Clevo M740J Service Manual page 81

Table of Contents

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M82-XT-3
U 23 E
P a rt 5 of 6
1 . 8V S _ VG A
B 25
V S S _3 3
A A2 6
J8
P C I E _V S S _1
V S S _3 4
A A2 9
B 5
P C I E _V S S _2
V S S _3 5
A C 2 6
D 1 1
P C I E _V S S _3
V S S _3 6
A D 3 1
C 1 7
P C I E _V S S _4
V S S _3 7
A E2 9
C 2 2
P C I E _V S S _5
V S S _3 8
A E3 0
C 2 7
P C I E _V S S _6
V S S _3 9
A E3 1
D 2 9
*10 U _ 10 V _0 8
P C I E _V S S _7
V S S _4 0
F2 8
C 3
P C I E _V S S _8
V S S _4 1
G2 6
C 6
P C I E _V S S _9
V S S _4 2
G2 9
D 3
P C I E _V S S _1 0
V S S _4 3
G3 0
D 2 8
P C I E _V S S _1 1
V S S _4 4
G3 1
F 29
P C I E _V S S _1 2
V S S _4 5
H 2 9
D 4
P C I E _V S S _1 3
V S S _4 6
J2 5
F 11
P C I E _V S S _1 4
V S S _4 7
J2 6
P C I E _V S S _1 5
V S S _4 8
F 12
1U _ 16 V _0 6+ K
L2 6
F 14
P C I E _V S S _1 6
V S S _4 9
L2 9
F 16
P C I E _V S S _1 7
V S S _5 0
L3 0
F 18
P C I E _V S S _1 8
V S S _5 1
L3 1
F 20
P C I E _V S S _1 9
V S S _5 2
M2 6
F 21
P C I E _V S S _2 0
V S S _5 3
M2 9
F 23
P C I E _V S S _2 1
V S S _5 4
P2 6
F 25
1U _ 16 V _0 6+ K
P C I E _V S S _2 2
V S S _5 5
R 2 9
F 7
P C I E _V S S _2 3
V S S _5 6
R 3 0
F 9
P C I E _V S S _2 4
V S S _5 7
R 3 1
G3
P C I E _V S S _2 5
V S S _5 8
T2 6
G6
P C I E _V S S _2 6
V S S _5 9
U 2 9
H 2 3
3. 3 V_ D E LA Y
P C I E _V S S _2 7
V S S _6 0
V2 6
J3
P C I E _V S S _2 8
V S S _6 1
Y 2 6
J4
P C I E _V S S _2 9
V S S _6 2
Y 2 9
J6
P C I E _V S S _3 0
V S S _6 3
Y 3 0
K 1
P C I E _V S S _3 1
V S S _6 4
Y 3 1
L1 2
P C I E _V S S _3 2
V S S _6 5
L1 5
V S S _6 6
L1 8
V S S _6 7
L2 1
V S S _6 8
L6
10 U _1 0V _ 08 +K
V S S _6 9
A1 3
M1 1
V S S _1
V S S _7 0
A 2
M1 4
L 6 6
V S S _2
V S S _7 1
C 1 8
M1 7
A2 4
V S S _3
V S S _7 2
M2 0
A3 0
V S S _4
V S S _7 3
M6
V S S _5
V S S _7 4
A A 1
P 12
V S S _6
V S S _7 5
A A1 1
P 15
V S S _7
V S S _7 6
A A1 4
P 18
V S S _8
V S S _7 7
A A1 7
P 21
V S S _9
V S S _7 8
A A2 0
P 6
L 7 2
V S S _1 0
V S S _7 9
A A 6
A C 21
V S S _1 1
V S S _8 0
A C 2
R 1 4
V S S _1 2
V S S _8 1
A C 7
R 1 7
V S S _1 3
V S S _8 2
A E 3
R 2 0
V S S _1 5
V S S _8 3
AL 4
T6
V S S _1 6
V S S _8 4
A D 1 4
U 1
V S S _1 7
V S S _8 5
A F1 2
U 1 2
V S S _1 8
V S S _8 6
A F1 4
U 1 5
V S S _1 9
V S S _8 7
A D 1 6
U 1 8
V S S _2 0
V S S _8 8
A D 1 8
U 2 1
V S S _2 1
V S S _8 9
A E 6
A E 20
V S S _2 2
V S S _9 0
A G2
V 14
V S S _2 3
V S S _9 1
A E 9
V 17
V S S _2 4
V S S _9 2
A H 2 5
V 20
V S S _2 5
V S S _9 3
A K 1
P 2
V S S _2 6
V S S _9 4
A K3 1
V 6
V S S _2 7
V S S _9 5
AJ 6
W 2
V S S _2 8
V S S _9 6
AL 2
Y 1 2
V S S _2 9
V S S _9 7
A L3 0
Y 1 5
V S S _3 0
V S S _9 8
B 1
Y 1 8
V S S _3 1
V S S _9 9
C 1 3
Y 2 1
V S S _3 2
VS S _ 10 0
Y 6
VS S _ 10 1
M9
VS S _ 10 2
CORE GND
M82 XT -S +K
. 0 1U _ 16 V _X 7R _0 4+ K
FO R M8x
IN S TALL LVD D R A N D LV D D C TO +1.8V
W ITH TH E ON E L V D D C FI L TE R
D O NO T IN S TALL LVD D R FILTE R
400 mA
IN S TALL S TR AP R E S IS TOR
1. 8 V S_ V GA
L 62
LV D D R
H C B1 60 8K F -1 21 _0 6+ K
C 5 93
C 5 98
C 61 2
10 U _1 0V _ 08 +K
1 U _1 6V _ 06 +K
. 1 U _ 10 V_ 0 4+ K
R 3 58
0 _0 8+ K
( 1. 8V @ 4 00M A L V D D C , LV D D R )
LV D D C
C 59 2
C 5 97
C 61 1
10 U _1 0 V_ 08 +K
1 U _1 6V _ 06 +K
. 1 U _ 10 V _0 4+ K
40m A
1. 8 V S_ V GA
L 8
LP V D D
H C B1 00 5K F -1 21 T2 0_ 04 +K
( 1. 8V @ 40M A LP V D D )
C 4 6
C 5 5
C 71
*
52m A
LP V S S
10 U _1 0 V_ 08 +K
1 U _1 6V _ 06 +K
. 1U _ 10 V _0 4+ K
1. 8 V S_ V GA
L 5
D P LL _P V D D
H C B1 00 5K F -1 21 T2 0_ 04 +K
( 1 . 8 V @ 40M A D P LL _P VD D )
C 4 3
C 5 2
C 67
68m A
*
D P LL _P V S S
10 U _1 0 V_ 08 +K
1 U _1 6V _ 06 +K
. 1U _ 10 V _0 4+ K
1. 8 V S_ V GA
L 73
P C I E_ P V D D
H C B1 00 5K F -1 21 T2 0_ 04 +K
( 1. 8 V @ 40M A PC I E _P VD D )
C 6 52
C 6 43
C 64 8
. 1U _ 10 V _0 4+ K
100 mA
10 U _ 10 V_ 08 + K
1 U _1 6V _ 06 +K
L 6
3 . 3V S _V GA
A 2V D D
H C B1 00 5K F -1 21 T2 0_ 04 +K
( 3 . 3 V @ 135M A A 2V D D )
C 4 4
C 6 4
C 53
1U _ 1 6V _0 6 +K
48m A
10 U _ 10 V_ 08 + K
. 1 U _1 0V _ 04 +K
1. 8 V S_ V GA
L 7
A 2V D D Q
H C B1 00 5K F -1 21 T2 0_ 04 +K
( 1 . 8 V @ 2M A A 2V D D Q )
C 4 5
C 5 4
C 70
*
A 2V S S Q
10 U _ 10 V_ 0 8+ K
1 U _1 6 V_ 06 + K
. 1U _ 10 V _0 4+ K
U 23 D
P AR T 4 OF 6
1 0U _ 10 V _0 8+ K
A 15
A F 3 0
V D D R 1_ 1
P C I E _V D D R _1
A 22
A F 3 1
V D D R 1_ 2
P C I E _V D D R _2
C 20 0
C 2 22
C 17 9
C 1 45
A 28
A F 2 9
V D D R 1_ 3
P C I E _V D D R _3
A 4
A F 2 7
V D D R 1_ 4
P C I E _V D D R _4
A 8
A F 2 8
V D D R 1_ 5
P C I E _V D D R _5
B 8
A G2 9
V D D R 1_ 6
P C I E _V D D R _6
1 0U _1 0V _ 08 +K
10 U _ 10 V_ 0 8+ K
C 9
A G3 0
V D D R 1_ 7
P C I E _V D D R _7
D 1
A G3 1
V D D R 1_ 8
P C I E _V D D R _8
1U _1 6V _0 6 +K
H 1
V D D R 1_ 9
H 11
A A 2 3
V D D R 1_ 10
P C I E _V D D C _1
C 5 8
C 6 2
C 21 9
C 1 33
H 12
A C 2 4
V D D R 1_ 11
P C I E _V D D C _2
H 14
A C 2 5
V D D R 1_ 12
P C I E _V D D C _3
H 16
A E 2 6
V D D R 1_ 13
P C I E _V D D C _4
H 18
A E 2 7
V D D R 1_ 14
P C I E _V D D C _5
1 U _1 6V _ 06 +K
* 1U _ 16 V _0 6
H 20
V D D R 1_ 15
P C I E _V D D C _6
A E 2 8
H 21
L 23
V D D R 1_ 16
P C I E _V D D C _7
B 31
M2 3
V D D R 1_ 17
P C I E _V D D C _8
M1
P 2 3
V D D R 1_ 18
P C I E _V D D C _9
C 1 70
C 3 6
C 18 5
C 1 87
T 23
PC I E _ V D D C _ 10
A A 9
V 2 3
V D D _ C T _1
PC I E _ V D D C _ 11
*1 U _1 6V _ 06
Y 9
Y 2 3
V D D _ C T _2
PC I E _ V D D C _ 12
1 U _1 6V _ 06 +K
* 1U _ 16 V _0 6
V 9
V D D _ C T _3
T9
V D D _ C T _4
J 11
L 11
V D D _ C T _5
V D D C _1
J 20
L 14
V D D _ C T
V D D _ C T _6
V D D C _2
J 21
L 17
V D D _ C T _7
V D D C _3
L9
L 20
V D D _ C T _8
V D D C _4
M1 2
V D D C _5
M1 5
( 3 . 3 V @ 50M A V D D R 3 )
V D D C _6
AC 18
M1 8
V D D R 3_ 1
V D D C _7
AC 16
M2 1
V D D R 3_ 2
V D D C _8
C 23 5
C 2 13
C 22 6
C 9 9
AC 14
A C 2 0
V D D R 3_ 3
V D D C _9
AC 12
P 1 4
V D D R 3_ 4
V D D C _ 10
1U _1 6V _ 06 +K
P 1 7
V D D C _ 11
Z 1 40 2
A F 1
P
P 2 0
V D D R 4_ 1
V D D C _ 12
1 U _1 6V _ 06 +K
1 U _ 16 V _0 6+ K
A F 2
R 1 2
V D D R 4_ 2
O
V D D C _ 13
R 1 5
V D D C _ 14
H C B 1 00 5K F -12 1T 20 _0 4+ K
Z 1 40 3
A E 1
R 1 8
W
V D D R 5_ 1
V D D C _ 15
A E 2
R 2 1
C 6 16
C 6 0 0
C 60 9
V D D R 5_ 2
V D D C _ 16
A D 2 0
E
V D D C _ 17
U 1 4
V D D C _ 18
. 1 U _1 0 V_ 04 +K
1U _ 1 6V _0 6+ K
U 1 7
R
V D D C _ 19
M2
U 2 0
R S V D _ 1
V D D C _ 20
10 U _ 10 V_ 0 8+ K
M3
V 1 2
R S V D _ 2
V D D C _ 21
L4
V 1 5
R S V D _ 3
V D D C _ 22
H C B 1 00 5K F -12 1T 20 _0 4 +K
AD 11
V 1 8
R S V D _ 4
V D D C _ 23
V 2 1
V D D C _ 24
C 5 96
C 5 9 4
Y 1 1
V D D C _ 25
A 10
Y 1 4
VD D _ME M_ C L K0
V D D R H _1
V D D C _ 26
A 19
Y 1 7
VD D _ME M_ C L K1
V D D R H _2
V D D C _ 27
Y 2 0
V D D C _ 28
1U _ 1 6V _0 6+ K
1 U _ 16 V_ 0 6+ K
A A 1 2
V D D C _ 29
B 10
A A 1 5
V S S R H _ 1
V D D C _ 30
VS S _ ME MC LK _ 0
B 19
A A 1 8
V S S R H _ 2
V D D C _ 31
VS S _ ME MC LK _ 1
A A 2 1
1 . 8V S _V GA
V D D C _ 32
P 9
V D D C _ 33
V 11
B B N _ 1
U 11
J 12
B B N _ 2
V D D C I _1
V GA _C OR E
J 14
V D D C I _2
J 16
V D D C I _3
R 11
J 18
B B P _1
V D D C I _4
P 11
B B P _2
C 3 0
C 50
1U _1 6V _0 6 +K
1U _ 16 V _0 6+ K
M8 2X T-S + K
Q1 5
D
S
AO 34 09 +K
3. 3 V S _V GA
G
3. 3 VS _ V GA
R 11 6
10 0K _ 04 +K
Z1 40 4
R 12 0
7 5K _0 4+ K
Q 16
Z 14 05
G
2 N 7 00 2W + K
C 2 48
FOR M8x
INS TA LL DP A _VD D R TO +1.1V AN D
DP B _V D D R TO +1.1 V
WI T H S E P A R ATE FI L TE R S
DO N OT IN S TA L L S TR AP
200mA
RE SIS TO R
L6 4
1. 1 V S _V GA
D P A _ VD D R
H C B 10 05 K F -12 1T 20 _0 4+ K
C 6 0 2
C 61 4
C 6 19
200mA
1 0U _ 10 V _0 8+ K
1U _ 16 V _0 6+ K
. 1U _1 0V _0 4 +K
0_ 08 +K
R 35 9
L6 3
1. 1 V S _V GA
D P B _ VD D R
H C B 10 05 K F -12 1T 20 _0 4+ K
C 6 0 1
C 61 3
C 6 18
. 1 U _1 0V _ 04 +K
40mA
1 0U _1 0V _0 8 +K
1U _ 16 V _0 6+ K
1 . 8V S _V GA
L6 5
D P A _ PV D D
H C B 10 05 K F -12 1T 20 _0 4+ K
( 1.8V @ 20m A )
C 6 0 3
C 61 5
C 6 20
*
D P A _ PV S S
1 0U _1 0V _ 08 +K
1U _ 1 6V _0 6+ K
. 1 U _1 0V _ 04 +K
64mA
1 . 8V S _V GA
L1 3
V D D _ C T
H C B 10 05 K F -12 1T 20 _0 4+ K
( VD D _C T 1. 8V
C 1 3 1
C 12 5
C 1 08
@ 11 0M A
1 U _1 6 V_ 06 + K
( VD D _C T )
1 0U _1 0V _ 08 +K
. 1U _ 10 V _0 4+ K
472mA
1 . 8V S _V GA
C 1 9 5
C 16 1
C 1 64
( 1. 8V @ 40 0M A P C I E _VD D R )
104mA
* 10 U _1 0V _ 08
1U _ 16 V _0 6+ K
. 1 U _1 0V _ 04 +K
1 . 8V S _V GA
L6 9
V D D D I
H C B 10 05 K F -12 1T 20 _0 4+ K
( 1 . 8 V @ 100M A V D D 1D I , V D D 2 D I )
C 4 7
C 83
C 4 9
1 U _1 6 V_ 06 + K
VS S D I
96mA
1 0U _1 0V _ 08 +K
. 1U _ 10 V _0 4+ K
1 . 8V S _V GA
L6 8
A V D D
H C B 10 05 K F -12 1T 20 _0 4+ K
( 1. 8V @ 6 5M A A VD D )
C 6 1 0
C 62 6
C 6 27
1 U _1 6 V_ 06 + K
1 0U _1 0V _ 08 +K
. 1U _ 10 V _0 4+ K
1 . 8V S _ VG A
S5
S H OR T
1
2
S1
S H OR T
1
2
S4
S H OR T
1. 1 V S_ V GA
1
2
S2
S H OR T
1
2
S8
S H OR T
1
2
S7
S H OR T
1
2
V GA _C OR E
S6
S H OR T
1
2
S9
S H OR T
C 2 4
C 3 1
C 59 0
C 5 88
C 5 8 9
1
2
*1 0U _ 10 V _0 8
*1 U _ 16 V _0 6
1U _ 16 V _0 6+ K
*1 U _1 6V _ 06
1 U _ 16 V_ 06 + K
S3
S H OR T
1
2
C 2 3
C 6 8
C 32
C 2 5
C 1 6 6
10 U _ 10 V_ 0 8+ K
1 U _1 6V _ 06 +K
1U _ 16 V _0 6+ K
*1 U _1 6V _ 06
1 U _ 16 V_ 06 + K
C 2 6
C 9 4
C 33
C 1 14
C 2 9
10 U _ 10 V_ 0 8+ K
1 U _1 6V _ 06 +K
*1U _ 1 6V _0 6
1U _1 6V _ 06 +K
1 U _ 16 V_ 06 + K
C 2 7
C 3 4
C 22
C 1 01
C 1 6 7
10 U _ 10 V_ 0 8+ K
1 U _1 6V _ 06 +K
1U _ 16 V _0 6+ K
1U _1 6V _ 06 +K
1 U _ 16 V_ 06 + K
PLA CE ALL DECOUPLIN G CAPS
CLO SE TO THE ASIC
AND RUN DEDICATED T RACES
FRO M ASIC PINS
TO JOIN THE GROUND PLANE
WIT H ONE VIA AT THE CAP
Z1 40 1
L 16
H C B 20 1 2K F -12 1T 30 _0 6+ K
C 1 73
C 18 2
C 18 0
C 1 81
1 0U _ 10 V _0 8+ K
1 U _ 16 V _0 6+ K
1U _ 1 6V _0 6+ K
*1 U _ 16 V_ 0 6
PLACE ALL DECOUPLING AS CLOSE TO ASIC AS POSS IBLE
40mA
L 10
1. 8 V S_ V GA
H C B1 00 5 KF -1 21 T2 0_ 04 +K
D P B _P V D D
C 8 1
C 8 0
C 82
( 1 .8V@ 20m A )
*
D P B _P V S S
10 U _ 10 V _0 8+ K
1 U _ 16 V_ 06 + K
. 1U _ 10 V _0 4+ K
L 23
V D D _M EM _C L K 0
1. 8 V S_ V GA
H C B1 00 5 KF -1 21 T2 0_ 04 +K
( 1. 8 V @ M A V D D R H A _1
I N C LU D ED I N VD D R 1)
C 19 8
C 1 93
C 18 9
. 1U _ 10 V _0 4+ K
V S S_ ME MC L K _0
1. 8 V S_ V GA
L 24
10 U _ 10 V_ 08 + K
1 U _1 6V _ 06 +K
V D D _M EM _C L K 1
H C B1 00 5 KF -1 21 T2 0_ 04 +K
( 1. 8 V @ M A V D D R H A _2
I N C LU D ED I N VD D R 1)
C 19 9
C 1 94
C 19 0
V S S_ ME MC L K _1
10 U _ 10 V_ 0 8+ K
1 U _1 6 V_ 06 +K
. 1U _ 10 V _0 4+ K
1 . 1V S _ VG A
( P C I E _V D D C 1. 1V @ 1 A )
C 38
C 5 6
C 41
10 U _1 0V _ 08 +K
1 U _1 6V _ 06 +K
. 1 U _1 0 V_ 04 +K
C 89
C 2 8
C 65
1U _ 16 V _0 6+ K
1 U _1 6V _ 06 +K
1 U _ 16 V_ 0 6+ K
400m A
L 4
H C B 10 05 K F-1 21 T2 0_ 0 4+ K
D P L L_ V D D C
( D PL L_ V D D C 1. 1V @ 10 0 M A )
C 42
C 5 1
C 73
*
D P LL _P V S S
230mA
10 U _1 0V _ 08 +K
1 U _1 6V _ 06 +K
. 1 U _ 10 V_ 0 4+ K
L 22
H C B 10 05 K F - 1 2 1T 20 _0 4+ K
V GA _ C OR E
M PV D D
( . 9 5 V- 1. 1V @ 2 30M A M PV D D )
C 1 97
C 1 92
C 18 8
*
MP VS S
10 U _1 0V _ 08 +K
1 U _1 6V _ 06 +K
. 1U _ 10 V _0 4+ K
Schematic Diagrams
D P B _P V S S
D P LL _P V S S
V S SD I
A 2V S S Q
V S S_ ME MC L K _1
V S S_ ME MC L K _0
MP V S S
D P A _P V S S
LP V S S
Sheet 14 of 47
M82-XT-3
M82-XT-3 B - 15

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