Page 1
V H F F M H A N D H E L D T R A N S C E IV E R
U H F F M H A N D H E L D T R A N S C E IV E R
S e r v i c e M a n u a l
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - C O N T E N T S
• S P E C I F I C A T I O N S . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1
• DJ-F 1T/ E C A B I N E T P A R T S L O C A T I O N
• M 6 7 7 4 8 L 1 ( M A I N U N I T I C - 2 0 1 )
• M B 1 5 0 4 L ( M A I N U N I T I C - 2 0 2 )
• T K 1 0 4 8 7 M T ( M A I N U N I T I C - 2 0 3 ) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5
• ¡ I P D 4 0 9 4 B G ( M A I N U N I T I C - 2 0 4 ) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6
• N J M 3 8 6 M ( M A I N U N I T I C - 2 0 5 )
• M 5 2 3 6 M L ( M A I N U N I T I C - 2 0 6 )
• M 5 2 1 8 ( M A I N U N I T I C - 2 0 7 ) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 9
• C M 8 8 8 0 ( D T M F U N I T I C - 6 0 1 ) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 10
• T M 8 8 8 0 ( D T M F U N I T I C - 6 0 2 ) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 10
• M P D 7 8 2 1 4 G C 5 8 2 - A B 8 ( C P U U N I T I C - 0 2 ) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1 1
• S - 8 1 2 5 0 H G (CP U U N I T I C - 0 3 )
• S - 8 0 5 4 H N (C P U U N I T I C - 0 4 ) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 13
• DJ -F1 T/E DJ-S1T/E P A R T S L I S T
• A D J U S T M E N T F 1 - T / S 1 - T
• A D J U S T M E N T F 1 - E / S 1 - E
• S C H E M A T I C D I A G R A M . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2 0
• V R . R E . S W . P C B O A R D . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2 2
• C P U P C B O A R D . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2 3
• V CO P C B O A R D . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2 7
• M A I N P C B O A R D . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2 8
• K E Y B O A R D . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3 2
• E M S - 8 (Remote control S p e a k e r / M i c r o p h o n e ) . . . . . . . . . . . . . . . . . . . . . . . . 3 3
• E M E - 1 0 K ( He ads et W /P TT V O X )
S C H E M A T I C D I A G R A M OF E M E - 1 0 K
E M E - 1 0 K P C B O A R D . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3 6
• E J - 1 0 U ( D T M F EN C/ DEC U N I T ) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3 7
EJ - 1 0 U ( D T M F P C B O A R D ) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3 8
• E J - 1 2 U (TON E S Q U E L C H U N I T ) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3 9
P C B O A R D OF T O N E S Q U E L C H U N I T
• E D C - 3 4 ( Q U IC K C H A R G E R 1 2 0 V )
• E D C - 3 5 ( Q U IC K C H A R G E R 2 2 0 V )
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
. . . . . . . . .
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1 2
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3 5
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
2
3
4
7
8
15
18
1 9
3 4
41
4 2
4 0
A L I N C O E L E C T R O N I C S I N C .
Page 2
■ S P E C IF IC A T IO N S
■ G E N E R A L
F r e q u e n c y C o v e r a g e
M e m o r y C h a n n e l
C h a n n e l S t e p s
S t a n d a r d S h i f t F r e q u e n c y
E m i s s i o n T y p e
A n t e n n a I m p e d a n c e
O p e r a t in g V o l t a g e
M i c r o p h o n e I m p e d a n c e
S pe a k e r I m p e d a n c e
D i m e n s i o n s
W e i g h t
G r o u n d
F 1T &S1 T T X : 1 4 4 . 0 0 0 -1 4 7 . 9 9 5 M H z
R X : 1 3 8 . 0 0 0 -1 7 3 . 9 9 5 M H z
( A M M od e 1 1 8 — 1 3 6 M Hz a f t e r M o d if ic a t io n )
F 1E &S1 E: T X : 1 4 4 . 0 0 0 -1 4 5 . 9 9 5 M H z
R X : 1 4 4 . 0 0 0 -1 4 5 . 9 9 5 M Hz
F 4 T & S 4 T T X : 4 40. 000 -44 9.9 95 M H z
R X : 4 10. 000 -47 0.0 00 M H z
F 4 E & S 4 E : T X : 4 30. 000 -44 0.0 00 M H z
R X : 4 30. 000 -44 0.0 00 M Hz
4 0 C h a n n e ls + 1 C a l l C h a n n e l
5 1 0 , 1 2 . 5 , 1 5 , 2 0 , a nd 2 5 k H z
F 1 T / E & S 1 T / E : 6 00 k H z
F 4 T & S 4 T : 5 M H z
F 4 E & S 4 E : 7 . 6 M H z
( R e s e t t a b l e b y 5 kH z [M in im u m ] b e t w e e n 0 a n d 1 5 . 9 9 5 M H z )
F 3
5 0 U
r a t e d 9 V
2 k f i
8 f l
1 1 0 ( H ) x 5 3 ( W ) x 3 7 ( D ) m m ( 4 . 3 x 2 . 1 x 1 . 5 i n c h ) ,
/w it h S ta n d a r d B a t t e r y P a c k o r S ta n d a r d D r y C e l l B a t t e r y C a s e
\ w it h o u t P r o je c t io n s ,
F 1 T / E & F 4 T / E A p p ro x . 3 7 5 g ( 1 3 . 2 o z )
w i t h S t a n d a rd B a t t e r y P a c k
S 1 T / E & S 4 T / E A p p ro x . 3 7 0 g ( 1 3 o z )
w i t h S ta n d a r d D r y C e i l B a t t e r y C a s e
N e g a t iv e
■ T R A N S M I T T E R
O u t p u t P o w e r
M o d u l a t io n S y s t e m
M a x . F r e q . D e v i a t i o n
S p u r i o u s E m i s s i o n
M i c r o p h o n e
■ RE CE IV E R
R e c e i v i n g S y s t e m
S e n s i t i v i t y
I n t e r m e d i a t e F r e q u e n c i e s
w i t h B a t t e r y P a c k E B P - 1 6 N ( S t a n d a r d f o r F 1 T / E & F 4 T / E )
H i
2 W ( F 1 T / E & S 1 T / E )
1 . 5 W ( F 4 T / E & S 4 T / E )
w i t h O p t i o n a l B a t t e r y P a c k E B P - 1 8 N o r a t 1 3 V
H i
5 W
w i t h D r y C e l l B a t t e r y P a c k a t 9 V
H i
2 . 5 W ( F 1 T / E & S 1 T / E )
2 W ( F 4 T / E & S 4 T / E )
V a r i a b l e R e a c t a n c e F re q u e n c y M o d u la t io n
± 5 k H z
L e s s th a n 6 0 dB b e lo w e a r n e r
B u i l t - i n E l e c t r e t Co nd e ns e r
D o u b le - c o n v e rs io n su pe r h e te r o d y n e
1 2 d B S I N A D l e s s t h a n - 1 5 dB/i
1 s t 2 3 . 0 5 M H z
2nd 4 5 5 k H z 1
M id
1 W
M id
1
W
M id
1 W
L o w
0 . 1 W
L o w
0 .1 w
L o w
0 . 1 W
Page 3
■ D J - F 1 T / E C A BIN ET P A R T S L O C A T I O N
M e c h a n i c a l P a r t s
K M 0 1 2 1 Fro nt Panel,F1T
1
K M 0 0 8 1 F r o n t p a n e l D J - S 1
K M 0 0 7 8 F r o n t p a n e l D J - S 1 T
K M 0 1 1 4
2
3 FG0 069
U P021 0
4
5 FG 0088
N B 0 0 4 1
6
N B004 0
7
F G0061A
8
9 U P 0198
1 0 FG0 058 PTT Rub ber
1 1 FM0 047
1 2 SC O 0 0 5
1 3 FG 0066
1 4 FG 0065 MI C Rub ber
FG 0063A
1 5
1 6 KM0084
1 7 ES 0005
1 8 ST 0028 SP St opper
FG0 064
1 9
2 0 U T0 024
F P0 046
2 1
2 2 N K00 20
N W0 005
2 3
2 4
N K 0 0 2 1
2 5 E A00 17
K ey Pad Pa n el
Ru bber Co nta ct
DJP3 ke y Board
An ti -W at er Drop M a t C
Lo ck K nob
Re le as e Knob
Sil i co n Ru bber Sw itch A
SW P . 0 . Boa rd
Rel e as e Pla te
Sp r i n g Coi l
DC R ub ber
Sil i co n Ru bber Sw itch B
F ro nt Case
Speaker
M I C . Hol der
Te rm in al
Te rm in al Fra me
V O L . Knob
S Q L . Knob
Dial K no b
A n t e nn a D J F 1
S c r e w
AF 0015 0 # S c re w 2 +3 B C
1
AF 0005 0# S c r e w 2 + 3 . 5 N
2
SA 0009
3
AA0039
4
AA0037 S c r e w 2 +4
5
AF0017 0# Sc re w 2+8 N
6
7 SA0008
A A003 6
8
9 AA 00 38
AF 0016 0# Sc re w 2 +2 B C
1 0
Sup po rte r F or Rel ease Sw itch
S c r e w 2+6 B C
Sup po rte r F or L o c k
S c r e w 2+5 N
S cr ew (fl at) 2+ 1 6N
Page 4
■ M 67748L1 ( M A I N U N I T I C - 2 0 1 )
1 : INP UT
2 : P R E D R IV E + B
3 : B IA S + B
4 : FI NA L + B
5 : OU TPUT
6 : G A D ( F I N )
Z g = 5 0 Q
Z l = 5 0 Q
E l e c t r i c a l C h a r a c t e r i s t i c s
ITE M S Y M B O L
Out pu t p o w e r Po
T o t a l e f f ic ie n cy »T 2 5 ( d i t t o ) 4 5 %
2nd s p u r io u s
3 r d s p u r io u s
In pu t SW R p i n
Output SW R
2 f o
3 f o
p o u t
T C
(°C )
2 5
2 5 ( d i t t o ) - 2 0 dB
2 5 ( d i t t o )
25 ( d i t t o ) 2. 5
25 ( d i t t o ) 1.5
C O N D I T I O N
f = 1 3 5 - 1 5 0 M H z , P i n = 2 0 m W ,
V c c =125V , V b b = 5 V ,
Z g = Z i = 5 0 f i
R ATI NG
M IN . T Y P E MAX.
7
- 2 5
U N I T
W
d B
—
—
- 3 —
Page 5
■ M B15 04L (M A IN U N IT IC - 2 0 2 )
( T O P V IEW )
O SC i n
OSC o u t
v p
V c c
D o
G N D
L D
f i n
1
2
3
4
5
6
7
8
1 6 4 > R
1 5
1 4
< t > P
f p
1 3 f r
1 2 F C
1 1
L E
1 0 D a t a
9
C l o c k
P in F unc ti on T a b le
NO. S Y M B O L
1
O S C in I
2 O S C o u t
3
4
5 D o
6 G N D
7
8
9 C lo c k I
1 0 D a ta I
1 1
12
13
1 4
1 5
1 6
V p
V c c
LD
f i n
LE I
F C
f r
f p
< t > P
< / > R
I/ O
0
—
—
0
—
0 Lo ck d e te c to r outpu t
I
0 Do c h a n g e r output
O R e f e r e n c e F r e q u e n c y ou tp u t
o
0
0
R A T IN G
C ristal oscillator inp ut
V o lt a g e for c h a r g e - p u m p
V olt ag e fo r IC
C h a r g e - p u m p out put
G ro u n d
F re q u e n c y in pu t
S e ri a l int e r fa c e (c lo c k inp ut )
S e ri a l int e r fa c e d a t a input
S e ri a l in ter fac e load e n a b l e input
P r o g r a m m a b le c o u n te r o ut put
C h a r g e - p u m p o u tp u t
4
Page 6
■ T K 1 0 4 8 7 M T ( M A I N U N I T I C - 2 0 3 )
O S C ( B )
O S C ( E )
N C
M I X O U T
Vc c
< 20 ) R E IN P U T
G N D
( ¡ 8 ) H y S T E R E S I S C O N T R O L
SC A N C O N T R O L
I F IN P U T
D E C O U P L IN G
D E C O U P L IN G
PH ASE SH IF T
Q U A D C O IL
( j 5 ) SQUEL CH I N P U T
F I L T E R A M P O U T P U T
( Î 3 ) F I L T E R A M P IN P U T
( 1 2 ) S M E T E R O U T P U T
( i j ) A F O U T P U T
5
Page 7
■p P D 4 0 9 4 B G (MA IN UN IT I C -2 04 )
S T R O B E
D A T A
C L O C K
Q i
Û 2
Û 3
Q 4
V s s 8
1 5
1 4
V d d
O U T P U T
E N A B L E
Û 5
1 1 6
2
3
4 1 3 Q e
1 0
9
Û 7
0 8
Q s
Q s
5 1 2
6 1 1
7
C L O C K
O U T P U T
E N A B L E
L
L
H
H H
H
H H H
o T n U b c
X X
X X
H H H
D A T A
Im p e d a n c e
I m p e d a n c e
X
L L
P A R A L L E L O U T P U T
Qi
H i g h
H i g h
N O
C HANGE N O CHA NG E
N O
CHA NGE NO CH AN GE NO CHA NGE
Q n Q s* Q ' s
H i g h
I m p e d a n c e
H i g h
Im p e d a n c e NO CHA NG E
Q n - 1 D ?
Q n - 1 D 7
SERIES O U TP U T
D 7
D ?
6
N O
CHANGE
D a
N O
CHA NGE
N O
CHA NGE
NO
CHA NGE
D s
Page 8
■ NJ M 38 6M (M A IN U N IT I C - 2 0 5 )
7 B Y P A S S
( T O P VIEW )
G A I N
V O U T
E l e c t r i c a l C h a r a c t e r i s t i c s
I T E M
S u p p l y vo lta g e
R e a c t iv e current
O u t p u t vo ltag e
O u t p u t vol ta g e
V o l ta g e ga in
V o l ta g e ga in
B a n d wid th
T o ta l hig h d is t o r s io n
Pow er su ppl y re je ct io n
In p u t regi ste r
In p u t b ia s sup pl y
V i n = 0 V lo
R l =8 Q , T H D = 1 0 %
V s = 9 V , R l = 1 6 Q , T H D = 1 0 %
f = 1 k H z
f = 1 k H z ,
R l = 8 U P o u T = 1 2 5 m W
f = 1 k H z ,
f = 1 k H z ,
C O N D I T I O N
S Y M B O L
V s
P o u t
P o u t
Av —
A v
B W —
T H D
P S R R
R i n
I b i a s
TYP .
M I N .
4 —
—
2 5 0 3 2 5
—
5 0 0
2 6 —
4 6 —
—
3 0 0 —
—
0 . 2
5 0
—
5 0 —
—
2 5 0
—
M A X .
4 8
1 2
—
—
—
—
U N I T
V
m A
-
m W
m W
d B
d B
k H z
%
d B
K i i
nA
7
Page 9
■ M 5 2 3 6 M L ( M A I N U N I T I C - 2 0 6 )
V r e f
3 d
2 c
S
r " " " i r - -
l i t 1
1 1 < •
I I I 1
_
I 1 _ 1
1 c =
E l e c t r i c a l C h a r a c t e r i s t i c s
I T E M S Y M B O L
Input vo ltage
O utp ut v oltag e
Vol tag e difference
Stand ard vo ltage
In pu t re g u la tio n
Loaded re g u la tio n
Bi as c ur re nt I b — 1.3 2 . 3
Outp ut voltage te m p , c o e ffi c ie n t TC V o
Ri ppl e r e je c t io n r a t i o
Outp ut no is e vo ltage V N o
I
C O N D I T I O N
V l N 3 . 5
V o 1 .5 — 3 3
V i - o
V ref 1.20 1 .2 6 1 .3 2
R e g - i n
R e g -L l i _ = 1 0 ~ 2 0 0 m A
RR
V i = 1 5 - 2 0 V
T a = 0 ~ + 7 5 ° C
f = 1 2 0 H z , VT=300 m Vrm s
V i - o = 3 V
A f = 2 0 H z ~ 100kHz
M I N .
—
—
—
— 0 .0 1 —
— 68 —
—
R AT ING
T Y P . MAX.
—
0 . 2 0 .5
0 . 0 2 0 . 1
0 . 0 2 0 .1 %
33
3 6
—
U N IT
V
V
V
V
° / o / V
m A
° / o / ° C
dB
/i V rm s
- 8 -
Page 10
■ M 5 2 1 8 (M AI N U N IT IC-2 07)
Elect ric al Ch ar acteristics
IT E M
I . c u r r e n t c i r c u i t
V . i n p u t o f f s e t
I . i n p u t o f f s e t
I . i n p u t b i a s
SY MB OL CONDITION
I I
<
5
I c c
V i o
O
Rs slO KO
h o
le
R . i n p u t R i n
G . o p e n v o l t a g e
G v o
R i_ ^ 2 K ft , V o = ±10 V 66 1 1 0
R l ^ IO K O
V . m a x . o u t p u t V O M
R l ^ 2 K 0
C o m m o n m o d e r a n g e
V C M ± 1 2
C o m m o n m o d e r e j e c t i o n CM RR R s ^IOK O 70 90
C . v o l t a g e r e j e c t i o n r a t i o
P o w e r c o n s u m p t i o n
S V R R
Rs ^lO KO
P d
B a n d w i d t h f T
R A T I N G
M IN .
—
—
—
— —
0.3 5
± 1 2 ± 1 4
± 1 0 ± 1 3
—
—
—
T YP
M A X .
3. 0 6 . 0
0. 5
5
± 1 4
30
90 1 8 0
7
UNIT
m A
6.0 m V
2 00 n A
5 00 n A
—
M t t
d B
—
V
—
V
—
V
—
d B
—
1 50 / iV /V
m W
MH z
—
T h r o u g h r a t e SR
I n p u t s c a l e n o i s e v o l t a g e
V n i
G v = 0 d B , R l = 2 K 0
R s = 1K Q , B W : 1 0 H z ~ 3 0 k H z
— 9 -
—
—
2 .2
2 .0 —
V / ^ s
—
/ i V r m s
Page 11
■ CM 888 0 ( D T M F U N IT I C - 6 0 1 )
T h i s i s a dv a n c e in f o r m a t io n a nd s p e c if ic a ti o n s a re s ub je ct t o change w i t h o u t notice .
■ T M 8 8 8 0 ( D T M F U N IT I C - 6 0 2 )
G S IN- V D D E S t
N C I N + S t G t
4 3 2 • 2 8 2 7 2 6
N C
V R e f
V S S
0SC1
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N C
N C
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C
6 2 4
C
7 2 3
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1 2 1 3 1 4 1 5 1 6 1 7 1 8
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□
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□
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□
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uu uu u u u
T O N E CS N C IRQ /C P
R / W R S D 02
- 1 0 -
Page 12
■ M P D 7 8 2 1 4 G C 5 8 2 - A B 8 ( C P U U N IT I C - 0 2 )
P 6 4 / D I C D D T M F I C D E T E C T I N O '
P 6 3 / C A S 3 M A T R I X K E Y O -
P 6 2 / C A S 2 M A T R I X K E Y O '
P 6 1 / C A S 1 M A T R I X K E Y O ■
P 6 0 / C A 5 0 M A T R I X K E Y O '
R E S E T / R E S E T I N O '
X 2 / X ' t a t O -
X l/ X ’t a l O ■
V s s / 5 V O •
P 5 7 / R A S 3 O -
P 5 6 / R A S 2 O *
P 5 5 / R A S 1 O *
P 5 4 / R A S D O “
P 5 3 / D T M F 0 3 0 -
P 5 2 / D T M F D 2 O '
P 5 1 / D T M F 0 1 O ’
¿ t P D 7 8 2 1 3 G C - A B 8
fiP D7 821 4G C- 582 -A B8
0 0 0 0 0 0 0 0 0
o i t I
t s u > x c o
1 I § a I §
£ § £ £
C L
- O P 6 5 / B P 3 V / U
- O P 6 6 / B P 4 R X
- O P 6 7 /B P 5 T X
- O P 0 7 / C P U
■ O P 0 6 / C P U
- O P 0 5 / C P U
- O P 0 4 / C P U
* O P 0 3 / L A M P
■ O P 0 2 / L C D C / D
■ O P O I / U C D C S
■ O P O O / L C D R E S E T
■ O P 3 7 / B E E P
■ O P 3 6 / L C O B U S Y
’ O P 3 5 / P T T 2
• O P 3 4 / F U N K K E Y
■ O P 7 0 / C A L L V / M S C A N P O K E Y
— 1 1 —
Page 13
■ S-8 125 0HG (C P U U N IT IC - 0 3 )
E l e c t r i c C h a r a c t e r i s t i c s { + 5 V o u t p u t / h i g h - t e n t i o n p r o o f ) (U n le s s s p e c i f i e d ; T a =25 °C )
IT E M
O u t p u t v o l t a g e
O u tp u t c u r r e n t
L o a d s t a b i l i t y
I n / o u t p u t v o lt a g e d i f f e r e n c e V d i f
C u r r e n t c o n s u m p t i o n
In p u t s t a b i l i t y
In p u t v o l t a g e
T e m p e r a t u r e c o e f f i c i e n t o f
o u t p u t v o l t a g e
SY MB OL
V O U T
l O U T V i n = + 7 V 4 0
A V o u t
I s s
A V O U T
A V in - V o u t
V i n
AV o u t
A T a
CO ND ITION
Vin = + 7V, lou T= 10 m A 4 . 7 5
1 m A s lo u T s 4 0 m A
V in = + 7 V
lo uT = 1m A
Vin = +7V, N o l o a d —
+ 6 V s V i n s + 1 0 V
louT= 10m A
- 2 0 ° C s T a s 7 0 ° C
R A T I N G
MIN . T Y P . M A X .
5 . 0 0 5 . 2 5
50
4 0 80
—
— 30 —
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— —
± 0 . 6 2 5
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—
—
1 2
—
UNI T
V
m A
m V
m V
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% A /
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m V / ° C
1 2 3
1 2
Page 14
■S -8 0 5 4 H N ( C P U UNIT IC - 0 4 )
> ° l E i j '
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( W H E N L O A D E D )
- 1 3 -
Page 15
I T E M
S Y M B O L
C O N D I T I O N U N I T
S u p p l y v o l t a g e r a n g e
V d d - V s s
I n p u t v o l t a g e V i n
O u t p u t v o l t a g e
O u t p u t c u r r e n t
V o u t
l o u t
P ow er -l oss a l l o w a n c e
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S t o r a g e te m p .
S o l d e r
T o p r
T s t g
T s o l d e r
V s s - 0 . 3 - V d d + 0 . 3
P d
1 2 . 0
V s s - 0 . 3 — 12
5 0 m A
2 0 0
- 2 0 — + 7 0
- 4 0 - + 1 2 5
2 6 0 ° C 10 se c.
- 1 4 -
V
m W
° C
Page 16
■ D J - F 1 T / E D J - S 1 T / E P A R T S L IS T
R a f .
N o .
P a r t C o d e
P a r t N a m e a n d N u m b e r
C P U U N I T
R K 3 0 6 7
R K 3 0 5 6
R K 3 0 6 2
R K 3 0 6 2
I C , uPD7225GB-3B7
I C , MP D78 214GC582-AB8
I C , S - 8 1 2 5 0 H G - R D - T I
I C , S - 8 0 5 4 H N - C B - T I
T r a n s i s t o r , D T C 1 1 4 T K T 9 6
T r a n s i s t o r , D T C 1 1 4 E K T 9 6
T r a n s i s t o r , 2 S C 4 0 8 1 T 1 0 6 R
T r a n s i s t o r , 2 S C 4 0 8 1 T 1 0 6 R
T r a n s i s t o r , D T C 1 1 4 Y U T 1 0 6
T r a n s i s t o r , 2 SC 3 3 2 6 A T E 8 5 L
D i o d e . S LE - 0 0 2 2 M
D i o d e . M A 7 13 -T X
D i o d e , M A 7 13 -T X
D io de .I SS3 18T T11
Chi p C , T M C - M 1 V 3 3 4 M T R A
Chi p C , C M 1 0 5 Y 5 V 1 0 4 Z ( T o n l y )
Chi p C , C M 1 0 5 W 5 R 2 2 3 k 2 5 V ( E o n l y )
C hi p C , C M 1 05W5 R1 0 3 ( T o n l y )
C hip C , C M 1 0 5 W 5 R 2 2 3 k 2 5 V ( E o n l y )
C hip C , C M1 05 Y 5 V 4 7 3 Z ( T o n l y )
C hip C , C M 1 0 5 W 5 R 2 2 3 k 2 5 V ( E o n l y )
C hip C , C MI 05 W 5 R 1 0 3
C hip C , T MC 0J 4 7 6 T R D
C hip C , T MC 1A 4 7 5 T R B
C hip C , C M1 05 W 5 R 1 0 3
C hip C , T MC 0J 2 2 5 T R A
C hip C , T MC 0J 2 2 5 T R A
C hip C , C M 1 0 5 W 5 R 4 7 1
C hip C , C M1 05 W 5 R 1 0 3
C hip C , CM1 05 W5 R1 0 2
C hip C , C M 1 0 5 W 5 R 1 0 2
C hip C , C M 1 0 5W5 R1 0 3
C hip C , C M1 05 W 5 R 1 0 3
C hip C , T MC 1C 1 0 5 T R A
C hip C , C M 1 0 5 W 5 R 1 0 3
C hip C , C M 1 0 5 C H 1 0 0 K
C hip C , C M 1 0 5 C H 1 0 1 K
C hip C . C M 1 0 5 K 5 R 1 5 3 K 2 5 V ( E o n l y )
Chi p R , M C R 0 3 E Z H J 0 0 0
Chi p R , M C R 0 3 E Z H J 4 7 3
Chi p R , M C R 0 3 E Z H J 4 7 3
Chi p R , M C R 0 3 E Z H J 4 7 3
Chi p R , M CR 03 EZH J1 8 4
Chip R , M CR 03 E Z H J 6 8 0
Chip R , M C R 0 3 E Z H J 4 7 3
Chip R , M C R 0 3 E Z H J 1 0 2
Chi p R , M CR 03 E Z H J 2 0 3 ( T o n l y )
Ch i p R , M CR 03 E Z H J O O O ( E o n l y )
C hip R . H CR 03 E Z H J 2 0 3 ( T o n l y )
Ch i p R , M CR 03 E Z H J 2 0 3 ( T o n l y )
Chi p R , M CR 03 E Z H J O O O ( E o n l y )
Chi p R , M C R 03 EZ HJ 1 0 3 ( T o n l y )
Chi p R , M CR 03 E Z H J 1 0 3 ( E o n l y )
Chi p R , M CR 03 E Z H J 2 0 3 ( T o n l y )
Chi p R , M CR 03 E Z H J 0 0 0 ( E o n l y )
Chi p R . M CR 03 E Z H J 1 0 3 ( T o n l y )
Chi p R , M CR 03 E Z H J 2 0 3 ( T o n l y )
Ch i p R , M C R 0 3 E Z H J 4 7 3
Ch i p R , M CR 03 E Z H J 1 0 3 ( E o n l y )
Ch i p R , M CR 03 E Z H J 4 7 3 ( T o n l y )
Ch i p R , M C R 03 EZ HJ 1 0 3 ( E o n l y )
Chi p R . M CR 03 E Z H J 4 7 3 ( T o n l y )
Ch i p R , M C R 0 3 E Z H J 2 7 4
Ch i p R , H C R 0 3 E Z H J 4 7 0
Ch i p R , M C R 0 3 E Z H J 1 2 2
Ch i p R . M C R 0 3 E Z H J 1 0 2
Chi p R , M C R 0 3 E Z H J 4 7 3
Chip R . M C R 0 3 E Z H J 2 7 4
Chip R . M C R 0 3 E Z H J 3 3 3
Chip R , M C R 03 EZ HJ 1 0 4
Chip R . M C R 0 3 E Z H J 1 0 4
X A 0 1 4 I
I C 1
X A 0 1 6 5
I C 2
X A 0 1 4 2
I C 3
X A 0 1 0 6
I C 4
X U 0 0 0 3
Q 1
Q 2
X U 0 0 1 2
Q 3 X T 0 0 9 5
Q 4 X T 0 0 9 5
Q 5 X U 0 0 2 9
Q 6
X T 0 0 7 7
0 7 X T 0 0 9 4 T r a n s i s t o r , 2SA 1576T 1 0 6 R
D 1 X L 0 0 2 5
D 2
X D 0 1 2 8
D 3 X D 0 1 2 8
D 4 X D 0 1 2 0 D i o d e . M A 7 04 WK -T X
D 6
X D 0 1 2 9
C 1 C U 3 0 4 7 Chi p C , C M1 05 W5 R1 0 3
C 2
C S 0 2 3 5
C 5
C U 3 0 5 9
C 5
C U 3 0 5 4
C 6
C U 3 0 4 7
C 6
C U 3 0 5 4
C 7
C U 3 0 5 6
C 7
C U 3 0 5 4
C 8
C U 3 0 4 7
C 9
C S 0 0 5 3
C I O
C S 0 0 5 0
C 1 1
C U 3 0 4 7
C l 2
C S 0 0 5 7
C l 3
C S 0 0 5 7
C l 4
C U 3 0 3 1
C l 5
C U 3 0 4 7
C l 6
C U 3 0 3 5
C l 7
C U 3 0 3 5
C 1 8
C U 3 0 4 7
C l 9
C U 3 0 4 7
C 2 0
C S 0 0 4 9
C 2 1
C U 3 0 4 7
C 2 3
CU 30 11
C 2 4
C U 3 0 2 3 Ch ip C , C M 1 05 CH 1 0 1K
C 2 5
C U 3 0 2 3
C 2 6
C U 3 0 6 3
R K 3 0 0 1
R 1
R 2 R K 3 0 5 8
R K 3 0 5 8
R 3
R 4
R K 3 0 5 8
R K 3 0 6 5
R 5
R 6 R K 3 0 2 4
R 7
R K 3 0 5 8
R 8 R K 3 0 3 8
R K 3 1 0 2
R 1 1
R K 3 0 0 1
R 1 2
R K 3 0 5 0 Ch i p R , M CR 03 E Z H J 1 0 3 ( T o n l y )
R 1 2
R K 3 1 0 2
R 1 3
R K 3 1 0 2
R 1 4
R K 3 0 0 1
R 1 5
R K 3 0 5 0
R 1 5
R K 3 0 5 0
R 1 6
R K 3 1 0 2
R 1 6
R K 3 0 0 1
R 1 7
R K 3 0 5 0
R 1 7
R K 3 1 0 2
R 1 8
R K 3 0 5 8
R 1 9
R K 3 0 5 0
R 2 0
R 2 0 R K 3 0 5 8
R K 3 0 5 0
R 2 1
R K 3 0 5 8
R 2 1
R K 3 0 6 7
R 2 2
R 2 3 R K 3 0 2 2
R K 3 0 3 9
R 2 4
R K 3 0 3 8
R 2 5
R K 3 0 S 8
R 2 6
R 2 7
R 2 8
R 2 9
R 3 0
R e f .
P a r t C o d e
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R K 3 0 5 0
R 3 1
R K 3 0 5 6
R 3 1
R K 3 0 5 0
R 3 2
R K 3 0 5 0
R 34
R K 3 0 6 2
R 3 5
R K 3 0 6 2
R 36
R 37 R K 3 0 5 8
R K 3 0 5 8
R 38
R K 3 0 5 6
R 3 9
R K 3 0 5 0
R 4 0
R K 3 0 3 8
R 4 1
R K 3 0 3 8
R 4 2
R K 3 0 3 9
R 4 3
R K 3 0 6 7
R 44
R K 3 0 2 2
R 4 5
R K 3 0 5 8
R 4 6
R 4 7 R K 3 0 4 6
R K 3 0 4 6
R 48
R 49 R K 3 0 3 8
R 50 R K 3 0 5 0
R 5 1 R K 3 0 5 6
R K 3 0 0 1
R 5 2
R K 3 0 0 1
R 5 3
R K 3 0 3 5
R 5 4
R 5 5 R K 3 0 5 8
R 5 6 R K3 0 5 8
R K 3 0 5 0 Chip R , M C R 0 3 E Z H J 1 0 3
R 5 7
R58 R K 3 0 5 4 Chip R , M CR 03 E Z H J 2 2 3
R S 9 R K 3 0 0 1
R K 3 0 5 0 Chip R , M CR 03 E Z H J 1 0 3
R 6 0
R K 3 0 3 9 Chip R .M C R 0 3 E Z H J 1 2 2
R 6 2
R K 3 0 5 0 Chi p R , M CR 03 E Z H J 1 0 3
R64
L 1 Q C 0 0 4 8
L 2 Q C 0 0 4 8
L 4 O C O O l O
V R 1 R H 0 0 6 0
V R2 R H 0 0 6 0
V R3 R H 0 0 6 0
X 0 0 1
X B 0 0 0 1
E D 0 0 0 2 L I T H I U M B A T T .
T Z 0 0 4 4 C P U I n s ul at e s h e e t
S W 1 U U 0 0 1 3
S W 2 U U 0 0 1 3
S W 3 U U 0 0 1 3 Switch S KH U A B T a p e
C N 1
U E 0 1 2 9
C N2 U EO1 3 0
C N3 U E 0 1 3 1
C N4 U E 01 3 5
L C D E L0 015
S T 0 0 2 6
D H 0 0 0 6
F G 0 0 6 7
U P 0 1 9 9 D J F 1
U P 0 2 0 0 D J F 1
U E 0 1 3 7
W 1 M A C L0 2A A #02 Bl ue
W2 M R C L0 2A A # 02 R e d
P a r t N a m e a n d N u m b e r
Ch ip R , MCR 03 EZ HJ 1 0 3 ( T o n l y )
Ch ip R , M CR 03 E Z H J 3 3 3 ( E o n l y )
Ch ip R , MCR 03 EZ HJ 1 0 3
Ch ip R , M C R 0 3 E Z H J 1 0 3
Ch ip R .M C R 0 3 E Z H J 1 0 4
Ch ip R , M CR 03 E Z H J 1 0 4
Ch ip R , M C R 0 3 E Z H J 4 7 3
Ch ip R , M CR 03 E Z H J 4 7 3
Ch ip R , M C R 0 3 E Z H J 3 3 3
Ch ip R . M C R 0 3 E Z H J 1 0 3
Ch ip R , M C R 0 3 E Z H J 1 0 2
Ch ip R , M C R 0 3 E Z H J 1 0 2
Ch ip R , M C R 0 3 E Z H J 1 2 2
Ch ip R , M CR 03 E Z H J 2 7 4
Ch ip R , M C R 0 3 E Z H J 4 7 0
Ch ip R , M C R 0 3 E Z H J 4 7 3
Ch ip R , M C R 0 3 E Z H J 4 7 2
Ch ip R . M C R 0 3 E Z H J 4 7 2
Ch ip R .M C R 0 3 E Z H J 1 0 2
Ch ip R .M C R 0 3 E Z H J 1 0 3
Ch ip R . M CR 03 E Z H J 3 3 3
Chip R , H C R 03 EZ HJ OO O ( T o n l y )
Ch ip R , M C R 03 EZ HJ 00 0 ( E o n l y )
Chip R . M C R 0 3 E Z H J 5 6 1
Chip R . M CR 03 E Z H J 4 7 3
Chip R , M C R 0 3 E Z H J 4 7 3
Chip R . M CR 03 E Z H J O O O
C hip L , N L 3 2 2 5 2 2 T 1 0 0 K
C hip L . N L 3 2 2 5 2 2 T 1 0 0 K
C hip L , ML F32 16 1 1 E l 0 0 M
V R . M V R 3 2H XB RN 47 3
V R , M VR 3 2 H X B R N 4 7 3
V R , M VR 3 2 H X B R N 4 7 3
X 't al F A R C 4 C A 0 3 5 8 0 0 0 0 K 0 1
Switch S KH U A B T a p e
Switch S KH U A B T a p e
Conne cto r. DF9 A- 9S- 1V ( 2 2 )
C on ne ct or ,DF 9A -1 1 S - 1 V ( 2 2 )
C o n n e c t o r , DF9 A- 13 S- 1 V ( 2 2 )
C o n n e c t o r , 5 2 2 0 7 - 0 5 9 0
L C D D J - F 1
L C D F l a m e
L C D R ef l e c t i o n B o a r d
L C D S i l l i c o n R u b b e r C o n n e c t o r
P i n H e a d e r S B 4 P - H V Q - 2 8
V C O U N I T
Q 1 0 1 X T 0 0 3 0
Q 1 0 2 X T 0 0 3 0
Q 1 0 3 X T 0 0 9 0
D 1 0 1 X D 0 1 3 2
D 1 0 2 X D 0 1 3 2
D 1 0 3 X D 0 1 3 1
n o t Q C 0 0 0 3
L I 0 2 Q C 0 0 9 0
L I 0 3 Q C 0 0 1 0
L I 0 4 Q A 0 0 7 7
1 1 0 5 Q C 0 0 1 0
T r a n s i s t o r , 2 C S 3 3 5 6 T 1
T r a n s i s t o r , 2 C S 3 3 5 6 T 1
T r a n s i s t o r , 2 SC 2 4 1 1 K T 1 4 6
D io de . 1 S V 2 1 5 T P H 4
D i o d e , 1 SV 21 5T PH 4
D io de . 1 S V 2 1 4 T P H 4
C hip L .H L F 3 2 1 6 0 6 A - 1 R 0 M
Chi p L , H L F 3 2 16 06 A- 4R 7M
Chi p L . M LF 32 1 6 1 1 E - 1 0 0 M
Chi p L , C a s e C oi l Q A 0 0 7 7
Chi p L , ML F 32 1 6 11 E - 1 - 0 0 M
R e f .
P a r t C o d e
N o .
T S 0 0 5 6
T S 0 0 5 7
U T 0 0 1 9
T S 0 0 5 2 A
C 1 0 1
C U 3 0 3 5
C l 0 2
C U 3 0 3 5
C l 0 3 C U 3 0 3 5
C 10 4
C S 0 0 6 3
C 1 0 5
C U 3 0 1 9
C1 0 6 C U 3 0 3 5
C U 3 0 3 5
C l 0 7
C U 3 0 0 2
C l 0 8
C U 3 0 4 7
C 10 9
C S 0 2 1 6
C 11 0
C U 3 0 4 7
c m
C U 3 0 4 7
C l 1 2
C U 3 0 0 6
C l 1 3
C l 1 4 C U 3 0 3 5
C l 1 5 C U 3 0 3 5
C U 3 0 2 1
C l 1 6
C U 3 0 0 2
C l 1 7
C U 3 0 4 7
C1 18
C U 3 0 3 5
C 1 1 9
C S 0 0 4 9
C 1 2 0
0 U 3 O 3 5
C 1 2 1
C U 3 0 5 9
C 1 2 2
R K 3 0 2 6
R 1 0 1
R K 3 0 2 2
R 1 0 2
R K 3 0 3 0
R 1 0 3
R K 3 0 3 0
R 1 0 4
R K3 0 5 4
R 1 0 5
R K 3 0 5 0
R 1 0 6
R K 3 0 4 6
R 1 0 7
R K 0 0 5 2
R 1 0 8
R K 3 0 2 6
R 1 0 9
R K3 0 3 4
R 1 1 0
R K 3 0 2 6
R 1 1 1
R K 3 0 6 2
R 1 1 2
R K 3 0 3 8
R 1 1 3
R K 3 0 3 8
R 1 1 4
R K 3 0 6 3
R 1 1 5
R K 3 0 6 2 Chip R . M C R 0 3 E Z H J 1 0 4
R 1 1 6
R K 3 0 3 8
R 1 1 7
R K 3 0 5 0 Chip R . M C R 0 3 E Z H J 1 0 3
R 1 1 8
P a r t N a m e a n d N u m b e r
V CO Shi el d K 1
PM Shi el d K 1
PC B oa rd T e r mi na l C K - 1 - 2
V C O Case D J F 1
C hip C , C M 1 0 5 W 5 R 1 0 2 K
C hip C , C M 1 0 5 W 5 R 1 0 2 K
C hip C , C M 5 0 5 W 5 R 1 0 2 K
Chip C , T M C 1V I0 4T R
Chi p C , C M 1 0 5 C H 4 7 0 K
Ch ip C , C M1 05 W 5 R 1 0 2 K
Ch ip C , C M 1 0 5 W 5 R 1 0 2 K
Chip a C M 1 0 5 C H 0 1 0 C
Ch ip C .C M 1 0 5 W 5 R 1 0 3 K
Chip C , T M C - M 1A 10 6M TR
Chip C , C M 1 0 5 W 5 R 1 0 3 K
Chip C , C M 1 0 5 W 5 R 1 0 3 K
Chip C , C M1 05 CH 05 0C
Chip C , C M 1 0 5 W 5 R 1 0 2 K
Chip C , C M1 05 W 5 R 1 0 2 K
Chip C , C M 1 0 5 C H 6 8 0 K
Chip C . C M 1 0 5 CH 01 0C
Chip C . C M 1 0 5 W 5 R 1 0 3 K
Ch ip C , C M 1 0 5 W 5 R 1 0 2 K
Ch ip C , T MC 1 C l 0 5 T R
Ch ip C , C M 1 0 5 W 5 R 1 0 2 K
Ch ip C .C M 1 0 5 V 5 V 1 0 4 Z
Ch ip R . M C R 0 3 E Z H J 1 0 1
Ch ip R , M C R 0 3 E Z H J 4 7 0
Ch ip R , M C R 0 3 E Z H J 2 2 1
Ch ip R , M C R 0 3 E Z H J 2 2 1
Ch ip R , M C R 0 3 E Z H J 2 2 3
Ch ip R . M C R 0 3 E Z H J 1 0 3
Ch ip R , M C R 0 3 E Z H J 4 7 2
Ch ip R , M C R 1 0 E Z HJ 10 3E
Ch ip R , M C R 0 3 E Z H J 1 0 1
Ch ip R , M C R 0 3 E Z H J 4 7 1
Ch ip R . M C R 0 3 E Z H J 1 0 1
Ch ip R . M C R 03 EZ HJ 10 4
Chip R .M C R 0 3 E Z H J 1 0 2
Chip R , M CR 03 EZH J1 0 2
Chip R , M C R 03 EZ HJ 12 4
Chip R , MCR 03 EZ HJ 1 0 2
M A I N U N I T
I C 2 0 1
X A 0 1 4 8
I C 2 0 2 X A 0 1 4 5
I C 2 0 3 X A 0 1 4 4
I C 2 0 4 X A 0 0 1 9
I C 2 0 5
X A 0 0 6 1 I C . N J M 3 8 6 M - T 1
I C 2 0 6 X A 0 1 0 4
I C 2 0 7 X A 0 0 6 8
0 2 0 1 X T 0 0 9 7
0 2 0 2 X T 0 0 9 7 T r a n s i s t o r , 2 S C 4 3 9 3 T E 8 5 L
Q 20 3 X T 0 0 3 0
Q 20 4
X T 0 0 9 5 T r a n s i s t o r , 2 S C 4 0 8 1 T 1 0 6 R
0 20 5 X T 0 0 9 6 T r a n s i s t o r , 2 S C 4 0 9 9 T 1 0 6 N
0 20 6
X J 0 0 2 9 T r a ns is to r, DT C1 14 YU T 10 6
02 0 7
X T 0 0 8 8
02 08
X U 0 0 2 0 T r a n s i s t o r , F M W 1 T 9 8
Q2 09 X T 0 0 3 0
02 1 0 X T 0 0 3 0
0 2 1 1 X T 0 0 9 4
02 1 2
X T 0 0 3 0 T r a n s i s t o r . 2 SC 3 3 5 6 T 1 B R 2 5
02 13
X T 0 0 9 5
X T 0 0 9 5
Q2 1 4
X T 0 0 9 5
Q 2 1 5
X T 0 0 9 5
Q2 1 6
X T 0 0 9 5
Q2 1 7
Q2 1 8 X T 0 0 8 8
X t 0 0 9 5
Q2 1 9
Q 2 2 0 X U 0 0 2 9
Q 2 2 1 X T0 0 8 8
X U 0 0 2 7
0 2 2 2
I C , M 67 74 8L
I C , M B 1 50 4L PF -G -B ND -T F
I C , T K- 10 48 7M TR
I C , m P D 4 0 9 4 B G - T 1
I C , M 5 2 3 6 ML -T 73 A- 36
I C , M S 2 1 8 F P - T 0 1 - 1
T r a n s i s t o r , 2 S C 4 3 9 3 T E 8 5 L
T r a n s i s t o r , 2 SC 3 3 5 6 T 1 B R 2 5
T r a n s i s t o r , 2 SA 1 2 1 3 Y T E 1 2 L
T r a n s i s t o r . 2 SC 3 3 5 6 T 1 B R 2 5
T r a n s i s t o r . 2 SC 3 3 5 6 T 1 B R 2 5
T r a n s i s t o r . 2 SA 15 7 6 T 1 0 6 R
T r a n s i s t o r , 2 SC 40 8 1 T 1 0 6 R
T r a n s i s t o r , 2SC40 81 T 1 0 6 R
T r a n s i s t o r , 2SC4081 T 1 0 6 R
T r a n s i s t o r , 2SC4081 T 1 0 6 R
T r a n s i s t o r , 2SC4081 T 1 0 6 R
T r a n s i s to r, 2S A1 21 3Y T E1 2L
T r a n s i s t o r , 2 S C 4 0 8 1 T 1 0 6 R
T r a n s i s t o r , D T C 1 1 4 Y U T 1 0 6
T ra ns is tor ,2 SA1 2 1 3 Y T E 1 2 L
T r a n s i s t o r . F M A 7 T 9 8
— 1 5 —
Page 17
R e f .
P a r t C o d e
N o .
X U 0 0 2 7
Q 2 2 3
X U 0 0 2 7
Q 22 4
X U 0 0 2 9
Q 2 2 5
X D 0 0 6 6
D 2 0 1
X D 0 0 6 6
D 2 0 2
X D 0 0 6 6
D 2 0 3
X D 0 1 2 9
D 2 0 4
X D 0 1 3 2
D 2 0 5
D 2 0 6 X D 0 1 3 2
X D 0 1 2 9
D2 0 7
X D 0 1 3 2
D2 0 8
X D 0 1 3 2
D 2 0 9
X D 0 1 3 2
D 2 1 0
X D0 1 2 9
D 2 1 1
X D0 1 3 2
D 2 1 2
X D 0 1 3 2
D 2 1 3
D 2 1 4 X D 0 1 2 9
D 2 1 5 X D 0 1 3 2 D i o d e , 1 S V 2 1 5 T P H 4
X D0 1 3 4
D 2 1 6
X D 0 1 2 9 D i o d e , 1 S S 3 1 8 T T 1 1
D 2 1 7
D2 1 8
X D 0 1 2 9
D 2 1 9
X D 0 1 2 9
D 2 2 0 X D 0 1 2 7
D 2 2 1 X D 0 1 3 6
X D 0 1 1 0 D i o d e , 1 N 5 5 5 1
D 2 2 2
X D0 1 2 8
0 2 2 3
D2 2 4
X D 0 1 2 9
X D 0 1 3 0
D 2 2 5
D 2 2 6 X D 0 1 1 8
D 2 2 8 X D 0 1 2 9
D 2 2 9
X D 0 1 2 9
X D 0 1 2 9 D i o d e , 1S S 31 8T T1 1
D 2 3 0
X D 0 1 3 7 D i o d e , D T Z 6 . 2 A T T 1 1
D 2 3 1
D 2 3 2 X D 0 1 2 9
L 2 0 1 Q K 0 0 6 3
L 2 0 2 Q K 0 0 6 3
Q K0 0 6 3
L 2 0 3
Q C 0 0 0 3
L 2 0 4
Q A 0 0 7 1 Chip L . Q A 0 0 7 1
L 2 0 5
Q C0 0 0 9
L 2 0 6
P a r t N a m e a n d N u m b e r
T r a n s i s t o r , F M A 7 T 9 8
T r a n s i s t o r , F M A 7 T 9 8
T r a n s i s t o r , D T C 1 1 4 Y U T 1 0 6
D i o d e , RLS13 5T E11
D i o d e , RLS13 5T E11
D i o d e . R LS 13 5TE 11
D i o d e , 1 S S 3 1 8T T1 1
D i o d e , 1 S V 2 1 5 T P H 4
D i o d e , 1 S V 2 1 5 T P H 4
D i o d e , 1SS 31 8T T 1 1
D i o d e , 1 S V 2 1 5 T P H 4
D i o d e . 1 S V 2 1 5 T P H 4
D i o d e , 1 S V 2 1 5 T P H 4
D i o d e , 1S S 31 8T T 1 1
D i o d e , 1 S V 2 1 5 T P H 4
D i o d e , 1 S V 2 1 5 T P H 4
D i o d e . 1S S 31 8T T1 1
D i o d e , R B 4 5 0 F T 1 0 6
D i o d e , 1 SS3 18T T1 1
D i o d e , 1 S S 3 1 8 T T 1 1
D i o d e , MA 7 04 WA -T X
D i o d e , DT Z5.1 AT T 1 1
D i o d e , MA 7 13 -T X
D i o d e , 1 S S 3 1 8 T T 1 1
D i o d e , D A 2 0 4 U T 1 0 6
D i o d e . MA 7 16 -T W
D i o d e , 1 S S 3 1 8 T T 1 1
D i o d e , 1S S 31 8T T 1 1
D i o d e , 1 S S 3 1 8T T1 1
C hip L , L K O . 5- 3X3 . 5 T R
Chip L , L K O . 5 - 3 X 3 . 5 T R
Chip L , L K O . 5 - 3 X 3 . 5 T R
Chip L , M LF 32 1 6 0 6 A 1 R 0 M
Chip L ML F3 2 16 06 DR 10 M
1 2 0 7 Q A 0 0 7 I Ch ip L . Q A 0 0 7 1
Q A 0 0 7 1
L 2 0 8
Q A 0 0 7 1
L 2 0 9
0 C 0 0 0 9
L 2 1 0
Q K 0 0 6 3
L 2 1 !
L 2 1 2 Q C 0 0 1 0 Chip L M LF 32 16 11 E1 00 M
1 2 1 3
Q C 0 0 1 0
C 2 0 1 C U 3 0 1 7
C 2 0 2 C U 3 0 0 6
C 2 0 3 C U 3 0 1 4
C 2 0 4
C U 3 0 0 3
C U 3 0 1 7 Chip C , C M1 0 5 C H 3 3 0 K
C 2 0 5
C U 3 0 4 7 Chip C , C M 1 0 5 W 5 R 1 0 3 K
C 2 0 6
C U 3 0 3 5
C 2 0 8
C 2 0 9 C U 3 0 3 5
C 2 1 0 C U 3 0 1 8
C 2 1 1 C U 3 0 4 7
C 2 1 2 C U 3 0 3 5
C 2 1 3 C U 3 0 1 2
Ch ip L , Q A 0 0 7 1
Ch ip L , Q A 0 0 7 1
Ch ip L , M LF 32 16 0 6 D R 1 0 M
Chip L L K O . 5 - 3 X 3 . 5 T R
Chip U M LF 32 16 11 E1 00 M
Ch ip C , C M1 0 5 C H 3 3 0 K
Ch i P C , C M 1 0 5 CH 05 0C
Chip C , C M 1 0 5 C H 1 8 0 K
Chip C , C M1 0 5 C H 0 2 0 C
Chip C , C M 1 0 5 W 5 R Î 0 2 K
Chip C , C M 1 0 5 W 5 R 1 0 2 K
Chip C , C M 1 0 5 C H 3 9 0 K
Ch ip C , C M 1 0 5 W 5 R 1 0 3 K
Ch ip C , C M 1 0 5 W 5 R 1 0 2 K
Chip C , C M 1 0 5 C H 1 2 0 K
C 2 1 4 C U 3 0 1 1 Chip C , C M 1 0 5 C H 1 0 0 K
C 21 5 C U 3 0 1 8 Chip C , C M 1 0 5 C H 3 9 0 K
C 2 1 6 C U 3 0 I 1
Ch i p C , C M 1 0 5 C H 1 0 0 K
C 2 1 7 C U 3 0 1 7 Ch i p C , C M 1 0 5 C H 3 3 0 K
C 2 1 8 C U 3 0 1 6
C 2 1 9 C U 3 0 3 5
Ch ip C , C M1 0 5 C H 2 7 0 K
Chip C , C M 1 0 5 W 5 R 1 0 2 K
C 2 2 0 C U 3 0 0 3 Chip C , C M1 0 5 C H 0 2 0 C
C 2 2 1 C U 3 0 0 2
C 2 2 2 C U 3 0 4 7
C 2 2 3
C U 3 0 0 6
C 2 2 4
C U 3 0 3 5 Chip C , C M 1 05W5R1 0 2 K
Chip C , C M1 0 5 C H 0 1 0 C
Ch ip C , C M 1 0 5 W 5 R 1 0 3 K
ChiP C , C M1 0 5 C H 0 5 0 C
C 2 2 5 C U 3 0 4 7 Chip C , C M 1 0 5 W 5 R 1 0 3 K
C 2 2 6 C U 3 0 5 9 Chip C , C M Î 05Y5V1 0 4 Z 2 5 V
C 2 2 7 C U 3 0 4 7 Chip C , C M 1 0 5 W 5 R 1 0 3 K
C2 2 8
C U 3 0 2 4
Chip C , C M 1 0 5 C H 1 2 1 K
C 2 2 9 C U 3 0 3 5 Chip C , C M 1 0 5 W 5 R Î 0 2 K
C 2 3 0 C S 0 2 1 6 Chip C , T MC -M 1 A 1 0 6 M T R B
C 2 3 1 C S 0 0 6 3 Chip C , T M C 1 V I 0 4 T R A
C 2 3 2 C U 3 0 3 5 Chip C . C M 1 0 5 W 5 R 1 0 2 K
C 2 3 3 C U 3 0 1 5
Chip C , C M 1 0 5 C H 2 2 0 K
R e f .
P a r t C o d e P a r t N a m e a n d N u m b e r
N o .
C 2 3 4
C U 3 0 3 5
C 2 3 5
C U 3 0 4 7
C 2 3 6
C S 0 2 2 0 Chip C , T M C - M 1 C 2 2 5 M T R A
C 2 3 7
C S 0 2 1 6 C hi p C , T M C - M 1 A 1 0 6 M T R B
C 23 8
C U 3 0 3 5 Chip C , C M 1 0 5 W 5 R 1 0 2 K
C 2 3 9
C U 3 0 1 6 Chip C , C M 1 0 5 C H 2 7 0 K
C 2 4 0 C S 0 0 4 9
C 2 4 1
C U 3 0 1 6 Chip C , C M I 0 5 C H 2 7 0 K
C 2 4 2
C U 3 0 0 6
C 2 4 3
C U 3 0 4 7
C 2 4 5
C U 3 0 3 5 C hi p C , C M 1 0 5 W 5 R 1 0 2 K
C 2 4 6 C U 3 0 0 3
C 2 4 7
C U 3 0 0 3
C 24 8
C U 3 0 4 7
C 2 4 9
C U 3 0 1 5
C 2 5 0
C U 3 0 2 3
C 2 5 !
C U 3 0 0 6
C 2 5 2
C U 3 0 4 7
C 2 5 3
C S 0 0 4 9
C 2 5 4
C U 3 0 5 9
C 2 5 5
C S 0 2 2 0
C 2 5 6
C U 3 0 5 9
C 2 5 7
C U 3 0 5 9
C 2 5 8
CU 301 1
C 2 5 9 C U 3 0 1 1
C 2 6 0
C U 3 0 0 2
C U 3 0 0 4
C 2 6 1
C 2 6 2
C U 3 0 0 2
C U 3 0 0 4
C 2 6 3
C U 3 0 3 5
C 2 6 4
C U 3 0 3 5
C 2 6 5
C S 0 0 6 3
C 2 6 6
C U 3 0 5 9
C 26 7
C Ü 3 0 3 9
C2 6 8
C S 0 0 4 9
C 2 6 9
C 2 7 0 C U 3 0 2 1
C U 3 0 5 9
C 2 7 1
C U 3 0 5 4
C 2 7 2
C 2 7 3 C U 3 0 2 9
C U 3 0 3 5
C 2 7 4
C U 3 0 5 4
C 2 7 5
C U 3 0 5 6
C 2 7 6
C 2 7 7 C U 3 0 5 4
C 2 7 8 C S 0 0 6 3
C 2 7 9 C S 0 0 4 9
C 2 8 0 C U 3 0 4 3
C 2 8 1 C U 3 0 2 3
C 2 8 2 C S 0 2 1 6
C 2 8 5 CU 3011
C 2 8 6 C S 0 2 1 1
C 2 8 7 C S 0 0 4 9
C 2 8 8
C U 3 0 4 7
C 2 8 9
C U 3 0 5 9
C 2 9 0
C U 3 0 3 5
C 2 9 1
C U 3 0 3 5
C 2 9 2 C U 3 0 2 3
C 2 9 3 C U 3 0 1 9
C 2 9 4
C U 3 0 3 5
C 2 9 5 C U 3 0 5 9
C U 3 0 5 9
C 29 6
C 29 7 C U 3 0 2 1
C 29 8 C S 0 2 3 5
C 2 9 9 C U 3 0 3 5
C 3 0 0 C U 3 0 4 7
C 3 0 1 C U 3 0 4 7
C 3 0 2 C S 0 0 4 9
C 3 0 3 C U 3 0 5 9
C 3 0 4
CS 0 2 2 0
C 3 0 5 C U 3 0 5 9
C 3 0 6 C U 3 0 2 3
C 30 7 C U 3 0 4 4
C 3 0 8 C U 3 0 5 9
C 3 0 9 C U 3 0 5 9
C 3 1 0
C S 0 0 5 0
C 3 1 1 C E 0 3 0 8
C 3 1 2 C U 3 0 3 5
C 3 1 3
C S 0 0 4 9
C 3 1 4
C U 3 0 4 7
C 3 1 5
C U 3 0 3 5
C 3 1 6 C U 3 0 5 4
C 3 1 7 C U 3 0 5 9
C 3 1 8 C U 3 0 5 9
Ch ip C , C M 1 0 5 W 5 R 1 0 2 K
Ch ip C . CM I 0 5 W 5 R 1 0 3 K
Chip C . T MC 1 C 1 0 5 T R A
C h i P C , C M1 0 5 C H 0 5 0 C
Chip C , C M 1 0 5 W 5 R 1 0 3 K
C hi p C , C M1 0 5 C H 0 2 0 C
C hi p C , C MI 0 5 C H 0 2 0 C
C hip C , C M 1 0 5 W 5 R 1 0 3 K
Ch ip C , C M1 0 5 C H 2 2 0 K
Ch ip C , C M 1 0 5 C H 1 O I K
C hi P C , C M1 0 5 C H 0 5 0 C
C hip C , C MI 0 5 W 5 R 1 0 3 K
Ch i p C , T M C 1 C 10 5T RA
Chip C , C M 1 0 5Y 5 V 1 0 4 Z 2 5 V
Chip C , T MC -M 1C 2 2 5 M T R A
Chip C , C M I 05 Y5 V1 04 Z2 5V
Chip C , C M 1 05 Y5 V1 04 Z2 5V
Chip C , C M 1 0 5 C H 1 0 0 K
Chip C , C M I 0 5 C H 1 0 0 K
Ch ip C , C M1 0 5 C H 0 1 0 C
Chip C .C MÎ 0 5 C H 0 3 0 C
Chip C , C M1 0 5 C H 0 1 0 C
Chip C , C M1 0 5 C H 0 3 0 C
C hip C , C M 1 0 5 W 5 R 1 0 2 K
C hip C , C M 1 0 5 W 5 R 1 0 2 K
C hip a T MC 1 V 1 0 4 T R A
C hip C , C M I 0 5 Y 5 V 1 0 4 Z 2 5 V
Ch i p C , C M I 0 5 W 5 R 2 2 2 K
Chip C , TM C 1 Cl 0 5 T R A
Chip C , C M1 0 5 C H 6 8 0 K
Chip C , C M I 05 Y5V1 0 4 Z 2 5 V
Chip C , C M 1 0 5 W 5 R 2 2 3 K 2 5 V
Chip C , C M 1 0 5W 5R3 31 K
Chip C , C M 1 0 5 W 5 R 1 0 2 K
Ch ip C , C M1 05 W5 R 2 2 3 K 2 5 V
Chip C , C M I 0 5 Y 5 V 4 7 3 Z
Ch i p C , C M 1 0 5 W 5 R 2 2 3 K 2 5 V
Ch i p C , T MC 1 V Î 0 4 T R A
Chip C , T M C 1 C 10 5T RA
Ch i p C , C M1 0 5 W 5 R 4 7 2 K
Ch i p C , CM1 05 CH Í 0 1K
Chip C .T M C - M 1 A 1 0 6 M T R B
Ch ip C . C M I 0 5 C H 1 0 0 K
Chip C , T M C - M 0 J 3 3 6 M T R C
Chip C , T MC 1 C 1 0 5 T R A
Chip C , C M 1 05W5R1 0 3 K
Ch i p C , C M 1 0 5 Y 5 V 1 0 4 Z 2 5 V
Ch i p C , C M 1 0 5 W 5 R 1 0 2 K
Chip C , C M 1 0 5 W 5 R 1 0 2 K
Chi p C . C M I 0 5 C H 1 O I K
C hi p C , C M I 0 5 C H 4 7 0 K
Ch i p C , C M I 0 5 W 5 R 1 0 2 K
Chip C , C M 1 0 5 Y 5 V 1 0 4 Z 2 5 V
Chip C , C M 1 0 5 Y 5 V 1 0 4 Z 2 5 V
Chip C , C M 1 0 5 C H 6 8 0 K
Chip C , T M C - M 1 V 3 3 4 M T R A
Chi p C , C M 1 0 5 W 5 R 1 0 2 K
Chip C . C M 1 0 5 W 5 R 1 0 3 K
Chip C , C M 1 05W5 R1 0 3 K
Chip C , T MC 1 C 1 0 5 T R A
Chip C , CM î 05 Y5V1 0 4 Z 2 5 V
Chip C , T M C - M I C 2 2 5 A Í T R A
Chip C , C M I 0 5 Y 5 V 1 0 4 Z 2 5 V
Chip C . CM 105CH1 0 1 K
Chip C , C M I 0 5 W 5 R 5 6 2 K
Chip C , C M1 05 Y5 V 1 0 4 Z 2 5 V
Chip C , C M1 05 Y5 V 1 0 4 Z 2 5 V
Ch i p C , T MC 1 A 4 7 5 T R B -
Chi p C . E C E V 0 J A 1 0 1 P
Chi p C , C M 1 0 5 W 5 R 1 0 2 K
Chip C , T MC 1 C 1 0 5 T R A
Chi p C , C M I 0 5 W 5 R 1 0 3 K
Chip C , C M 1 0 5 W 5 R 1 0 2 K
Chip C , C M 1 0 5W 5 R 2 2 3 K 2 5 V
Chi p C , C M 1 0 5 Y 5 V 1 0 4 Z 2 5 V
Chip C , C M I 0 5 Y 5 V 1 0 4 Z 2 5 V
R e f .
N o .
P a r t C o d e
P a r t N a m e a n d N u m b e r
C 3 1 9 C U 3 0 4 7 Ch ip C , C M 1 0 5 W 5 R 1 0 3 K
C 3 2 0 C U 3 0 4 7
C 3 2 1 C U 3 0 3 5
C 32 3 C U 3 0 4 7
C 32 4
C S 0 0 4 9 Chip C , T MC 1 C 1 0 5 T R A
Chi p C , C M1 05 W 5 R 1 0 3 K
Chip C . C M I 0 5 W 5 R 1 0 2 K
Chip C , C M 1 05W5R1 0 3 K
C 3 2 5 C S0 0 5 3 Chi p C , T M C 0 J 47 6T RD
C U 3 0 3 5
C 3 2 6
C 3 2 7 C E0 3 0 8
Ch ip C , C M 1 0 5 W 5 R 1 0 2 K
Ch i p C , E C E V 0 J A 1 0 1 P
C 3 2 8 C U 3 0 1 3 Chi p C , C M I 0 5 C H 1 5 0 K
C 3 2 9 C U 3 0 5 9
C 3 3 1 C U 3 0 3 5
Ch ip C , C M I 0 5 Y 5 V 1 0 4 Z 2 5 V
Ch ip C , C M 1 0 5 W 5 R 1 0 2 K
C 3 3 2 C U 3 0 3 5 Ch i p C , C M 1 0 5 W 5 R 1 0 2 K
C 3 3 4
C U 3 0 2 3
C 3 3 5 C U 3 0 2 3
C hip C , C M I 05 CH 1 0 1K
C hip C . C M1 0 5 C H 1 0 1 K
C 3 3 6 C U 3 0 3 5 Ch i p C , C MI 05 W 5 R 1 0 2 K
C 3 3 7
C U 3 0 3 5 Ch i p C , C M 1 05 W5 R1 0 2 K
C 33 8
C U 3 0 2 3 Ch i p C , C M 1 0 5 CH 10 1K
C 33 9 C U 3 0 2 3
C 3 4 0
C U 3 0 5 9 Chi p C , C MI 05 Y5 V 1 0 4 Z 2 5 V
C 3 4 1
C U 3 0 3 1 Chi p C , C M 1 0 5 W 5 R 4 7 1 K
C 3 4 2
C U 3 0 3 5 Chi p C , C M 1 0 5 W 5 R 1 0 2 K
C 3 4 3 C U 3 0 4 7 Chi p C , C M 1 0 5 W 5 R 1 0 3 K
C3 4 4
C U 3 0 3 5 Chi p C , C M 1 0 5 W 5 R 1 0 2 K
C 3 4 5 C U 3 0 0 9
C hip C , CM 1 05 CH 1 01 K
Ch i P C , C M1 0 5 C H 0 8 0 C
C 3 4 6 C U 3 0 3 5 Ch i p C . C M 1 0 5 W 5 R 1 0 2 K
C 3 4 7 C E 0 0 5 6
C 3 4 8 C U 3 0 3 5
C 3 4 9 C S 0 0 4 9
C 35 0 C U 3 0 3 5
RK 3 03 0
R 2 0 1
RK3074
R 20 2
R 20 3 RK 3 05 0 Ch ip R , MCR 03E ZH J1 03
R204
RK 3 02 2
R205 RK3 050
RK3 074
R 20 6
C h e m i c a l C , 1 6 M V 1 0 0 S W
Chip C , C M 1 0 5 W 5 R 1 0 2 K
C hip C , T MC 1 C 1 0 5 T R A
C hip C . C M 1 0 5 W 5 R 1 0 2 K
Chip R , M CR 0 3 E Z H J 2 2 1
Chip R , MC R03EZ HJ10 5
Ch ip R , MC R03EZ HJ47 0
Ch ip R , MCR 0 3E ZH J1 0 3
Ch ip R , MCR 03 EZH J10 5
R207 RK 3 05 0 C h ip R , MCR 03 EZH J10 3
RK3 07 4
R 20 8
Ch ip R , MCR 03E ZHJ 105
R 21 0 RK 3 05 0 Ch ip R , M C R 0 3E ZH J1 0 3
RK3 05 6 Ch ip R , MCR03EZHJ333
R 2 1 1
RK 3 03 8 Ch ip R , MCR03EZHJ102
R 21 2
RK 3 03 8 Ch ip R , MCR 03EZH J102
R 21 3
R 21 6
R K3 0 6 2
Chip R , MCR 03E ZHJ104 ;
R217 RK 3 05 0 Ch ip R , MCR0 3EZ HJ1 0 3
R K 3 0 0 1 Ch ip R , MCR03EZHJ000
R2 1 8
RK3 074
R2 1 9
RK3 054
R2 2 0
RK3 05 4
R 2 2 1
RK3 05 4
R 22 2
RK3 05 0
R 22 3
R224 RK 3 05 0
RK3 05 0
R 22 5
RK3 03 4
R 22 6
R227
RK 3 04 2 C h ip R , MCR 03 EZH J2 22
R228 R K 3 0 0 1
R229 RK 3 02 6
R 23 0 RK3 046
R 2 3 I
RK 3 05 2
R 23 2
RK3038 C h ip R , MCR 03 EZH J10 2
R 23 3 RK3038
R234
RK3 05 9 Chi p R ,M CR0 3E ZH J56 3
R 23 5 RK3 05 0
R236 RK3 03 4
R2 3 8 R K3 0 5 6
R2 3 9 RK 3 05 8
R2 4 0 RK 3 07 0
R 2 4 1
RK 3 05 0
R242 RK3 06 6
R 24 3 RK 3 06 2
R244 RK 3 05 6
R 24 5 RK3 05 8
Ch ip R .M CR0 3E ZH J10 5
Chip R , MCR 03 EZH J22 3
Ch ip R , MCR 03E ZHJ 223
Ch ip R , MCR 03E ZHJ 223
Ch ip R , MCR 03E ZHJ 103
Ch ip R , MC R03EZ HJ103
Chip R.MCR03 EZH J10 3
Ch ip R , M C R 03 EZ HJ 47 1
Ch ip R , MCR 03 EZH J00 0
Ch ip R , MCR 03EZHJ10 1
C h ip R , MCR 03 EZ HJ4 72
Ch ip R , MCR 03E ZHJ I53
Ch ip R , M C R 0 3E ZH J1 0 2
C h ip R , MCR 03EZ HJ10 3
C h i p R , M CR 0 3 E Z H J 4 7 1
C h i p R , MCR 03E ZH J3 33
Ch ip R,MCR0 3E ZHJ 473
Ch ip R , MCR03EZHJ474
C h ip R , MCR03EZHJ103
C h ip R , MCR 03E ZHÜ224
Ch ip R , MC R03E ZHJ10 4
Ch ip R . MCR 03EZ HJ33 3
Ch ip R , MCR 03EZ HJ47 3
R2 4 6 RK3 06 6 C h ip R , MC R03EZ HJ224
R2 4 7 RK3 02 6
R24 8 RK 3 04 2
RK3 05 6
R2 4 9
R2 5 0 RK3 03 4
R 2 5 1 RK3 06 2
RK3 06 2
R25 2
R253 RK3 043
R254
RK3 062
RK3 046
R255
C h ip R , M C R 0 3E ZH J1 0 1
C h ip R , M CR 03 EZ HJ2 22
Ch ip R , MCR 03E ZHJ 333
C h ip R , M CR 0 3 E Z H J 4 7 1
C h ip R , MCR 03EZH J104
C h i p R , MCR 03EZH J104
C h i p R , MC R03E ZHJ27 2
C h i p R.MCR 03E ZH J1 04
C h i p R , MCR 03E ZH J4 72
— 1 f i —
Page 18
R e f .
P a r t C o d e
N o .
R2 5 6 RK3 058
R258 R K 3 0 0 1
R259 RK 3 03 5
R260 RK 3 04 2
R 2 6 1 R K 3 0 0 1
R2 62
RK 3 07 2
R 2 6 3 RK3 04 6
R2 6 4
RK3 07 0
RK30 44 Chi p
R2 6 5
R2 6 6
RK30 26
R2 6 7
RK30 67
R2 6 8
RK30 50
Chip
Ch ip R , MCR 03EZHJOOO
C h ip
C h ip
C h ip
Ch ip
C h ip
Chi p
Chi p
Chi p
Ch ip R , MCR 03 EZ HJ1 03
R2 6 9 RK 3 04 6 Ch ip
R270
RK30 58 Ch ip
R 2 7 Î
RK30 54 Chip
R 2 7 2
R 2 7 3
R2 7 4
R 2 7 5
R2 7 6
R2 7 7
R2 7 9
R 2 8 1
R2 8 2
R2 8 3
R284
R2 8 5
RK3 05 0
R K 3 0 4 2
RK 3 02 6
RK 3 06 2
RK 3 04 6
R K 3 0 5 1
RK 3 04 2
RK 3 02 6
RK 3 04 2
RK 3 04 7
RK 3 02 6
R K3 0 2 6
Chip
Chip
Chip
Chip
Chip
Ch i p
Ch i p
Ch i p
Chi p
Ch ip
Ch ip
Ch ip
R2 8 6 RK 3 01 4 Chi p
R2 87
RK 3 06 6
R2 88
RK 3 04 2
R2 89
RK 3 04 6
R2 90
RK 3 03 0
R 2 9 1
RK0 10 5
R 29 2
R K3 0 4 7
R 2 9 3
R K3 0 5 3
R2 94
R K3 0 4 4 Chi p
R 2 9 5
RK3 03 8
R 29 6
RK3 04 2
R 29 7
RK3 05 0 Chip
R 29 8
RK3 05 6
R 29 9
RK3 03 8 Chip
R 30 0
RK3 04 2 Chip
R 3 0 1
R K 3 0 3 8
R3 0 2
RK3 04 6
R3 0 3
RK3 03 4 Chi p
R3 0 4
RK3 05 0
R 3 0 5
RK3 04 3
R 30 6
RK3 03 8
R 30 7
RK3 05 4 Chip R , MCR 03EZH J223
R 30 8
RK3 06 6
R 3 0 9
RK3 04 7 Chip
R 3 1 0
RK3 03 4 C hi p
R 3 1 1
RK3 02 6
R 3 1 2
RK3 05 0
R 3 1 3
RK3 05 6
R314
RK3 05 0
R 3 1 5
RK3 05 0
R316
RK3 03 8
R317
RK3 03 8
R318
RK3 02 6
R 319
RK3 02 6
R 32 0 RK3 07 4
R 3 2 1
RK3038
R 3 2 2
RK3 042
R 3 2 3
RK3 056
R 32 4
RK3 073
R 32 5
RK3 050
R 32 6
R K 3 0 0 1
R 32 7
RK3 04 6
R 328
RK3038
R3 29
RK3038
R3 30
RK3 072
R 3 3 1
RK3038
R3 3 2
RK3038
R3 3 3
RK3 05 0
R 3 3 4
RK3 03 0
R 33 5
RK1018
R 33 6
RK302 6
R3 3 7
RK305 0
R3 3 8
RK306 2
R339
RK306 2
Chip
Ch ip
Ch ip
Ch ip
Chi p
Chi p R . MCR 03E ZHJ 562
Chi p
C hip R . MCR 03E ZHJ 102
C hip R , MCR 03E ZHJ 222
C hip
C hip R . MCR 03EZHJ10 2
Ch ip
C hip R , MC R0 3EZHJ10 3
C hip
C hip
C hi p
Chip
Chip R , MCR 03E ZH J10 3
Ch i p
Ch i p R .M CR0 3EZ HJ1 03
Chip R , MCR 03EZHJ10 3
Chip
Chip
Chip
Ch ip
Chi p
Ch ip
Ch ip R , M CR 03 EZH J2 22
Chi p
Ch ip
Chi p R.M CR 03 EZ HJ 10 3
Ch i p R , M CR 03 EZH J0 00
Chip
C hi p R , M CR 03 EZ HJ1 02
C hi p R.M CR 03 EZ HJ 10 2
C hi p
Chip
Chip R , M CR 03 EZ HJ1 02
Chip R , MC R03EZHJ10 3
Chip
Chi p R , MC R18EZHJ10 1E
Chi p R , MC R03EZHJ10 1
Chi p R .M CR 03 EZ HJ1 03
Chi p R .MC R03 EZH J10 4
Chi p
P a r i N a m e a n d N u m b e r
R , MCR 03E ZH J4 73
R , M CR 03 E Z H J 5 6 1
R , MCR 03E ZH J2 22
R , MCR 03 EZ HJ0 00
R , MCR 03E ZH J6 84
R , MCR 03E ZH J4 72
R , MCR 03EZHJ474
R , MCR 03EZHJ332
R , MCR0 3E ZHJ 10 1
R . MCR 03EZ HJ27 4
R . MCR 03 EZ HJ4 72
R , MCR 03EZHJ473
R , MCR 03EZHJ223
R , MC R0 3EZHJ10 3
R . MCR 03 EZH J22 2
R , MC R0 3EZHJ10 1
R . MCR 03EZHJ104
R . MCR 03 EZH J47 2
R , M C R 0 3E ZH J1 2 3
R , MCR 03 EZ HJ2 22
R , MC R0 3E ZH J1 0 1
R . MCR 03 EZ HJ2 22
R . MCR 03 EZ HJ5 62
R , MC R03EZHJ10 1
R , MCR0 3EZ HJ 15 1
R , MCR 0 3E ZH J1 0 0
R , MCR 03EZH J224
R ,M CR0 3EZ HJ2 22
R , MCR 03 EZ HJ4 72
R , M CR 0 3 E Z H J 2 2 1
R . MCR10EZ HJ2 R2E
R , MC R03 EZ H J 1 8 3
R , MCR 03 EZH J33 2
R . M CR 03 EZH JÎ 03
R . M CR 03 EZH J3 33
R , MC R0 3E ZH J1 0 2
R , MCR 03E ZH J22 2
R , MCR 03E ZHJ 472
R , M C R 03 EZ HJ 47 1
R , MCR 03 EZH J27 2
R . MC R0 3EZHJ10 2
R , MCR 03EZHJ224
R , MCR 03E ZH J56 2
R , M C R 03 EZ HJ 47 1
R , M C R 03 EZ HJ 10 1
R , MCR 03EZHJ333
R , MCR 03EZHJ10 2
R , MCR 03E ZH J10 2
R , MCR 03EZH J 1 5 1
R . M C R 0 3 E Z H J 1 0 1
R .M CR 03 EZ HJ 10 5
R.M CR 03 EZ HJ 10 2
R , M CR 03 EZH J3 33
R , M CR 03 EZH J8 24
R , M CR 03 EZH J4 72
R , M CR 03 EZ HJ6 84
R , M CR 03 EZH J10 2
R , M C R 0 3 E Z H J 2 2 1
R , MCR 03EZH J104
R e l .
P a r t C o d e P a r t N a m e a n d N u m b e r
N o .
RK 1 10 7
R3 4 0
R3 4 2
R34 3
T C 2 0 1
V R 2 0 Î
VR20 2
VR20 3
VR 204
X 2 0 1
X202
X203
F L 2 0 1
FL 2 02
CN20 2
CN 2 03
J K 2 0 1
JK20 2
JK20 3
R E 2 0 1
RK3 06 0
R K 3 0 0 1
CT 001 2
RH00 64
R H 0 0 6 1
RH00 64
RV00 14
XQ0046
XK00 02
XQ00 22
XC0 00 4
XF0 00 8
U E O 1 1 0
U E O 1 1 0
U J 0 01 5
U J 0 02 2
U J 0 01 9
U R0 00 6
MRCK08AA
MRCK04AA
YZ0058
QB0003
C h ip R , MCR18EZ HJO OO E
C h ip R , MCR 03EZHJ683
C h ip R , MCR 03EZHJOOO
Tr immer C.C TZ-10AW
V R , MV R32HXBRN103
V R , WVR 32HXBRN472
V R , M V R3 2H XB RN 1 0 3
V R , RK0 97 22 11 5R 12 11
X'tal U M-5 23 .5 0 5 M H Z
X ’ tal CDBM455C7
X'tal U M - 1 1 2 . 8 M H Z
Cer an ic Fi lt er , CF U M4 55 E
Cer an ic Fi lt er , 23 . 0 5 M H Z U M-5
Co nn ec te r, 5 2 0 30 -1 21 0
C o n n e ct er , 5 2 0 30 -1 21 0
J a c k , HEC 1781 -0 1- 02 0
J a c k , H S J 1 1 0 2 - 0 1 - 5 4 0
J a c k , H SJ 142 3-0 1-0 10
RE E C 0 9 P 20 -5 1
L e a d , #08 RE D
L e a d , #0 4 R E D
Solder-P la te d W ire
Fe rri te Bea ds
K E Y B O A R D U N I T
P C B 8 0 1 U P0 21 0 DJP3 KE Y BO A RD
C N 0 8 0 1
R 8 0 1
R8 0 2
D 8 0 1
08 02
D8 0 3
D80 4
U E 0 13 3
RK 3 02 4
RK3 02 4
XL00 16
XL00 16
X L 00 16
XL 0 01 6
Co nn ec tor DF 9A -1 1 P - l V ( 2 2 )
Ch ip R , MCR 03E ZH J6 80
Ch ip R . MCR 03E ZH J6 80
D i o d e , SLM 13U WT96B
D i o d e . S L M 1 3 J U M T T 9 6 B
D i o d e , SLM13MWT96B
D i o d e , SLM 1 3 M « i r r 9 6 B
D T M F U N I T
1 C 6 0 1 XA0 16 9
Q 0 6 0 1
X U 0 0 2 1 Tra nsistor F MC 3 T 9 8
D 0 6 0 1 XD0 12 9
CU 3 03 5
C 6 0 1
C602
CU 3 03 5
CU 3 05 9
C6 03
C604
CS0 05 0
CU 3 05 9
C 60 5
CU 3 04 7
C 60 6
CU 3 01 7
C60 7
CU 3 01 7
C608
C 6 09
CU 3 04 7
CU 3 05 9
C61 0
U P 0 2Î 2
RK30 18
R 6 0 1
R K 3 0 6 6
R 6 02
RK 3 06 6
R 6 03
RK3 06 2
R60 4
RK3 05 9
R60 5
RK3058
R6 0 6
RK3 05 0
R 60 7
RK3 03 8
R 6 08
RK3 05 6
R 6 09
X Q 0 0 2 1
X 06 0 1
TT3 00 8
YZ0 04 2
U E 0 13 4
C N 6 0 1
IC CM 8880- 2PEIT
Diode,1SS318 T T 1 1
Chip C , CM1 05 W5R 1 0 2 K
Ch ip C. CM105 W5R 1 0 2 K
Ch ip C .C M10 5 Y5V 1 0 4 Z
Chi p C.JMC Î A 47 5 TR B
Ch ip C .C M10 5 Y5V 1 0 4 Z
Ch ip C. CM105 W5R 1 0 3 K
Ch ip C .C M10 5 CH 3 3 0 K
Ch ip C .C M10 5 CH 3 3 0 K
Ch ip C .C M10 5 W5R 1 0 3 K
Ch ip C .C M10 5 Y5V 1 0 4 Z
D J F 1 DTMFB oa rd
C hip R .MC R0 3 E Z H T 2 2 0
C hip R.M CR03 E ZH T 2 2 4
Chi p R .M CR0 3 E ZH T 2 2 4
Chi p R. MCR03 E ZH T 1 0 4
Chi p R , MCR03 E Z H T 5 6 3
C h ip R , MCR03 E Z H T 4 7 3
Chi p R .MC R0 3 E Z H T 1 0 3
Chi p R , MCR03 E ZH T 1 0 2
C h ip R .MC R03 E Z H T 3 3 3
X ’ ta l DSMAT 3 . 5 8 M H Z
El as ti c Tub e X ’ t a l
Cem en t G-17 1 g
Co nn ec to r, DF9 A- 13 P-1 V( 2 2 )
— 1 7 —
Page 19
■ A D J U S T M E N T F 1 - T / S 1 - T
I t e m
1 . S ta n d ar d fre qu en cy
2. O utp ut powe r
1 ) High power
2) M i d d l e powe r
3) L o w power
3 . T r a n s m it ti n g s pur io us
4 . Mo dulation
1 ) M I C m o dulation
ad jus tm e nt
2) D T M F d e v ia ti on
3 ) S u b- a ud ib le to ne
m od ul at ion
5 . Sta n d ar d V C O vo lta ge
A d j u s t m e n t m e t h o d
T r a n s m it a t 146.03 on L . C . D . board, th en ad just T C201 s o th a t t h e fre que nc y
i s 1 4 6 . 0 3 M H z ± 5 0 H z .
A dj u st in g p o in t T C 2 01
T r a n s m it at 1 4 6 . 0 3 M H z , then ad just V R 2 0 2 so th at th e output p ow er is .5 .0 W
w h e n op er ati n g power sou rce a t 1 3 . 8 V .
A d ju st in g p o in t ( s ) V R 2 0 2 m ain board
T r a n s m it at 1 4 6 . 0 3 M H z , th en ad just V R 2 0 3 so that th e output p ow er i s 1 .0 W
w h e n ope rating power sou rce a t 1 3 . 8 V .
A d ju st in g p o in t ( s ) V R 2 0 3 m ain board
T r a n s m it at 1 4 6 . 0 3 M H z , t hen v e r if y that t h e outp ut pow er i s b et w ee n 8 0 m W
a n d 2 0 0 m W .
T r a n s m it at 1144.03Hz, 1 4 6 . 0 3 M H z a n d 14 7. 99 M Hz , th en v e r if y th e t r a n s m it
tin g s pur io us i s a s f o l lo w s w h e n ope rating vo ltage i s b et w ee n 6 V a n d 1 4 V .
High p o w e r
L o w p o w e r
Als o v e r if y no q u e e r o s c il l a t io n i s oc curring.
T r a n s m it at 1 4 6 . 0 3 M H z a n d input lo w f re qu en cy o f 1k Hz 5 0 m V from M I C
in pu t term in al . T h e n ad just VR201 so tha t t h e m od ula tion i s 4.5 kHz .
A d ju st in g p o in t ( s ) VR201 m ain board
T r a n s m it a t 1 4 6 . 0 3 M H z a n d pr ess t h e ten- key j T ) . Th en ad just t h e V R 3 s o
tha t t h e m od ulation i s 3.1kHz.
A dju sti ng p o i n t ( s ) V R 3 C P U boa rd
Set t h e su b -a u di b le to n e at 8 8 . 5 M H z , th en adju st V R 1 so t hat t h e f re que nc y
i s 8 0 0 H z w h e n tr a n s m it t in g at 14 6 .0 3 M H z .
A dj u st in g p o in t ( s ) V R 1 C P U board
A t t h e rec eiving c ond iti on , adju st L10 4 s o that the volta ge o f P / D i s 0.7V w i t h
th e fre q u e n c y s e t a t 1 4 6 . 0 3 M H z .
A dj u st in g p o in t ( s ) V C O b oa rd L 2 0 4
A t th e tran sm itt in g c ond ition v e r if y that th e vo ltage o f P / D i s be tw ee n 0.5V
a n d 1 .0 V w i t h th e f r e qu en cy s e t at 1 4 5 . 0 5 M H z .
. .. .. .. .. .. .. .. .. .. .. .. .. .. .. .. .. .. . u n d er - 6 0 d B
.. .. .. .. .. .. .. .. .. .. .. .. .. .. .. .. .. .. ..
u n d e r - 5 0 d B
S p e c .
1 4 6 . 0 3 M H z ± 5 0 H z
5 W ± 0 . 1 W
1 W ± 0 . 1 W
High Pow er
u nd er - 6 0 d B
L o w Pow er
u n d e r - 5 0 d B
4. 5 k H z ± 0.1 kHz
3.1k Hz ± 0.1kHz
8 0 0 H z ± 1 0 0 H z
0 .8 ± 0 .1 V
6 . AIR B A N D
7 . V H F front -e nd ad ju st in g
8 . S m e ter
A t t h e rec eivi ng f re qu en cy o f 1 2 5 . 0 3 M H z , in pu t t h e s ig n a l o f A M 1 k H z 3 0 %
outp ut 8 d B p (disc on ne cti on te rm in al ) fr om S G . T h e n v e r if y t ha t the S / N i s
m o re t h an 1 0 d B . An d , rece ivab le fr om 1 1 8 . 0 0 M H z to 1 4 2 . 9 9 M H z .
A t t h e rec eivi ng fre q u e n c y o f 1 4 6 . 0 3 M H z , ad just L20 5, L 2 0 7 , L 2 0 8 and
L 2 0 9 s o that th e 12dB s in d ge ts m a x i m u m s e n s i t i v i t y .
A dj u st in g p o in t ( s ) L 20 5 , L2 0 7, L20 8, L 2 0 9 m a in board
A t t h e rec eivi ng f re qu en cy o f 1 4 6 . 0 3 M H z input th e s ig n a l o f 2 0 d B / t fro m t h e
tr ansceiver t e s t e r . T h e n ad just V R 2 so tha t t h e F U 1 1 i n S m e te r s t a r t s
li g h t i n g .
A dj u st in g p o i n t ( s ) V R 2 C P U board
1 8
Page 20
■ A D J U S T M E N T F 1 - E /S 1 - E
I t e m A d j u s t m e n t m e t h o d
1 . St and ard f re qu en cy
2 . O ut p u t pow er
1 ) H ig h pow er
2 ) M i d d l e pow er
3) Lo w pow er
3 . T r a n s m it ti n g sp u r io u s
4 . M odu lat ion
1 ) M I C m odu lation
adj ustm ent
2) D T M F d e v ia ti on
T r a n s m it at 145.0 5 on L . C . D . board, th en adju st TC2 01 s o tha t t h e fre qu en cy
i s 1 4 5 . 0 5 M H z ± 5 0 Hz.
A d ju s t in g p o in t( s ) 7C201
T r a n s m it at 1 4 5 . 0 5 M H z , t h e n adju st V R 2 0 2 s o that th e output p ow er i s 5.0W
w h e n ope rat ing powe r s o u rc e a t 1 3 . 8 V .
A d ju s t in g p o in t( s ) V R 2 0 2 m a in b oa rd
T r a n s m it at 1 4 5 . 0 5 M H z , t hen ad ju st V R 2 0 3 s o tha t t h e ou tp ut p ow er i s 1 .0 W
w h e n ope rat ing po w er so ur ce at 1 3 . 8 V .
A dj u st in g p o in t ( s ) V R 2 0 3 m a in b oar d
T r a n s m it at 1 4 5 . 0 5 M H z , then v e r if y th at t h e ou tpu t p ow er i s b et w ee n 8 0 m W
a n d 2 0 0 m W .
T r a n s m it at 1 4 5 . 0 5 M H z , 1 4 4 . 0 5 M H z a n d 1 4 5 .9 5 M H z, th en v e r if y t h e tr an sm it
ti n g sp ur io us i s as fo l lo w s w h e n ope ratin g voltage i s b et w ee n 6 V a n d 1 4 V .
Hig h p o w e r
Lo w p o w e r
A ls o v e r if y no q u e e r o s c il l a t io n i s occurring.
T r a n s m it at 1 4 5 . 0 5 M H z a n d in pu t lo w f re qu en cy o f 1k Hz 5 0 m V fr om M I C in p u t
te rm in al. T h e n adju st VR201 s o tha t t h e m odulation i s 4. 5 kH z .
A dju sting p o in t( s ) VR201 m a in board
T r a n s m it at 1 4 5 . 0 5 M H z a n d pr e ss t h e ten-k ey [ T | . T h e n adju st t h e V R 3 s o
tha t th e m odula tion i s 3. 1kH z.
A d ju st in g p o in t ( s ) V R 3 C P U board
.. .. .. .. .. .. .. .. .. .. .. .. .. .. .. .. .. ..
.. .. .. .. .. .. .. .. .. .. .. .. .. .. .. .. .. .. ..
u n d e r - 6 0 d B
u n d e r - 5 0 d B
S p e c .
1 4 5 . 0 5 M H z ± 5 0 H z
5 W ± 0 . 1 W
1 W + 0 .1 W
H ig h P ow er
u n d er - 6 0 d B
Low P ow er
u n d e r - 5 0 d B
4 . 5 k H z ± 0 . 1 k H z
3 . 1 k H z ± 0 . 1 k H z
3) T o ne -b ur s t m odu lation
5 . Sta n d ar d V C O vo lta ge
6 . A I R B A N D At th e rec eivi ng fre q u e n c y o f 1 2 5 . 0 3 M H z , inp ut th e s ig n a l o f A M 1k H z 3 0 %
7 . V H F front-end ad ju st in g At t h e rec eivi ng fr e qu en cy o f 1 4 5 0 5 M H z , ad ju st L205, L 2 0 7, L 2 0 8 an d
8 . S m e ter
T r a n s m it at 1 4 5 . 0 5 M H z , th en adjus t V R 1 s o that t h e m o dulation i s 3. 0kHz.
V e r i f y that th e ton e-b ur st i s i n th e r a n g e o f 1 , 7 5 0 H z ± 2 0 H z at t h i s ti m e .
A d ju st in g p o in t ( s ) V R 1 C P U board
At t h e rec eivi ng co nd iti on , ad ju st L 104 s o that th e voltage o f P / D i s 0. 7 V w i t h
t h e fr e qu en cy set at 1 4 5. 05 M H z.
Adju sti ng p o in t ( s ) V C O b oar d L 2 0 4
At th e tr a n sm itt in g condition v e r if y th at t h e vo lta ge o f P / D i s b e t w e e n 0. 5V
a n d 1 . 0 V w i t h t h e f re q u e n c y s e t at 1 4 5 .0 5 M H z.
output 8 d B / t (di sconnection te rm in al ) fr om SG . T h e n v e r if y th at th e S /N i s
m o re th a n 1 0 d B . A n d , re ce iva ble fro m 11 8 .0 0 M H z to 1 4 2 . 9 9 M H z .
L 2 0 9 s o tha t t h e 12 dB s in d gets m a x im u m s e n s i t i v i t y .
A dj u st in g p o in t ( s ) L20 5 , L 2 0 7 , L20 8 , L 2 0 9 m a in board
At t h e rec eivi ng fr e qu en cy o f 1 4 5 . 9 5 M H z inp ut th e s ig n a l o f 2 0 d B / t from the
t ra nsceiver t e s t e r . T h e n ad ju st V R 2 s o that th e F U 1 1 i n S m e te r s t a r t s
l i g h t i n g .
A dj u st in g p o in t( s ) V R 2 C P U board
3 . 0 k H z ± 0 . 1 k H z
0 . 7 V ± 0 . 1 V
- 1 9 -
Page 21
■ SC H E M A T IC DIAGR AM
RF U N I T
Sp e c if ic a ti o n s a r e s u b je ct t o c h a n g e witho ut n o t i c e o r ob li g a ti o n .
- 2 0 -
Page 22
— 2 1 -
Page 23
■ V R . R E . S W .P C BOA RDS
SW 1 . 2 . 3 (SK HU AB )
Page 24
■ CP U PC BOAR D
S i d e A
5 6 1
S | l 0 4
I c i s l i o a
f c 1 0 3 » 0 2 M
r a , 0 ,
1 0
n n
W t e V “ “ ¿ I
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473
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102
V R 1
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3. 58 M
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Page 25
S id e B
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4 7 3
4 7 3
— 2 4 —
Page 26
Page 27
T Z0 0 22
W 2 W 1
S S
& 3
Page 28
S id e B '
n
- 2 6 -
Page 29
■ VC O PC BOARD
1 0 2 ( 2 1
1 0 2 § l g
W 1 6 V
1 0 2
o ß i v a s v
1 0 U R 1 0 9
' t
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05 0
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P / D
G ND
— 2 7 —
Page 30
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f ro ir^ j i ö ^ a
W i r
i a
ç o i
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o -
o -
o -
o
o -
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H S
V D
V i W
• 2 8 1 S
18 1S
A 9 0
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a u v o s o d n i v i a i «
Page 31
Page 32
Page 33
B a t *
;
' - V
V J 0 0 1 9
( 0 ) | < — H S J - 14 23 -01-010
Page 34
S i d e B '
Page 35
■ K E Y BO AR D
S i d e A
0 8 0 3 1
S
o
$
o
S i d e B
A i - d i i - w j a
a
1 0 8 N D
1 . 1 I I I I
P
T T T
Page 36
E M S - 8 ( R E M O T E CON TROL S P E A K E R / M I C R O P H O N E )
r
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
1
R e f .
P a r t C o d e
N o .
R
RD 00 39 U
R I
R0 00 59
R 2
R0 00 39
R 3
R0 00 57 C h i p R , 1/4 W 27 3
R4
RD0 05 2
R 5
RD0 04 2
C I
C K 00 03
s w t
U U 00 07
SW2
U U 00 07
SW3
U U 0007
SW4
U U 00 09
SW5
U S 00 18
U P 0 21 1
J K 1
U J0 0 16
P a r t N a m e a n d N u m b e r
C h i p R , 1/4W 22 2
C h i p R , 1 / * 4 W 333
C h i p R . 1/4W 22 2
C h i p R , 1/ 4W 1 0 3
C h i p R , 1/4W 33 2
C e r a m i c C , 50V 1 0 2 Z
T a ct Sw i t c h , E V Q - Q E C 04 K
Tac t S w i t c h , EV Q- QE C 04 K
Tac t S w i tc h, EV Q- QE C 04K
Tact Sw it ch , E V Q - Q H J 04G
S l i d e S w i tc h, SSSS 71 2A
E M S8 Bo ard
J a c k H S J 1 42 3- 01 -0 50
U Z 0 0 1 5
c = = ^ H :
- 3 3 -
Page 37
E M E - 1 0 K ( H E A D S E T W / P T T V O X )
R e f .
P a r t C o d e
N o .
C E 0 0 4 4 C h e m i c a l C , 1 . 6 V 1 0 u F MS 5
C 1
C 2 C E 00 34
C E 00 34
C3
C4 CU 3 03 1
C5 CU 30 52
CU 3 03 1
C 6
C7 CU 3 03 1
C8 CU 3 03 1
C 9 CU 3 03Î
CIO
C E 0 1 0 9
CU 3 05 2
C 1 1
C12 CU 3 0 23
C1 3 CU 3 03 1
C1 4
CU 30 52
C15
CU 30 52
CU 30 23
C l 6
C1 7 CU 3 03 1
C1 8 CU 3 0 52 C h i p C , C M 10 5 W 5 R 1 03 K 25 VA T
C1 9 CU 30 52
C2 0 C U 3 0 3 1 C h i p C , C M 10 5 W 5 R 4 7 I K 50VAT
C 2 1 CE02 00 C h e m i c a l C , 50V 2 . 2 u F U W
C22 CU 3 031 C h i p C , C M 10 5 W5 R 471 K 50 VA T
C23 CU 3 03 1
C2 4 C E 00 37 C h e m i c a l C , 6.3 V I O O u F MS 5
C25 CU 30 35 C h i p C , C M 10 5 W5 R 1 02 K 50 VA T
C2 6 CU 3 0 35
C2 7
CU 30 35
C2 8
CU 30 35
C2 9
CU 30 35
D 1
XD 00 40
D 2 XD 00 40 D io de , D A N 2 0 2 K T9 6
D 3
XD 00 40
D4
XD 00 40
D5
XD 00 40
D6
XD 00 40
D 7
XD 00 40
Q 1
XT 00 37 Transi st or, 2S C2 41 2K T 9 6R
Q2 XT 00 37 T r a n s i s t o r . 2 S C 2 4 1 2 K T 9 6R
Q 3
XT 00 37 Transi st or, 2S C2 41 2K T 9 6R
Q 4
XT 00 37 Transi st or. 2SC2 41 2K T 9 6R
Q5 XT 00 37
XT 00 37
Q6
Q7
XT 00 37
P a r t N a m e a n d N u m b e r
C h e m i c a l C . 6. 3V 22 u F MS 5
C h e m i c a l C , 6 . 3 V 22 u F MS 5
C h i p C . C M 1 0 5 W5 R 47 1K 50VAT
C h i p C . C M 1 0 5 W5 R 1 03 K 25 VA T
C h i p C . C M 1 0 5 W5 R 471 K 50 VA T
C h i p C . C M 1 0 5 W 5 R 471 K 50 VA T
C h i p C . C M 1 0 5 W5 R 47 1K 50VAT
C h i p C, CM 1 0 5 W5 R 47 1K 50 VA T
C h e m i c a l C , 50V 0 . 2 2 u F MS5
C h i p C. CM 1 0 5 W5 R 1 0 3 K 25VAT
C h i p C . C M 1 0 5 C H 1 01 K 50 VAT
C h i p C . C M 1 0 5 W 5 R 471K 5 0 VAT
C h i p C , C M 10 5 W 5 R 1 03 K 25VAT
C h i p C . C M 1 0 5 W5 R 1 03 K 25 VA T
C h i p C . C M 1 0 5 C H 1 0 1 K 50VAT
C h i p C . C M 1 0 5 W 5 R 471 K 50 VA T
C h i p C , C M 10 5 W 5 R 1 0 3 K 25 VA T
C h i p C . C M 1 0 5 W 5 R 471 K 50VAT
C h i p C . C M 1 0 5 W 5 R 1 0 2 K 50VAT
C h i p C . C M 1 0 5 W 5 R 1 02 K 50VAT
C h i p C . C M 1 0 5 W 5 R 1 0 2 K 50VAT
C h i p C . C M 1 0 5 W 5 R 1 02 K 50 VA T
D i o d e , D A N 2 0 2 K T9 6
D i o de , DA N2 0 2 K T9 6
D i o de , DA N2 0 2 K T9 6
D i o de , DA N2 0 2 K T9 6
D io de , DA N2 0 2 K T9 6
D i o de , DA N2 0 2 K T9 6
T r a n s i s t o r , 2 S C 2 4 1 2 K T 9 6R
T r a n s i s t o r , 2 S C 2 4 1 2 K T 9 6R
Tr an sis to r. 2SC2 41 2K T 9 6R
R e f .
P a r t C o d e
N o .
Q8 XU 0 0 12
Q9 XU 0 0 12
XT 00 37
Q1 0
RK30 20 C h i p R , M C R 0 3 E Z 0 J 33 0
R 1
RK30 38 C h i p R . M C R 0 3 E Z 0 J 1 0 2
R 2
RK30 30 C h i p R , M C R 0 3 E Z 0 J 2 2 1
R 3
RK30 30
R 4
RK3 0 74 C h i p R , M C R 0 3 E Z 0 J 1 0 5
R 5
R 6 RK30 46
R 7 RK30 30
R 8 RK30 46
R9
RK30 42
R1 0 RK30 30
R 1 1 RK 30 74 C h i p R , M C R 0 3 E Z 0 J 1 0 5
R1 2 RK30 42 C h i p R . M C R 0 3 E Z 0 J 2 2 2
R13 RK30 42
R1 4 RK 30 74
R15
RK30 30 C h i p R , M C R 0 3 E Z 0 J 2 2 1
R16 RK30 46
R17
RK3 0 58
R1 8
RK30 62 C h i p R . MC R0 3 E Z 0 J 1 0 4
R19 RK30 76
R 20 RK30 60
R 2 1
RK30 62 C h i p R , M C R 0 3 E Z 0 J 1 0 4
R22 RK3 0 74 C h i p R , M C R 0 3 E Z 0 J 1 0 5
R23 RK30 46
R24
RK3 0 70
R2 5
RK307 2 C h i p R , M C R 0 3 E Z 0 J 684
R26
RK307 2 C h i p R , M C R 0 3 E Z 0 J 684
R27 RK 30 74
R28 RK 30 74
R29
RK009 0 C h i p R , MC R1 0 E Z H J 2 2 5
I C I X A 01 23
S W 1
U U 0 00 9 T a c t S w i tc h, EV Q- QH J-0 4G
U S0 01 6
SW 2
V R 1
RH0 06 2 S e m i V a l u a b l e V R , EV M-LIG
U P 01 87 A
P a r t N a m e a n d N u m b e r
D i g i t a l Trans ist or,
DT C1 14 EK T9 6
Di g i t a l Tr ansistor,
DT C1 14 EKT 96
Tran si st or, 2 S C2 41 2K T 9 6R
C h i p R , M C R 0 3 E Z 0 J 2 2 1
C h i p R , MC R0 3 E Z 0 J 4 7 2
C h i p R , M C R 0 3 E Z 0 J 2 2 1
C h i p R , M C R 0 3 E Z 0 J 47 2
C h i p R , M C R 0 3 E Z 0 J 22 2
C h i p R , M C R 0 3 E Z 0 J 2 2 1
C h i p R . M C R 0 3 E Z 0 J 22 2
C h i p R , M C R 0 3 E Z 0 J 1 0 5
C h i p R , M C R 0 3 E Z 0 J 4 7 2
C h i p R , MC R0 3 E Z 0 J 4 7 3
C h i p R , M C R 0 3 E Z 0 J 1 5 5
C h i p R , M C R 0 3 E Z 0 J 68 3
C h i p R , M C R 0 3 E Z 0 J 4 7 2
C h i p R . MC R0 3 E Z 0 J 47 4
C h i p R , M C R 0 3 E Z 0 J 1 0 5
C h i p R , M C R 0 3 E Z 0 J 1 0 5
I C , BU 40 13B F- T1
S l i d e S w i tc h, SS SS 913 L2
E M E - 1 0 B o ar d
A00 B 23
- 3 4 -
Page 38
S C H E M A T I C D I A G R A M O F E M E - 1 0 K
M I C O U T O
_ R 2
+ 5V O— r A W V
M I C I N O
G N O O
E A R O -
S P O
l O K
i n
c o
Page 39
S i d e A
E M E - 1 0 K P C B O A R D
Side B
— 3 6 —
Page 40
E J - 1 0 U (DTMF EN C / D E C UNIT)
R e f .
P a r t C o d e
N o .
I C 6 0 1 XA 01 69
Q0 6 0 1 X U 0 0 2 1
D 0 6 0 1
XD01 29
U P0212
X 0 6 0 1
X Q0 0 2 1
T T 30 08
CN 6 01
U E 01 34
YZ00 42
YZ00 82
C 6 0 1
CU 303 5
C 6 02 CU 303 5 C h i p C , CM 10 5 W 5 R 1 0 2 K
C 6 0 3
C U 30 59
C 6 04
C S 00 50
C60 5
C U 30 59
P a r t N a m e a n d N u m b e r
I C , C M 8 8 80 -2 PE IT
Tran sistor, FMC3 T98 C6 07
D i o d e , 1SS318 T T 1 1
D T M F Board
X ’ t a l D S M A T 3 . 5 8 M H Z
E l a s t i c Tu be
Connector, D F 9 A - 1 3 P - 1 V ( 2 2 )
C e me nt G — 1 7 1 g
M e n d i n g T a p e , 1 2r rm W
C h i p C , CM 10 5 W 5 R 1 0 2 K
C h i p C , CM 10 5 Y5 V 1 0 4 Z
C h i p C , T M C - 1 A 475M TR R6 08 RK 30 38
C h i p C . C M 1 0 5 Y5 V 1 0 4 Z
R e f .
P a r t C o d e
N o .
CU 30 47 C h i p
C6 06
C U 3 0 1 7 C h i p C , CM105
C U 3 0 1 7
C 6 0 8
CU 30 47 Ch ip
C 6 09
C6 10 CU 30 59 Ch ip
R 6 0 1 RK 30 18 C h i p R , M C R0 3
R6 0 2 RK306 6 C h i p R , MC R03
RK306 6
R603
R 6 04
R K 30 62
R605 RK30 59
R60 6 RK 30 58 C h i p R , M C R0 3 EZ HJ473
R 6 07 RK 30 50 C h i p
R60 9 RK 30 56 C h i p
P a r t N a m e a n d N u m b e r
C.CM 10 5 W 5 R 1 0 3 K
C H 33 0 K
R , M C R0 3
C H 330 K
W5 R 1 0 3 K
Y5 V 1 0 4 Z
EZ HJ220
EZH J2 24
EZH J2 24
EZHJ104
EZ HJ333
C h ip C , CM105
C , CM 105
C , CM 10 5
C h i p R , MC R0 3
C h ip
C h i p R , M C R0 3 EZ HJ563
R , M C RÜ 3 EZH J10 3
C h i p
R , MC R03 EZH J102
R , M C R0 3
— 3 7 —
Page 41
S ide A
DT M F PC BOARD
E J - 2 0 U
o
o
u
S id e B
C 6 0 6
| R 6 0 5 [
I I
o
r o l
W
w r 4 R ^ t / 1 0 V
s
f f l
o
A 6 0 7
g | C 6 0 9 l
C60 6
|R 6 0 1 §
1 1
O D
| R609 I
3 3 3
g g
s
n
C J
— 3 8 —
Page 42
E J - 1 2 U (T O N E SQ U E LC H UN IT)
R e f .
P a r t C o d e
N o .
I C7 0 I XA 0I 63 I C , F X 3 6 5 L C / T R C7 06
Q 7 0 1 XT0 0 37
D 7 0 1 XD 00 40 D i o d e , D A N 2 0 2 K T96 R
VR701 RH 00 60 V R , M V R 3 2 HX BR N4 73
XB 00 06 X ’ tal CS B10 00 J2 21
X7 0 1
CN 7 01
U E 01 32
C 7 0 1
CU 3 0 60
C 7 0 2 CU 30 60 C h i p C , CM 10 5C H2 21 K
C 7 0 3
CU 3 0 59
C 7 0 4
CU 3 04 7 C h i p C , C M 10 5W 5R 10 3K
C 7 05
CS00 60 C h i p C , T M C 1 E4 74 TR
P a r t N a m e a n d N u m b e r
Transi st or , 2SC2 412 K T9 6R
Co nn ector, D F 9 A -9 P- 1V ( 2 2 )
C h i p C , C M 1 0 5C H2 21 K
C h i p C , C M 10 5Y 5V 10 4Z
R e f .
N o .
C 7 0 7
C 7 0 8
C 7 09
C71 0
C7 1 1
R 7 0 1 RK3 0 74
R702
R 7 03 RK30 36
R 7 04
R70 5
R70 6
R70 7
R 7 08
R 7 09
R 7 10
P a r t C o d e
C S 00 60
C U 30 47
CU 30 59
CU 30 59
C U 30 59
CS 00 60
RK3 0 64
RK3 02 2
RK3 06 7
RK3 05 9
RK 30 74
RK 30 73
RK 30 38
RK 30 70
P a r t N a m e a n d N u m b e r
C h i p C , TM C I E 4 7 4 T R
C h i p C , C M 10 5W 5R 10 3K
C h i p C , C M 10 5Y 5V 10 4Z
C h i p C , C M 10 5Y 5V 10 4Z
C h i p C , C M 10 5Y 5V 10 4Z
C h i p C , T M C 1 E 4 7 4 T R
C h i p R , M C R0 3E ZH J1 05
C h i p R , M C R 0 3 E Z H J 1 5 4
C h i p R , MC R 0 3 E Z H J 1 5 2
C h i p R , MC R 0 3 E Z H J 4 7 0
C h i p R , MC R 0 3 E Z H J 2 7 4
C h i p R , MC R 0 3 E Z H J 5 6 3
C h i p R , M C R0 3E ZH J1 05
C h i p R , M C R 0 3 E Z H J 8 2 4
C h i p R , M C R0 3E ZH J1 02
C h i p R , MC R 0 3 E Z H J 4 7 4
C70 7
- 3 9 -
Page 43
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x [
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C 7 1 1
I R 7 0 ^ I
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t S Z ö Z )
D 7 0 1
O
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8
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3 / ^ v
I C 7 0 8 l g
a © P I S
L J r o
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4 7 4
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Page 44
E D C - 3 4 ( Q U I C K C H AR G ER 1 2 0 V )
R e f .
P a r t C o d e
N o .
R 1 R e g is to r 0 . 2 W
R 2 R e g is to r 0 . 2 W
R 3
R 4
R 5 R e g is to r I W
R 6
R 7
R 8
R 9
R 1 0 R e g i s t o r 0 . 2 W 2 7 K Q
R1 1
R 1 2
R 1 3
R 1 4
R I 5
R 1 6 R e g i s t o r I W 6 8 0 Q
R 1 7
R 1 8
R 1 9
R 2 0
R 2 1
R 2 2
R 2 3
R 2 4
R 2 5
R 2 6
R 2 7
R 2 8
R 2 9
R 3 0
R 3 1
R 3 2
R 3 3
R 3 4
R 3 5
R 3 6
R 3 7
R 3 8
R 3 9
R 4 0
R 4 1
R 4 2
R 4 3
R 4 4
R 4 5
R 4 6
R 4 7
R 4 8
R 4 9
R 5 0
P a r t N a m e a n d N u m b e r
4 . 7 K Q
1 . 5 K Q
R e g is to r 0 . 2 W
R e g is to r 0 . 2 W 6 . 8 K D
R e g is to r I W
R e g i s t o r
R e g i s t o r 0 . 2 W
R e g i s t o r 0 . 2 W
R e g i s t o r 0 .2 W
R e g i s t o r 0 .2 W
R e g is to r 0 . 2 W
R e g i s t o r 0 . 2 W 2 2 0 Q
R e g i s t o r 0 . 2 W
R e g i s t o r 0 . 2 W 1 2 Q
R e g i s t o r 0 . 2 W
R e g i s t o r 1 W
R e g i s t o r 0 . 2 W
R e g i s t o r 0 . 5 W 2 . 7 K O
R e g i s t o r 0 . 5 W
R e g i s t o r 0 . 2 W
R e g i s t o r 0 . 2 W
R e g i s t o r 0 . 2 W
R e g i s t o r 0 . 2 W 3 3 K Q
R e g i s t o r 0 . 2 W 3 9 K Q
R e g i s t o r 0 . 2 W
R e g i s t o r 0 . 2 W 2 2 K Q
R e g i s t o r
R e g i s t o r 0 . 2 W
R e g is to r 0 .2 W 1 0 K Q
R e g is to r 0 .2 W 1 0 K Q
R e g is to r 0 .2 W 2 . 7 K Q
R e g is to r
R e g is to r 0 . 2 W 3 . 3 K Q
R e g is to r 0 . 2 W 3 . 3 K Q
R e g is to r
R e g i s t o r 0.2 W
R e g is to r 0 . 2 W
R e g i s t o r 0.2 W 1 0 K Q
R e g is to r 0.2 W 1 0 K Q
R e g is to r 0 . 2 W
R e g is to r 0 . 2 W
R e g is to r 0 . 2 W
R e g is to r 0 . 2 W
R e g is to r 0 . 2 W 3 . 3 K Q
R e g is to r 0 . 2 W 3 . 3 K Q
R e g is to r 0 . 2 W
1 0 K Q
0 . 1 Q
1 . 2 K Q
0 . 2 W 6 8 0 Q
1 0 0 Q
1 . 5 K Q
3 . 3 K Q
2 2 0 Q
1 0 0 D
1 3 0 0
1 2 Q
0 . 2 2 Q
1 0 K Q
2 . 7 K Q
1 0 K Q
1 0 K Q
3 3 K Q
4 7 K Q
0 . 2 W 1 0 K Q
3 . 3 K Q
5 . 6 K Q
0 . 2 W
1 M Q
0 . 2 W
1 . 5 K Q
4 7 K Q
2 . 7 K Q
5 . 6 K Q
2 . 7 K Q
5 . 6 K Q
3 . 3 K Q
R e f .
P a r t C o d e P a r t N a m e a n d N u m b e r
N o .
R 5 1
R 5 2
C 1
C 2
C 3
C4
C 5
C 6
C 7 Ceramic C o n d e n c e r , 5 0V 1 0 1 p F
C8 Ele ct ri c C o n d e n c e r , 1 6 V 100u F
C 9
C 1 0
C 1 2
C 1 3
D 1
D 2
D 3
D 4
D 5
D 6
D 7
D 8
D 9
D 1 0
D 1 1
D 1 2
D 1 3
D 1 4
D 1 5
D 1 6
D 1 7
D 1 8
D 1 9
Z 1
Q 1
Q 2
Q 3
Q 4
0 5
Q 6
Q 7
Q 8
Q 9
Q 1 0
0 1 1
R e g i s t o r , 0 . 2W 3 . 3 K Q
R e g i s t o r , 0 . 2W 1 0 K Q
Cer am ic C o n d e n c e r , 5 0 V 1 u F
E lec tr ic C o n d e n c e r , 3 5 V 4 7 0 u F
F il m C o n d e n c e r , 5 0 V 8 2 1 u F
Cer am ic C o n d e n c e r , 5 0 V 1 0 1 p F
Elec tr ic C o n d e n c e r, 35 V2 20 uF
Ceram ic C o n d e n c e r , 5 0V 1 0 4 p F
E le ctr ic Co nd e nc er ,3 5V 2 2 0 u F
C er am ic C o n d e n c e r , 5 0V 1 t a F
Cera mi c C o n d e n c e r , 5 0V 4 7 0 p F
Cera mi c C o n d e n c e r , 5 0V 4 7 0 p F
D i o d e , 40V 2 . 5 A
D i o d e , 40V 2 . 5 A
D i o d e , 40V 1 0 0 m A
D i o d e , 40V 1 0 0 m A
D i o d e , 4 0V 2 . 5 A
D i o d e , 40V.10 0mA
D i o d e , 4 0V 1 0 0 m A
D i o d e , 40V 1 0 0 m A
D i o d e , 40V 1 0 0 m A
D i o d e , 1 0 0 V 2 A
D i o d e , 40V 1 0 0 m A
D i o d e , 40V 1 0 0 m A
D i o d e , 4 0V 1 0 0 m A
D iod e, 40V 1 0 0 m A
D i o d e , 4 0V 1 0 0 m A
D i o d e , 1 0 0 V 2 A
D i o d e , 4 0V 1 0 0 m A
D i o d e , 40V 2 A
D i o d e , 40V 1 0 0 m A
Z e n n e r D i o d e , 400mW 9 V
T r a n s i s t o r , P NP 4 0V 1 0 0 m A
T r a n s i s t o r , P NP 4 0V 1 0 0 m A
T r a n s i s t o r , N PN 4 0V 1 0 0 m A
T r a n s i s t o r , N PN 8 0V 3 A
T r a n s i s t o r , P NP 4 0V 1 0 0 m A
T r a n s i s t o r , P NP 4 0V 1 0 0 m A
T r a n s i s t o r , P NP 6 0V 5 A
T ra nsistor,NPN 4 0V 1 0 0 m A
T r a n s i s t o r , N PN 4 0V 1 0 0 m A
T r a n s i s t o r , N PN 40V 1 0 0 m A
T r a n s i s t o r , P NP 4 0V 1 0 0 m A
R e « .
P a r i C o d e P a r t N a m e a n d N u m b e r
N o .
Q 1 2
Q l 3
Q l 4
Q 15
Q l 6
I C 1
I C 2
I C 3
I C 4
I C 5
I C 6
X 1
L I
L 2
L 3
L E D 1
L E D 2
C N 1
C N 2 J a c k
C N 3
C N4
C N 5
C N 6
F 1
J P t
J P 2
J P 3
J P 4
J P 5
J P 6
J P 7
J P 8
J P 9
J P 1 0
J P 1 1
J P1 2
J P 1 3
J P1 4
J P1 5
J P1 6
J P1 7
T r a n s i s t o r , N PN 4 0V 1 0 0 m A
T r a n s i s t o r , PNP 4 0V 1 0 0 m A
T r a n s i s t o r , N PN 4 0V 1 0 0 m A
T r a n s i s t o r , PNP 40 V 1 0 0 m A
T r a n s i s t o r , PNP 40 V 1 0 0 m A
R e g u l a t o r ,
R e g u l a t o r ,
R e g u l a t o r ,
R e g u l a t o r ,
I C
C P U
O s c i l l a t e r , 2. 0 M H z
C o i l , 2 A 1 8 0 u H
C o i l , 1 A 2 0 0 w H
Ferr it e Beads
L E D
L E D
L E D , S p a c e r
J a c k
Te r mi na l
Te r mi na l
T e r mi na l
T e r mi na l
F u s e , 3 . 1 5 A 1 25 V U L CS A
C a b l e , 0 0 . 6 X 1 0 m m
C a b l e , O 0 . 6 X 1 0 m m
C a b l e , O 0 . 6 X I 5 m m
C a b l e , 0 0 . 6 X 7 . 5 m n
C a b l e , 0 0 . 6 X 5 m m
C a b l e , O 0 . 6 X 1 2 . 5 m m
C a b l e , ® 0 . 6 X I 0 m m
C a b l e , 0 0 . 6 X 1 0 m m
C a b l e , 0 0 . 6 X 5 m m
C a b l e , O 0 . 6 X 5 m m
C a b l e , 0 0 . 6 X 5 m m
C a b l e , 0 0 . 6 X 1 0 m m
C a b l e , O 0 . 6 X 1 2 . 5 m m
C a b l e , O 0 . 6 X I 0 m m
C a b l e , 0 0 . 6 X 7 . 5 m m
C a b l e , O 0 . 6 X 5 m m
C a b l e , AWG24 X 2 0 m m
41
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E D C - 3 5 ( Q U I C K C H AR G ER 2 2 0 V )
R e « .
P a r t C o d e
N o .
R 1
P a r t N a m e a n d N u m b e r
R e g is to r 0 . 2 W
4 . 7 K Q
R 2 R e g is to r 0 . 2 W 1 . 5 K Q
R 3
R 4
R 5
R 6
R 7
R 8
R 9
R 1 0
R 1 1
R 1 2
R 1 3
R 1 4
R 1 5
R 1 6
R 1 7
R 1 8
R 1 9
R 2 0
R 2 1
R 2 2
R 2 3
R 2 4
R 2 5
R 2 6
R 2 7
R 2 8
R 2 9
R 3 0
R 3 1
R 3 2
R 3 3
R 3 4
R 3 5
R 3 6
R 3 7
R 3 8
R 3 9
R 4 0
R 4 1
R 4 2
R 4 3
R 44
R 4 5
R 4 6
R 4 7
R 4 8
R 4 9
R 5 0
R e g is to r 0.2 W 1 0 K Q
R e g is to r 0 . 2 W 6 . 8 K Q
R e g is to r 1 W 0 . 1 Q
R e g is to r 1 W 1 . 2 K Q
R e g is to r 0 . 2W
6 80 Q
R e g is to r 0.2W 1 0 0 Q
R e g is to r 0 . 2 W
1 . 5 K Q
R e g is to r 0 . 2 W 2 7 K Q
R e g is to r
0 . 2 W 3 . 3 K Q
R e g is to r 0.2W 2 2 0 Q
R e g is to r 0 . 2 W 1 0 0 Q
R e g is to r 0 . 2W 2 2 0 Q
R e g is to r
0.2W 1 3 0 Q
R e g is to r 1 W 6 8 0 Q
R e g is to r 0 .2 W 1 2 Q
R e g is to r 0.2 W 1 2 Q
R e g i s t o r 1 W 0 . 2 2 Q
R e g i s t o r
0 . 2 W
1 0 K Q
R e g is to r 0. 5W 2 . 7 K Q
R e g is to r 0 . 5 W 2 . 7 K Q
R e g is to r
R e g is to r
0 . 2 W
0 . 2 W
1 0 K Q
1 0 K Q
R e g is to r 0 . 2 W 3 3 K Q
R e g is to r 0. 2W 3 3 K Q
R e g is to r 0 . 2 W 3 9 K Q
R e g is to r 0 . 2 W 4 7 K Q
R e g is to r
0 . 2 W 2 2 K Q
R e g is to r 0 . 2 W 1 0 K Q
R e g is to r 0 . 2 W 3 . 3 K Q
R e g is to r 0.2W 1 0 K Q
R e g is to r 0.2W 1 0 K Q
R e g is to r 0.2W 2 . 7 K Q
R e g i s t o r 0 . 2 W 5 . 6 K Q
R e g i s t o r 0.2W 3 . 3 K Q
R e g i s t o r
R e g is to r 0 . 2 W
R e g is to r 0 . 2 W
R e g is to r 0 . 2 W
0 . 2 W 3 . 3 K Q
1 M Q
1 . 5 K Q
4 7 K Q
R e g is to r 0 . 2 W 1 0 K Q
R e g is to r 0 . 2 W 1 0 K Q
R e g is to r 0 . 2 W 2 . 7 K Q
R e g is to r
R e g is to r
0 .2W 5 . 6 K Q
0 . 2 W 2 . 7 K Q
R e g is to r 0.2 W 5 . 6 K Q
R e g is to r 0 . 2 W 3.3 K Q
Reg is to r 0.2 W 3 . 3 K Q
R e g is to r 0.2 W 3 . 3 K Q
R 5 1
R 5 2
C l
R e « .
N o .
P a r t C o d e
P a r t N a m e a n d N u m b e r
R e g i s t o r , 0 . 2W 3 . 3 K Q
R e g i s t o r , 0 . 2W 1 0 K Q
Cer am ic C o n d e n c e r , 5 0V 1 u F
C 2 Elect ric C o n d e n c e r , 3 5 V 4 7 0 | j F
C 3
C4
C 5
F ilm C o n d e n c e r , 5 0V 8 2 1 u F
Cer am ic C o n d e n c e r , 5 0V 1 0 1 p F
Elec tr ic Cond enc er .3 5V2 20y F
C 6 Ceram ic C o n d e n c e r . 5 0V 1 0 4 p F
C 7 Ceram ic C o n d e n c e r , 5 0V 1 0 1 p F
C8 E le ctr ic C o n d e n c e r , 1 6V 1 0 0 u F
C 9 E lec tr ic C o n d e n c e r , 3 5 V 2 2 0 u F
C 10 Ceram ic C o n d e n c e r , 5 0 V 1 u F
C 1 2
Cera mi c C o n d e n c e r , 5 0V 4 7 0 p F
C 1 3 Ceram ic C o n d e n c e r , 5 0V 4 7 0 p F
D 1 D i o d e , 40V 2 . 5 A
D 2
D 3
D 4
D 5
D 6
D 7
D 8
D 9
D 1 0
D 1 1
D 1 2
D 1 3
D 14
D 1 5
D 1 6
D 1 7
D 1 8
D 1 9
Z 1
Q 1 Tr an sistor,PNP 4 0V 1 0 0 m A
Q 2
0 3
04
0 5
0 6
0 7
0 8
0 9
0 1 0
0 1 1
D i o d e , 40V 2 . 5 A
D i o d e , 40V 1 0 0m A
D i o d e , 40V 1 0 0 m A
D i o d e , 40V 2 . 5 A
D i o d e . 40V 1 0 0 m A
D i o d e . 40V 1 0 0 m A
D i o d e . 40V 1 0 0 m A
D i o d e , 40V 1 0 0m A
D i o d e , 1 0 0 V 2 A
D i o d e , 40V 1 0 0 m A
D i o d e , 40V 1 0 0m A
D i o d e , 40V 1 0 0 m A
D i o d e . 4 0V 1 0 0m A
D i o d e . 4 0V 1 0 0 m A
D io de, 100 V 2 A
D i o d e , 40V 1 0 0 m A
D i o d e , 40V 2 A
D i o d e , 40V 1 0 0 m A
Z en ne r D i o d e , 400mW 9V
Tr an sistor,PNP 4 0V 1 0 0 m A
Transis to r,N PN 4 0V 1 0 0 m A
T r a n s i s t o r , N PN 8 0V 3 A
T r a n s i s t o r , PNP 4 0V 1 0 0 m A
Transistor,PNP 4 0V 1 0 0 m A
T r a n s i s t o r , PNP 6 0V 5 A
T r a n s i s t o r , N PN 4 0V 1 0 0 m A
T r a n s i s t o r , N PN 4 0V 1 0 0 m A
T r a n s i s t o r , N PN 4 0V 1 0 0 m A
T ra nsistor.PNP 40V 1 0 0 m A
R e « .
P a r t C o d e P a r t N a m e a n d N u m b e r
N o .
Q1 2
Q1 3
0 14
Q1 5
Q1 6
I C I
Transistor,NPN 4 0V 1 0 0 m A
Transistor.PNP 40V 1 0 0 m A
Tra nsistor,NPN 4 0V 1 0 0 m A
T r a n s i s t o r , PNP 4 0V 1 0 0 m A
Transistor,PNP 4 0V 1 0 0 m A
R e g u l a t o r ,
I C 2 R e g u l a t o r ,
I C 3
I C 4
I C 5
I C 6
X I
L I
L 2
L 3
L E D 1
L E D 2
R e g u l a t o r ,
R e g u l a t o r ,
I C
C P U
O s c i l l a t e r , 2 . 0 M H z
C o i l , 2 A 1 8 0 u H
C o i l , 1 A 2 00 y H
Ferrite Bead s
L E D
L E D
L E D , S p a c e r
C N 1
C N 2
CN 3
CN 4
C N 5
C N 6
F l
J P 1
J P 2
J P 3
J P4
J P 5
J P 6
J P 7
J P 8
J P 9
JP 1 0
J P 1 1
J P 1 2
J P 1 3
JP14
JP 15
JP 1 6
J P1 7
J a c k
J a c k
T e r mi na l
Ter mi na l
Ter mi na l
Ter mi na l
F u s e , 3 . 1 5 A 1 25 V U L CS A
C a b l e , O 0 . 6 X 1 0 m m
C a b l e , ( D O . 6 X 1 0 m m
C a b l e , ® 0 . 6 X 1 5 m m
C a b l e , ® 0 . 6 X 7 . 5 m m
C a b l e , ® 0 . 6 X 5 i m
C a b l e , ® 0 . 6 X 1 2 . 5 m m
C a b l e , ® 0 . 6 X I 0 m m
C a b l e , ® 0 . 6 X 1 0 m m
C a b l e , ® 0 . 6 X 5 m m
C a b l e , ® 0 . 6 X 5 m m
C a b l e , ® 0 . 6 X 5 mm
C a b l e , ® 0 . 6 X 1 0 m m
C a b l e , ® 0 . 6 X 1 2 . 5 m m
C a b l e , ® 0 . 6 X I 0 m m
C a b l e , ® 0 . 6 X 7 . 5 m n
C a b l e , ® 0 . 6 X 5 m m
C a b l e . AWG 24 X 2 0 m m
4 2
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A N T
■ B L O C K D IA GR A M
I