66
STBY POWER
GND
POWER -
POWER +
!
!
!
!
!
!
!
!
!
!
!
!
!
!
!
1
1
1
1
1
1
1
1
1
1
1
1
1
2
2
2
2
2
2
1
1
2
2
2
3
3
3
3
3
3
3
3
3
3
3
3
!
Indicates safety critical components.
shall be carried out befor the appliance retruned to the customer.
To reduce the risk of electric shock, leakage current or resistance measurement
T8 2 1
RCD- N8 - TA0 0 1
HSD2 2 1
YJ1 3 - 3 0
HSQ8 2 1
YJ1 3 - 3 0
T8 7 1
RCD- N8 - TA1 0 1
PRIMARY
SECONDARY
PRIMARY
SECONDARY
HSD4 4 1
YJ0 5 - 3 0
CHANGE 0.5 ohm --> 0.82 ohm
CHANGE 0.2 ohm --> 0.15 ohm
ADD
CHANGE HFS7N80 --> STF13NM60N
CHANGE 105--> 101
ADD
CHANGE HS1M--> UF5404
CHANGE 25V/220uF--> 25V/2200uF
CHANGE 2.7K--> 1.5K
ADD 7812
DELETE L224
CHANGE 101--> 334
CHANGE EER3541--> EER4042
CHANGE 47 ohm --> 10 ohm
CHANGE 10 ohm --> 0 ohm
HSU1
YJ0 5 - 3 0
AC 100V
C805
C806
250V/330uF
400V/330uF
NC
250V/330uF
AC 230V
ADD
ADD
ADD
CHANGE 102 -> 471
ADD
ADD
CHANGE 102--> 101
ADD
ADD
CHANGE 25V/1000uF --> 25V/220uF
ADD
ADD
ADD
ADD
ADD
CHANGE
CHANGE
CHANGE
CHANGE
CHANGE
CHANGE
CHANGE
CV1615280 --> CV620280SH
CV1615280 --> CV620280SH
C2 2 1
5 0 V/ 1 0 0 0 uF(1 0 5 ')
C2 2 2
5 0 V/ 1 0 0 0 uF(1 0 5 ')
L2 2 1
5 .5 uH(BAR)
R2 2 1
3K 1W
R2 2 2
3K 1W
R2 2 3
3K 1W
C2 2 3
1 0 4 (2 0 1 2 )
D2 2 2
UF5 4 0 4
C2 2 5
2 5 V/ 2 2 0 0 uF(1 0 5 ')
R2 2 6
1K 1/2W
C2 2 6
2 5 V/ 1 0 0 uF(1 0 5 ')
C2 2 4
1 0 4 (2 0 1 2 )
D2 2 3
HS1 M
C2 2 7
2 5 V/ 2 2 0 uF(1 0 5 ')
R2 3 0
1K 1/2W
C2 2 8
2 5 V/ 1 0 0 uF(1 0 5 ')
C2 3 1
1 0 4 (2 0 1 2 )
L2 2 2
4 .7 uH(DR2 )
D2 2 4
HS1 M
R2 3 1
1K 1/2W
C2 3 2
1 0 4 (2 0 1 2 )
L2 2 3
4 .7 uH(DR2 )
D8 2 1
UF4 0 0 7
R8 2 1
68K 2W
C1 4
4 7 0 p F 1 KV
B8 2 1
3 5 5 0
C8 0 5
2 5 0 V/ 3 3 0 uF(1 0 5 ')
C8 0 6
2 5 0 V/ 3 3 0 uF(1 0 5 ')
1
2
SW_1 0 0 V
L8 0 2
CV620280SH
C8 0 2
AC2 7 5 V
0 .2 2 uF
L8 0 1
CV620280SH
C8 0 1
AC2 7 5 V
0 .2 2 uF
RV8 0 1
1 4 D4 7 1
F8 0 1
250V/4A
R8 0 1
1.5M 1/2W(SURGE)
JK802
AC-M34
R8 2 7
NOT
D8 2 2
NOT
G
D
S
Q8 2 1
STF13NM60N
R8 3 0
0.15/2W
C8 2 7
1 0 4 (2 0 1 2 )
TH8 0 1
5 D- 1 5
C8 0 4
4 0 0 V/ 1 0 2
C8 0 3
4 0 0 V/ 1 0 2
C8 2 3
5 0 V/ 4 7 uF(1 0 5 ')
R8 2 3
10K(2012)
R8 2 6
4.7K(2012)
C8 2 5
1 0 1 (2 0 1 2 )
D8 2 3
18V(NC)
1
2
PC8 2 1 - A
PC- 1 7 K1
3
4
PC8 2 1 -
B
PC- 1 7 K1
R2 5 2
2K(2012)
R2 5 1
4.3K(2012)
R2 5 6
68K(2012)
C2 5 1
1 0 4 (2 0 1 2 )
C2 5 2
3 3 4 (2 0 1 2 )
R2 5 5
1.5KF(2012)
R2 5 4
15KF(2012)
R2 5 3
1.8KF(2012)
R8 7 1
100K 1W
C8 7 2
1 0 3 K/ 6 3 0 V
D8 7 1
UF4 0 0 7
B871
3550
R8 7 3
0(3216)
R8 7 4
10(3216)
D8 7 2
BAV2 1 W
D8 7 4
BAV2 1 W
D4 4 2
HS1 M
C4 4 3
2 5 V/ 2 2 0 uF(1 0 5 ')
L4 4 2
4 .7 uH(DR2 )
C4 4 4
2 5 V/ 1 0 0 uF(1 0 5 ')
C4 4 5
1 0 4 (2 0 1 2 )
C4 4 1
1 0 V/ 2 2 0 0 uF(1 0 5 ')
C4 4 2
1 0 V/ 4 7 0 uF(1 0 5 ')
L4 4 1
5 .5 uH(BAR)
1
2
PC8 7 1 - A
PC1 7 K- 1
3
4
PC8 7 1 -
B
PC1 7 K- 1
R4 5 2
470(2012)
R4 5 1
470(2012)
R4 5 3
5.1KF(2012)
R4 5 5
1K(2012)
C4 5 1
4 7 3 (2 0 1 2 )
2
3
1
IC4 5 1
KA4 3 1 AS
(MF2 )
C8 7 6
1 0 2 (2 0 1 2 )
D8 7 3
18V
R8 7 2
0.82 1W
C8 7 5
5 0 V/ 0 .4 7 uF
C8 7 4
5 0 V/ 4 7 uF(1 0 5 ')
R8 2 9 47K(2012)
1
2
PC8 2 2 - A
PC- 1 7 K1
3
4
PC8 2 2 -
B
PC- 1 7 K1
R4 6 1
2K(2012)
R4 6 2
4.7K(2012)
D8 3 2
1N4007
R8 3 3
150K(3216)
R8 3 2
120K(3216)
1
2
PC8 3 1 - A
PC1 7 K- 1
3
4
PC8 3 1 -
B
PC1 7 K- 1
R2 7 2
4.7K(2012)
R2 7 1
4.7K(2012)
R2 7 3
47K(2012)
C8 2 6
4 0 0 V/ 4 7 1
D2 2 1
FCU2 0 A3 0
C2 2 9
2 5 V/ 2 2 0 uF(1 0 5 ')
C2 3 0
2 5 V/ 1 0 0 uF(1 0 5 ')
2
3
1
IC2 5 1
KA4 3 1 AS
(MF2 )
R4 5 4
4.99KF(2012)
C4 4 6
1 0 4 (2 0 1 2 )
C821
6 3 0 V/ 1 0 3 K
(MPE)
1
BA
2
FB
3
CS
4
DRAIN
8
GND
7
VCC
5
-DRAIN
6
NC
IC8 7 1
ICE3
BR1 7 6 5 J
B
8
2
2
3
5
5
0
1
INV
2
COMP
3
VFF
4
CS
8
VCC
7
DRV
5
ZCD
6
GND
IC8 2 1
L6 5 6 5
AC_1
AC_2
+
-
D801
TS6B05G
B
E
C
Q8 2 2
A1 2 9 8
C2 5 3
1 0 2 / 1 KV(3 2 1 6 )
C1
0 o hm
C2
0 o hm
C3
0 o hm
C4
0 o hm
C6
0 o hm
C7
0 o hm
C8
0
o hm
C9
0 o hm
D4 4 1
SRF1 0 6 0
C5
0 o hm
R1
47(3216)
R2
1K(2012)
C1 0
1 0 1 (2 0 1 2 )
1
IN
2
GND
3
OUT
U1
7812
1
2
3
4
5
6
CN221
5267-6A
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
CN222
20010WS-15
C1 1
5 0 V/ 4 7 uF(1 0 5 ')
R8 3 4
150K(3216)
R8 3 5
120K(3216)
1
2
SW_2 3 0 V
B
E
C
Q823
KTN2222AS
B1
3550
B2
3550
C2 4 2
1 0 2 / 1 KV(3 2 1 6 )
C2 4 310 2 / 1 KV(3 2 1 6 )
C2 4 4 1 0 2 /1 KV(3 2 1 6 )
R2 4 3
0R47(3216)
R2 4 4
0R47(3216)
B3
3550
B4
3550
C1 3
4 7 0 p F 1 KV
B6 3550
B5
3550
C1 2
1 0 2 / 1 KV(3 2 1 6 )
SJ1 3
0 (2012)
SJ1 4
NOT
P/S
[1]
P_VCC
[1]
+18V_D
[1]
DC_LINK
[1]
P/D
[1]
CPU_5V
[1]
CPU_5V
[1]
DC_LINK
[1]
CPU_5V
[1]
PVDD
[1]
-12V_A
[1]
+12V_A
[1]
+12V_D
[1]
PVDD
[1]
A_GND
D_GND
A_GND
GND_D
GND_D
GND_D
GND_D
A_GND
+12V_D
[1]
P/S
[1]
+12V_A
[1]
-12V_A
[1]
+18V_D
[1]
CPU_5V
[1]
P/D
[1]
A_GND
P_VCC
[1]
PVDD
[1]
CHASSIS_GND
GND_D
D_GND
GND_D
D_GND
A_GND
A_GND
DHASSIS_GND
GND_D
GND_D
GND_D
D_GND
8
7
6
5
4
3
2
1
A
B
C
D
E
F
SCHEMATIC DIAGRAMS (6/6)
SMPS
CN221
CN222
TO CN101
TO CN408
Summary of Contents for CEOL RCD-N8
Page 10: ...10 DIMENSION 299 0 112 0 108 0 35 0 35 0 210 0 280 0 2 0 301 0 218 0 45 0 36 0 30 0 4 0 ...
Page 22: ...22 3 Remove the screws 4 Remove the screws Shooting direction C Shooting direction A ...
Page 24: ...24 4 Remove the screws remove the connector wires CN221 CN222 Shooting direction C ...
Page 84: ...84 PCM9211 MAIN IC103 ...
Page 85: ...85 PCM9211 Block Diagram ...
Page 86: ...86 PCM9211 Pin Discriptions ...
Page 87: ...87 NJM2755 MAIN IC701 NJM2755 Block Diagram ...
Page 93: ...93 L6565 SMPS IC821 L6565 Block Diagram ...
Page 94: ...94 ICE3BR1765J SMPS IC871 ICE3BR1765J Block Diagram ...