Processor 1/7 - Clevo P170HM Service Manual

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Processor 1/7

Sandy Bridge Processor 1/7 ( DMI,PEG,FDI )
B27
21
DMI_TXN0
B25
21
DMI_TXN1
A25
21
DMI_TXN2
B24
21
DMI_TXN3
B28
21
DMI_TXP0
B26
21
DMI_TXP1
A24
21
DMI_TXP2
B23
21
DMI_TXP3
G21
21
DMI_RXN0
E22
21
DMI_RXN1
F21
21
DMI_RXN2
D21
21
DMI_RXN3
G22
21
DMI_RXP0
D22
21
DMI_RXP1
F20
21
DMI_RXP2
C21
21
DMI_RXP3
A21
H19
E19
F18
B21
C20
D18
E17
A22
G19
E20
G18
B20
C19
D19
F17
1.05VS_VTT
J18
R420
J17
1K_04
H20
J19
H17
R315
24.9_1%_04
DP Compensation Signal
A18
A17
R318 *0_04
B16
C15
D15
C17
F16
C16
G15
CAD NOTE: DP_COMPIO and ICOMPO signals
should be shorted near balls and routed with
C18
E16
- typical impedance < 25 mohms
D16
F15
U32A
20 mil
J22
PEG_IRCOMP_R
R95
PEG_ICOMPI
J21
PEG_ICOMPO
H22
DMI_RX#[0]
PEG_RCOMPO
DMI_RX#[1]
DMI_RX#[2]
K33
PEG_RX#_0
C433
0.22u_10V_X5R_04
DMI_RX#[3]
PEG_RX#[0]
M35
PEG_RX#_1
C467
0.22u_10V_X5R_04
PEG_RX#[1]
L34
PEG_RX#_2
C431
0.22u_10V_X5R_04
DMI_RX[0]
PEG_RX#[2]
J35
PEG_RX#_3
C465
0.22u_10V_X5R_04
DMI_RX[1]
PEG_RX#[3]
J32
PEG_RX#_4
C447
0.22u_10V_X5R_04
DMI_RX[2]
PEG_RX#[4]
H34
PEG_RX#_5
C463
0.22u_10V_X5R_04
DMI_RX[3]
PEG_RX#[5]
H31
PEG_RX#_6
C445
0.22u_10V_X5R_04
PEG_RX#[6]
G33
PEG_RX#_7
C461
0.22u_10V_X5R_04
DMI_TX#[0]
PEG_RX#[7]
G30
PEG_RX#_8
C443
0.22u_10V_X5R_04
DMI_TX#[1]
PEG_RX#[8]
F35
PEG_RX#_9
C459
0.22u_10V_X5R_04
DMI_TX#[2]
PEG_RX#[9]
E34
PEG_RX#_10
C441
0.22u_10V_X5R_04
DMI_TX#[3]
PEG_RX#[10]
E32
PEG_RX#_11
C457
0.22u_10V_X5R_04
PEG_RX#[11]
D33
PEG_RX#_12
C439
0.22u_10V_X5R_04
DMI_TX[0]
PEG_RX#[12]
D31
PEG_RX#_13
C455
0.22u_10V_X5R_04
DMI_TX[1]
PEG_RX#[13]
B33
PEG_RX#_14
C437
0.22u_10V_X5R_04
DMI_TX[2]
PEG_RX#[14]
C32
PEG_RX#_15
C453
0.22u_10V_X5R_04
DMI_TX[3]
PEG_RX#[15]
J33
PEG_RX_0
C434
0.22u_10V_X5R_04
PEG_RX[0]
L35
PEG_RX_1
C468
0.22u_10V_X5R_04
PEG_RX[1]
K34
PEG_RX_2
C432
0.22u_10V_X5R_04
PEG_RX[2]
H35
PEG_RX_3
C466
0.22u_10V_X5R_04
FDI0_TX#[0]
PEG_RX[3]
H32
PEG_RX_4
C448
0.22u_10V_X5R_04
FDI0_TX#[1]
PEG_RX[4]
G34
PEG_RX_5
C464
0.22u_10V_X5R_04
FDI0_TX#[2]
PEG_RX[5]
G31
PEG_RX_6
C446
0.22u_10V_X5R_04
FDI0_TX#[3]
PEG_RX[6]
F33
PEG_RX_7
C462
0.22u_10V_X5R_04
FDI1_TX#[0]
PEG_RX[7]
F30
PEG_RX_8
C444
0.22u_10V_X5R_04
FDI1_TX#[1]
PEG_RX[8]
E35
PEG_RX_9
C460
0.22u_10V_X5R_04
FDI1_TX#[2]
PEG_RX[9]
E33
PEG_RX_10
C442
0.22u_10V_X5R_04
FDI1_TX#[3]
PEG_RX[10]
F32
PEG_RX_11
C458
0.22u_10V_X5R_04
PEG_RX[11]
D34
PEG_RX_12
C440
0.22u_10V_X5R_04
PEG_RX[12]
E31
PEG_RX_13
C456
0.22u_10V_X5R_04
FDI0_TX[0]
PEG_RX[13]
C33
PEG_RX_14
C438
0.22u_10V_X5R_04
FDI0_TX[1]
PEG_RX[14]
B32
PEG_RX_15
C454
0.22u_10V_X5R_04
FDI0_TX[2]
PEG_RX[15]
FDI0_TX[3]
M29
PEG_TX#_0
C64
0.22u_10V_X5R_04
FDI1_TX[0]
PEG_TX#[0]
M32
PEG_TX#_1
C86
0.22u_10V_X5R_04
FDI1_TX[1]
PEG_TX#[1]
M31
PEG_TX#_2
C66
0.22u_10V_X5R_04
FDI1_TX[2]
PEG_TX#[2]
L32
PEG_TX#_3
C68
0.22u_10V_X5R_04
FDI1_TX[3]
PEG_TX#[3]
L29
PEG_TX#_4
C88
0.22u_10V_X5R_04
PEG_TX#[4]
K31
PEG_TX#_5
C70
0.22u_10V_X5R_04
FDI0_FSY NC
PEG_TX#[5]
K28
PEG_TX#_6
C90
0.22u_10V_X5R_04
FDI1_FSY NC
PEG_TX#[6]
J30
PEG_TX#_7
C72
0.22u_10V_X5R_04
PEG_TX#[7]
J28
PEG_TX#_8
C92
0.22u_10V_X5R_04
FDI_INT
PEG_TX#[8]
H29
PEG_TX#_9
C74
0.22u_10V_X5R_04
PEG_TX#[9]
G27
PEG_TX#_10
C94
0.22u_10V_X5R_04
FDI0_LSYNC
PEG_TX#[10]
E29
PEG_TX#_11
C76
0.22u_10V_X5R_04
FDI1_LSYNC
PEG_TX#[11]
F27
PEG_TX#_12
C96
0.22u_10V_X5R_04
PEG_TX#[12]
D28
PEG_TX#_13
C78
0.22u_10V_X5R_04
PEG_TX#[13]
F26
PEG_TX#_14
C98
0.22u_10V_X5R_04
PEG_TX#[14]
E25
PEG_TX#_15
C80
0.22u_10V_X5R_04
PEG_TX#[15]
eDP_COMPIO
M28
PEG_TX_0
C63
0.22u_10V_X5R_04
eDP_ICOMPO
PEG_TX[0]
M33
PEG_TX_1
C85
0.22u_10V_X5R_04
eDP_HPD
PEG_TX[1]
M30
PEG_TX_2
C65
0.22u_10V_X5R_04
PEG_TX[2]
L31
PEG_TX_3
C67
0.22u_10V_X5R_04
PEG_TX[3]
L28
PEG_TX_4
C87
0.22u_10V_X5R_04
eDP_AUX
PEG_TX[4]
K30
PEG_TX_5
C69
0.22u_10V_X5R_04
eDP_AUX#
PEG_TX[5]
K27
PEG_TX_6
C89
0.22u_10V_X5R_04
PEG_TX[6]
J29
PEG_TX_7
C71
0.22u_10V_X5R_04
PEG_TX[7]
J27
PEG_TX_8
C91
0.22u_10V_X5R_04
eDP_TX[0]
PEG_TX[8]
H28
PEG_TX_9
C73
0.22u_10V_X5R_04
eDP_TX[1]
PEG_TX[9]
G28
PEG_TX_10
C93
0.22u_10V_X5R_04
eDP_TX[2]
PEG_TX[10]
E28
PEG_TX_11
C75
0.22u_10V_X5R_04
eDP_TX[3]
PEG_TX[11]
F28
PEG_TX_12
C95
0.22u_10V_X5R_04
PEG_TX[12]
D27
PEG_TX_13
C77
0.22u_10V_X5R_04
eDP_TX#[0]
PEG_TX[13]
E26
PEG_TX_14
C97
0.22u_10V_X5R_04
eDP_TX#[1]
PEG_TX[14]
D25
PEG_TX_15
C79
0.22u_10V_X5R_04
eDP_TX#[2]
PEG_TX[15]
eDP_TX#[3]
Analog Thermal Sensor
PZ98927-3641-01F
Q41
5
1
GND
NC
2
GND
4
3
VCC
VO
*TMP20
3.3V
Q20
2
1
VCC
OUT
3
C452
GND
0.1u_10V_X7R_04
G711ST9U
PLACE NEAR U3
1.05VS_VTT
24.9_1%_04
PEG_RXN0 14
PEG_RXN1 14
PEG_RXN2 14
PEG_RXN3 14
PEG_RXN4 14
PEG_RXN5 14
PEG_RXN6 14
PEG_RXN7 14
PEG_RXN8 14
PEG_RXN9 14
PEG_RXN10 14
PEG_RXN11 14
PEG_RXN12 14
PEG_RXN13 14
PEG_RXN14 14
PEG_RXN15 14
PEG_RXP0 14
PEG_RXP1 14
PEG_RXP2 14
PEG_RXP3 14
PEG_RXP4 14
PEG_RXP5 14
PEG_RXP6 14
PEG_RXP7 14
PEG Compensation Signal
PEG_RXP8 14
PEG_RXP9 14
PEG_RXP10 14
CAD NOTE: PEG_ICOMPI and RCOMPO signals
PEG_RXP11 14
PEG_RXP12 14
should be shorted and routed with
PEG_RXP13 14
- max length = 500 mils
PEG_RXP14 14
PEG_RXP15 14
- typical impedance = 43 mohms
PEG_TXN0 14
PEG_ICOMPO signals should be routed with
PEG_TXN1 14
- max length = 500 mils
PEG_TXN2 14
PEG_TXN3 14
- typical impedance = 14.5 mohms
PEG_TXN4 14
PEG_TXN5 14
PEG_TXN6 14
PEG_TXN7 14
PEG_TXN8 14
PEG_TXN9 14
PEG_TXN10 14
PEG_TXN11 14
PEG_TXN12 14
PEG_TXN13 14
PEG_TXN14 14
PEG_TXN15 14
PEG_TXP0 14
PEG_TXP1 14
PEG_TXP2 14
PEG_TXP3 14
PEG_TXP4 14
PEG_TXP5 14
PEG_TXP6 14
PEG_TXP7 14
PEG_TXP8 14
PEG_TXP9 14
PEG_TXP10 14
PEG_TXP11 14
PEG_TXP12 14
PEG_TXP13 14
PEG_TXP14 14
PEG_TXP15 14
SC70-5 & SC70-3
Co Lay
1:2 (4mils:8mils)
THERM_VOLT 34
4,9,14,15,19,20,21,23,24,25,26,28,29,30,32,35,36,37,39,40,41,42
C451
0.1u_10V_X7R_04
1
3
2
Schematic Diagrams
Sheet 2 of 58
Processor 1/7
4,6,24,25,26,40,43
1.05VS_VTT
3.3V
Processor 1/7 B - 3

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