XBR-49/55/65/75X900E
XBR-55X900E
56
CN
1
CN4401
U1
Sw
it
ch U
ni
t
H
U
S_
G
N
D
1
15
#3
0
G
ND
1
51
G
ND
1-
474-
647-
12
H
U
S_K
EY
_A
D
2
12
#3
0
P_Vx
1_7P
2
50
VB
TX
7P
HU
S_
PO
W
ER
_K
EY
3
14
#3
0
P_Vx
1_7N
3
49
VB
TX
7N
1-
82
1-
90
0-
11
G
ND
4
48
G
ND
SZ
15
-0
3WL
R
/J
A
M
SZ
15
-0
3H
G
R
/J
A
M
P_Vx
1_6P
5
47
VB
TX
6P
P_Vx
1_6N
6
46
VB
TX
6N
G
ND
7
45
G
ND
P_Vx
1_5P
8
44
VB
TX
5P
P_Vx
1_5N
9
43
VB
TX
5N
CN001
G
ND
10
42
G
ND
TS
_M
AI
N
_+
3.
3V
1
30
#3
0
P_Vx
1_4P
11
41
VB
TX
4P
TS
_TE
M
P
2
29
#3
0
CN1000
P_Vx
1_4N
12
40
VB
TX
4N
TS
_G
N
D
3
27
#3
0
7
1
W
IF
I_S
TB
Y_3.
3V
G
ND
13
39
G
ND
1-
82
1-
14
3-
11
1-
82
1-
11
7-
11
14
2
X_W
IF
I_B
T_RS
T
P_Vx
1_3P
14
38
VB
TX
3P
SY
T10-
03W
L/
JA
M
SY
T1
0-
03
H
G
/J
A
M
1
3
SC
_S
TB
Y_3.
3V
P_Vx
1_3N
15
37
VB
TX
3N
13
4
X_
W
IF
I_
W
AK
EU
P
G
ND
16
36
G
ND
15
5
W
IF
I_
G
N
D
P_Vx
1_2P
17
35
VB
TX
2P
12
6
X_B
T_W
AK
EU
P
P_Vx
1_2N
18
34
VB
TX
2N
9
7
W
IF
I_
G
N
D
G
ND
19
33
G
ND
10
8
3D
_L
R
P_Vx
1_1P
20
32
VB
TX
1P
CN101
8
9
W
IF
I_
G
N
D
P_Vx
1_1N
21
31
VB
TX
1N
ST
BY
3.
3V
1
3
11
10
X_B
T_W
AK
E2
G
ND
22
30
G
ND
5V_M
AI
N
2
13
4
11
W
IF
I_
G
N
D
P_Vx
1_0P
23
29
VB
TX
0P
G
ND
3
17
2
12
KE
Y_
AD
P_Vx
1_0N
24
28
VB
TX
0N
LED
_A
M
BER
4
20
2
13
5V_M
AI
N
G
ND
25
27
G
ND
LE
D
_P
W
M
_W
5
22
3
14
PO
W
ER
_K
EY
P_L
O
CK
N
(L
ow
_A
CT
)
26
26
VB
TX
LO
CK
N
0
LE
Y_P
W
M
_R
6
28
1
15
W
IF
I_
G
N
D
P_
H
TP
D
N
(L
ow
_A
CT)
27
25
VB
TX
H
TP
D
N
0
LE
D
_P
W
M
_B
7
26
11
16
SC
_O
PT
_SE
N
SE
G
ND
28
24
G
ND
LE
D
_P
W
M
_G
8
24
3
17
SC
_G
N
D
N
C(
D
eM
ur
a_
ST
)
29
23
NC
G
ND
9
21
12
18
SC
_SI
RC
S
N
C(
H
i_
Ag
in
g)
30
22
NC
M
AI
N
_3.
3V
10
19
10
19
SC
_M
AI
N
_3.
3V
BIT
SE
L
31
21
BIT
SE
L
O
PT
_SE
N
SE
11
16
4
20
SC
_L
ED
_A
M
BE
R
/W
P_B
IN
T_(
H
i_A
CT
)
32
20
/W
P/(
BI
N
T)
SIR
CS
12
18
9
21
SC
_G
N
D
SC
L
33
19
SC
L
1-
82
1-
13
9-
11
1-
82
1-
12
6-
11
5
22
SC
_L
ED
_P
W
M
_W
SD
A
34
18
SD
A
SY
T1
0-
12
WS
/J
A
M
SY
T1
0-
12
H
G
/J
A
M
NC
23
KE
Y_
G
N
D
3D
_E
N
_M
U
TE
(H
i_A
CT
)
35
17
3D
_E
N
8
24
SC
_L
ED
_P
W
M
_G
3D
_S
YN
C_T
o_P
36
16
3D
_S
YN
C_I
N
NC
25
(T
S_
SC
L)
3D
_S
YN
C_F
ro
m
_P
37
15
3D
_S
YN
C_O
U
T
7
26
SC
_L
ED
_P
W
M
_B
G
ND
38
14
G
ND
3
27
TS
_G
N
D
PA
N
EL
_D
ET(
Lo
w
_A
CT)
39
13
PA
N
EL
_D
ET
6
28
SC
_L
ED
_P
W
M
_R
G
ND
40
12
G
ND
US
B Ca
bl
e
2
29
(TS
_S
D
A/
TS
_TE
M
P)
NC
/G
ND
41
11
NC
/G
ND
G
ND
15
5
1
30
(T
S_M
AI
N
_3.
3V)
NC
/G
ND
42
10
NC
RS
T_
L
14
2
1-
81
9-
45
5-
11
1-
81
8-
69
3-
22
NC
43
9
NC
WO
W_
L
13
4
SH
LD
P-
30
V
-S
-1
(
B
)
JST
SM
30
B
-SH
LD
S-
G
A
N
F-
1-
TF
(L
F)
(SN
)
N
C/
12V
44
8
N
C/
12V
W
O
BT
1_L
12
6
N
C/
12V
45
7
N
C/
12V
W
O
BT
2_L
11
10
#3
0
N
C/
12V
46
6
N
C/
12V
VSY
N
C
10
8
#3
0
N
C/
12V
47
5
N
C/
12V
G
ND
9
7
#3
0
N
C/
12V
48
4
N
C/
12V
G
ND
8
9
#3
0
N
C/
12V
49
3
N
C/
12V
VC
C
7
1
#3
0
CN
10
02
N
C/
12V
50
2
N
C/
12V
VC
C
6
1
1
B
LK#
28
US
B
6
1
W
IF
I_S
TB
Y_3.
3V
(
VB
U
S)
N
C/
12V
51
1
N
C/
12V
VC
C
5
5
1
R
ED
#2
8
US
B
3
2
W
IF
I_
U
SB
_M
(
D
-)
1-
81
9-
81
2-
11
G
ND
4
11
#3
0
US
B
2
3
W
IF
I_
U
SB
_P
(
D
+
)
J
A
E
/
F
I-
R
E
5
1
S
-
H
F
D
M
3
2
1
W
H
T#2
8
US
B
NC
4
N
C
(ID
)
FF
C
D
ir
ec
t
Co
nn
ec
to
r
:I
PE
X
D
P
2
3
1
G
R
N#
28
US
B
5
5
W
IF
I_S
TB
Y_3.
3V
(G
N
D
)
G
ND
1
Sh
el
l
1
Sh
ie
ld
US
B
1
Sh
el
lW
IF
I_
G
N
D
1-
84
4-
75
4-
11
1-
84
9-
99
6-
11
G
A
:
1-
84
4-
04
9-
11
CN
44
00
U2
JA
M
S
TA
12
-1
5WH
-E
T
(J
A
M
)
S
TA
12
-1
5H
G
A
CO
N
u-
U
SB
P
lug
SM
K
C
SS
53
05
-6
H
02
E
NC
1
41
NC
NC
2
40
NC
NC
3
39
NC
NC
4
38
NC
SP
I_
CS(
Lo
w
_A
CT
)
5
37
NC
SP
I_
CK
6
36
NC
SP
I_E
N
_B
(H
i_A
CT
)
7
35
NC
NC
8
34
NC
NC
9
33
NC
CN
90
00
NC
10
32
NC
1-
84
3-
95
3-
11
1-
84
3-
96
0-
11
NC
11
31
NC
JA
M
S
JE
20
-3
0WH
-E
T
JA
M
S
JE
20
-3
0H
G
VC
A(
H
i_
AC
T)
12
30
NC
G
ND
30
26
#2
2
BU
S_
SW
(H
i_
AC
T)
13
29
NC
RE
G
_12V
29
13
#2
2
CN
40
0
SP
I_M
O
D
I(
P_F
_D
O
)
14
28
NC
G
ND
28
27
#2
2
NC
30
TC
O
N
_VC
C12V
SP
I_
M
ID
O
(P
_F
_D
I)
15
27
NC
RE
G
_12V
27
11
#2
2
NC
29
PW
M
2_
D
IM
ME
R
SP
I_E
N
_A
(H
i_A
CT
)
16
26
NC
CU
R_
M
O
N
26
5
#2
6
NC
28
TC
O
N
_VC
C12V
G
ND
17
25
G
ND
RE
G
_12V
25
NC
28
27
BL
_E
RR
P_Vx
1_15P
18
24
Rx
P15
G
ND
24
15
#2
2
30
26
G
ND
P_Vx
1_15N
19
23
Rx
N
15
PO
W
ER
_M
AIN
23
17
#2
2
NC
25
D
C_
D
IM
M
ER
G
ND
20
22
G
ND
G
ND
22
21
#2
2
NC
24
BL
_ON
P_Vx
1_14P
21
21
Rx
P14
PO
W
ER
_M
AIN
21
19
#2
2
NC
23
BL
IN
KIN
G
P_Vx
1_14N
22
20
Rx
N
14
G
ND
20
1
#2
2
NC
22
PW
M
3_
D
IM
ME
R
G
ND
23
19
G
ND
G
ND
19
3
#2
2
22
21
G
ND
P_Vx
1_13P
24
18
Rx
P13
G
ND
18
NC
NC
20
PW
M
1_
D
IM
ME
R
P_Vx
1_13N
25
17
Rx
N
13
POW
ER
_A
U
17
2
#2
2
21
19
PO
W
ER
_M
AIN
G
ND
26
16
G
ND
POW
ER
_A
U
16
4
#2
2
NC
18
FB
_R
EF
P_Vx
1_12P
27
15
Rx
P12
POW
ER
_A
U
15
NC
23
17
PO
W
ER
_M
AIN
P
_Vx
1_12N
28
14
Rx
N
12
G
ND
14
1
#2
2
5
16
PG
OOD
G
ND
29
13
G
ND
G
ND
13
2
#2
2
24
15
G
ND
P_Vx
1_11P
30
12
Rx
P11
G
ND
12
3
#2
2
#22
6
14
ST
BY
_3.
3V_I
N
P_Vx
1_11N
31
11
Rx
N
11
POW
ER
_L
D
11
8
#2
2
29
13
RE
G
_12V
G
ND
32
10
G
ND
POW
ER
_L
D
10
9
#2
2
6
12
POW
ER
_ON
P_Vx
1_10P
33
9
Rx
P10
POW
ER
_L
D
9
10
27
11
RE
G
_12V
P_Vx
1_10N
34
8
Rx
N
10
POW
ER
_L
D
8
NC
#
26
NC
10
D
C_D
ET
_VT
H
_2
G
ND
35
7
G
ND
TC
ON
_ON
7
7
#2
6
8
9
D
C_D
ET
_VT
H
_1
P_Vx
1_9P
36
6
Rx
P9
CO
N
3
POW
ER
_ON
6
12
#2
6
9
8
G
ND
P_Vx
1_9N
37
5
Rx
N
9
G
N
D
G
ro
und
1
4
AW
G
#
22
PG
OOD
5
16
#2
6
7
7
TC
ON
_ON
G
ND
38
4
G
ND
G
N
D
G
ro
und
2
2
AW
G
#
22
G
ND
4
1
#2
2
14
6
ST
BY
_3.
3V_O
U
T
P_Vx
1_8P
39
3
Rx
P8
PW
R
Po
w
er
V12
IN
3
NC
TC
O
N
_VC
C12V
3
4
#2
2
26
5
CU
R_
M
O
N
P_Vx
1_8N
40
2
Rx
N
8
PW
R
Po
w
er
V12
IN
4
3
AW
G
#
22
G
ND
2
2
#2
2
16
4
POW
ER
_A
U
G
ND
41
1
G
ND
PW
R
Po
w
er
V12
IN
5
1
AW
G
#
22
TC
O
N
_VC
C12V
1
5
#2
2
19
3
G
ND
1-
84
4-
64
2-
11
M
ol
ex
,(
B
M
10
)
1-
81
9-
56
4-
11
1-
82
2-
32
2-
11
1-
82
0-
26
4-
11
17
2
POW
ER
_A
U
or
1
-8
43
-6
99
-1
1,
I
PE
X
(B
M
11)
JA
E/
FI
-R
E4
1S
-H
F
JST
SM
05
B
-P
A
SS-
TB
T(
LF
)(
SN
)
PA
P-
05
V
-S
U
N
IF
IE
D
P
O
LA
R
IT
Y
TY
PE
D
C
JA
CK
20
1
G
ND
J9
00
1
1
-
8
4
3
-
9
2
5
-
1
1
1-
84
3-
91
7-
11
CN4000
1-
84
4-
72
1-
11
P
B
D
P
-
3
0
V
-
S
JST
SM
30
B
-P
B
D
SS-
TF
G
ND
1
+
N.
C(
O
PE
N)
2
-
N.
C(
O
PE
N)
3
LD
_E
RR
_D
ET
4
N.
C(
O
PE
N)
5
N.
C(
O
PE
N)
6
N.
C(
O
PE
N)
7
N.
C(
O
PE
N)
8
N.
C(
O
PE
N)
9
TM
_R
D
Y_
M
O
N
10
N.
C(
O
PE
N)
11
N.
C(
O
PE
N)
12
P_
SE
N
S_
M
O
N
13
TM
_D
RV
_E
MI
T
14
TM
_SP
I_
SY
N
C
15
CN
32
01
G
ND
16
SP
-B
O
X
A
SSY
L+
1
4
#2
2
1
1
SP
_M
AI
N
_RP
N.
C(
O
PE
N)
17
F
Y17 W
25L
A
R
G
E-
EL
L-
2
3
#2
2
2
2
SP
_M
AI
N
_RN
N.
C(
O
PE
N)
18
JS
T
SM
P-
02
V
F-
N
2
3
SP
_M
AI
N
_L
N
N.
C(
O
PE
N)
19
1-
78
4-
99
1-
21
1
4
SP
_M
AI
N
_L
P
N.
C(
O
PE
N)
20
1-
84
2-
59
3-
11
1-
84
2-
56
6-
12
G
ND
21
PB
V
P0
4V
-S
SM
04
B
-P
B
V
SS
-T
B
(L
F)(S
N
)(P
S)
TM
_D
RV_S
PI
_M
O
SI
_00
22
TM
_D
RV_S
PI
_M
IS
O
_00
23
TM
_D
RV_S
PI
_S
CK
_00
24
TM
_D
RV_S
PI
_N
SS
_00
25
G
ND
26
N.
C(
O
PE
N)
27
SA
_M
O
D
E
28
N.
C(
O
PE
N)
29
BL
_ON
30
SP
-B
O
X
A
SSY
R+
1
1
#2
2
1-
84
3-
85
8-
71
F
Y17 W
25L
A
R
G
E-
ER
NC
2
NC
IM
SA
-9
63
7S
-3
0-
Y8
00
R-
3
2
#2
2
JS
T
SM
P-
03
V
F-
N
1-
81
8-
96
1-
21
CN
40
00
05
00
2H
R
-H
30
J0
5
1-
84
3-
85
8-
71
BL
_ON
1
CN
10
00
JI
G
_B
L_T
YP
E
2
SM
10
B
-P
B
V
SS
-T
B
(L
F)(S
N
)(P
S)
SA
_M
O
D
E
3
1-
84
2-
56
9-
12
RE
SE
RV
ED
4
14
1
G
ND
G
ND
5
13
2
G
ND
TM
_SP
I_
N
SS
6
12
3
G
ND
TM
_SP
I_
SC
K
7
NC
4
NC
TM
_S
PI_
M
IS
O
8
NC
5
SA
_RE
F_L
TM
_S
PI
_M
O
SI
9
NC
6
SA
_RE
F_H
G
ND
10
NC
7
NC
SW
D
IO
11
11
8
24V
SW
CL
K
12
10
9
24V
RE
SE
RV
ED
13
9
10
24V
RE
SE
RV
ED
14
PB
V
P1
0V
-S
G
ND
15
1-
84
2-
59
6-
11
TM
_SP
I_
SY
N
C
16
TM
_E
M
IT
17
P_S
EN
SE
_M
O
N
/L
ED
_V
CC
_M
O
N
18
RE
SE
RV
ED
19
TM
_U
PD
ATE
20
TM
_R
EA
D
Y
21
JIG
_E
N
22
TM
_R
ES
ET
23
TM
_M
O
D
E
24
TM
_L
O
G
_RX
D
/E
CS
_RX
D
25
TM
_L
O
G
_TX
D
/E
CS
_TX
D
26
LD
_E
RR
O
R
27
TM
_E
CS
_RX
D
28
TM
_E
CS
_TX
D
29
G
ND
30
D
V
I
O
U
T
CN
10
01
1-
84
4-
52
7-
11
M
ol
ex
(B
M
10)
or
1
-8
42
-5
46
-2
1,
I
PE
X
(B
M
11)
H
ar
ne
ss A
ssy
(
M
AI
N
)
1-
910
-112
-05
G
N
1
Sm
art
C
ore
BM
K
S
Bo
ar
d
HS
C3
-L
AC
Ada
pt
or
19.
5V
M
O
U
N
TE
D
P
W
B
E-
T-
CON
(
55
)
BT
A
nt
ena
JK
3_O
T_R
_L
_C
M
O
U
N
T
LD
35
M
OU
N
T
Co
nn
ec
to
r A
ss
y
30
P
1-
910
-112
-06
TS
A
2_K
S M
O
U
N
T
W
LA
N
/B
T M
O
D
U
LE
SW
ITC
H
U
N
IT (
3M
-P)
FL
EX
IBL
E F
LA
T C
ABL
E
30P
1-
910
-112
-04
FL
EX
IBL
E F
LA
T C
ABL
E
41P
1-
849
-881
-11
1-
849
-886
-11
FL
EX
IBL
E F
LA
T C
ABL
E
51P
1-
849
-883
-11
1-
849
-891
-11
CONNECTOR DIAGRAMS
Summary of Contents for BRAVIA XBR-49X900E
Page 52: ...XBR 49 55 65 75X900E TROUBLE SHOOTING BMKS A side view PCB PARTS MAP 52 ...
Page 53: ...XBR 49 55 65 75X900E TROUBLE SHOOTING BMKS B side view PCB PARTS MAP 53 ...
Page 75: ...XBR 49 55 65 75X900E DISASSEMBLY 1 13 WIRE DRESSING 1 XBR 55X900E 75 1 3 4 2 ...
Page 101: ...XBR 49 55 65 75X900E DISASSEMBLY 1 38 LD35 1 XBR 55X900E 101 1 2 LD35 ...
Page 108: ...XBR 49 55 65 75X900E DISASSEMBLY 2 8 TAPE 2 XBR 65X900E 108 1 NOTE 2 3 TAPE TAPE TAPE ...
Page 113: ...XBR 49 55 65 75X900E DISASSEMBLY 2 13 WIRE DRESSING 2 XBR 65X900E 113 1 3 4 2 ...
Page 121: ...XBR 49 55 65 75X900E DISASSEMBLY 2 21 TAPE 2 XBR 65X900E 121 1 NOTE 2 3 4 TAPE TAPE TAPE TAPE ...
Page 138: ...XBR 49 55 65 75X900E DISASSEMBLY 2 37 LD45 2 XBR 65X900E 138 1 1 2 LD45 ...
Page 153: ...XBR 49 55 65 75X900E DISASSEMBLY 4 13 WIRE DRESSING 4 XBR 75X900E 153 1 3 2 ...
Page 154: ...XBR 49 55 65 75X900E DISASSEMBLY 4 14 WIRE DRESSING 4 XBR 75X900E 154 1 3 2 ...
Page 187: ...XBR 49 55 65 75X900E DISASSEMBLY 5 7 TAPE 5 XBR 49X900E 187 NOTE TAPE TAPE TAPE 1 2 3 4 TAPE ...
Page 188: ...XBR 49 55 65 75X900E DISASSEMBLY 5 8 TAPE 5 XBR 49X900E 188 NOTE 1 2 3 4 TAPE TAPE TAPE TAPE ...
Page 192: ...XBR 49 55 65 75X900E DISASSEMBLY 5 12 WIRE DRESSING 5 XBR 49X900E 192 1 2 3 ...
Page 218: ...XBR 49 55 65 75X900E DISASSEMBLY 5 37 LD30 5 XBR 49X900E 218 1 LD30 2 ...