10.
Circuit Diagrams and PWB Layouts
SSB: DC/DC
VB
S
T2
VIN
PGND
TE
S
T
VREG5
VFB2
VO2
VFB1
VO1
LL2
LL1
DRVL2
DRVH2
DRVL1
DRVH1
GND
2
1
V5FILT
TRIP2
EN2
NC
TRIP1
EN1
VB
S
T1
C
IU61 D5
IU62 F6
FU0B E14
FU0C B14
FU0E C14
IU06 G9
IU07 E9
IU0
8
B9
IU0K D7
IU0N C7
3
U1
8
D5
3
U19 D5
FU07 B9
IU0P B6
E
8
17
1
2
L
9
E
M
IU19 H9
IU1B C9
IU1D G10
IU1E F9
IU1P B6
IU1R F1
IU1T A1
3
3
U24 F7
3
U25 F
8
IU
3
0 E6
5U
33
B1
3
3
U74 E9
3
U75 G10
3
U76 E11
5U00 E9
5U01 B9
5U02 A1
3
5U0
3
C1
3
5U
3
2 A1
3
2U61 E4
2U62 F2
6U0
3
D5
K
10
20
IU
3
1 G9
IU55 C4
7U0
3
D
3
7U05 C
8
6U02 E2
IU56 D
3
IU57 D
3
IU5
8
E
3
IU59 E
3
IU60 E
3
2U65 G
8
3
U06 B6
IU6
3
D5
FU06 F5
3
U0F H5
3
U0G H6
3
U0J B9
3
U0K E9
3
U1
3
C7
3
U15 C5
3
U16 C5
3
U17 D
3
2U14 A12
2U15 B1
3
3
U1D F6
F
1
8
15
J
J
11
3
U1J G14
1
owner.
IU0
S
G5
IU0T G9
IU0U E1
IU11 B6
2U17 E1
3
2U19 A1
3
12V/
3
V
3
CONVER
S
ION
IU12 D7
2U50 D7
2U54 C2
2U55 D4
2U56 D4
2U57 D2
2U5
8
D
3
2U59 E2
2U60 E6
A
B
2U6
3
F6
M
B
6
1
4
1
H
7U02 B6
7U06 D
8
7U0
8
A6
7U09 E1
CU77 G2
FU04 E2
FU05 A
8
L
FU0
8
G14
FU0A E
8
2U0U E12
2U0V E12
2U0W A5
2U0Y A12
2U0Z B10
2U10 C14
2U11 C14
2U12 C9
14
15
2U16 E1
3
N
I
12V/1V2 CONVER
S
ION
15
K
4
10
P
3
U1M B9
3
U1V F1
3
U20 D5
3
U21 E2
3
U22 E
3
3
U2
3
F2
4
5
3
U
3
0 E6
3
U
3
1 G
8
8
9
10
11
12
1
3
14
15
G
C
1
8
H
G
20
12
19
3
2U64 G9
3
U09 H9
3
U0A H10
1
3
O
10
11
12
1
3
G
H
1
16
C
6
D
9
12
A
DC / DC
P
17
D
2U1B E14
2U
3
9 B6
11
F
7
5
O
1
2
3
4
5
6
7
8
N
8
2U0
S
F1
2U0T E11
2
E
F
G
H
A
B
C
D
E
2U06 B10
2U07 E11
2U0B H9
2U0D H6
2U0F A5
2U0H C9
2U0J E9
2U0K F9
F
2U0R G10
B
2
3
6
7
14
4
C
7
i
s
prohi
b
ited witho
u
t the written con
s
ent of the copyright
19
1
3
3
All right
s
re
s
erved. Reprod
u
ction in whole or in p
a
rt
s
I
9
A
5
6
D
IU19
22
u
2U0V
5U01
10
u
2U0K
1n0
3
U0K
6.
3
V
RE
S
22R
6.
3
V
2U1B
100
u
1n0
2U0J
RE
S3
3
0
u
2U17
+12VF1
10K
3
U25
5U
33
3
0R
FU0A
+1V2-PNX
8
5XX
RE
S
100p
2U0D
IU5
8
+
3
V
3
F
IU1D
CU77
3
U17
3
R
3
6 7
8
4
1 2
3
S
I4
8
00BDY
7U05
5
10
u
5U0
3
GND-
S
IG
FU07
3
U22
20K
5 6 7
8
4
1 2
3
7U02
S
I4
8
00BDY
RE
S
100p
2U0B
3
R
3
3
U20
GND-
S
IG
GND-
S
IG
2U0R
1
u
0
GND-
S
IG
22
u
2U14
RE
S
IU55
FU04
IU6
3
IU61
3
U75
470R
1
%
IU1B
3
U74
IU0
S
22R
IU0P
IU
3
0
4K7
3
U
3
0
2U07
22
u
IU
3
1
3
U
3
1
4K7
RE
S
2U59
1n0
GND-
S
IG
2U6
3
3
n
3
GND-
S
IG
GND-
S
IG
+1V2-
S
TANDBY
IU1E
2U61
4
u
7
5U02
10
u
RE
S
GND-
S
IG
GND-
S
IG
RE
S
3
U1V
3
K
3
FU0C
IU0K
+
3
V
3
22
u
2U06
REF EMC HOLE
1X0
8
21
1
14
5
10
2
3
4
11
22
2
6
9
1
3
25
1
8
8
20
24
19
2
8
15
26
17
3
12
7
27
16
GND-
S
IG
7U0
3
TP
S
5
3
124PW
Φ
IU62
GND-
S
IG
RE
S
BC
8
47BW
1
3
2
7U09
1n0
2U12
3
U19
10R
IU57
+1V2-PNX
8
5XX
2U57
100n
7
8
4
1 2
3
RE
S
7U06
S
I4
8
00BDY
5 6
BAT54 COL
6U02
1
%
RE
S
1K0
3
U0F
IU59
IU0U
100n
2U5
8
10R
3
U1
8
DATE
NAME
2
S
UPER
S
.
CLA
SS
_NO
E
M
A
N
T
E
S
N
H
C
3
1
2007-11-20
ROYAL PHILIP
S
ELECTRONIC
S
N.V. 200
8
200
8
-11-21
M
a
elegheer Ingrid
200
8
-10-10
3
1
3
0
A2
DC/DC
TV54
3
R2 LDIPNX
8
204 000
8
9
3
2
CHECK
FU0E
FU0B
1
u
0
2U19
22
u
2U0U
RE
S
RE
S
25V
220
u
2U15
1
%
5U
3
2
3
0R
3
U1D
3
K
3
2U55
100n
3
U16
10R
22
u
2U0W
GND-
S
IG
3
U1J
120R 1
%
IU0
8
1n0
2U60
IU06
IU1R
RE
S
BAT54 COL
6U0
3
10R
3
U2
3
GND-
S
IG
RE
S
+12VF
RE
S
100n
2U56
IU60
20K
3
U21
2
u
2
2U54
1K0
3
U0A
1
%
22K
3
U09
2U64
3
n
3
2U65
1n0
2U0H
1n0
22R
3
U1M
IU1T
2U16
GND-
S
IG
5U00
10
u
RE
S
6.
3
V
33
0
u
22
u
2U0Z
+
3
V
3
4V
IU0N
RE
S
2U10
100
u
3
U0J
22R
4V
100
u
2U0T
RE
S
2U11
FU0
8
RE
S
22
u
IU1P
GND-
S
IG
+
3
V
3
IU07
33
K
3
U24
2U62
1
u
0
RE
S
IU0T
2U0
S
100n
IU56
47K
3
U0G
10R
3
U15
RE
S
2U0F
22
u
7
8
4
1 2
3
S
I4
8
00BDY
7U0
8
5 6
FU05
IU12
22
u
2U0Y
1n0
2U50
3
U1
3
3
R
3
2U
3
9
1n0
IU11
3
R
3
3
U06
+1V2-PNX
8
5XX
3
U76
10R
FU06
V
S
W
RE
S
ENABLE-
3
V
3
-5V
S
EN
S
E+1V2-PNX
8
5XX
1
83
20_500_09072
8
.ep
s
09072
8