Schematic Diagrams
Penryn (Socket-P) CPU 2/2 B - 5
B.Schematic Diagrams
Penryn (Socket-P) CPU 2/2
C 10 4
1 U _ 6 . 3 V _ 04
C 8 9
1U _ 6. 3 V _ 0 4
C 20 7
1 0 U _ 1 0V _ 0 8
C 6 8 2
10 U _1 0 V _ 0 8
C 60 9
* 10 U _1 0 V _ 08
C 6 2 1
. 1 U _ 10 V _ X 7 R _ 0 4
C 1 0 5
1U _ 6. 3 V _ 0 4
C 1 0 6
*. 1 U _ 1 0 V _X 7 R _ 0 4
C 1 0 2
. 1 U _ 1 0V _ X 7 R _ 0 4
V S S S E N S E 4 1
C 68 1
1 0 U _ 1 0V _ 0 8
C 10 3
. 1 U _ 1 0 V _ X7 R _0 4
C 64 4
2 2 U _ 6. 3V _ 0 8
V C OR E
C 6 1 5
1U _ 6. 3 V _ 0 4
V C C S E N S E
41
C 6 2 0
*1 0 U _ 1 0V _ 0 8
C 12 0
* . 1U _ 10 V _ X 7R _ 04
C 2 0 9
10 U _1 0 V _ 08
1 . 0 5V S
C 1 2 7
. 1 U _ 1 0V _ X 7 R _ 0 4
H _ V I D 5 4 1
Layout note:
C 13 0
* . 1U _ 10 V _ X 7R _ 04
C 6 0 5
. 1U _ 10 V _ X 7 R _ 0 4
C 8 7
*1 0 U _ 1 0V _0 8
1 . 0 5V S
H _ V I D 4 4 1
0.1UF*6 INSIDE CPU CENTER CAVITY IN 2 ROWS
V C OR E
C 19 2
1 U _ 6 . 3 V _ 04
C 63 9
. 1 U _ 1 0 V _ X7 R _0 4
V C C S E N S E
V C OR E
U 2 2 D
P en ry n
.
P 6
A E 1 1
A 8
A 11
A 14
A 16
A 19
A 23
A F 2
B 6
B 8
B 11
B 13
B 16
B 19
B 21
B 24
C 5
C 8
C 11
C 14
C 16
C 19
C 2
C 22
C 25
D 1
D 4
D 8
D 11
D 13
D 16
D 19
D 23
D 26
E 3
E 6
E 8
E 11
E 14
E 16
E 19
E 21
E 24
F 5
F 8
F 11
F 13
F 16
F 19
F 2
F 22
F 25
G4
G1
G 23
G 26
H 3
H 6
H 21
H 24
J2
J5
J 22
J 25
K 1
K 4
K 23
K 26
L3
L6
L 21
L 24
M2
M5
M 22
M 25
N 1
N 4
N 23
N 26
P 3
A 2 5
A F 2 1
A F 1 9
A F 1 6
A F 1 3
A F 1 1
A F 8
A F 6
A 2
A E 2 6
A E 2 3
A E 1 9
P 2 1
P 2 4
R 2
R 5
R 22
R 25
T 1
T 4
T 2 3
T 2 6
U 3
U 6
U 21
U 24
V 2
V 5
V 2 2
V 2 5
W 1
W 4
W 2 3
W 2 6
Y 3
Y 21
Y 24
A A 2
A A 5
A A 8
A A 1 1
A A 1 4
A A 1 6
A A 1 9
A A 2 2
A A 2 5
A B 1
A B 4
A B 8
A B 1 1
A B 1 3
A B 1 6
A B 1 9
A B 2 3
A B 2 6
A C 3
A C 6
A C 8
A C 11
A C 14
A C 16
A C 19
A C 21
A C 24
A D 2
A D 5
A D 8
A D 11
A D 13
A D 16
A D 19
A D 22
A D 25
A E 1
A E 4
Y 6
A 4
A E 1 4
A E 1 6
A E 8
A F 2 5
V S S [ 08 2 ]
V S S [ 14 8 ]
V S S [ 00 2 ]
V S S [ 00 3 ]
V S S [ 00 4 ]
V S S [ 00 5 ]
V S S [ 00 6 ]
V S S [ 00 7 ]
V S S [ 00 8 ]
V S S [ 00 9 ]
V S S [ 01 0 ]
V S S [ 01 1 ]
V S S [ 01 2 ]
V S S [ 01 3 ]
V S S [ 01 4 ]
V S S [ 01 5 ]
V S S [ 01 6 ]
V S S [ 01 7 ]
V S S [ 01 8 ]
V S S [ 01 9 ]
V S S [ 02 0 ]
V S S [ 02 1 ]
V S S [ 02 2 ]
V S S [ 02 3 ]
V S S [ 02 4 ]
V S S [ 02 5 ]
V S S [ 02 6 ]
V S S [ 02 7 ]
V S S [ 02 8 ]
V S S [ 02 9 ]
V S S [ 03 0 ]
V S S [ 03 1 ]
V S S [ 03 2 ]
V S S [ 03 3 ]
V S S [ 03 4 ]
V S S [ 03 5 ]
V S S [ 03 6 ]
V S S [ 03 7 ]
V S S [ 03 8 ]
V S S [ 03 9 ]
V S S [ 04 0 ]
V S S [ 04 1 ]
V S S [ 04 2 ]
V S S [ 04 3 ]
V S S [ 04 4 ]
V S S [ 04 5 ]
V S S [ 04 6 ]
V S S [ 04 7 ]
V S S [ 04 8 ]
V S S [ 04 9 ]
V S S [ 05 0 ]
V S S [ 05 1 ]
V S S [ 05 2 ]
V S S [ 05 3 ]
V S S [ 05 4 ]
V S S [ 05 5 ]
V S S [ 05 6 ]
V S S [ 05 7 ]
V S S [ 05 8 ]
V S S [ 05 9 ]
V S S [ 06 0 ]
V S S [ 06 1 ]
V S S [ 06 2 ]
V S S [ 06 3 ]
V S S [ 06 4 ]
V S S [ 06 5 ]
V S S [ 06 6 ]
V S S [ 06 7 ]
V S S [ 06 8 ]
V S S [ 06 9 ]
V S S [ 07 0 ]
V S S [ 07 1 ]
V S S [ 07 2 ]
V S S [ 07 3 ]
V S S [ 07 4 ]
V S S [ 07 5 ]
V S S [ 07 6 ]
V S S [ 07 7 ]
V S S [ 07 8 ]
V S S [ 07 9 ]
V S S [ 08 0 ]
V S S [ 08 1 ]
V S S [ 16 2 ]
V S S [ 16 1 ]
V S S [ 16 0 ]
V S S [ 15 9 ]
V S S [ 15 8 ]
V S S [ 15 7 ]
V S S [ 15 6 ]
V S S [ 15 5 ]
V S S [ 15 4 ]
V S S [ 15 3 ]
V S S [ 15 2 ]
V S S [ 15 1 ]
V S S [ 08 3 ]
V S S [ 08 4 ]
V S S [ 08 5 ]
V S S [ 08 6 ]
V S S [ 08 7 ]
V S S [ 08 8 ]
V S S [ 08 9 ]
V S S [ 09 0 ]
V S S [ 09 1 ]
V S S [ 09 2 ]
V S S [ 09 3 ]
V S S [ 09 4 ]
V S S [ 09 5 ]
V S S [ 09 6 ]
V S S [ 09 7 ]
V S S [ 09 8 ]
V S S [ 09 9 ]
V S S [ 10 0 ]
V S S [ 10 1 ]
V S S [ 10 2 ]
V S S [ 10 3 ]
V S S [ 10 4 ]
V S S [ 10 5 ]
V S S [ 10 7 ]
V S S [ 10 8 ]
V S S [ 10 9 ]
V S S [ 11 0 ]
V S S [ 11 1 ]
V S S [ 11 2 ]
V S S [ 11 3 ]
V S S [ 11 4 ]
V S S [ 11 5 ]
V S S [ 11 6 ]
V S S [ 11 7 ]
V S S [ 11 8 ]
V S S [ 11 9 ]
V S S [ 12 0 ]
V S S [ 12 1 ]
V S S [ 12 2 ]
V S S [ 12 3 ]
V S S [ 12 4 ]
V S S [ 12 5 ]
V S S [ 12 6 ]
V S S [ 12 7 ]
V S S [ 12 8 ]
V S S [ 12 9 ]
V S S [ 13 0 ]
V S S [ 13 1 ]
V S S [ 13 2 ]
V S S [ 13 3 ]
V S S [ 13 4 ]
V S S [ 13 5 ]
V S S [ 13 6 ]
V S S [ 13 7 ]
V S S [ 13 8 ]
V S S [ 13 9 ]
V S S [ 14 0 ]
V S S [ 14 1 ]
V S S [ 14 2 ]
V S S [ 14 3 ]
V S S [ 14 4 ]
V S S [ 14 5 ]
V S S [ 14 6 ]
V S S [ 10 6 ]
V S S [ 00 1 ]
V S S [ 14 9 ]
V S S [ 15 0 ]
V S S [ 14 7 ]
V S S [ 16 3 ]
1 . 5 V S
C 1 9 4
1U _ 6. 3 V _ 0 4
+VCCP = 1.05V (0.997V~1.102V)
PLACE NEAR CPU
C 19 1
1 U _ 6 . 3 V _ 04
NEAR CPU PIN
1 . 0 5V S
2 , 3 , 5 , 7, 9 , 1 0 , 2 2, 2 5 , 3 7, 3 9
1 . 5 V S
10 , 2 2 , 23 , 2 5 , 2 6, 2 7 , 3 2, 3 5
C 13 3
2 2 U _ 6 . 3V _0 8
C 18 9
. 1 U _ 1 0 V _ X7 R _ 0 4
C 6 2 3
1U _ 6. 3 V _ 0 4
C 6 0 8
22 U _6 . 3 V _ 0 8
+
C 62 7
1 5 0U _ 4V _ B 2
20mils
V C OR E
V C OR E
4 1
R 1 4
1 0 0_ 1 % _ 06
C 13 4
2 2 U _ 6 . 3V _ 0 8
C 1 3 5
22 U _6 . 3 V _ 0 8
C 8 8
22 U _6 . 3 V _ 0 8
C 95
* . 1U _ 10 V _ X 7R _ 04
1 . 0 5V S
U 2 2C
P en ry n
.
A 7
A 9
A 1 0
A 1 2
A 1 3
A 1 5
A 1 7
A 1 8
A 2 0
B 7
B 9
B 1 0
B 1 2
B 1 4
B 1 5
B 1 7
B 1 8
B 2 0
C 9
C 1 0
C 1 2
C 1 3
C 1 5
C 1 7
C 1 8
D 9
D 1 0
D 1 2
D 1 4
D 1 5
D 1 7
D 1 8
E 7
E 9
E 1 0
E 1 2
E 1 3
E 1 5
E 1 7
E 1 8
E 2 0
F 7
F 9
F 1 0
F 1 2
F 1 4
F 1 5
F 1 7
F 1 8
F 2 0
A A 7
A A 9
A A 1 0
A A 1 2
A A 1 3
A A 1 5
A A 1 7
A A 1 8
A A 2 0
A B 9
A C 1 0
A B 1 0
A B 1 2
A B 1 4
A B 1 5
A B 1 7
A B 1 8
A B 20
A B 7
A C 7
A C 9
A C 1 2
A C 1 3
A C 1 5
A C 1 7
A C 1 8
A D 7
A D 9
A D 1 0
A D 1 2
A D 1 4
A D 1 5
A D 1 7
A D 1 8
A E 9
A E 10
A E 12
A E 13
A E 15
A E 17
A E 18
A E 20
A F 9
A F 10
A F 12
A F 14
A F 15
A F 17
A F 18
A F 20
B 26
J 6
K 6
M 6
J 2 1
K 21
M 2 1
N 2 1
N 6
R 2 1
R 6
T 2 1
T 6
V 21
W 21
A F 7
A D 6
A F 5
A E 5
A F 4
A E 3
A F 3
A E 2
A E 7
C 2 6
G 2 1
V 6
V C C [ 0 0 1]
V C C [ 0 0 2]
V C C [ 0 0 3]
V C C [ 0 0 4]
V C C [ 0 0 5]
V C C [ 0 0 6]
V C C [ 0 0 7]
V C C [ 0 0 8]
V C C [ 0 0 9]
V C C [ 0 1 0]
V C C [ 0 1 1]
V C C [ 0 1 2]
V C C [ 0 1 3]
V C C [ 0 1 4]
V C C [ 0 1 5]
V C C [ 0 1 6]
V C C [ 0 1 7]
V C C [ 0 1 8]
V C C [ 0 1 9]
V C C [ 0 2 0]
V C C [ 0 2 1]
V C C [ 0 2 2]
V C C [ 0 2 3]
V C C [ 0 2 4]
V C C [ 0 2 5]
V C C [ 0 2 6]
V C C [ 0 2 7]
V C C [ 0 2 8]
V C C [ 0 2 9]
V C C [ 0 3 0]
V C C [ 0 3 1]
V C C [ 0 3 2]
V C C [ 0 3 3]
V C C [ 0 3 4]
V C C [ 0 3 5]
V C C [ 0 3 6]
V C C [ 0 3 7]
V C C [ 0 3 8]
V C C [ 0 3 9]
V C C [ 0 4 0]
V C C [ 0 4 1]
V C C [ 0 4 2]
V C C [ 0 4 3]
V C C [ 0 4 4]
V C C [ 0 4 5]
V C C [ 0 4 6]
V C C [ 0 4 7]
V C C [ 0 4 8]
V C C [ 0 4 9]
V C C [ 0 5 0]
V C C [ 0 5 1]
V C C [ 0 5 2]
V C C [ 0 5 3]
V C C [ 0 5 4]
V C C [ 0 5 5]
V C C [ 0 5 6]
V C C [ 0 5 7]
V C C [ 0 5 8]
V C C [ 0 5 9]
V C C [ 0 6 0]
V C C [ 0 6 1]
V C C [ 0 6 2]
V C C [ 0 6 3]
V C C [ 0 6 4]
V C C [ 0 6 5]
V C C [ 0 6 6]
V C C [ 0 6 7]
V C C [ 0 68 ]
V C C [ 0 69 ]
V C C [ 0 70 ]
V C C [ 0 71 ]
V C C [ 0 72 ]
V C C [ 0 73 ]
V C C [ 0 74 ]
V C C [ 0 75 ]
V C C [ 0 76 ]
V C C [ 0 77 ]
V C C [ 0 78 ]
V C C [ 0 79 ]
V C C [ 0 80 ]
V C C [ 0 81 ]
V C C [ 0 82 ]
V C C [ 0 83 ]
V C C [ 0 84 ]
V C C [ 0 85 ]
V C C [ 0 86 ]
V C C [ 0 87 ]
V C C [ 0 88 ]
V C C [ 0 89 ]
V C C [ 0 90 ]
V C C [ 0 91 ]
V C C [ 0 92 ]
V C C [ 0 93 ]
V C C [ 0 94 ]
V C C [ 0 95 ]
V C C [ 0 96 ]
V C C [ 0 97 ]
V C C [ 0 98 ]
V C C [ 0 99 ]
V C C [ 1 00 ]
V C C A [ 01 ]
V C C P [ 03 ]
V C C P [ 04 ]
V C C P [ 05 ]
V C C P [ 06 ]
V C C P [ 07 ]
V C C P [ 08 ]
V C C P [ 09 ]
V C C P [ 10 ]
V C C P [ 11 ]
V C C P [ 12 ]
V C C P [ 13 ]
V C C P [ 14 ]
V C C P [ 15 ]
V C C P [ 16 ]
V C C S E N S E
V I D [ 0 ]
V I D [ 1 ]
V I D [ 2 ]
V I D [ 3 ]
V I D [ 4 ]
V I D [ 5 ]
V I D [ 6 ]
V S S S E N S E
V C C A [ 02 ]
V C C P [ 01 ]
V C C P [ 02 ]
R 1 3
1 00 _ 1 %_ 0 6
Rou te V CC SEN SE a nd
VSS SE NS E tra ce s at 2 7.4 Oh m
wit h 50 m il sp ac in g.
Pla ce P U and P D wi th in 1
inc h of C PU.
Layout note:
C 53
. 0 1 U _ 5 0 V _X 7 R _ 0 4
H _ V I D 0 4 1
C 21 0
1 0 U _ 1 0V _0 8
H _ V I D 1 4 1
V C O R E
C 6 4 3
10 U _1 0 V _ 0 8
C 1 2 2
*. 1 U _ 1 0 V _ X7 R _ 0 4
EMI
C 11 7
. 1 U _1 0 V _ X7 R _0 4
C 20 8
* 10 U _1 0 V _ 08
H _ V I D 6 4 1
V S S S E N S E
H _ V I D 2 4 1
V C OR E
C 1 9 3
1U _ 6. 3 V _ 0 4
C 6 4 5
10 U _ 1 0 V _ 08
C 8 6
22 U _6 . 3 V _ 0 8
C 61 9
2 2 U _ 6 . 3V _0 8
H _ V I D 3 4 1
80mils
C 6 5 3
. 0 1 U _ 5 0V _ X 7 R _ 0 4
C 52
. 0 1 U _ 5 0V _ X 7 R _ 0 4
C 54
1 U _ 6 . 3 V _0 4
TO POWER PAGE
C 11 3
. 1 U _ 1 0 V _ X7 R _ 0 4
V C OR E
C 51
1 U _ 6 . 3 V _ 04
C 61 8
2 2 U _ 6 . 3V _0 8
C 1 2 1
. 1 U _ 10 V _ X 7 R _ 0 4
C 19 0
1 U _ 6 . 3 V _0 4
V C OR E
PL AC E AS C LOS E
AS P OS SI BL E T O
TH E CP U VC CA PI N
Sheet 4 of 51
Penryn (Socket-P)
CPU 2/2
Summary of Contents for M740T
Page 1: ......
Page 2: ......
Page 3: ...Preface I Preface Notebook Computer M740T M740TU M760T M760TU Service Manual...
Page 26: ...Introduction 1 14 1 Introduction...
Page 48: ...Disassembly 2 22 2 Disassembly...
Page 53: ...Part Lists Bottom M740T A 5 A Part Lists Bottom M740T 3 Figure A 3 Bottom M740T...
Page 54: ...Part Lists A 6 Bottom M740TU A Part Lists Bottom M740TU 3 Figure A 4 Bottom M740TU...
Page 55: ...Part Lists LCD M740T M740TU A 7 A Part Lists LCD M740T M740TU Figure A 5 LCD M740T M740TU...
Page 56: ...Part Lists A 8 HDD M740T M740TU A Part Lists HDD M740T M740TU Figure A 6 HDD M740T M740TU...
Page 61: ...Part Lists Bottom M760T A 13 A Part Lists Bottom M760T 3 Figure A 11 Bottom M760T...
Page 62: ...Part Lists A 14 Bottom M760TU A Part Lists Bottom M760TU 3 Figure A 12 Bottom M760TU...
Page 63: ...Part Lists LCD M760T M760TU A 15 A Part Lists LCD M760T M760TU Figure A 13 LCD M760T M760TU...
Page 64: ...Part Lists A 16 HDD M760T M760TU A Part Lists HDD M760T M760TU Figure A 14 HDD M760T M760TU...