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Yamaha MODX6 Service Manual page 114

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A
B
C
■ DM 001 CIRCUIT DIAGRM (MODX6/MODX7)
1
2
VOLTAGE DETECTOR
I C 5 0 8
R 3 1 1 6 N 2 7 1 C - T R - F
3
5
1
C D
O U T
2
0 . 1 / 1 0 ( B J )
V D D
C 5 7 6
4
3
N C
N C
G N D
0 . 0 4 7 / 1 0 ( B J )
D G N D
4
P I O _ 3 . 3 V
5
D G N D
+ 3 . 3 D
+ 5 D
F I 0 1 3
N F M 2 1 P C 1 0 5 B 1 A 3 D
1
3
2
D G N D
6
R 3 1 1 2 N 2 9 1 A - T R - F
I C 0 0 3
5
1
VOLTAGE
C D
O U T
2
V D D
DETECTOR
C 0 0 2
4
3
C 0 0 6
N C
N C
V S S
4700P/25(B)
0 . 1 / 1 0 ( B J )
C 0 0 7
1 0 / 1 0
R E S
C 0 0 3
R 3 1 1 2 N 4 2 1 A - T R - F
1 0 / 1 0
I C 0 0 2
C 0 0 9
VOLTAGE
5
1
7
2 . 2 / 6 . 3
C D
O U T
C 0 1 1
2
DETECTOR
2 . 2 / 6 . 3
V D D
C 0 0 1
C 0 0 4
C 0 0 5
4
3
N C
N C
G N D
0 . 1 / 1 0 ( B J )
1 0 / 1 0
4700P/25(B)
C 0 1 2
2 . 2 / 6 . 3
D G N D
8
DC-DC CONVERTER
+ 1 2 V
K D S 4 1 4 8 U - R T K / P
C 1 4 9
2 2 0 0 P
D 0 1 0
n o _ u s e
9
R 0 8 7
R 0 8 8
0
8 . 2 K
D G N D
C 1 5 4
R 0 9 0
8
7
6
5
9
BD9329AEFJ
0
G
2 2 0 0 P ( B )
1
2
3
4
n o _ u s e
n o _ u s e
L 0 1 5
C 1 5 1
C 1 5 2
0
0 . 1 / 2 5
1 0 U H
10
R 0 8 4
C 1 5 0
C 1 5 3
Z 2 3
J C 3 . 0
G N D
D G N D
B 4 B - P H - S M 4 - T B ( L
C B 2 0 5
6
B L M 1 8 P G 1 2 1 S N 1 D
L 2 1 0
11
1
+ 1 2 V
to JK-CB102
2
(Page 12: B-3)
3
4
G N D
5
D G N D
12
28CC1-2001184581-1
1
D
E
F
G
0 0 2 : J 1 0
LAN-CTRL_RES
INVERTER
0 0 2 : D 1 0 ; 0 0 2 : E 7 ; 0 0 2 : F 6 ; 0 0 2 : J 1 1
B U F F _ O E
I C 5 0 1
R 5 0 5
3
A
Y 4
C P L D _ R E S 0 0 2 : I 6
6 8
S N 7 4 L V 1 4 A P W R
I C 5 0 1
R 5 0 6
5
A
Y 6
P R O M _ R E S 0 0 4 : G 3 ; 0 0 4 : M 5
6 8
S N 7 4 L V 1 4 A P W R
I C 5 0 1
R 5 0 7
9
A
Y 8
0 0 4 : N 1 0 ; 0 0 5 : M 1 0 ; 0 0 7 : L 6
S W P _ R E S
6 8
S N 7 4 L V 1 4 A P W R
+ 3 . 3 D
I C 5 0 1
0 . 1 / 1 0 ( B J )
A
Y
1 0
C 5 0 3
N C
1 1
S N 7 4 L V 1 4 A P W R
S N 7 4 L V 1 4 A P W R
NFE31PT222Z1E9L
I C 5 0 1
I C 5 0 1
V +
V -
A
Y
A
Y
1 2
1 4
7
N C
D G N D
1
2
1 3
S N 7 4 L V 1 4 A P W R
I C 5 0 1
I C 5 0 1
NFE31PT222Z1E9L
NFE31PT222Z1E9L
NFE31PT222Z1E9L
POWER MANAGEMENT UNIT
NFE31PT222Z1E9L
V M M C
V D D A _ 3 . 3 V _ U S B
NFE31PT222Z1E9L
V D I G 2
V D D A _ 1 . 8 V _ U S B
+ 3 . 3 D
P I O _ 3 . 3 V
1 0 K
Q 0 0 2
R 0 1 5
R Z R 0 4 0 P 0 1
R 0 1 4
1 0 K
Q 0 0 1
D T C 1 4 4 E K A
C 1 3 6
0 . 0 1 / 1 6 ( B )
NFE31PT222Z1E9L
P M I C _ I N T 0 0 3 : I 1 2
0 0 1 : O 5 ; 0 0 3 : I 8
PMIC_PONRST
T P 0 0 1
T P 0 0 2
T P 0 0 3
S L E E P
1 0 / 1 0
V A U X 2
V C C 4
C 0 2 6
NFE31PT222Z1E9L
1
3 6
P W R H O L D
V C C 1
C 0 2 4
2
3 5
V M M C
S W 1
3
3 4
2 . 2 U H
1 0 / 1 0
V C C 3
G N D 1
L 0 0 3
1 0 K
4
3 3
V A U X 3 3
P W R O N
R 0 1 6
5
3 2
V D I G 2
V F B 1
0
R 0 1 7
6
3 1
V C C 6
S W 3 N C
0
R 0 1 8
7
I C 0 0 5
3 0
D G N D
V D I G 1
V F B 3
T P S 6 5 9 1 0 A 3 A 1 R S L
C 0 2 5
8
2 9
S D A
V R T C
2 . 2 / 6 . 3
NFE31PT222Z1E9L
9
2 8
C 0 2 7
S C L
V C C 7
1 0 / 1 0
1 0
2 7
R 0 1 9
S D A S R / E N 2
V B A C K U P
0
+ 3 . 3 D
1 1 S C L S R / E N 1
2 6
B O O T 0
1 2
2 5
V D D I O
T E S T V N C
V P L L
V C C I O
NFE31PT222Z1E9L
D G N D
V D D S _ D D R
V D D A _ A D C
DC-DC CONVERTER
+ 5 D
+ 5 D
K D S 4 1 4 8 U - R T K / P
n o _ u s e
D 0 0 9
n o _ u s e
+ 3 . 3 D
1 . 5 U H
L 0 1 4
1
1 2
P V I N
S W
+ 3 . 3 D
D G N D
2
1 1
P V I N
S W
BD9A300MUV
3
1 0
P G N D
I C 0 0 9
S W
4
9
P G N D
S S
D G N D
NFE31PT222Z1E9L
7 5 K
0
R 0 8 2
R 0 8 3
D G N D
H
I
J
K
MICROPROCESSOR (MPU)
R E S I S T O R
I C 0 0 1
A M 3 3 5 2 B Z C Z 8 0
BUFFER
R E M A R K S
P A R T S
R 0 2 5
C 1 7
A 1
N O M A R K
C A R B O N
F I L M R E S I S T O R
I 2 C 0 _ S D A
V S S
0
C 1 6
A 1 8
0
C A R B O N
F I L M R E S I S T O R
I 2 C 0 _ S C L
V S S
R 0 2 6
I C 0 0 6
F 8
M E T A L
O X I D E F I L M R E S I S T O R
V S S
7 4 L V C 1 G 1 2 5 G W
R 0 2 4
B 5
G 8
M E T A L
F I L M
R T C _ P O R Z
V S S
0
G 9
V D I G 2
M E T A L
P L A T E R E S I S T O R
V S S
0 . 1 / 1 0 ( B J )
C 6
G 1 1
F I R E
P R O O F C A R B O N
T P 0 0 4
P M I C _ P O W E R _ E N
V S S
C 0 2 8
G 1 2
C E M E N T
M O L D E D R E S I S T O R
V S S
R 0 2 7
C 5
H 6
V +
V -
S E M I
V A R I A B L E
E X T _ W A K E U P
V S S
5
3
1 0 K
H 7
I C 0 0 6
I C 0 0 6
D G N D
C H I P R E S I S T O R
V S S
H 8
V S S
R 0 2 8
B 4
H 9
E N Z _ K A L D O _ 1 P 8 V
V S S
MICROPROCESSOR (MPU)
1 0 K
H 1 0
V S S
H 1 2
D G N D
V S S
1 / 8
M 5
J 6
I C 0 0 1
T P 0 0 5
V P P
V S S
A M 3 3 5 2 B Z C Z 8 0
F I 0 0 4
1
3
0 . 1 / 1 0 ( B J )
P 7
J 7
V D D S H V 1
V S S
C 0 2 9
C 0 4 0
P 8
J 8
A I N 7
2
1 0 / 1 0
V D D S H V 1
V S S
3 / 8
F I 0 0 2
1
3
0 . 1 / 1 0 ( B J )
P 1 0
J 9
A I N 6
V D D S H V 2
V S S
C 0 3 7
C 0 4 1
P 1 1
J 1 0
A I N 5
2
1 0 / 1 0
V D D S H V 2
V S S
F I 0 0 5
1
3
0 . 1 / 1 0 ( B J )
P 1 2
J 1 1
A I N 4
V D D S H V 3
V S S
C 0 3 0
C 0 4 2
P 1 3
K 7
A I N 3
2
1 0 / 1 0
V D D S H V 3
V S S
F I 0 0 1
1
3
0 . 1 / 1 0 ( B J )
H 1 4
K 9
A I N 2
V D D S H V 4
V S S
C 0 3 8
C 0 4 3
J 1 4
K 1 0
A I N 1
2
1 0 / 1 0
V D D S H V 4
V S S
F I 0 0 6
1
3
0 . 1 / 1 0 ( B J )
K 1 4
K 1 1
A I N 0
V D D S H V 5
V S S
C 0 3 1
C 0 4 4
L 1 4
L 1 0
2
1 0 / 1 0
V D D S H V 5
V S S
F I 0 0 3
1
3
0 . 1 / 1 0 ( B J )
E 1 0
L 1 1
V R E F N
V D D S H V 6
V S S
C 0 3 9
C 0 4 5
E 1 1
L 1 2
V R E F P
2
1 0 / 1 0
V D D S H V 6
V S S
0 . 1 / 1 0 ( B J )
E 1 2
L 1 3
V D D S H V 6
V S S
C 0 4 6
V D D A _ A D C
E 1 3
M 6
V D D S H V 6
V S S
V S S A _ A D C
0 . 1 / 1 0 ( B J )
F 1 4
M 7
V D D S H V 6
V S S
C 0 4 7
G 1 4
M 8
V D D S H V 6
V S S
0 . 1 / 1 0 ( B J )
N 5
M 9
V D D S H V 6
V S S
C 0 4 8
P 5
M 1 0
V D D S H V 6
V S S
0 . 1 / 1 0 ( B J )
P 6
M 1 2
V D D S H V 6
V S S
C 0 4 9
N 7
V S S
N 1 0
V S S
F I 0 0 7
E 6
N 1 1
1
3
V D D S
V S S
C 0 3 2
C 0 5 0
E 1 4
V 1
2
1 0 / 1 0
V D D S
V S S
0 . 1 / 1 0 ( B J )
F 9
V 1 8
V D D S
V S S
C 0 5 1
K 1 3
V D D S
0 . 1 / 1 0 ( B J )
N 6
D G N D
V D D S
C 0 5 2
P 9
V D D S
0 . 1 / 1 0 ( B J )
P 1 4
V D D S
C 0 5 3
C 0 7 9
C 1 0
C A P _ V B B _ M P U
0 . 1 / 1 0 ( B J )
1 / 2 5
C 0 7 7
F I 0 0 8
1
3
E 5
D 6
V D D S _ D D R
C A P _ V D D _ R T C
C 0 3 3
C 0 5 4
F 5
1 / 2 5
2
1 0 / 1 0
V D D S _ D D R
C 0 8 0
0 . 1 / 1 0 ( B J )
G 5 V D D S _ D D R
D 9
C 0 5 5
C A P _ V D D _ S R A M _ C O R E
H 5
1 / 2 5
V D D S _ D D R
C 0 7 8
0 . 1 / 1 0 ( B J )
J 5 V D D S _ D D R
D 1 1
C 0 5 6
C A P _ V D D _ S R A M _ M P U
K 5
1 / 2 5
V D D S _ D D R
0 . 1 / 1 0 ( B J )
L 5
D G N D
C 0 5 7
V D D S _ D D R
A 3
T E S T _ O U T N C
0 . 1 / 1 0 ( B J )
F I 0 0 9
1
3
R 1 0
V D D S _ P L L _ C O R E _ L C D
C 0 3 4
2
1 0 / 1 0
C 0 5 8
E 7
0 . 1 / 1 0 ( B J )
V D D S _ P L L _ D D R
C 0 5 9
0 . 1 / 1 0 ( B J )
H 1 5
C 0 6 0
V D D S _ P L L _ M P U
0 . 1 / 1 0 ( B J )
C 0 6 1
E 9
MICROPROCESSOR (MPU)
V D D S _ S R A M _ C O R E _ B G
0 . 1 / 1 0 ( B J )
C 0 6 2
D 1 0
V D D S _ S R A M _ M P U _ B B
F I 0 1 0
1
3
0 . 1 / 1 0 ( B J )
F 6
V D D _ C O R E
C 0 3 5
C 0 6 3
F 7
2
1 0 / 1 0
V D D _ C O R E
0 . 1 / 1 0 ( B J )
G 6
V D D _ C O R E
C 0 6 4
G 7
V D D _ C O R E
0 . 1 / 1 0 ( B J )
G 1 0
V D D _ C O R E
C 0 6 5
H 1 1
V D D _ C O R E
0 . 1 / 1 0 ( B J )
J 1 2
V D D _ C O R E
C 0 6 6
K 6
V D D _ C O R E
0 . 1 / 1 0 ( B J )
K 8
V D D _ C O R E
C 0 6 7
K 1 2
V D D _ C O R E
0 . 1 / 1 0 ( B J )
L 6
V D D _ C O R E
C 0 6 8
L 7
V D D _ C O R E
0 . 1 / 1 0 ( B J )
L 8
V D D _ C O R E
C 0 6 9
L 9
V D D _ C O R E
0 . 1 / 1 0 ( B J )
M 1 1
V D D _ C O R E
C 0 7 0
M 1 3
V D D _ C O R E
0 . 1 / 1 0 ( B J )
N 8
V D D _ C O R E
C 0 7 1
N 9
V D D _ C O R E
0 . 1 / 1 0 ( B J )
N 1 2
V D D _ C O R E
C 0 7 2
N 1 3
V D D _ C O R E
0 . 1 / 1 0 ( B J )
F I 0 1 1
F 1 0
1
3
V D D _ M P U
C 0 3 6
C 0 7 3
F 1 1
2
1 0 / 1 0
V D D _ M P U
0 . 1 / 1 0 ( B J )
F 1 2
V D D _ M P U
C 0 7 4
F 1 3
V D D _ M P U
0 . 1 / 1 0 ( B J )
G 1 3
V D D _ M P U
C 0 7 5
H 1 3
V D D _ M P U
0 . 1 / 1 0 ( B J )
J 1 3
V D D _ M P U
C 0 7 6
0 . 1 / 1 0 ( B J )
A 2
V D D _ M P U _ M O N
D G N D
5
L
M
N
O
C A P A C I T O R
N A M E
R E M A R K S
P A R T S
N A M E
( P = 5 )
N O
M A R K
E L E C T R O L Y T I C
C A P A C I T O R
( P = 1 0 )
S O L I D E L E C T R O L Y T I C
C A P A C I T O R
N O
M A R K
C E R A M I C
C A P A C I T O R
R E S I S T O R
C E R A M I C
T U B U L A R
C A P A C I T O R
P O L Y E S T E R F I L M
C A P A C I T O R
F I L M R E S I S T O R
P O L Y S T Y R E N E
F I L M
C A P A C I T O R
M I C A
C A P A C I T O R
R E S I S T O R
P
P O L Y P R O P Y L E N E
F I L M
C A P A C I T O R
S E M I C O N D U C T I V E C E R A M I C C A P A C I T O R
n o _ u s e : not installed
C 9
2 . 2 K
V D D A _ A D C
A 8
R 0 6 5
2 . 2 K
B 8
K D S 4 1 4 8 U - R T K / P
R 0 6 6
C 8
5 2 8 0 8 - 0 7 7 1
B L M 1 5 H D 1 8 2 S N 1 D
C B 1 0 1
2 . 2 K
R 0 7 8 0
L 0 1 3
A 7
R 0 6 7
1
D G N D
R 0 7 7 0
L 0 1 1
B 7
2
R 0 7 6 0
L 0 1 0
C 7
3
to TPBZ-CB601
R 0 7 5 0
L 0 1 2
B 6
4
(Page 17: A-2)
0 . 1 / 1 0 ( B J )
1 0 / 1 0
5
C 0 8 3
C 0 8 7
A 9
K D S 4 1 4 8 U - R T K / P
6
+ 5 D
0
B 9
D G N D
D G N D
7
R 0 7 0
L 0 1 7
F I 0 1 2
3
1
B L M 1 8 P G 1 2 1 S N 1 D
D 8
N F E 3 1 P T 2 2 2 Z 1 E 9 L
E 8
L 0 1 6
2
B E E P - O N
C 0 8 1
C 0 8 2
0 0 2 : G 7
0 . 1 / 1 0 ( B J )
1 0 / 1 0
D G N D
B L M 1 5 H D 1 8 2 S N 1 D
0 0 1 : E 6 ; 0 0 3 : I 8
PMIC_PONRST
Scanning
U P D N
S H L R
direction
G N D
V C C
Up to down,left to right
V C C
G N D
Down to up,right to left
G N D
G N D
Up to down,right to left
V C C
V C C
Down to up,left to right
R 1 0 1 4
0
n o _ u s e
R 1 0 1 3
0
R 3 1 1 2 N 1 6 1 C - T R - F
R 3 1 1 2 N 1 6 1 C - T R - F
I C 0 0 7
I C 0 0 8
6 8
6 8
1
5
1
5
C D
C D
O U T
O U T
R 1 0 0 9
R 1 0 1 0
2
2
0 0 2 : F 1 1
BL-ON/OFFN
V D D
V D D
C 1 0 2 7
3
C 1 0 2 8
3
G N D
N
N C
C
G N D
N
N C
C
0 . 1 / 1 0 ( B J )
0 . 1 / 1 0 ( B J )
4
4
VOLTAGE
VOLTAGE
L D _ D [ 4 ]
D G N D
D G N D
L D _ D [ 3 ]
DETECTOR
DETECTOR
L D _ D [ 2 ]
L D _ D [ 1 ]
L D _ D [ 0 ]
L D _ D [ 1 0 ]
L D _ D [ 9 ]
L D _ D [ 8 ]
L D _ D [ 7 ]
D G N D
L D _ D [ 0 ]
I C 0 0 1
L D _ D [ 1 ]
L D _ D [ 6 ]
A M 3 3 5 2 B Z C Z 8 0
L D _ D [ 2 ]
L D _ D [ 5 ]
R 1
R 1 0 0 1
L D _ D [ 0 ]
L D _ D [ 3 ]
L C D _ D A T A 0 / S Y S B O O T 0
8 2 X 4
L D _ D [ 4 ]
R 2
L D _ D [ 1 ]
L C D _ D A T A 1 / S Y S B O O T 1
L D _ D [ 5 ]
R 3
L D _ D [ 2 ]
L D _ D [ 6 ]
L C D _ D A T A 2 / S Y S B O O T 2
L D _ D [ 7 ]
R 4
L D _ D [ 3 ]
L C D _ D A T A 3 / S Y S B O O T 3
L D _ D [ 8 ]
L D _ D [ 1 5 ]
T 1
R 1 0 0 2
L D _ D [ 4 ]
L D _ D [ 9 ]
L C D _ D A T A 4 / S Y S B O O T 4
8 2 X 4
L D _ D [ 1 0 ]
L D _ D [ 1 4 ]
T 2
L D _ D [ 5 ]
L C D _ D A T A 5 / S Y S B O O T 5
L D _ D [ 1 1 ]
L D _ D [ 1 3 ]
T 3
L D _ D [ 6 ]
L D _ D [ 1 2 ]
L C D _ D A T A 6 / S Y S B O O T 6
L D _ D [ 1 3 ]
L D _ D [ 1 2 ]
T 4
L D _ D [ 7 ]
L C D _ D A T A 7 / S Y S B O O T 7
L D _ D [ 1 4 ]
U 1
R 1 0 0 3
L D _ D [ 8 ]
L D _ D [ 1 5 ]
L C D _ D A T A 8 / S Y S B O O T 8
8 2 X 4
L D _ D [ 1 1 ]
U 2
L D _ D [ 9 ]
L C D _ D A T A 9 / S Y S B O O T 9
U 3
L D _ D [ 1 0 ]
L C D _ D A T A 1 0 / S Y S B O O T 1 0
U 4
L D _ D [ 1 1 ]
L C D _ D A T A 1 1 / S Y S B O O T 1 1
V 2
R 1 0 0 4
L D _ D [ 1 2 ]
L C D _ D A T A 1 2 / S Y S B O O T 1 2
8 2 X 4
V 3
L D _ D [ 1 3 ]
L C D _ D A T A 1 3 / S Y S B O O T 1 3
V 4
L D _ D [ 1 4 ]
L C D _ D A T A 1 4 / S Y S B O O T 1 4
D G N D
T 5
L D _ D [ 1 5 ]
L C D _ D A T A 1 5 / S Y S B O O T 1 5
L 1 0 0 1
B L M 1 8 P G 1 2 1 S N 1 D
V 5
R 0 2 9
2 / 8
L C D _ P C L K
1 0
C 1 0 1 7
C 1 0 2 1
3 3 P ( C H )
1 0 P ( C H )
P I O _ 3 . 3 V
n o _ u s e
R 6
R 0 3 0
B L M 1 8 P G 1 2 1 S N 1 D
L C D _ A C _ B I A S _ E N
1 0 0
C 1 0 1 8
1 0 P ( C H )
n o _ u s e
D G N D
n o _ u s e
U 5
R 0 3 1
G P I O 2 [ 2 2 ]
T P 0 0 7
R 5
R 0 3 2
6 8
D G N D
G P I O 2 [ 2 3 ]
T P 0 0 8
n o _ u s e
6 8
D G N D
■ DM 001 CIRCUIT DIAGRM (MODX6/MODX7)
P
Q
MODX6/MODX7
P I O _ 3 . 3 V
C 1 2 1
0 . 1 / 1 0 ( B J )
C 1 2 2
0 . 1 / 1 0 ( B J )
C 1 2 3
0 . 1 / 1 0 ( B J )
C 1 2 4
0 . 1 / 1 0 ( B J )
C 1 2 5
0 . 1 / 1 0 ( B J )
D G N D
C B 1 0 2
5 0 5 1 1 0 - 5 0 9 1
G
5 1
1 G N D
2 P W M
3 G N D
4 L E D _ E N
5 U P D N
6 S H L R
7 G N D
8 R E S E T
9 G N D
1 0 B 7
1 1 B 6
1 2 B 5
1 3 B 4
1 4 G N D
1 5 B 3
1 6 B 2
1 7 B 1
1 8 B 0
1 9 G N D
2 0 G 7
2 1 G 6
2 2 G 5
2 3 G 4
2 4 G N D
to LCD
2 5 G 3
2 6 G 2
2 7 G 1
2 8 G 0
2 9 G N D
3 0 R 7
3 1 R 6
3 2 R 5
3 3 R 4
3 4 G N D
3 5 R 3
3 6 R 2
3 7 R 1
3 8 R 0
3 9 G N D
4 0 D C L K
4 1 G N D
4 2 D E
4 3 G N D
4 4 G N D
n o _ u s e
4 5 G N D
L 1 0 0 2
4 6 V D D
4 7 V D D
R 8 8 3 2
0
4 8 V D D
4 9 V D D
5 0 V D D
5 2 G
0 . 1 / 1 0 ( B J )
0 . 1 / 1 0 ( B J )
D G N D
1
2
3
4
5
6
7
8
9
10
11
12

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