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Hitachi RAF-25NH5 Instructions De Service page 153

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IRING DIAGRAM OF THE PRINTED IRING BOARD
MODEL RAF-25NH5, RAF-35NH5, RAF-50NH5
C N 3
X A− 5 P − T O P
T E R M I N A L B O A R D
5 V
C N 8
0 V
X A− 2 P − T O P
D AM P E R
L I M I T
SW
5 V
C N 9
P H− 3 P − T O P
0 V
C N 1
P H− 4 P − T O P
H E A T
E X C H A N G E R
R O OM
T E M P E R A T U R E
C N 6
5 V
1 1
Z R − 1 1 P − T O P
N M I
1 0
E E P R OM
R X
WR I T I N G
T X
T E R M I N A L
C 1 C 2
M 2
C 2
T E S T
S D A
S C L
R E S
0 V
0 V
R E S I S T O R
R E T E R V A L U E
R E T E R V A L U E
S YMB O L
S YMB O L
S YMB O L
Ω
L I M I T
Ω
L I M I T W
R 1 1 1
2 7 K
± 5% 1/1 0W
R 3 0 5
1 K
± 5% 1/1 6W
R 6 0 7
R 1 1 2
3 0 K
± 5% 1/1 6W
R 3 0 6
1 K
± 5% 1/1 6W
R 6 0 8
R 3 0 7
1 K
± 5% 1/1 6W
R 1 1 4
7 5 0
± 5% 1/8W
R 3 0 8
1 K
± 5% 1/1 6W
R 6 1 0
R 1 1 5
5 6 0
± 5% 1/8W
R 6 1 1
R 1 1 6
1/1 6W
R 4 0 1
3 9 0
± 5% 1/1 6W
R 6 1 2
R 1 1 7
6 8 K
± 5% 1/1 6W
R 4 0 2
3 9 0
± 5% 1/1 6W
R 6 1 3
R 1 1 8
7 5 K
±2%
1/1 6W
R 4 0 3
5 . 1 K
± 5% 1/1 6W
R 1 1 9
6 . 8 K
±2% 1/1 6W
R 4 0 4
5 . 1 K
± 5% 1/1 6W
R 6 3 1
R 1 2 0
1/1 6W
R 1 2 1
0 . 5 6
± 5% 1/4W
R 5 0 1
1 M
± 5% 1/1 6W
R 6 3 6
R 1 2 2
1 0 0
± 5% 1/1 6W
R 5 0 2
± 5% 1/1 6W
R 1 2 3
3 3 K
± 5% 1/1 6W
R 5 0 3
1 0 K
± 5% 1/1 6W
R 6 5 1
R 1 2 4
1 0 0
± 5% 1/1 6W
R 5 0 4
1 0 K
± 5% 1/1 6W
R 6 5 2
R 1 2 5
3 0 K
± 5% 1/1 6W
R 5 0 5
1 0 K
± 5% 1/1 6W
R 6 5 3
R 1 2 6
3 0 K
± 5% 1/1 6W
R 5 0 6
1 0 K
± 5% 1/1 6W
R 6 5 4
R 1 2 7
5 . 1 K
± 5% 1/1 6W
R 5 0 7
1 0 K
± 5% 1/1 6W
R 6 5 5
R 1 3 1
5 . 1 K
± 5%
1/1 6W
R 5 0 8
1 0 K
± 5% 1/1 6W
R 6 5 6
R 1 3 2
1 0 K
± 5% 1/1 6W
R 5 0 9
1 0 K
± 5% 1/1 6W
R 1 3 3
1 0 K
± 5% 1/1 6W
R 6 6 1
R 5 2 1
1 M
± 5% 1/1 6W
R 6 6 2
R 2 1 5
2 . 7 K
± 5% 1/1 0W
R 5 2 2
1 K
± 5% 1/1 6W
R 2 1 6
4 7
± 5% 1/1 0W
R 7 0 1
R 2 1 7
1 K
± 5%
1/8W
R 6 0 1
1 K
± 5% 1/1 6W
R 2 1 9
3 . 3 K
± 5% 1/1 0W
R 6 0 2
1 0 K
± 5% 1/1 6W
R 7 3 1
R 3 0 1
1 2 . 7 K
±1% 1/1 6W
R 7 3 2
R 3 0 2
1 2 . 7 K
±1% 1/1 6W
R 6 0 4
1 0 K
± 5% 1/1 6W
R 3 0 3
1 0 K
± 5% 1/1 6W
R 6 0 5
1 K
± 5% 1/1 6W
R 7 4 4
R 3 0 4
1 0 0 K
±1% 1/1 6W
R 6 0 6
1 K
± 5% 1/1 6W
R 7 4 5
155
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L 1 0 1
I C P 2
3 5 V
Q 1 1 1
R 1 2 1
L 1 1 1
I C P 1
R 1 1 4
Q 1 1 3
Q 1 1 5
Q 1 1 2
R 1 1 5
I C 1 1 1
Q 1 1 6
Q 1 1 4
5 V
Q 8 2 1
D 8 2 1
R 8 2 7
5 V
C 8 2 1
R 8 2 1
I C 8 0 1
5 V
0 V
R 8 0 5
L801
Q 8 0 3
R 8 1 0
R 8 1 2
C 8 0 2
Q 8 0 2
CJ801
C 8 0 5
R 8 0 6
C 8 0 3
I C 8 0 1
Q 8 0 1
C 8 0 4
0 V
0 V
R 3 0 8
R 3 0 7
R 3 0 6
C 5 0 5
R 3 0 5
C 5 2 4
C 5 0 3
5 V
C 5 0 4
C 5 0 6
C 6 1 1
C 6 0 4
R 7 0 1
5 V
5 V
5 V
R 4 0 1
R 5 2 2
5 V
R 4 0 2
Q 5 2 1
I C 5 2 1
8 7 6 5
0 V
I C 4 0 1
0 V
R E T E R V A L U E
R E T E R V A L U E
R E T E R V A L U E
S YMB O L
S YMB O L
Ω
L I M I T W
Ω
L I M I T W
Ω
L I M I T W
1 0 K
± 5% 1/1 6W
R 7 4 6
3 0 0
± 5% 1/1 0W
R 8 2 9
5 . 1 K
± 5% 1/1 6W
1 K
± 5% 1/1 6W
R 7 4 7
3 0 0
± 5% 1/1 0W
R 8 3 0
1 K
± 5% 1/1 6W
I C
1 0 K
± 5% 1/1 6W
R 7 5 1
2 . 7 K
± 5% 1/1 6W
S YMB O L
MO D E L
1 K
± 5% 1/1 6W
R 7 5 2
2 . 7 K
± 5% 1/1 6W
I C 1 1 1
N J M 2 3 4 0 M
1 0 K
± 5% 1/1 6W
1 K
± 5% 1/1 6W
R 7 6 1
1 0 0
± 5% 1/1 6W
I C 1 2 1
L F 5 0 C D T
R 7 6 3
1 0 K
± 5% 1/1 6W
1 K
± 5%
1/1 6W
R 7 6 4
1 K
± 5% 1/1 6W
I C 4 0 1
B R 2 4 C 0 4 F J −W
1 K
± 5%
1/1 6W
R 8 0 3
1 2 0 K
± 5%
1/1 6W
I C 5 0 1
H D 6 4 F 3 6 8 7 H
R 8 0 4
1 2 0 K
± 5%
1/1 6W
I C 5 2 1
R N 5 V D 4 2 C
1 K
± 5%
1/1 6W
R 8 0 5
1 2 0 K
± 5%
1/1 6W
I C 7 1 1
U L N 2 0 0 3 A N S
1 0 0
± 5% 1/1 6W
R 8 0 6
1 2 0 K
± 5%
1/1 6W
I C 7 1 2
U L N 2 0 0 3 A N S
1 K
± 5%
1/1 6W
R 8 0 7
4 . 3 K
± 5% 1/1 6W
I C 8 0 1
N J M 2 9 0 3 M
1 0 K
± 5%
1/1 6W
C H I P J UM P E R
1 0 K
± 5%
1/1 6W
R 8 1 0
6 8 0
± 5%
1/1 0W
S YMB O L
MO U N T
N O T E
1 K
± 5%
1/1 6W
R 8 1 1
2 K
± 5% 1/1 6W
U S E
R 8 1 2
3 9
± 5% 1/8W
C J 1 0 1
1 6 0 8
U S E
1 6 0 8
1 0 K
± 5%
1/1 6W
R 8 1 3
3 9
± 5% 1/8W
C J 1 0 2
U S E
1 0 K
± 5%
1/1 6W
C J 1 0 3
1 6 0 8
R 8 2 1
1 K
± 5% 1/1 6W
CJ801
U S E
1 6 0 8
1 K
± 5% 1/1 6W
R 8 2 2
1 0 K
±1% 1/1 6W
O V E R C U R R E N T
R 8 2 3
1 0 K
±1%
1/1 6W
P R O T E C T O R
2 . 7 K
± 5% 1/1 6W
R 8 2 4
8 . 2 5 K
±1%
1/1 6W
R A T I N G
S YMB O L MO D E L
1 0 K
± 5% 1/1 6W
R 8 2 5
1 0 K
±1% 1/1 6W
C U R R E N T
R 8 2 6
1 K
± 5% 1/1 6W
I C P 1
C C P 2 E − 2 0
0 . 8 A
3 0 0
± 5% 1/1 0W
R 8 2 7
3 K
± 5% 1/1 6W
I C P 2
C C P 2 E − 5 0
2 . 0 A
I C P 3
I C P − S 0 . 5
0 . 5 A
3 0 0
± 5% 1/1 0W
R 8 2 8
1 0 K
± 5%
1/1 6W
10
1 2 V
C J 1 0 2
C J 1 0 1
Q 1 3 1
C 1 3 3
D 1 2 1
I C 1 2 1
5 V
I N
O U T
G N G
0 V
R 6 0 6
C 6 0 3
0 V
R E S T A R T
O F F
R 6 1 2
0 V
6 4
6 3
6 2
6 1
6 0
5 9
5 8
5 7
5 6
5 5
5 4
5 3
5 2
5 1
5 0
4 9
R 6 5 4
R 6 5 5
C 6 0 1
FAS T F E E D
HA I N P UT
4 8
P 7 0
A N
R 6 0 2
T E S T
AUTO R E S TAR T
4 7
A N
P 2 3
OU T S I D E T X D
A V
4 6
C C
T X D
C 6 1 2
X 2
OU T S I D E R X D
4 5
R X D
(L o : N O RMA L/H i : R E S E T)
F I L T E R R E S E T
4 4
X 1
P 2 0
R 6 1 0
V C L
(L o : 2 0 A/H i : 1 5 A)
C U R R E N T S E L E C T
4 3
P 8 7
R 5 0 4
R E S E T
R EMOCON I D S E L E CT
4 2
P 8 6
R E S
R 5 0 5
(L o : S H I P P I N G T I M E/H i : C HA N G E)
I C 5 0 1
T E S T
4 1
P 8 5
R 5 0 3
U P P E R FAN
4 0
V s s
F T I O D 1
R 5 0 2
LOWE R FAN
1 0
C L O C K
3 9
F T I O C 1
O S C 2
OS C I L L AT I ON
1 1
C I R C U I T
F I L T E R
3 8
R 5 0 1
O S C 1
P 6 5
1 2
M I NUS I ON
3 7
V c c
P 6 4
C 6 5 1
1 3
W I R E L E S S I N P U T
O P E RAT I ON
3 6
P 6 0
W K P 0
R 6 5 1
1 4
DAMP E R S E L E C T SW
3 5
N M I
P 5 1
(L o : MA N U A L/H i : A U T O)
1 5
φ 1
T I M E R
3 4
P 6 1
P 3 4
1 6
φ 2
HA OUT PUT
3 3
P 6 2
P 3 5
E XT E RNAL
SW E E P
D AM P E R
R OM
1 7
1 8
1 9
2 0
2 1
2 2
2 3
2 4
2 5
2 6
2 7
2 8
2 9
3 0
3 1
3 2
C 5 0 7
R 6 6 2
R 6 6 1
R 7 6 4
0 V
C A P A C I T O R
R E T E R V A L U E
R E T E R V A L U E
R E T E R V A L U E
S YMB O L
S YMB O L
S YMB O L
V TYP E
V TYP E
C 1 0 1
0 . 2 2 μ
5 5 V F
C 3 0 4
0 . 1 μ
2 5 V
C 6 3 1
1 0 0 0 P
5 0 V D
C 1 0 2
3 3 0 μ
C 3 0 5
0 . 1 μ
2 5 V
C 6 3 2
1 0 0 0 P
C 1 0 3
4 7 0 p
6 3 0 V C
C 1 0 4
0 . 1 μ
2 5 V
C 4 0 1
0 . 1 μ
2 5 V
C 6 4 1
C 6 4 2
C 5 0 1
0 . 1 μ
2 5 V
C 1 1 1
2 . 2 μ
1 0 V
C 6 4 3
C 1 1 2
1 0 0 0 P
5 0 V
C 5 0 2
0 . 1 μ
2 5 V
C 1 1 3
0 . 0 4 7 μ
2 5 V
C 5 0 3
1 2 p
5 0 V
C 6 5 1
0 . 1 μ
C 1 1 4
2 2 0 μ
2 5 V
C 5 0 4
1 2 p
5 0 V
C 1 1 5
C 5 0 5
0 . 1 μ
2 5 V
C 7 1 1
0 . 1 μ
C 1 1 6
5 0 V
C 5 0 6
0 . 1 μ
2 5 V
C 7 1 2
0 . 1 μ
C 1 1 7
5 5 V F
C 5 0 7
0 . 1 μ
2 5 V
C 1 1 9
5 0 V
C 7 4 1
0 . 1 μ
C 5 2 1
0 . 1 μ
2 5 V
C 7 4 2
C 1 2 1
0 . 1 μ
2 5 V
C 5 2 2
0 . 2 2 μ
1 0 V
C 7 4 3
C 1 2 2
1 0 0 μ
1 0 V
C 5 2 3
0 . 1 μ
2 5 V
C 7 4 4
C 1 2 3
0 . 1 μ
2 5 V
C 5 2 4
0 . 1 μ
2 5 V
C 7 4 5
C 1 3 1
0 . 2 2 μ
5 0 V
C 6 0 1
0 . 1 μ
2 5 V
C 7 5 1
1 μ
C 1 3 2
0 . 1 μ
2 5 V
C 7 5 2
1 μ
C 1 3 3
0 . 1 μ
2 5 V
C 6 0 3
0 . 1 μ
2 5 V
C 1 3 4
0 . 2 2 μ
5 0 V
C 6 0 4
0 . 1 μ
2 5 V
C 7 6 2
0 . 1 μ
C 7 6 3
0 . 1 μ
C 2 1 1
4 7 μ
1 6 V
C 2 1 2
0 . 1 μ
2 5 V
C 6 1 1
1 0 0 0 P
5 0 V
C 8 0 1
1 5 0 P
C 6 1 2
0 . 1 μ
2 5 V
C 8 0 2
0 . 22μ
C 3 0 1
2 2 μ
4 V
C 8 0 3
0 . 1 μ
C 3 0 2
0 . 1 μ
2 5 V
C 6 2 1
C 8 0 4
C 3 0 3
0 . 1 μ
2 5 V
C 6 2 2
C 8 0 5
10
11
12
13
C N 1 0
X A− 6 P − T O P (R E D)
I N D O O R
U P P E R F A N
MO T O R
C N 1 5
X A− 6 P − T O P
I N D O O R
L OW E R F A N
MO T O R
1 2 V
C N 5
I C 7 1 1
1 0
1 1
1 2
1 3
1 4
1 5
1 6
C N 4
I C 7 1 2
C 7 1 2
1 0
1 1
1 2
1 3
1 4
1 5
C N 1 3
1 6
I C P 3
5 V
R 6 1 3
0 V
0 V
R 7 6 1
C N 1 2
3 5 V
Q 7 3 1
R 7 3 1
5 V
C N 2
0 V
C 7 4 1
0 V
L 7 4 1
R 7 4 4
L 7 4 2
R 7 4 5
L 7 4 3
R 7 4 6
L 7 4 4
R 7 4 7
C 7 4 5
C N 1 4
0 V
C J 1 0 3
C N 1 1
1 2 V
0 V
P H− 7 P − T O P
5 V
0 V
Q 7 2 2
0 V
0 V
D I O D E
R E T E R V A L U E
S YMB O L
V TYP E
V TYP E
S YMB O L
MO D E L
5 0 V
C 8 2 1
0 . 0 1 μ
5 5 V F
D 1 0 1
D S M 3 MA 2
5 0 V
C 8 2 2
1 0 0 0 P
5 0 V
D 1 1 1
D 1 F S 6
C 8 2 3
0 . 0 4 7 μ
2 5 V
D 1 2 1
1 S S 3 5 5
C 8 2 4
0 . 0 1 μ
5 0 V
D 4 0 1
H N 1 D 0 3 F U
C 8 2 5
0 . 1 μ
2 5 V
D 4 0 2
1 S S 3 5 5
T R A N S I S T O R
D 7 3 1
1 S S 3 5 5
2 5 V
S YMBO L
MO D E L
Q 1 1 1
2 S J 5 1 8
D 8 2 1
1 S S 3 5 5
2 5 V
Q 1 1 2
2 S C 5 2 0 9 H
Z E N E R D I O D E
2 5 V
Q 1 1 3
2 S C 5 2 0 9 H
S YMB O L
MO D E L
Q 1 1 4
R N 1 1 0 2
2 5 V
Q 1 1 5
2 S A 1 1 6 2 Y
Z D 1 1 1
R D 6 . 2 U J N 2
Q 1 1 6
R N 1 1 0 2
Z D 1 2 1
P T Z 2 0 A
Z D 1 3 1
R L Z 6 . 8 A
Q 1 3 1
2 S J 5 1 1
Z D 2 1 1
R D 5 . 6 U J N 2
Q 2 1 2
2 S C 2 4 6 2 L C
B U Z Z E R
S YMB O L
MO D E L
1 6 V
Q 5 2 1
R N 1 1 0 2
1 6 V
B Z
P K M 1 3 E P Y
Q 7 2 2
R N 1 1 0 2
2 5 V
L I G H T R E C E I V I N G U N I T
2 5 V
Q 7 3 1
2 S D 1 8 3 4
S YMB O L
MO D E L
G P 1 UM 2 8 2 RK
5 0 V
Q 8 0 1
R N 1 1 0 2
I R R
5 5 V
Q 8 0 2
R N 2 1 0 2
O S C I L L A T O R
2 5 V
Q 8 0 3
2 S C 3 4 4 1 E
2 5 V
S YMB O L
MO D E L FREQUENCY
Q 8 2 1
2 S C 4 7 3 8 G R Y
2 5 V
R E S 1
MA−4 0 6−1 0M
1 0 MH z
11
12
13
14
15
16
N O T E
Z R − 5 P − T O P (B L A C K)
1 . T Y P E O F C A P A C I T O R
F : F I L M
C : C E R AM I C
D : E L E C T R O L Y T I C
S T E P P I N G
MO T O R
F O R D AM P E R
Z R − 5 P − T O P
S T E P P I N G
MO T O R
F O R A U T O SW E E P
I N D I C A T I O N P . W. B.
C N 2
D S − 4 P − S I D E (B O A R D I N)
Z R − 6 P − T O P
L D 2 0 3
L D 2 0 1
L D 2 0 2
SW I T C H A N D R E C E I V I N G P . W. B.
C N 1 1
P H− 7 P − S I D E
Q 2 1 2
R 2 1 6
R 2 1 5
B Z
B U Z Z E R
SW 1
Z D 2 1 1
T E M P O R A R Y
D D
L I G H T
R E C E I V I N G
R 2 1 7
D AM P E R
U N I T
O U T
S E L E C T
G N D
C O I L
C O N N E C T O R
R A T I N G
S YMB O L R A T I N G (H)
S YMB O L MO D E L
C U R R E N T
L 1 0 1
8 2 μ
1 . 3 A
C N 1
P H− 4 P − T O P
C N 2
L 1 1 1
5 6 0 μ
0 . 4 A
Z R − 6 P − T O P
C N 2
D S−4 P−S I D E (BOA R D I N)
C N 3
L 5 0 1
B LM1 1 A 6 0 1 S P T
0 . 2 A
X A− 5 P − T O P
C N 4
Z R − 5 P − T O P
C N 5
Z R− 5 P −T O P (B L A C K)
L 7 4 1
C H I P J UMP E R
L 7 4 2
C H I P J UMP E R
C N 6
Z R − 1 1 P − T O P
L 7 4 3
C H I P J UMP E R
C N 8
L 7 4 4
C H I P J UMP E R
X A− 2 P − T O P
C N 9
P H− 3 P − T O P
C N 1 0
X A− 6 P − T O P (R E D)
L 7 5 1
B LM1 1 A 6 0 1 S P T
0 . 2 A
L 7 5 2
B LM1 1 A 6 0 1 S P T
0 . 2 A
C N 1 1
P H− 7 P − T O P
C N 1 1
P H− 7 P − S I D E
S M T − 2 P − T O P
C N 1 2
L E D
C N 1 3
Z R − 4 P − T O P
C N 1 4
S YMB O L MO D E L
COLOR
C N 1 5
X A− 6 P − T O P
L D 2 0 1
S E L 6 8 1 4 A
Y E L LOW
L D 2 0 2
S E L 6 9 1 4 A
ORANG E
L D 2 0 3
S E L 6 4 1 4 E
G R E E N
SW I T C H
S YM B O L MO D E L
SW 1
T E M P O R A R Y
E V Q 2 1 5 0 9 K
SW
D AM P E R
SW 2
E S D 1 7 0 2 0 6
S E L E C T SW
14
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