
C5412
+
(MO)
C5408
14
2
115
IC1801
C1609
+
D5404
R5420 EB
Q5408
C5415
J73
C5417
R5421
1
(PU)
3
C1608
+
L1603
(L2)
C1812
+
C1825
+
C5413
CRT MODULE UNIT PRINTED WIRING BOARDS.
R449
(FV) (CC)(SS)
L318
J401
K7306BM
CN4
426
5317
L317
(J)
F7306BMN0 A

14
81GF-63E
DESCRIPTION OF SCHEMATIC DIAGRAM
1. The unit of resistance «ohm»is omitted
(K=1000 ohms. M= Megaohm).
2. All resistors are 1/8 watt. unless otherwise
noted.
3. All capacitors are
µF, unless otherwise noted
(P= µµF).
4. The capacitor with Part No.
RC-FZ9XXXBMNJ is designed to with stand
63V.
NOTE:
SAFETY NOTE:
1. DISCONNECT THE AC PLUG FROM THE AC
OUTLET BEFORE REPLACING PARTS.
2. SEMICONDUCTOR HEAT SINKS SHOULD BE
REGARDED AS POTENTIAL SHOCK HAZARDS
WHEN THE CHASSIS IS OPERATING.
IMPOTANT SAFETY NOTE:
PARTS MARKED WITH « » ( ) ARE
IMPORTANT FOR MAINTAINING THE SAFETY
OF THE SET. BE SURE TO REPLACE THESE
PARTS WITH SPECIFIED ONES FOR
MAINTAINING THE SAFETY AND PERFORMAN-
CE OF THE SET.
SERVICE PRECAUTION:
THE AREA ENCLOSED BY THIS LINE ( )
IS DIRECTLY CONNECTED WITH AC MAINS
VOLTAGE.
WHEN SERVICING THE AREA, CONNECT AN
ISOLATING TRANSFORMER BETWEEN TV
RECEIVER AND AC LINE TO ELIMINATE
HAZARD OF ELECTRIC SHOCK.
CAUTION
This circuit diagram is original one,
therefore there may be light difference from
yours.
215 Vp-p 50Hz
45 Vp-p 113 KHz FM
WAVEFORM MEASUREMENT CONDITION:
Colour bar genetator signal of 70 dB from RF input.
1234
5678
910 11 12
13
580V 1.3 KV 15.625KHz 4 Vp-p 15.625KHz
41 Vp-p 15.625KHz 1.8 Vp-p 50Hz 3.3V 50Hz
19V 50Hz 20.5 Vp-p 50Hz 400Hz1.15 Vp-p
15.625KHz
400Hz
!

15
81GF-63E
1
I
H
G
F
E
D
C
B
A
234567
DINAMIC FOCUS UNIT SCHEMATIC DIAGRAM.
POWER SWITCH UNIT SCHEMATIC DIAGRAM.
12
345 54321
(F)
0505
(FF)
0505
C1602
470pF
2Kv
C1601
330pF
2Kv
T1602
NZ0575BM
R-Z0001BM
C1603
1000 pF
2Kv
FOC
FOC IN
G2
R1601
1 0.
1/2W
D1601
EX0431BM
D1602
EX0411BM
L5
(EW)
GN0241
Q1601
TIP32
M6701
11 122233 3
123
RC
+5V
GND
+5V
GND
LED
23
OPC
LEDOPC
+5V
+5V
+5V
1
3
2
RRMCU0228CEZZ
1
(A)
GN0207
(M)
GN0304
(SW1)
GN0341
(SW2)
GN0341
(OPC)
GN0341
R6701
120K
1/2W
R6702
120K
1/2W
S6702
KZ0079
S6703
KZ0079
S6704
KZ0079
S6705
KZ0079
S6701
P0600
F6701
FS-C3226
D6751
PX0105
1 2
3
D6752
PX0105
1 2
3
R673
100
R6739
100
(ST)
GN0341
LP6701
P0001
(RC)
GN0341

16
81GF-63E
123 123 123 321123
VS
+5V
+3.3V
+3.3V
+3.3V +3.3V
+5V +5V
+5V
+3.3V
+3.3V
+5V
+5V
+3.3V
+5V
+8V
+16V
-16V +5V
+150V
1
2
3
OPC
LEDOPC
LED
LEDOPC
PAGC
LED
OPC
RU R2
G2
A16
B2 A17
BLU A1
A19
TLTXT
ALCLOCK
AFT2
AFT1
PAFT
PROT
SCL
SDA OE
CAG
BU
GU
HB
AL
AL
RS
PROT
GNDU
VS
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
R733
47K
R712
560
FB701
LN0037
R72
1 0
(1/2W)
R715
47K
5W
C731
10nF
C702
10nF
250V
KZ0029
(G)
PLGN0207
C705
EZ0119
220uF
(3 5V) R714
560K
(1/2W)
R713
560K
(1/2W)
D703
DX0555
RF2005
D704
DX0555
RF2005
D701
DX0555
RF2005
D702
DX0555
RF2005
C724
220uF
(16V)
D706
DX0551
R740
47K
R7 9
1 K
R7
1 K
CF701
C0121
Q709
2SC2412
D711
DX0539
BYT52M
R711
1K
R1017
3K3
D721
C V2
EX0550
R727
1 0
(1/2W)
C71
1000uF
(25V)
C719
1000uF
(25V)
FB703
LN0037
R1033
10K
D725
DX0551
Q710
2SC2412 R75
100
R754
2R7
C1022
100nF
R1001
3K3
R1002
3K3
R1052
4K7
R1032
27K
Q1005
2SC2412
R1026
220
R2406
2K2
R2407
2K2
C1021
100nF
C2404
100nF
X2401
B0214
D71
DX0603
RGP15D
D719
DX0603
RGP15D
C707
100uF
(16V) R104
20
R751
1K
R790
1 K
R791
1 K
R1022
100
R763
100
(1/2W)
XZ0224
Q711
BC547
TX0106
C710
47nF
400V
FZ0156
T702
BTW34
VHDBT34F
D2401
EX0539
3V
D724
C2V7
EX053
D730
DX0551
FB702
LN0037
POR701
P0001
D720
DX05 7
MR 26
X1002
17.734MHz
B0200
L701
F010
R792
6K
R755
390
R1037
4K7
R1036
4K7
IC708
FX0111
Q712
2SC2412
D72
R1055
47K
C1019
47pF
Q701
C711
330pF
2KV
KZ0036CE
J62
3.3uH
(DF)
R739
47K
R1035
4K7
C737
1uF
(16V)
R1050
220
C1034
10pF
R1020
3K3
R101
100
R1023
220
D1003
DX0606
BAS 5
IC703
FX0106
MOC8106
5
12
4
R2410
100
R2411
100
R2412
100
C1025
15nF
C1024
15nF
C1023
15nF
R716
(RC)
GN0341
(ST)
GN0341
F701
C706
22uF
(16V)
FB1002
LN0037
C1017
100nF
(HB)
R767
10K
R73
47K
R737
1 0K
R777
47
D729
47V
EX056
R70
1K
R1059
100
R105
100
R1019
3K3
R1041
4K7
R1004
3K3
J39
3.3uH
(DF)
(SV)
GN0341
C704
KZ0165
3.3nF 250V
R770
270
XZ0229
(1/2W)
R771
470K
(1W)
D732
15V
EX0556
D733
DX0551
R774
470K
(TQ)
R775
470K
(TQ)
R776
2K
R736
470K
R735
470K
Q715
2SK2715
TX0215
D707
DX0502
1N4005
D70
DX0502
1N4005
D710
EX0545
5V1
LP1001
R721
150K
D731
DX0502
1N4005
D734
DX0502
1N4005
R703
150K
(SW1)
GN0341
(SW2)
GN0341
(AA)
CM0672FC
C701
0.1uF
(250V)
C703
KZ0165
3.3nF 250V
R769
20
C746
0.1uF
(250V)
(OPC)
GN0341
C1027
470uF
(10V)
C1032
47uF
(10V)
C1002
100nF
R1029
4K7
R2401
470
D1005
EX0545
5V1
C733
10nF
R1030
4K7
IC702
ST6203
IX1646
VDD
1
OSCIN
2
OSCOUT
3
NMI
4
TEST
5
RESET
6
PB7
7
PB6
PB5 9
PB3 10
PB1 11
PB0 12
PA3 13
PA2 14
PA1 15
VSS 16
IC1003
X24645
IX1603
NC
1
S1
2
S2
3
VSS
4SDA 5
SCL 6
WP 7
VCC
7
3
T701
RTRNZ0578 M
17
IC1001
ST10R27
2L
IX1686 M
P5.13
1
P5.14 AFT1
2
P5.15 AFT2
3
VSS
4
XTAL1
5
XTAL2
6
VDD
7
3.0
3.1
9
3.2 MICRO OUT
10
3.3 LED OPC
11
3.4 AGC OUT
12
3.5 ABL
13
3.6 LEDST
14
3.7 OPC IN
15
3. AV LINK
16
3.9 CAG
17
3.10 M3CLK
1
3.11 M3LDA
19
3.12 I2CEN
20
A19
26
VSS
27
VDD
2
A20
29
A21
30
A22
31
A23
32
RD
33
WR/WRL
34
READY
35
ALE
36
EA
37
VDD
3
VSS
39
RPD
40
P5.12 100
P5.11 99
P5.10 9
P7.3 PAFT 97
P7.2 SDA2 96
P7.1 PROT 95
P7.0 SCL1 94
P2.11 SDA1 93
P2.10 AVLINK 92
P2.9 IR 91
P2. 90
P6.7 9
P6.6
P6.5 7
P6.4 SCL2 6
3.13 SERV DATA
21
P3.15
22
A16
23
A17
24
A1
25
R1064
100
D1011
EX040
5V1
IC1004
X24645
IX1603
NC
1
S1
2
S2
3
VSS
4SDA 5
SCL 6
WP 7
VCC
Q1003
2SC2412
Q717
2SC2412
D1004
EX0545
5V1
L703
L702
C1020
6 pF
C2401
22pF
C2402
22pF
Q70
2SC2412
C2403
100nF
C1001
470uF
(6.3V)
C725
4.7nF
(HB)
R7 7
47K
C72
100nF
R1031
4K7
Q1002
2SC2412
IC704
FX0106
MOC8106
5
12
4
C732
10nF
C730
10nF
R102
1K
Q714
2SA1037
C739
220uF
(16V)
IC701
PST529
.
2
.
1.3
R2409
(0)
1
1
I
H
G
F
E
D
C
B
A
234567
Page 17
Page 18
MOTHER UNTI SCHEMATIC DIAGRAM (00 Version).

17
81GF-63E
123 4
+13V
Vf
GND
V OUT
V IN
R OUT
L OUT
R IN
L IN
SS
V OUT
V IN
5
+175V
+150V +5V
+5V
+5V
+150V
+5V
+150V
+5V
-19V
+13V
+13V
+150V
-13V
+20V
+5V
+5V+150V
+5V
+5V
-13V
PROT
BLU
RU
SC3INR
SC3INL
OE
VI2
CAG
GU
BU
S
AV3
SC1OUTR
SC1OUTL
VI3
S
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
L605
Z0720
R720
10K
R722
33
JF1
L606
150uH
P0237BM
R539
3K3
R402
75
R404
100
R406
100
17
19
1
20
17
19
13
15
9
11
5
7
1
3
2
4
6
10
12
14
16
1
20
R623
1
(2W)
R607
12K
C515
6 0pF
R522
2K2
D715
DX0551
D713
DX0551
D712
EX0419
C15
C713
6 nF
C712
100pF
(1/2W)
D711
DX0539
BYT52M
R745
1K
(1%)
R750
1M
FB703
LN0037
J152
J1023
C2404
100nF
R2402
4K7
X2401
B0214
20.4 MHz
R240
3K3
R2403
1K5
Q2401
2SC2412
R2404
56
R2405
100K
R537
K2
R627
1 0
(TQ)
L601
3.3uH
R625
1 0
(TQ)
R614
10K
(1/2W)
C606
100nF
(HB)
R76
220
(TQ)
D727
DX0551 R719
220
L2
M0017CE
R401
75
R405
100
C401
100pF
C404
100pF
R403
100
R4
R40
75
(1/4W)
R603
330
D510
DX0505
1N4935
R50
6 0
R455
10K
R643
1
(1/2W)
XZ0200
R612
22
(1/3W)
XZ0116
IC706
TL431
IX1674BM
C715
330pF
Q702
TX01 2
2PD602AR
D401
EX0549
7V5
D402
EX0549
7V5
D40
EX0
7V5
D404
EX0549
7V5
D2401
EX0539
3V
D506
DX0551
D412
DX0551
Q601
TX0144
BUH515
D611
DX0505
1N4935
FB702
LN0037
R717
22K
C520
470uF
(35V)
D720
DX05 7
MR 26
D604
DX0301
BY299
D603
DX0299
BY22
C720
EZ025
100uF
(200V)
21
C532
100pF
R534
27K
CN2
CZ2107 M
21
D502
DX0551
D504
DX0551
R549
27K
D414
DX0551
D60
DX0505
1N4935 F601
J2521
D621
1N4936
DX0506
R616
2.7
(1W)
D610
DX0503
1N4933
R762
220
(TQ)
D72
C4V7
EX0544
F602
J2521
D609
DX0505
1N4935
J24
120 (1/2W)
R451
120
(1/2W)
R456
15K
R452
22K
1%
D415
6V2
EX0547
R526
4K7
C437
47uF
C514
33nF
R723
270
(1W)
Q701
TX019
S5F10N 0
C714
2nF
C711
330pF
2KV
KZ0036CE
Q602A
TX0192
(KSC2500)
R619
560
(1/2W)
R605
470
Q603
2SC2412 D612
R601
3K9
(16V) C1034
10pF
C73
56pF
Q703
TX0151
2SD2391Q
IC705
FX0106
MOC8106
5
12
4
R624
5.6
(2W)
(LU)
R60
1K
(1/4W)
R716
.27
1W
D716
EX0411
6. V
R617
XZ0216
22
1/2W
R743
47K
(1%)
TQ
R744
47K
(1%)
TQ
C1017
100nF
(HB)
J701
100nF
(HB)
C52
10uF
(63V)
R533
20
(1/4W)
R540
4K7
C527
100nF
L604
P02 4BM
1 3
2
C51
10pF
C522
100nF
R513
220K
L503
3.3uH
(CF)
R544
1K
C530
10nF
R545
100K
R556
10K
R555
330K
JF50
R519
100K
1/2W
R765
100
(TQ)
R766
100
(TQ)
R724
270
(TQ)
C525
5K6
R610
XZ0200
1
(1/2W)
R706
20K
D714
MBR340RC
DX0605
FB705
LN0020
R707
9K1
L2402
10uH
(DF)
L705
PCV1620
P02 5
L603
P02 6
12
R55
(0)
R 11
10K
R 12
2K2
(H)
C403
220pF
R646
20R
C613
470nF
(250V)
C611
6 0nF
(200V)
R747
2K7
L609A
1.2uH
(CF)
C601
12nF
1.7Kv
FZ0171
C610
33nF
( 50V)
FZ0172
D722
1N4934
DX0504
R552
(0)
R
C619
2.2uF
(160V)
+105
C620
2.2uF
(160V)
+105
C722
100nF
(HB)
C717
15nF
(HB)
C716
3.3nF
(HB)
C742
6 nF
(HB)
Q606
2SC2412
C770
KZ0106 3N3 4KV
R515
1K2
C516
270pF
R647
15K
R71
1 (TQ)
R730
100
(1W)
R512
3K3
R746
1 K
FB301
LN0037
R530
XZ0212
10R
(1/2W)
R100
3K3
C2406
100nF
C2407
220nF
C721
470uF
(35V)
EZ0132
C644
220uF
(16V)
R521
5K6
R454
330
C1032
47uF
(10V)
C531
10nF
(HB)
R62
1K
(1/4W)
R527
1K
D601
DX0551
R2401
470
R509
39K
L2401
3.3uH
(DF)
C406
390pF
IC2401
IX1709 M
SDA5273
CLK
1
TSCQ
2
VS
3
HS
4
XOUT
5
XIN
6
GPO
7
TM
CVBS
9
VDD_1
10
VDDA
11
VSSA_1
12
VDD_2
13
RES
14
VDD_3
15
VREF
16
VDD_4
17
A
1
A7
19
A6
20
A5
21
A4
22
A3
23
A2
24
A1
25
A0
26
INTQ 52
I2CEN 51
M3LDA 50
M3CLK 49
CORQ 4
BLAN 47
B46
G45
R44
VSS_1 43
RGB_GND 42
VSSA_2 41
VSS_2 40
VBB 39
VSS_3 3
CASQ 37
VSS_4 36
D3 35
D2 34
D0 33
D1 32
WEQ 31
RASQ 30
A11 29
A10 2
A9 27
IC707
L4978
IX1704
1
1
GND
2
SS
3
OSC
4
OUT
5
OUT
6
7
7
99
10 10
VCC 11
BOO 12
COM 13
FB 14
15 15
16 16
3
4
5
6
1
2
12
15
14
T601
NF2065
2
3
4
5
6
9
7
13
1
10
+VS
-VS
IC503
A10393
IX1556 M
7
6
54
3
2
1
+VS
-VS
IC502
A4558
7
6
54
3
2
1
R1061
4K7
R560
6 K
R559
K2
(EW)
R650
5K6
D623
9C27
C405
220pF
C537
4.7nF
(HB)
C402
390pF
Q501
2SC2412
Q 02
2SC2412
R642
470
IC2402
KM44C1000DT IX1656 M
D0 1
D1 2
WR 3
RAS 4
NC 5
A0 9
A1 10
A2 11
A3 12
A5
15
A6
16
A7
17
A
1
OE
22
CAS
23
D2
24
D3
25
VSS
26
A4
14 VCC 13
RA611
1K
2W
C735
2.7nF
(HB)
R742
M2
1/2W
C2405
220nF
C642
6 nF
R453
1 K
1%
C2401
22pF
R741
M2
1/2W
Q406
2SA1037
C2402
22pF
C2403
100nF
R74
4K7
C741
100nF
D421
4V7
EX0544
R407
75
D726
12V
EX0554
C740
22nF
R514
270
D515
C4V7
EX0544
D413
B6V2
EX05 4
(2%)
C645
27nF
(HB)
C723
2200uF
(10V)
C616
470uF
(35V)
D1006
5V6
EX0546
R53
27K
C632
470uF
(25V)
C607
330uF
(10V)
R532
10K
D509
DX0551
C743
100nF
C240
100nF
Q506
2SK2963
C539
1uF
C526
10uF
R524
1K
R525
10K
1
2
3
4
5
7
8 9 10 11 12 13 14
I
H
G
F
E
D
C
B
A
Page 16
Page 19 MOTHER UNTI SCHEMATIC DIAGRAM (00 Version).

18
81GF-63E
123 1212123
12345678
6
5
4
3
2
1
PROT
+5V
+3.3V
+3.3V
+5V
+16V -16V
+3.3V
+5V
+3.3V
-16V
+5V
-16V
+5V +16V
+16V
+5V
+5V
+8V
+5V
+5V
+3.3V
+3.3V
+3.3V
+5V
+5V
+5V
+5V
+5V
+5V +5V
+8V
+5V
1
2
1
2
3
4
SC2OUTR
SC2OUTL
SC4INL
SC4INR
A15
D3
D4 D2
D5 D1
D6 D0
D7 A0
A12
A1
A2
OE A3
A4
SC4INL
A5
SC4INR
A6
A7
A7 SC3INL
A12
A6 SC3INR
A17 A15
A5 SC2INL
A1 A16
A4
A3 SC2INR
SC1INL
A2 I2SIN
A19 SC1INR
A1 I2SOUT
A0 I2SWS
I2SCL
HSDA
SCL
L/L'
BG/L REW
VERT
SELFI
GRO
GO
BO
B
FB
R2
D7 G2
D6 B2
D5 BL1
D4
SELV D0
AV1 D1
AV2 D2
D3
HEADL
HEADR
MUTE
TLTXT
RES2
SCL
SDA
AGC
GO
BO
RO
ISEN
RES2
HEADL
HEADR
MUTE
VFRONT
H
SELV
SF
AFT1
VPROT
+5V
RS
HB
AL
AV3
SC1OUTR
SC1OUTL
GND
GND
GND
VI3
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
..
.
..
.
.
.
.
C351
220uF
(25V)
R350
10K
R353
150
R357
150
R35
100K
R361
10K
C350
100nF
L350
3.3uH
(CF)
C354
100pF
C360
560pF
C375
560pF
R1042
K2
R1046
1K
R362
4K7
L352
P027
L353
P027
R303
100
R301
100K
R372
10K
R373
10K
R1047
10K
R1032
27K
C101
100nF
R1024
K2
R1025
K2
R359
100K
R315
100
R30
100
R312
22K
C320
1nF
R314
100K
C341
220nF
R309
22K
R311
100K
C319
1nF
C340
220nF
C353
100nF
R352
12K
C361
470nF
(FZ)
R360
10K
C376
470nF
C35
100nF
C357
1nF
R375
47K
C362
2.2uF
L351
3.3uH
(CF)
C363
220uF
(25V)
C364
100nF
C365
220uF
(25V)
L315
3.3uH
(CF)
C366
100nF
C36
100nF
C373
100nF
C369
100pF
C379
100nF
C367
100nF
R363
4K7
R355
27K
L316
3.3uH
(CF)
C371
1nF
R445
100K
R465
10K
D419
DX0551
R461
100K
R45
1K
C 12
22uF
C 04
3.3uF
C 13
3.3pF
C 21
6 0nF
Q305
2SC2412
R376
4K7
R302
100K
C342
10uF
R319
100
C343
10uF
R320
100
C326
10uF
(16V)
C323
330nF
C327
100nF
C330
47pF
C335
5pF
C334
5pF
X301
B0203
1 .432
L 01
3.3uH
(CF)
R 03
1K2
R622
10K
R 04
270
R 05
2K2
C 09
1nF
C321
100nF
R307
100
R306
100
L301
10uH
(DF)
L201
12uH
R1054
100K
R1043
K2
C432
1uF
(16V)
C317
330nF
R210
L 03
3.3uH
(CF)
C 19
1nF
R 01
10K
R1049
10K
R1044
10K
Q1004
BC2 7
R1021
4K7
C 14
6.
p
F
R
1055
47K
R323
100K
R31
100K
R321
100K
C229
R25
22
(TQ)
D301
DX0551
Q303
2SC2412
Q304
2SA1037
D1009
DX0551
C1033
6 nF
D 01
R467
33K
(TQ)
C352
100nF
FB 02
RF0003
3
D1003
DX0606
BAS 5
C305
10uF
(16V)
C306
10uF
(16V)
D303
7V5
EX0549
(S)
GN0441CE
C 07
220nF
C 0
220nF
R356
10K
R44
220
C431
330nF
R447
220
C430
330nF
C451
10nF
(HB)
Q306
2SC2412
C37
220uF
(25V)
D305
7V5
EX0549
C313
10uF (16V)
C314
10uF (16V)
C311
330uF
(10V)
C315
3.3uF
C31
330nF
C322
330nF
C324
330nF
C325
330nF
C 01
100nF
C377
10uF
R1005
4K7
C 03
100nF
C 22
6 0nF
R1003
3K3
R1027
10K
R1045
K2
Q1006
2SC2412
R1057
1K
(RT)
GN0241
Q1007
2SC2412
R1053
100K
C434
220nF
X 01
20.25MHz
B0219
C 02
10uF
C356
15nF
C370
15nF
(S )
CN0685CE
C359
4n7
(HB)
C374
4n7
(HB)
C329
47pF
(SS)
GN0341
(CC)
GN0241
(FV)
GN0241
D304
7V5
EX0549
R322
100K
(K)
R354
10K
R209
3K3
C1032
47uF
(10V)
R20
1K
Q40
2SC2412
C331
100nF
D302
7V5
EX0549
C332
330uF
(10V)
Q302
2SC2412
C33
100nF
R254
12K
IC1001
ST10R272L
IX1686 M
ALE
EA
37
VDD
3
VSS
39
RPD
40
D0
41
D1
42
D2
43
D3
44
D4
45
A14 75
A13 74
A12 73
A11 72
A10 71
VSS 70
VDD 69
A9 6
A 67
A7 66
A6 65
A5 64
A4 63
A3 62
A2 61
A1 60
A0 59
P0H.7 5
HOUT 57
RES2OUT 56
P2
.
P6.7 9
P6.6
P6.5 7
P6.4 SCL2 6
P6.3 SELV 5
P6.2 SLW1 4
P6.1 SLW2 3
P6.0 SLW3 2
NMI 1
D5
46
D6
47
D7
4
VDD
49
VSS
50
SELFI 51
BG/L 52
L/L' 53
RESOUT 54
ROT OUT 55
A15 76
VSS 77
VDD 7
RSTIN 79
RSTOUT 0
IC304
M5218L
+12V
OUTL
7
-INL
6
+INL
5
GND
4
+INR
3
-INR
2
OUTR
1
IC1002
27C4000
IX1664
VPP 1
A16 2
A15 3
A12 4
A7 5
A6 6
A5 7
A4
A3 9
A2 10
A1 11
A0 12
D7
21
E
22
A10
23
OE
24
A11
25
A9
26
A
27
A13
2
A14
29
A17
30
A1
31
VCC
32
D0 13
D1 14
D2 15
VSS 16
D3
17
D4
1
D5
19
D6
20
E
VEE
VSS
VDD
IC401
HEF4053
IX1602
1
2
3
4
5
6
7
9
10
11
12
13
14
15
16
IC301
TDA7480
1
2
3
4
5
6
7
9
10
20
19
1
17
16
15
14
13
12
11
IC302
TDA7480
1
2
3
4
5
6
7
9
10
20
19
1
17
16
15
14
13
12
11
IC305
MSP3410D
IX1636 M
AUD_CL_OUT 1
NC 2
NC 3
D_CTR_OUT1 4
D_CTR_OUT0 5
ADR_SEL 6
STBY 7
NC
SCL 9
SDA 10
I2SCL 11
I2SWS 12
I2SDAOUT 13
I2SDAIN 14
ADR_DA 15
ADR_WS 16
ADR_CL 17
DVSUP 1
DVSS 19
I2S_DA_IN2 20
NC 21
NC 22
NC 23
RESET 24
DAC_R 25
DAC_L 26
VREF2 27
DACM_R 2
DACM_L 29
NC 30
NC 31
NC 32
NC
64
XTAL_OUT
63
XTAL_IN
62
TESTIO1
61
ANA_IN2+
60
ANA_IN-
59
ANA_IN1+
5
AVSUP
57
AVSS
56
MONO_IN
55
VREFTOP
54
SC1_IN_R
53
SC1_IN_L
52
ASG1
51
SC2_IN_R
50
SC2_IN_L
49
ASG2
4
SC3_IN_R
47
SC3_IN_L
46
ASG4
45
SC4_IN_R
44
SC4_IN_L
43
AGNDC
42
AHVSS
41
CAPL_M
40
AHVSUP
39
CAPL_A
3
SC1_OUT_L
37
SC1_OUT_R
36
VREF1
35
SC2_OUT_L
34
SC2_OUT_R
33
IC801
VDP3120C2
IX1688 MN2
10
VPROT 11
SAFETY 12
HFLB 13
GND 14
VSUPD 15
GNDD 16
PR0 17
PR1 1
PR2 19
PORT2 20
PORT3 21
PORT4 22
PORT5 23
PORT6 24
DSGND 25
RSW2 26
RSW1 27
SENSE 2
GNDM 29
VERTQ 30
VERT 31
EW 32
XREF
33
SVM
34
GND
35
VSUP
36
ROUT
37
GOUT
3
BOUT
39
VRD
40
RIN
41
GIN
42
BIN
43
FBLIN
44
RIN2
45
GIN2
46
BIN2
47
FBLIN2
4
CLK20
49
HOUT
50
XTAL1
51
XTAL2
52
VSTBY
53
CLK5
54
55
R351
27K
C443
100nF
R304
100
+
-
3
2
1
C3 0
47nF
C 16
100nF
C 11
100nF
C316
100nF
C333
47pF
C312
100nF
C309
1nF
C1014
100nF
R374
47K
C 24
10nF
C 15
22uF
C310
1nF
R310
1K
C 25
10uF
(16V)
R313
1K
C32
100nF
C372
2.2uF
C102
100nF
Q1001
2SC2412
C339
100nF
C1026
10nF
R459
1K
C43
100pF
(HD)
GN0341
R466
220
C1005
100nF
C447
6 pF
IC1005
PST529
.
2
.
1.3
11
13
12
12
13
1 2 34567
R
Q
P
O
N
M
L
K
J
Page 19
Page 16
MOTHER UNTI SCHEMATIC DIAGRAM (00 Version).

19
81GF-63E
8 9 10 11 12 13 14
R
Q
P
O
N
M
L
K
J
Page 18
Page 17
MOTHER UNTI SCHEMATIC DIAGRAM (00 Version).
12345
R OUT
R IN
L OUT
L IN
SS
V OUT
R OUT
R IN
L OUT
L IN
B
SS
G
R
FS
V OUT
V IN
SERVICE
AV LINK
AV LINK
1234
BG/L
L/L`
Hasta INFO
SHARP
NOMBRE CODIGO
ESCALA
MODELO
FECHA REVISIONES N
2
3
4
5
6
FECHA
A-1
UNTK7 BMX
29-05-2000
40 2
MOTHER BOARD
1GF63E
REALIZADO VERIFICADO APROBADO
D
1
2
ELECTRONICA ESPANA S.A.
24-02-2000 554
17-03-2000 Hasta INFO 600
QK I T P 7 2 4 0BMNF
1
2
23-05-2000 Hasta INFO 677
V
+13V
3V
+13V
-13V
+5V
+5V
+5V
+5V
+5V
+25V
+5V +5V
+5V
+33V
+33V +150V
+5V
+5V
+5V
+5V
15-05-2000 Hasta INFO 663
D4
CSY
AFT2
SDA
SCL
RES1
AGC
PAGC
FI
H
AGC
SDA
SCL
VI2
D0
D1
D2
D3
ALCLOCK
AV2
SC1INL
SC1INR
AV1
VI1
EW
CSY
SCL
SDA VERT
FI
V11
FB
SF R
G
B
SC2INL
SC2NR
SC2OUTL
RES1
SF
AFT1
PAFT
CIN
VPROT
VPROT
HB
HB
AL
AL
SC2OUTR
SC1OUTL
SC1OUTR
GND
VS
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
..
.
.
2
3
4
5
6
7
9
11
R413
100
R431
100
C409
100pF
C411
100pF
C413
100pF
C416
100pF
C417
100pF
17
19
13
15
9
11
5
7
1
3
2
4
6
10
12
14
16
1
C534
1nF
JF3
R1024
K2
R1025
K2
R510
K2
C503
100pF
C505
100nF
R52
100K
R504
39K
R505
2K2
R506
120
(TQ)
C506
100nF
R 09
10K
R 0
10K
(F)
QPLGN0505CEZZ
Q505
2SC2412
L502
3.3uH
(CF) C502
100nF
FB501
LN0020
C50
560pF
R511
150
R547
3K9
Q507
2SB 52
TX0203
D50
DX0551
D507
C12
EX0554
R503
1K
R553
1(1/3W)
XZ0100
Q503
IRFR010
TX0172
R 07
33K
R 10
10K
R450
22
R435
1K
Q404
2SC2412
D613
DX0506
1N4936
R409
75
C420
100pF
R432
100K
R433
100K
C421
100pF
R430
100
R429
100
C419
390pF
C41
390pF
FB303
LN0037
R42
100
R419
75
(1/4W)
R420
1K
Q201
2SA1037
R41
6
1/2W
R415
100
R414
100
C414
390pF
C410
390pF
C412
100pF
C40
10nF
R40
75
(1/4W)
0
0
C224
100nF
D410
EX0549
7V5
D409
EX0549
7V5
D40
EX0549
7V5
D407
EX0549
7V5
D403
EX0549
7V5
D406
EX0549
7V5
C501
470uF
(25V)
L501
P0271
5
34
7
K
C 12
22uF C 13
3.3pF
R622
10K
L201
12uH
(DF)
L202
15uH
R219
47K
R216
150
C205
470nF
C204
2.2uF
R246
220K
C221
22pF
D204
BBY40
DX054 C222
22pF
L204
0.61uH
P0229BM
C22
.2pF
(500V)
C211
10uF
R245
1K5
R1051
22K
C1030
330pF
R23
220
R237
220
R239
10K
Q20
2SC2412
R247
1K
R217
1K
IC203
IX0037
R231
K2
1/2W
L203
6. uH
(CF)
R232
560
R233
560
R241
100K
R242
100K
R243
100K
D617
C24
EX0561
D615
DX0551
C510
100nF
C511
2.2uF
C509
220uF
(25V)
C521
1nF
R549
27K
R249
20K
C415
6 0nF
R416
22K
1%
D417
6V2
EX0547
R462
1 K
1%
R460
1 K
1%
D416
6V2
EX0547
R410
22K
1%
R412
100
FB302
LN0037
R210
1K5
FB 01
3.3uH
R 06
1K
C 14
6. pF
R516
1K
R550
12K
C219
10uF
(16V)
C220
10uF
(16V)
C229
22uF
(16V)
R204
1K
R25
22
(TQ)
R255
100
Q210
2SC2412
R554
560
D 01
7V5
EX0549
D 02
7V5
EX0549
Q60
2SC2412
R61
1K
R620
1K
FB 02
RF0003
17
19
13
15
9
11
5
7
1
3
2
4
6
10
12
14
16
1
20
CN1
CZ2109 M
21
R626
4K7
C 1
100uF
(16V)
R203
1K
R463
100
C 20
6 0nF
(MO)
GN0441
R464
220
C 22
6 0nF
20
.
25MHz
B0219
C522
100nF
5
13
0K
R
544
1K
R425
75
1/4W
R424
75
R426
75
R427
2
R230
K2
1/2W
R229
K2
1/2W
R240
220K
R244
33K
C
613
4
70nF
(
250V)
R613
3K3 (3W)
J231
10K
R54
5K6
C620
2.2uF
(160V)
+105
C 17
100nF
(HB)
C223
33nF
(HB)
R535
6K
C524
100nF
TH201A
RTUNH0139 M
1
Q209
2SC2412
C225
100nF
R205
390
CF202
C0020
JF14
JF6
R234
100
D203
DX0551
C203
100nF
R541
33K
R235
15K
R236
5K6
R502
3K3
R51
1.2 Ohm
(2W)
C217
220pF
C21
100uF
C215
470uF
(10V)
R209
3K3
C1032
47uF
(10V)
R20
1K
R252
1 K
Q502
KSA92
TX0201
C512
220nF
C504
6 0nF
R517
15K
Q403
2SC2412
Q 01
2SA1037
R24
1K
R434
1K
R542
K2
R436
10
(1/3W)
XZ0112
R253
1K
D1007
5V6
EX0546
R437
470
R509
39K
R254
12K
IC501 IX1786
1
2
3
4
5
6
7
9
10
20
19
1
17
16
15
14
13
12
11
IX1688 MN2
TEST 1
RESQ 2
SCL 3
SDA 4
DSGND 5
HCS 6
FSY 7
CSY
MSY 9
INTLC 10
VPROT 11
SAFETY 12
HFLB 13
GND 14
VSUPD 15
GNDD
16
CLK20
49
HOUT
50
XTAL1
51
XTAL2
52
VSTBY
53
CLK5
54
GNDF
55
ISGND
56
VRT
57
VSUPF
5
VOUT
59
CIN
60
VIN1
61
VIN2
62
VIN3
63
VIN4
64
IC201
TDA4470
IX1671
SIF 1
SIF 2
IS 3
GND 4
SAGC 5
VIF 6
VIF 7
VAGC
GND 9
AGC 10
RFAGC 11
VOUT 12
C
17
PLL
1
AFC
19
VCO
20
VCO
21
AFC
22
+V
23
FM
24
AM
25
OFS
26
SIF2
27
SIF2
2
ST 13
L/L' 14
BL
15
16
16
R215
10K
R421
150
R422
150
R423
150
+
-
IC202A
BA10393
IX1556BM
5
6
7
(EW)
SF202
C02 6BM
K9356M
5
3
2
1
4
10
Q405
2SA1037
C209
100uF
(16V)
+
-
IC202B
BA10393
IX1556BM
3
2
1
4
R501
100
1/2W
R257
220
C216
27pF
C206
2.2uF
SF203
L9354
CO2 9BM
5
4
3
1
2
C643
10nF
R256
22K
D100
5V6
EX0546
D411
C5V6
EX0546
R644
220
C230
22pF
D405
EX0549
7V5
R226C212C213
L205
610nH
(CF)
SF201
C027 BM
K3953
5
4
3
2
1
100
n
F
C 23
20pF
C507
4.7nF
(HB)
D421
4V7
EX0544
R220
47K
C536
47uF
(10V)
D61
C4V7
EX0544
C226
10nF
C617
100nF
Q607
2SC2412
D420
C5V6
EX0546
R251
6 K
C227
10nF
R211
1K
C207
10nF
C214
100nF
R507
K2
C422
47uF
(10V)
C20
22nF
89
11
6
7
10

20
81GF-63E
1
I
H
G
F
E
D
C
B
A
234567
DINAMIC FOCUS UNIT SCHEMATIC DIAGRAM.
R
G
B
H.V.
27.5 KV
1
2
3
1
2
3
4
5
6
7
1
3
4
5
2
1
2
3
4
1
2
3
1
2
+10V
+10V
+10V
FOCUS
+175V
+13V
+150V
+175V
+12V
+13V
-13V
SCREEN
R1 06
220
R1 11
220
R1 16
220
C1 01
100nF
C1 05
220nF
C1 06
10nF
C5405
220nF
R161
100K
R1617
2K2
C1610
100nF
R1621
100
(1W)
R1623
100
(1W)
C1613
220uF
(25V)
(RT)
GN0241
Q5411
2SC2412
Q5412
2SA1037
Q5410
2SC2412
R1 02
390 R1 03
75
R1 04
100
Q902
2SC2412
Q903
2SA1037
R1 05
1K
C1 22
22pF
R1 01
220
Q901
2SC2412
R1 07
390
R1 0
75
R1 35
1K
C1 10
1nF
R1 33
1K
C1 02
15pF
R1 17
1K2
C1 03
15pF
R1 1
1K2
R1 19
1K2
C1 04
15pF
Q905
2SC2412
R1 10
1K
C1 09
1nF
Q906
2SA1037
Q904
2SC2412
R1 09
100
C1 21
22pF
R1 13
75
R1 15
1K
Q90
2SC2412
Q909
2SA1037
R1 12
390
R1 14
100
C1 20
22pF
Q907
2SC2412
C1 11
10uF
(250V)
C1612
220uF
(25V)
R1624
100
R1620
10K
C160
10uF
(16V)
R1615
1M
R1616
100K
C1609
10uF
(16V)
R1622
470
R1 30
4K7
R5412
47
R5431
390
R5432
33
R1 23
2K2
R1 24
2K2
R1 25
2K2
R5435
330
R5434
1K
R5433
100
R1 39
10
C1611
10nF
D1607
C2V4
EX0537
R1 20
2K
(1/2W)
R1 21
2K
(1/2W)
R1 22
2K
(1/2W)
D1 09
1N4004
DX0501
D1 05
C12
EX0554
C1 12
1uF
(250V)
Q1604
2SA1037
Q1603
2SC2412
C1 15
100nF
C1 07
1000uF
(16V)
C1 14
4.7nF
KZ0023CE
(2KV)
R1 32
6 0
(1/2W)
R1 34
6 0
(1/2W)
R1 36
6 0
(1/2W)
C1 0
1nF
R1 31
1K
( )
GN0341
(H)
(PU)
N0341
L1 01
P0276BM
R1619
47K
C5415
22uF
(160V)
C5410
10nF
C5407
10nF
R5413
22
C540
4n7
500V
R5415
1K2
R5420
56
(1/4W)
C5414
22uF
(160V)
R5422
2.7
(1/4W)
C5412
100uF
(16V)
R5424
220
Q5407
A1 37
R5423
2.7
(1/4W)
R5416
6 K
R5417
12K
R541
6 K
R5419
1K2
C5411
10nF
C5409
4n7
R5414
22
R542
100
(1/4W)
R5421
56
(1/4W)
C5413
100uF
(16V)
Q540
C4793
(MO)
GN0441
R5425
470
1W
D5403
DX0551
D5410
DX0551
Q5406
2SA1037
Q5405
2SA1037
D5404
DX0501
1N4004
D5405
DX0501
1N4004
D1 04
DX0505
Q912
TX0130
C1 25
10nF
250V
C1 24
4,7nF
L1604
47uH
(DF)
(K)
+VS
-VS
IC1601
VHI A4558
7
6
5 4
3
2
1
IC1801
IX1416
4
3
1
14
13
11
10
12
6
7
9
15
2
5
TRC
VB76ERF3113*N
1
9
10
6
11
5
7
1
1
6
11
5
7
R1 37
2M2
C1 13
10nF
10
9
(Q)
N0341
D5411
1N4004
D5405
DX0501
1N4004
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