Hudson Power Decoupling - Clevo W241BU Service Manual

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HUDSON POWER DECOUPLING

3 .3V S
1 3 1 mA
C4 9 4
C4 9 5
C4 96
C 49 3
0. 1u _ 1 0V_ X 5 R_ 0 4
2 2u _ 6 .3V _X 5 R_ 0 8
0 .1 u _1 0 V _ X5R _ 04
0 .1u _ 1 0V _X5 R_ 0 4
1.8 V S
R 3 5 5
0 _ 04
VDD IO_ 1 8_ F C
C 50 9
C5 0 4
C 5 06
C 4 97
7 1 m A
0 .1 u _ 10 V_ X5R _ 04
4 .7 u _6 .3 V_ X5R _ 06
0 .1u _ 1 0V _X5 R_ 0 4
* 0 .1u _ 1 0V _X7 R _ 0 4
3 .3VS
.
L 8 6
H CB1 0 0 5KF -12 1 T 20
VDD PL _3 .3 V _ PCIE
4 3 m A
C 5 11
C 51 2
1 u _1 0 V _ Y5 V _ 0 6
0 .1u _ 1 0V _X 5 R_ 0 4
12/9
1 .1 VS
60 0 m A
12/6D el R827
C 51 7
C5 1 8
C 51 9
C5 2 0
C5 2 1
* 1 u_ 6 .3 V_ X5 R _0 4
0.1 u _ 10 V  _ X5 R_ 0 4
2 2u _ 6 .3V _X5 R_ 0 8
1 u _ 6. 3V_ X 5 R_ 0 4
0 .1 u _1 0 V _ X5R _ 04
3. 3VS
9 3 m A
.
VDD PL _3 .3 V _ SA T A
L8 8
HC B 1 0 0 5 KF -1 2 1 T 2 0
C 5 27
C 52 8
* 0 .1u _ 1 0 V_X7 R _ 0 4
1u _ 1 0V _ Y 5V _0 6
A VDD _SA TA
1 .1V S
.
L 8 9
HC B1 0 0 5 KF -1 2 1 T2 0
5 6 7m A
C 5 32
C 5 33
C 5 34
C5 3 5
C5 3 6
1 u_ 6 .3 V_ X5 R _0 4
0.1 u _ 10 V_ X 5 R_ 0 4
2 2u _ 6 .3V _X5 R_ 0 8
1 u_ 6 .3 V _ X5 R _0 4
0 .1 u _1 0 V_ X5 R _0 4
3 . 3 V
A V DD _U S B
.
L 9 1
HC B1 0 0 5 KF -1 2 1 T2 0
6 5 8m A
C5 4 2
C 54 3
C 54 4
C5 4 5
C 5 46
0 .1u _ 1 0V_ X5 R_ 0 4
1 u _ 6 .3V_ X 5 R_ 0 4
10 u _ 6 .3V_ X5 R_ 0 8
1u _ 6 .3 V_X5 R_ 0 4
1 0u _ 6 .3 V _X 5 R_ 0 8
1 .1 V
T BDm A
.
V D DAN _ 1.1 V_ U SB
L 9 3
H CB 1 0 0 5KF -12 1 T 20
C 54 9
C5 5 0
0 .1 u_ 1 0 V_ X5 R _0 4
1 u _ 10 V_ Y 5V_ 0 6
3 .3 V S
3 .3V
VD DIO _ AZ
.
1 .5 V
L 9 5
H CB1 0 0 5KF -12 1 T 2 0
R 36 2
0 _0 4
R 36 3
* 0 _ 0 4
C5 5 7
1 u _ 10 V_ Y 5 V_ 0 6
HUDSON POWER DECOUPLING
U 19 C
HUDSON-1
PAR T3 OF 5
P O WER
A H1
N 1 3
51 0 m A
V DDIO _33_PC I GP
VD DC R_11
V6
R 1 5
V DDIO _33_PC I GP
VD DC R_11
Y 1 9
N 1 7
C4 9 9
C5 0 0
V DDIO _33_PC I GP
VD DC R_11
A E5
U 1 3
AC2 1
V DDIO _33_PC I GP
VD DC R_11
U 1 7
1u _ 6 .3 V_X5 R_ 0 4
V DDIO _33_PC I GP
VD DC R_11
A A2
V 12
1 u _ 6.3 V_ X5 R_ 0 4
A B4
V DDIO _33_PC I GP
VD DC R_11
V 18
V DDIO _33_PC I GP
VD DC R_11
A C8
W 12
A A7
V DDIO _33_PC I GP
C OR ES0
VD DC R_11
W 18
V DDIO _33_PC I GP
VD DC R_11
A A9
+1 .1 V_ CKV DD
V DDIO _33_PC I GP
A F 7
V DDIO _33_PC I GP
CLK GENI/ O
AA 1 9
K 28
T BDm A
V DDIO _33_PC I GP
VD DA N_11_C LK
K 29
VD DA N_11_C LK
J 2 8
PC I / GPI O I / O
C5 0 5
C5 0 7
VD DA N_11_C LK
K 26
VD DA N_11_C LK
J 2 1
FLA SH I /O
0 .1 u _1 0 V_ X5R _ 04
VD DA N_11_C LK
AF 2 2
J 2 0
0.1 u _ 10 V_ X 5 R_ 0 4
AE 2 5
V DDIO _18_FC
VD DA N_11_C LK
K 21
V DDIO _18_FC
VD DA N_11_C LK
AF 2 4
J 2 2
AC2 2
V DDIO _18_FC
VD DA N_11_C LK
V DDIO _18_FC
V 1
R 3 5 6
0 _ 0 4
VD DR F_GBE _S
M 1 0
R7 7 1 * 10 m il  _ s h ort
P C I E X P R E S S
V DDI O_33_GBE _S
AE 2 8
V DDP L_33_PC I E
GBE L AN
U2 6
L 7
R 7 7 2
* 1 0 m i l  _ s h ort
V 2 2
V DDA N_11_P CI E
VD DC R_11_GBE _S
L 9
V DDA N_11_P CI E
VD DC R_11_GBE _S
V 2 6
V DDA N_11_P CI E
V 2 7
V 2 8
V DDA N_11_P CI E
M 6
R 7 7 3
* 1 0 m i l  _ s h ort
V 2 9
V DDA N_11_P CI E
V DD IO_GBE _S
P 8
W 2 2
V DDA N_11_P CI E
V DD IO_GBE _S
W 2 6
V DDA N_11_P CI E
V DDA N_11_P CI E
SE RI ALAT A
AD1 4
3.3V_S5I /O
V DDP L_33_SA TA
A 21
3 2 m A
VD DIO _33_S
AJ2 0
D 2 1
AF 1 8
V DDA N_11_S AT A
VD DIO _33_S
B 21
V DDA N_11_S AT A
VD DIO _33_S
AH2 0
K 10
C5 2 9
C 5 30
V DDA N_11_S AT A
VD DIO _33_S
AG1 9
L 1 0
V DDA N_11_S AT A
VD DIO _33_S
AE 1 8
J 9
* 0. 1u _ 1 0V_ X7 R_ 0 4
AD1 8
V DDA N_11_S AT A
VD DIO _33_S
T 6
1u _ 1 0V _Y 5 V_0 6
V DDA N_11_S AT A
VD DIO _33_S
AE 1 6
T 8
V DDA N_11_S AT A
VD DIO _33_S
CORE S 5
F 26
1 1 3m A
VDD CR _ 1.1 V
US BI /O
VDD CR _11_S
A 1 8
G 2 6
A 1 9
V DDA N_33_U SB _S
VDD CR _11_S
VDD IO_ AZ
A 2 0
V DDA N_33_U SB _S
M 8
T BDm A
B 1 8
V DDA N_33_U SB _S
V DDI O_AZ _S
V DDA N_33_U SB _S
B 1 9
A 11
1 9 7m A
VDD CR _ 1.1 _ USB
B 2 0
V DDA N_33_U SB _S
V DDC R_11_ USB _S
B 11
V DDA N_33_U SB _S
V DDC R_11_ USB _S
C1 8
C2 0
V DDA N_33_U SB _S
VD DPL _ 3 .3V
V DDA N_33_U SB _S
D1 8
M 2 1
4 7m A
D1 9
V DDA N_33_U SB _S
VD DP L_33_SY S
VDD PL _1 .1 V
V DDA N_33_U SB _S
P LL
D2 0
L 2 2
62 m A
E 1 9
V DDA N_33_U SB _S
VDD PL_11_ SYS _S
A VD D_ U SB
V DDA N_33_U SB _S
F 19
17 m A
VDD PL_33_ USB _S
C1 1
D 6
5 m A
VD DA N _ 3.3 V _ H W M
V DDA N_11_U SB _S
V DDA N_33_H WM_S
D1 1
V DDA N_11_U SB _S
L 2 0
VDD XL_ 3 .3 V
TB D m A
VD DX L_33_S
HU DS O N M 1 A1 3
1.1 V
VDD PL_ 1 .1 V
VD DPL _ 3. 3V
.
L 9 6
H CB1 0 0 5 KF -1 21 T 2 0
C 5 53
C 55 4
C5 5 5
C 5 56
1 u _ 1 0V_ Y 5V_ 0 6
1u _ 1 0V _Y 5 V_0 6
*0 .1 u _ 10 V_ X7R _ 04
*0 .1 u _1 0 V_ X 7R _ 04
1 .1 V S
U 19 D
HUDSON-1
PAR T5 OF 5
C 50 1
C5 0 2
C 5 03
Y 14
Y 16
V SSIO _SA TA
10 u _ 6.3 V_ X5 R_ 0 8
0 .1u _ 1 0V_ X5 R_ 0 4
V SSIO _SA TA
0 .1 u_ 1 0 V_ X5 R _0 4
A B 16
A C 14
V SSIO _SA TA
V SSIO _SA TA
A E 12
A E 14
V SSIO _SA TA
V SSIO _SA TA
1.1 V S
AF 9
V SSIO _SA TA
A F 11
.
V SSIO _SA TA
A F 13
L 8 5
A F 16
V SSIO _SA TA
H CB 1 0 0 5K F - 12 1 T 2 0
AG8
V SSIO _SA TA
C 50 8
C5 1 0
C 49 8
AH7
V SSIO _SA TA
A H 11
V SSIO _SA TA
1 u_ 6 .3 V_ X5 R _0 4
2 2u _ 6 .3V_ X5 R_ 0 8
V SSIO _SA TA
A H 13
1 u _6 .3 V_ X5R _ 04
A H 16
V SSIO _SA TA
V SSIO _SA TA
A J7
AJ 11
V SSIO _SA TA
V SSIO _SA TA
AJ 13
AJ 16
V SSIO _SA TA
V SSIO _SA TA
A9
V SSIO _US B
B 10
K 11
V SSIO _US B
V SSIO _US B
B9
D 10
V SSIO _US B
V SSIO _US B
D 12
D 14
V SSIO _US B
V SSIO _US B
D 17
V SSIO _US B
E9
F 9
V SSIO _US B
F 12
V SSIO _US B
F 14
V SSIO _US B
F 16
V SSIO _US B
C9
V SSIO _US B
V SSIO _US B
G 11
V SSIO _US B
GR OU ND
F 18
V SSIO _US B
3 .3V
D9
H 12
V SSIO _US B
V SSIO _US B
H 14
H 16
V SSIO _US B
V SSIO _US B
H 18
C5 3 1
V SSIO _US B
J 11
V SSIO _US B
1u _ 1 0V_ Y 5V _0 6
J 19
K 12
V SSIO _US B
V SSIO _US B
K 14
K 16
V SSIO _US B
K 18
V SSIO _US B
1 .1V
H 19
V SSIO _US B
V SSIO _US B
R 3 6 1
0 _0 4
Y4
C 53 7
C5 3 8
E FUS E
D8
1u _ 6 .3V _ X5 R_ 0 4
V SSA N_H WM
1 u _6 .3 V_ X5R _ 04
M 19
1 .1 V
V SSX L
.
L 9 0
H CB 1 0 0 5K F -12 1 T 20
P 21
P 20
V SSIO _PC I ECLK
C 53 9
C5 4 0
C 5 41
V SSIO _PC I ECLK
M 22
M 24
V SSIO _PC I ECLK
10 u _ 6.3 V_ X5 R_ 0 8
0 .1u _ 1 0V_ X5 R_ 0 4
V SSIO _PC I ECLK
0 .1 u_ 1 0 V _ X5 R _0 4
M 26
P 22
V SSIO _PC I ECLK
V SSIO _PC I ECLK
P 24
3 .3 V
V SSIO _PC I ECLK
P 26
.
T 20
V SSIO _PC I ECLK
L 9 2
T 22
V SSIO _PC I ECLK
H CB 1 0 0 5K F -12 1 T 20
T 24
V SSIO _PC I ECLK
C5 4 7
C 54 8
V 20
V SSIO _PC I ECLK
J 23
V SSIO _PC I ECLK
0.1 u _ 10 V_ X5 R_ 0 4
V SSIO _PC I ECLK
1 u_ 1 0 V_ Y5 V_ 06
H U D SON M1 A1 3
3. 3 V
V DDA N _ 3 . 3V _H W M
.
L 9 4
H CB1 0 05 K F - 1 2 1 T 20
C 5 51
C 55 2
1 u _ 10 V _ Y 5V _ 0 6
0.1 u _ 1 0V_ X5 R_ 0 4
HUDSON POWER DECOUPLING B - 19
Schematic Diagrams
A J2
VS S
A 28
VS S
A 2
VS S
E 5
VS S
D 2 3
VS S
E 25
VS S
E 6
VS S
F 24
VS S
N 1 5
VS S
R 1 3
VS S
R 1 7
VS S
T 1 0
VS S
P 10
VS S
V 11
VS S
U 1 5
VS S
M 1 8
VS S
V 19
VS S
M 1 1
VS S
L 1 2
VS S
L 1 8
VS S
J 7
VS S
P 3
VS S
V 4
VS S
A D6
VS S
A D4
VS S
A B 7
Sheet 18 of 41
VS S
A C9
VS S
V 8
VS S
W 9
VS S
W 10
HUDSON POWER
VS S
A J2 8
VS S
B 29
VS S
U 4
VS S
Y 1 8
DECOUPLING
VS S
Y 1 0
VS S
Y 1 2
VS S
Y 1 1
VS S
A A11
VS S
A A12
VS S
G 4
VS S
J 4
VS S
G 8
VS S
G 9
VS S
M 1 2
VS S
A F 25
VS S
H 7
VS S
A H2 9
VS S
V 10
VS S
P 6
VS S
N 4
VS S
L 4
VS S
L 8
VS S
M 2 0
V SS PL_SY S
H 2 3
VS SIO_P CI EC LK
H 2 6
VS SIO_P CI EC LK
A A21
VS SIO_P CI EC LK
A A23
VS SIO_P CI EC LK
A B23
VS SIO_P CI EC LK
A D2 3
VS SIO_P CI EC LK
A A26
VS SIO_P CI EC LK
A C2 6
VS SIO_P CI EC LK
Y 2 0
VS SIO_P CI EC LK
W 21
VS SIO_P CI EC LK
W 20
VS SIO_P CI EC LK
A E26
VS SIO_P CI EC LK
L 2 1
VS SIO_P CI EC LK
K 20
VS SIO_P CI EC LK
.  S 
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