Zenith HW20H52DT Manuel de service Page 38

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Vue de la page 37
Deflection
1 2 3 4 5 6 7 8 9 10
G
D
C
B
E
F
A
6-5
CRITICAL SAFETY COMPONENTS ARE IDENTIFIED BY THE LETTER “X” IN THEIR
COMPONENTS DESIGNATORS. REPLACE ONLY WITH PART NUMBERS SPECIFIED.
ALL COMPONENTS WITH “M” IN THE DESIGNATOR
ARE A SURFACE MOUNTED COMPONENT.
3828VD0205B
CH FLAT SHEET 5
FLYB AC K
VSYNC
VERT- DRIVE
SHUTDOWN
AB L
HORZ- DRIVE
B +
+ 2 5 V
+ 2 5 V + 2 15 V
+ 2 15 V
+ 2 5 V
+ 3 3 V
+ 3 3 V
+ 2 15 V
B +
RX3 2 0 2
2 W
8 .2 K
RX3 2 0 3
2 W
8 .2 K
C 2 10 7
10 0 V
12 0 0 p F
C X3 2 0 9
3 5 0 V
10 µ F
C 3 0 0 2
5 0 V
10 µ F
RX3 0 0 5
PROV
RX3 2 0 9
1W
1
RX3 2 0 7
1/ 2 W
PROV
C 3 2 10
5 0 0 V
4 7 0 p F
R3 2 0 4
1/ 2 W
4 7
C X3 2 0 8
2 0 0 V
0 .0 2 2
DX3 2 0 0
RU2 JGF
0 DR2 00 0 0 9 DA
DX3 2 0 1
RU2 JGF
0 DR2 00 0 0 9 DA
RX3 2 11
2 W
3 3
R3 2 0 0
PROV
RX3 2 12
1/ 2 W
0 .4 7
C 3 2 11
5 0 0 V
4 7 0 p F
C 3 2 0 2
16 0 V
2 .2 µ F
R2 10 1
3 K
ZDX3 0 0 0
GDZJ12 B
1/ 2 W
12 V
0 DZ 12 0 0 0 9 B G
C 2 10 8
5 0 V
10 µ F
DX3 2 0 2
1N4 14 8
0 DSGF00 0 19 A
R3 2 0 1
1/ 2 W
2 K
1
8
6
9
5
2
11
3
7
AB L
F.B LK.GND
G- 2
HV
FOC US
TX3 2 0 1
6 17 4 V- 6 0 13 C
C X3 2 0 3
16 0 0 V
8 2 0 0 p F
C 3 2 0 0
10 0 V
PROV
C X3 2 0 6
10 0 V
0 .0 1
C 2 116
5 0 0 V
10 0 0 p F
C X3 2 0 5
2 K V
PROV
C 3 2 0 1
5 0 0 V
4 7 0 p F
C X3 2 0 4
2 K V
PROV
RX3 2 0 5
2 W
1.2
1 4
2 3
TX3 2 0 0
1
15 1- C 0 2 B
DX2 10 0
RGP15 J
0 DR15 0 0 0 9EA
RX3 2 10
PROV
C 3 2 12
5 0 0 V
4 7 0 p F
DX3 2 0 3
RU2 JGF
0 DR2 0 0 0 0 9 DA
C X2 10 0
3 5 V
4 7 0 µ F
C 3 0 0 3
5 0 0 V
4 7 0 p F
RX3 0 0 4
1%
4 .7 K
C X3 2 13
5 0 V
10 0 µ F
DX3 0 0 1
RGP15 J
0 DR15 0 0 0 9EA
RX3 0 0 7
PROV
RX3 0 0 6
1%
4 .7 K
RM3 0 0 2
10 0 K
R3 0 0 3
1%
2 .2 K
D3 0 0 2
1N4 14 8
0 DSGF00 0 19 A
C 3 0 0 1
5 0 V
10 µ F
RM3 0 0 1
10 0
R2 115
4 .7 K
C 2 10 9
5 0 0 V
10 0 0 p F
C
3 9 0
R2 116
2 0 K
R2 10 3
4 7 K
C X2 10
3 5 V
10 0 µ F
R2 10 2
12 K
R2 10 0
6 .8 K
PUMP
UP
4321
GND
VC C
1
Q3 2 0 1
E
B
C
KTC 3 2 2 8 - 0
0 TR3 2 2 8 0 9 A A
HEATER4
3
2
1
C N2 C 5 A
1
3 6 6 - 9 2 1C
QX3 2 0 0
2 SD2 6 2 7
0 TRSA 0 0 0 0 1A
4 9 2 0 V0 0 0 5 6 C
E
B
C
4 9 2 1V0 0 16 1B
RX3 2 0 6
1W
1
+ 2 5 V
+ 2 5 V
RX2 10 9
1/ 2 W
4 7 0
R2 114
1/ 2 W
1K
R3 2 14
1/ 2 W
3 3 0
C 2 10 6
10 0 V
PROV
C X3 2 15
2 0 0 V
0 .3 6
S F
LX3 2 0 0
6 0 µ H
6 14 0 VE0 0 0 1V
R2 112
1/ 2 W
1
R2 10 4
4 .7 K
1%
C 3 2 14
5 0 0 V
2 2 0 0 p F
S F
LX3 2 0 1
13 0 µ H
6 14 0 VB 0 0 0 1F
R2 10 7
3 .3 K
RX2 10 8
1/ 2 W
4 7 0
RX2 111
1/ 2 W
5 .6
RX2 110
1/ 2 W
2 .2
R2 10 5
1K
1%
C X2 10 4
2 5 V
2 2 0 0 µ F
C 2 10 5
10 0 V
0 .1
2 10 3
10 0 V
0 p F
R2 10 6
15 0 K
C X2 111
3 5 V
10 0 µ F
1
C X2 10 2
5 0 V
0 .4 7
OUTPUT
VC C
THERMAL
PROTEC T
5 76
STA GE
IC X2 10 0
LA7 8 0 4 0
0 IPRPSA 0 0 6 A
4 9 2 0 V0 0 0 5 8 E
4 9 2 1V0 0 16 1C
4
3
2
1
C N3 Y3
3 6 6 - 0 4 3 K
1
C X3 2 16
2 0 0 V
PROV
RX3 2 13
2 W
10 K
DX3 2 0 4
RGP15 J
0 DR15 0 0 0 9EA
C X3 2 17
16 0 V
2 .2 µ F
RX3 2 0 8
2 W
1
C X3 2 0 7
2 K V
2 2 0 p F
SHT. 1
SHT. 2
SHT. 1
SHT. 2
SHT. 1, SHT. 2
SHT. 2
W
F
16
W
F
71
WF
18
WF
19
WF
20
200V
2uS
WF16
20V
10uS
WF17
5V
2uS
WF18
20V
2mS
WF19
20V
2mS
WF20
Vue de la page 37
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