Yaesu FT-23R Technical Supplement page 46

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C A0 0 0 7 0 0 1
P . C . B . W/COMP .
F3 1 4 9 1 00
P . C . B . W/0 COMP .
c
0 3 0 1
K 2 2 1 4 4 8 0 2
C H I P CAP .
c
0 3 0 2
K 2 2 1 7 4 8 0 9
CH I P CAP .
c
0 3 0 3
K 2 2 1 7 4 2 1 1
C H I P CAP .
c
0 3 0 4
K 2 2 1 7 4 2 2 9
CH I P CAP .
c
0 3 0 5
K 2 2 1 7 4 23 7
CH I P CAP .
c 0 3 0 6
K 2 2 1 4 480 2
CHI P CAP .
c
0 3 0 7
K 2 2 1 2 08 0 5
CHI P CAP .
c
03 08
K 2 2 1 7 08 2 0
CH I P CAP .
c
0
0 3 0 9
K 7 8 0 8 0
0 2
CHI P TANT ALUM CAP .
c 0 3 1 0
K 2 2 1 44 8 0 2
CH I P CAP .
c 0 3 1 1
K 2 2 1 7 4 2 3 5
CHI P CAP .
c
0 3 1 2
K 2 2 1 2 08 0 5
CH I P CAP .
c
0 3 1 3
K 2 2 1 7 4 2 4 3
CH I P CAP .
c 0 3 1 4
K 2 2 1 7 4 24 3
C H I P CAP .
c
0 3 1 5
K 2 2 1 2 0 8 0 5
CH I P CAP .
c
0 3 1 6
K 2 2 1 4 4 8 0 2
CHI P CAP .
c
0 3 1 7
K 2 2 1 2 0 8 0 5
C H I P CAP .
c
0 3 1 8
K 2 2 1 2 0805
CH I P CAP .
CD 0 3 0 1
H 7 9 0 0 1 8 0
CERAM I C D I SC
D
2
0 3 0 1
G
0 7 0 0 03
D I O D E
D
0 3 0 2
G 2 0 7 0 0 0 3
D I O D E
D 03 0 3
G 2 0 7 0 0 0 9
D I ODE
L
0 3 0 1
L l 6 9 0 0 1 6
CO I L
3
B
Q 0 3 0 1
G
3 2 6 2 0 7
T R AN S I S T O R
Q 0 3 0 2
G 1 0 9 1 1 0 8
I C
Q 0 3 0 3
G 3 0 7 0 03 1
T R AN S I S T O R
Q 0 3 04
G3 3 2 7 1 2 7 G
T R AN S I STOR
R 0 3 0 1
J 2 4 1 85 2 2 2
CH I P RES .
R 0 3 0 2
J 2 4 1 85 2 24
CH I P RES .
R
0 3 0 3
J 2 4 1 85 4 7 3
CH I P RES .
R 0 3 0 4
J 2 4 1 854 7 1
CHI P RES .
R 0 3 0 5
J 2 4 185 1 0 1
CH I P RES .
R 03 0 6
J 2 4 1 85 4 7 3
C H I P RES .
R 0 3 0 7
J24 1 85 2 2 3
CH I P R E S .
R 0 3 0 8
J2 4 1 854 7 3
C H I P R E S .
1
R 0 3 0 9
J 2 4
85 6 8 2
CH I P R E S .
R
0 3 1 0
J 2 4 1 85 1 0 2
CH I P RES .
R
0 3 1 1
J24 185 1 5 2
CH I P R E S .
R 0 3 1 2
J 2 4 2 05 1 8 2
CH I P R E S .
R 0 3 1 3
J 2 4 2 05 4 7 3
C H I P R E S .
R 0 3 1 4
J 2 4 1 85 1 8 2
CH I P R E S .
R 0 3 1 5
J24 185564
CHI P RES .
R 0 3 1 6
J 2 4 1 85 3 3 2
CH I P R E S .
R 0 3 1 7
J 2 4 1853 3 2
CH I P RES .
R 0 3 1 8
J 2 4 1 85 1 0 2
CHI P RES .
R
0 3 1 9
J 2 4 1 8 5 3 3 2
C H I P RES .
R 0 3 2 0
J 2 4 1 85 4 7 3
CH I P R E S .
R 0 3 2 1
J 2 4 1853 9 2
CH I P RES .
4
R 0 3 2 2
J 2
1 8 5 1 0 4
CH I P R E S .
T H 0 3 0 1
6 9 0 9 0 0 5 3
THERMI STER
x
H0 1 0 2 7 7 3
X ' T AL
0 3 0 1
***
***
I F UN I T
GRM3 9 B 1 0 3 M 2 5 PT
GRM3 9 B 1 0 2 M50PT
GRM3 9 CH 1 0 0 D 5 0 PT
GRM3 9 CH5 6 0J5 0 PT
GRM3 9 CH 1 2 1 J 5 0 PT
GRM3 9 B 1 03 M 2 5PT
GRM4 0 R 6 83 M 1 6 PT
GRM4 0 B 1 8 3 M 5 0 PT
F 9 5 0 J 4 7 5 MSAAF 1 Q 2
GRM3 9 B 1 03 M 2 5 PT
GRM3 9 C H 1 0 1J5 0PT
GRM4 0 R6 8 3 M 1 6 P T
GRM3 9 CH 2 2 1 J5 0PT
GRM3 9 C H 2 2 1 J5 0 PT
GRM4 0 R 6 83 M 1 6PT
GRM3 9 B 1
GRM4 0 R 6 83 M 1 6PT
GRM4 0 R683 M l 6 PT
.
C D B 4 5 5 C 7
1 SS 2 2 6 T E8 5 R
1 SS 2 2 6 T E85R
1 S S 184 TE85R
3 2 C S 380KB - 1 R O M= P
2 S C 2 6 2 0 QB T R
M C3 3 7 2 ML
D T C 1 24 T K T 9 7
2 SC 2 7 1 2GR T E85R
RMC l / 1 6 2 2 2JATP
RM C l / 1 6 2 2 4JATP
R MC l / 1 6 4 7 3 JAT P
RMC l / 1 6 4 7 1 JATP
R M C l / 1 6 l O lJATP
R M C l / 1 6 2 2 1JATP
RMC l / 1 6 2 2 3 JATP
R M C l / 1 6 4 7 3 JATP
R MC l / 1 6 1 8 2 JATP
R MC l / 1 6 1 0 2JATP
RMC l / 1 6 1 5 2 JATP
RMC l / 1 6 1 8 2 JATP
RM C l / l O T 4 7 3 J
RMC l / 1 6 1 8 2JATP
RMC l / 1 6 5 6 4 JATP
R M C l / 1 6 3 3 2JATP
RMC l / 1 6 3 3 2JAT P
R MC l / 1 6 1 0 2JATP
RMC l / 1 6 3 3 2JATP
RM C l / 1 6 4 7 3 JATP
R MC l / 1 6 3 9 2 JATP
R MC l / 1 6 1 0 4 JATP
1 5 7- 2 5 2 - 5 3 0 0 6T P
-
UM- 1 1 0 . 2 4 5 MHZ
2
O . O l uF
O . O O l u F
O
pF
l
F
5 6 p
1 2 0pF
O . O l u
0
0 .
6
.
0 . 0 1 8uF
4
7uF
O . O l uF
l O O pF
0 . 0
6
8u F
2 2 0 pF
2 2 0pF
.
0 . 0 6 8uF
0 3
M 2 5 PT
O
O l u F
0 . 0 68uF
0 . 0 68u F
luH
2 . 2 K
2 2 0 K
4 7 K
4 7 0
1 0 0
2 2 0
2 2 K
4 7 K
1 . 8K
l K
1 . 5 K
1 . 8K
4 7 K
1 . 8K
5 6 0 K
3 . 3 K
3 . 3 K
l K
3 . 3 K
4 7 K
3 . 9 K
l O O K
?O
B
25V
5 0 V
B
5 0 V
C H
5 0V
C H
5 0 V
C H
F
2 5 V
B
8uF
1 6 V
R
5 0 V
B
6 . 3 V
25V
B
CH
5 0V
1 6 V
R
5 0 V
C H
C H
5 0 V
1 6 V
R
2 5 V
B
1 6 V
R
1 6 V
R
1 / 1 6 W
1 / 1 6W
l / 1 6W
1 / 1 6W
1 / 1 6 W
1 / 1 6 W
1 / 1 6W
1 / 1 6 W
l / 1 6W
/
1
1 6 W
1 / 1 6W
1 / 1 6 W
l / l OW
1 / 1 6 W
l / 1 6 W
l / 1 6 W
/
1
1 6 W
1 / 1 6W
l / 1 6 W
1 / 1 6 W
l / 1 6 W
1 / 1 6W

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