Processor 1/7 - EUROCOM P150HM Series Service Manual

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Processor 1/7

Sandy Bridge Processor 1/7 ( DMI,PEG,FDI )
B 2 7
21
D M I _T X N 0
B 2 5
21
D M I _T X N 1
A 2 5
21
D M I _T X N 2
B 2 4
21
D M I _T X N 3
B 2 8
21
D M I _T X P 0
B 2 6
21
D M I _T X P 1
A 2 4
21
D M I _T X P 2
B 2 3
21
D M I _T X P 3
G2 1
21
D MI _ R XN 0
E 2 2
21
D MI _ R XN 1
F 2 1
21
D MI _ R XN 2
D 2 1
21
D MI _ R XN 3
G2 2
21
D MI _ R XP 0
D 2 2
21
D MI _ R XP 1
F 2 0
21
D MI _ R XP 2
C 2 1
21
D MI _ R XP 3
A 2 1
H 1 9
E 1 9
F 1 8
B 2 1
C 2 0
D 1 8
E 1 7
A 2 2
G1 9
E 2 0
G1 8
B 2 0
C 1 9
D 1 9
F 1 7
1. 0 5 V S _ V T T
R 42 0
J1 8
J1 7
1 K _ 0 4
H 2 0
J1 9
H 1 7
R 31 5
2 4 . 9_ 1 % _0 4
DP Com pensa tion Signal
A 1 8
A 1 7
R 31 8
*0 _ 04
B 1 6
C 1 5
D 1 5
C 1 7
F 1 6
C 1 6
G1 5
C AD NOT E: DP _COMPI O and ICOM PO sig nals
s hould be sh orted near balls and r outed with
C 1 8
E 1 6
- typic al im pedanc e < 2 5 moh ms
D 1 6
F 1 5
U 3 2A
20 mil
J 2 2
P E G _ I R C OM P _R
R 95
P E G _I C OM P I
J 2 1
P E G_ I C OM P O
H 2 2
D MI _ R X # [ 0 ]
P E G _ R C OM P O
D MI _ R X # [ 1 ]
D MI _ R X # [ 2 ]
K 3 3
P E G _ R X # _0
C 43 3
0. 2 2 u _1 0 V _ X 5R _ 04
D MI _ R X # [ 3 ]
P E G_ R X# [ 0 ]
M 3 5
P E G _ R X # _1
C 46 7
0. 2 2 u _1 0 V _ X 5R _ 04
P E G_ R X# [ 1 ]
L 3 4
P E G _ R X # _2
C 43 1
0. 2 2 u _1 0 V _ X 5R _ 04
D MI _ R X [ 0 ]
P E G_ R X# [ 2 ]
J 3 5
P E G _ R X # _3
C 46 5
0. 2 2 u _1 0 V _ X 5R _ 04
D MI _ R X [ 1 ]
P E G_ R X# [ 3 ]
J 3 2
P E G _ R X # _4
C 44 7
0. 2 2 u _1 0 V _ X 5R _ 04
D MI _ R X [ 2 ]
P E G_ R X# [ 4 ]
H 3 4
P E G _ R X # _5
C 46 3
0. 2 2 u _1 0 V _ X 5R _ 04
D MI _ R X [ 3 ]
P E G_ R X# [ 5 ]
H 3 1
P E G _ R X # _6
C 44 5
0. 2 2 u _1 0 V _ X 5R _ 04
P E G_ R X# [ 6 ]
G 3 3
P E G _ R X # _7
C 46 1
0. 2 2 u _1 0 V _ X 5R _ 04
D MI _ T X# [ 0 ]
P E G_ R X# [ 7 ]
G 3 0
P E G _ R X # _8
C 44 3
0. 2 2 u _1 0 V _ X 5R _ 04
D MI _ T X# [ 1 ]
P E G_ R X# [ 8 ]
F 3 5
P E G _ R X # _9
C 45 9
0. 2 2 u _1 0 V _ X 5R _ 04
D MI _ T X# [ 2 ]
P E G_ R X# [ 9 ]
E 3 4
P E G _ R X # _1 0
C 44 1
0. 2 2 u _1 0 V _ X 5R _ 04
D MI _ T X# [ 3 ]
P E G _R X #[ 10 ]
E 3 2
P E G _ R X # _1 1
C 45 7
0. 2 2 u _1 0 V _ X 5R _ 04
P E G _R X #[ 11 ]
D 3 3
P E G _ R X # _1 2
C 43 9
0. 2 2 u _1 0 V _ X 5R _ 04
D MI _ T X[ 0 ]
P E G _R X #[ 12 ]
D 3 1
P E G _ R X # _1 3
C 45 5
0. 2 2 u _1 0 V _ X 5R _ 04
D MI _ T X[ 1 ]
P E G _R X #[ 13 ]
B 3 3
P E G _ R X # _1 4
C 43 7
0. 2 2 u _1 0 V _ X 5R _ 04
D MI _ T X[ 2 ]
P E G _R X #[ 14 ]
C 3 2
P E G _ R X # _1 5
C 45 3
0. 2 2 u _1 0 V _ X 5R _ 04
D MI _ T X[ 3 ]
P E G _R X #[ 15 ]
J 3 3
P E G _ R X _ 0
C 43 4
0. 2 2 u _1 0 V _ X 5R _ 04
P E G_ R X [ 0 ]
L 3 5
P E G _ R X _ 1
C 46 8
0. 2 2 u _1 0 V _ X 5R _ 04
P E G_ R X [ 1 ]
K 3 4
P E G _ R X _ 2
C 43 2
0. 2 2 u _1 0 V _ X 5R _ 04
P E G_ R X [ 2 ]
H 3 5
P E G _ R X _ 3
C 46 6
0. 2 2 u _1 0 V _ X 5R _ 04
F D I 0 _T X # [ 0]
P E G_ R X [ 3 ]
H 3 2
P E G _ R X _ 4
C 44 8
0. 2 2 u _1 0 V _ X 5R _ 04
F D I 0 _T X # [ 1]
P E G_ R X [ 4 ]
G 3 4
P E G _ R X _ 5
C 46 4
0. 2 2 u _1 0 V _ X 5R _ 04
F D I 0 _T X # [ 2]
P E G_ R X [ 5 ]
G 3 1
P E G _ R X _ 6
C 44 6
0. 2 2 u _1 0 V _ X 5R _ 04
F D I 0 _T X # [ 3]
P E G_ R X [ 6 ]
F 3 3
P E G _ R X _ 7
C 46 2
0. 2 2 u _1 0 V _ X 5R _ 04
F D I 1 _T X # [ 0]
P E G_ R X [ 7 ]
F 3 0
P E G _ R X _ 8
C 44 4
0. 2 2 u _1 0 V _ X 5R _ 04
F D I 1 _T X # [ 1]
P E G_ R X [ 8 ]
E 3 5
P E G _ R X _ 9
C 46 0
0. 2 2 u _1 0 V _ X 5R _ 04
F D I 1 _T X # [ 2]
P E G_ R X [ 9 ]
E 3 3
P E G _ R X _ 10
C 44 2
0. 2 2 u _1 0 V _ X 5R _ 04
F D I 1 _T X # [ 3]
P E G_ R X[ 10 ]
F 3 2
P E G _ R X _ 11
C 45 8
0. 2 2 u _1 0 V _ X 5R _ 04
P E G_ R X[ 11 ]
D 3 4
P E G _ R X _ 12
C 44 0
0. 2 2 u _1 0 V _ X 5R _ 04
P E G_ R X[ 12 ]
E 3 1
P E G _ R X _ 13
C 45 6
0. 2 2 u _1 0 V _ X 5R _ 04
F D I 0 _T X [ 0 ]
P E G_ R X[ 13 ]
C 3 3
P E G _ R X _ 14
C 43 8
0. 2 2 u _1 0 V _ X 5R _ 04
F D I 0 _T X [ 1 ]
P E G_ R X[ 14 ]
B 3 2
P E G _ R X _ 15
C 45 4
0. 2 2 u _1 0 V _ X 5R _ 04
F D I 0 _T X [ 2 ]
P E G_ R X[ 15 ]
F D I 0 _T X [ 3 ]
M 2 9
P E G _ TX # _ 0
C 64
0. 2 2 u _1 0 V _ X 5R _ 04
F D I 1 _T X [ 0 ]
P E G_ T X# [ 0 ]
M 3 2
P E G _ TX # _ 1
C 86
0. 2 2 u _1 0 V _ X 5R _ 04
F D I 1 _T X [ 1 ]
P E G_ T X# [ 1 ]
M 3 1
P E G _ TX # _ 2
C 66
0. 2 2 u _1 0 V _ X 5R _ 04
F D I 1 _T X [ 2 ]
P E G_ T X# [ 2 ]
L 3 2
P E G _ TX # _ 3
C 68
0. 2 2 u _1 0 V _ X 5R _ 04
F D I 1 _T X [ 3 ]
P E G_ T X# [ 3 ]
L 2 9
P E G _ TX # _ 4
C 88
0. 2 2 u _1 0 V _ X 5R _ 04
P E G_ T X# [ 4 ]
K 3 1
P E G _ TX # _ 5
C 70
0. 2 2 u _1 0 V _ X 5R _ 04
F D I 0 _F S Y N C
P E G_ T X# [ 5 ]
K 2 8
P E G _ TX # _ 6
C 90
0. 2 2 u _1 0 V _ X 5R _ 04
F D I 1 _F S Y N C
P E G_ T X# [ 6 ]
J 3 0
P E G _ TX # _ 7
C 72
0. 2 2 u _1 0 V _ X 5R _ 04
P E G_ T X# [ 7 ]
J 2 8
P E G _ TX # _ 8
C 92
0. 2 2 u _1 0 V _ X 5R _ 04
F D I _ I N T
P E G_ T X# [ 8 ]
H 2 9
P E G _ TX # _ 9
C 74
0. 2 2 u _1 0 V _ X 5R _ 04
P E G_ T X# [ 9 ]
G 2 7
P E G _ TX # _ 10
C 94
0. 2 2 u _1 0 V _ X 5R _ 04
F D I 0 _L S Y N C
P E G_ T X #[ 10 ]
E 2 9
P E G _ TX # _ 11
C 76
0. 2 2 u _1 0 V _ X 5R _ 04
F D I 1 _L S Y N C
P E G_ T X #[ 11 ]
F 2 7
P E G _ TX # _ 12
C 96
0. 2 2 u _1 0 V _ X 5R _ 04
P E G_ T X #[ 12 ]
D 2 8
P E G _ TX # _ 13
C 78
0. 2 2 u _1 0 V _ X 5R _ 04
P E G_ T X #[ 13 ]
F 2 6
P E G _ TX # _ 14
C 98
0. 2 2 u _1 0 V _ X 5R _ 04
P E G_ T X #[ 14 ]
E 2 5
P E G _ TX # _ 15
C 80
0. 2 2 u _1 0 V _ X 5R _ 04
P E G_ T X #[ 15 ]
e D P _C OM P I O
M 2 8
P E G _ TX _ 0
C 63
0. 2 2 u _1 0 V _ X 5R _ 04
e D P _I C OM P O
P E G _ TX [ 0 ]
M 3 3
P E G _ TX _ 1
C 85
0. 2 2 u _1 0 V _ X 5R _ 04
e D P _H P D
P E G _ TX [ 1 ]
M 3 0
P E G _ TX _ 2
C 65
0. 2 2 u _1 0 V _ X 5R _ 04
P E G _ TX [ 2 ]
L 3 1
P E G _ TX _ 3
C 67
0. 2 2 u _1 0 V _ X 5R _ 04
P E G _ TX [ 3 ]
L 2 8
P E G _ TX _ 4
C 87
0. 2 2 u _1 0 V _ X 5R _ 04
e D P _A U X
P E G _ TX [ 4 ]
K 3 0
P E G _ TX _ 5
C 69
0. 2 2 u _1 0 V _ X 5R _ 04
e D P _A U X #
P E G _ TX [ 5 ]
K 2 7
P E G _ TX _ 6
C 89
0. 2 2 u _1 0 V _ X 5R _ 04
P E G _ TX [ 6 ]
J 2 9
P E G _ TX _ 7
C 71
0. 2 2 u _1 0 V _ X 5R _ 04
P E G _ TX [ 7 ]
J 2 7
P E G _ TX _ 8
C 91
0. 2 2 u _1 0 V _ X 5R _ 04
e D P _T X [ 0 ]
P E G _ TX [ 8 ]
H 2 8
P E G _ TX _ 9
C 73
0. 2 2 u _1 0 V _ X 5R _ 04
e D P _T X [ 1 ]
P E G _ TX [ 9 ]
G 2 8
P E G _ TX _ 1 0
C 93
0. 2 2 u _1 0 V _ X 5R _ 04
e D P _T X [ 2 ]
P E G_ T X[ 10 ]
E 2 8
P E G _ TX _ 1 1
C 75
0. 2 2 u _1 0 V _ X 5R _ 04
e D P _T X [ 3 ]
P E G_ T X[ 11 ]
F 2 8
P E G _ TX _ 1 2
C 95
0. 2 2 u _1 0 V _ X 5R _ 04
P E G_ T X[ 12 ]
D 2 7
P E G _ TX _ 1 3
C 77
0. 2 2 u _1 0 V _ X 5R _ 04
e D P _T X # [ 0]
P E G_ T X[ 13 ]
E 2 6
P E G _ TX _ 1 4
C 97
0. 2 2 u _1 0 V _ X 5R _ 04
e D P _T X # [ 1]
P E G_ T X[ 14 ]
D 2 5
P E G _ TX _ 1 5
C 79
0. 2 2 u _1 0 V _ X 5R _ 04
e D P _T X # [ 2]
P E G_ T X[ 15 ]
e D P _T X # [ 3]
Analog Thermal Sensor
P Z 98 9 2 7-3 6 4 1 -01 F
Q 41
5
1
GN D
N C
2
GN D
4
3
V C C
V O
*T M P 2 0
3 . 3 V
Q2 0
2
1
V C C
O U T
3
C 4 52
G N D
0 . 1 u _1 0 V _ X 7R _ 04
G 71 1 S T 9U
PLACE NEAR U3
1. 0 5 V S _ V T T
2 4. 9 _ 1 %_ 0 4
P E G _ R X N 0 1 4
P E G _ R X N 1 1 4
P E G _ R X N 2 1 4
P E G _ R X N 3 1 4
P E G _ R X N 4 1 4
P E G _ R X N 5 1 4
P E G _ R X N 6 1 4
P E G _ R X N 7 1 4
P E G _ R X N 8 1 4
P E G _ R X N 9 1 4
P E G _ R X N 1 0 1 4
P E G _ R X N 1 1 1 4
P E G _ R X N 1 2 1 4
P E G _ R X N 1 3 1 4
P E G _ R X N 1 4 1 4
P E G _ R X N 1 5 1 4
P E G _ R X P 0 1 4
P E G _ R X P 1 1 4
P E G _ R X P 2 1 4
P E G _ R X P 3 1 4
P E G _ R X P 4 1 4
P E G _ R X P 5 1 4
P E G _ R X P 6 1 4
P E G _ R X P 7 1 4
PEG Compen satio n Sig nal
P E G _ R X P 8 1 4
P E G _ R X P 9 1 4
P E G _ R X P 1 0 14
P E G _ R X P 1 1 14
CAD NOTE: PEG_I COMPI and RCOMPO sign als
P E G _ R X P 1 2 14
shou ld be short ed an d rou ted wi th
P E G _ R X P 1 3 14
- ma x len gth = 500 m ils
P E G _ R X P 1 4 14
P E G _ R X P 1 5 14
- ty pical imped ance = 43 mohms
P E G _ TX N 0 14
PEG_ ICOMP O sign als s hould be ro uted with
P E G _ TX N 1 14
- ma x len gth = 500 m ils
P E G _ TX N 2 14
P E G _ TX N 3 14
- ty pical imped ance = 14. 5 mohm s
P E G _ TX N 4 14
P E G _ TX N 5 14
P E G _ TX N 6 14
P E G _ TX N 7 14
P E G _ TX N 8 14
P E G _ TX N 9 14
P E G _ TX N 10 1 4
P E G _ TX N 11 1 4
P E G _ TX N 12 1 4
P E G _ TX N 13 1 4
P E G _ TX N 14 1 4
P E G _ TX N 15 1 4
P E G _ TX P 0 1 4
P E G _ TX P 1 1 4
P E G _ TX P 2 1 4
P E G _ TX P 3 1 4
P E G _ TX P 4 1 4
P E G _ TX P 5 1 4
P E G _ TX P 6 1 4
P E G _ TX P 7 1 4
P E G _ TX P 8 1 4
P E G _ TX P 9 1 4
P E G _ TX P 1 0 1 4
P E G _ TX P 1 1 1 4
P E G _ TX P 1 2 1 4
P E G _ TX P 1 3 1 4
P E G _ TX P 1 4 1 4
P E G _ TX P 1 5 1 4
SC70-5 & SC70-3
Co Lay
1 :2 ( 4mi ls :8 mi ls )
T H E R M_ V O L T 3 4
4 , 9, 1 4 , 1 5 , 19 , 2 0 , 2 1, 2 3 , 2 4, 25 , 2 6 , 28 , 2 9 , 3 0, 3 2 , 3 5, 36 , 3 7 , 39 , 4 0 , 4 1, 4 2
C 4 5 1
0. 1u _ 1 0V _ X 7 R _ 0 4
1
3
2
Schematic Diagrams
Sheet 2 of 58
Processor 1/7
4 , 6, 24 , 2 5 , 26 , 4 0 , 4 3
1 . 0 5 V S _ V T T
3 . 3 V
Processor 1/7 B - 3

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