XV-DV740
115
5
7
8
5
6
7
8
C
D
F
A
B
E
Protection circuit that activates against a PRTCT ERR error
B
A
A
C101
(C102)
1/50
+
+
to
XPROTECT
(
µ
-com)
6CH AMP Assy
D
R108
27k
R101
(R104)
1k
R102
(R105)
10k
R103
(R106)
10k
R109
820
D105
(D106)
Q102_1/2
(Q104_1/2)
Q102_2/2
(Q104_2/2)
Q101_1/2
(Q103_1/2)
Q101_2/2
(Q103_2/2)
D101
(D102)
VD+5
VD+5
VH+
(VP+15)
VH–
(VA–12)
2
-1 Short-circuit-detection circuit for the amplifier
power circuit (VH+[VP+15], VD+5, -12 V [VA-12])
Circuit for shutting the power off when VP+15, VD+5, or VA-12
is short-circuited to ground (GND)
2
-3 Short-circuit-detection circuit for VFDP
-2 Short-circuit-detection circuit for the DVD power
TUNER
R108
27k
D104
1SS355
Q106
DTC124EUA
Q107
DTA124EUA
VP+8
• In Normal mode, as Q101 (Q103) (E2, B2, C2) and Q102
(Q104) (E2, B2, C2) are on, the voltage at Point
A
is about 5 V.
The voltage at Point
B
is therefore about the same. As Q101
(Q103) (E, C, B) is off, Q102 (Q104) (E, C, B) is also off.
(1) When VH+(VP+15) is short-circuited to GND
As the voltage at Point
B
becomes almost ground potential, and
Q101 (Q103) (E, C, B) then Q102 (Q104) (E, C, B) are turned on,
the level of XPROTECT becomes low.
→
The microcomputer detects the XPROTECT level and shuts
the power to the unit off.
(2) When VH-(VA-12) is short-circuited
As the electric potential of VE at Q102 (Q104) (E2, C2, B2)
becomes the same as that at VB, Q102 (Q104) (E2, C2, B2) is
turned off. Following this, Q101 (Q103) (E2, B2, C2) is turned
off, which changes the voltage at Points
A
and
B
to a value other
than 5 V. Therefore, Q101 (Q103) (E, C, B) then Q102 (Q104) (E,
C, B) are turned on, the level of XPROTECT becomes low.
(3) When VD+5 is short-circuited
The level of the XPROTECT line becomes low. The
microcomputer detects the XPROTECT level and shuts the power
to the unit off.
C
C
E
to
XPROTECT
(
µ
-com)
R108
27k
R112
1k
R113
220k
R114
82k
Q115
DTA124EUA
Q114
2SD2114K
(VW)
VD+5
FL AC2
VA-12
E
B
B
B2
B2
E2
E2
C2
C2
As the TUNER line is fixed to GND level, Q107 is always on. If
the level at VP+8 falls to GND level because of short-circuit, etc.,
Q106 is turned on, and the level of the XPROTECT line becomes
low.
←
The microcomputer detects the XPROTECT level and shuts
the power to the unit off.
TRADE2 Assy
H
6CH AMP Assy
D
to
XPROTECT
(
µ
-com)
R108
27k
Q3651_2/2
RN1901
Q3651_1/2
RN1901
C2
C
E
B
E2
B2
VD+5
FAN+
VPF+15
V-12F
R3654
1.8k
D3658
UDZS7.5B
D3657
1SS355
D3655
1SS133
D3651-D3654
1SS133
×
4
R3655
8.2k
R3656
22k
R3658
2.2k
R3657
33(1/4W)
Q3652
DTA124TK
Q3654
2SD2144S
C3652
47/50
6CH AMP Assy
D
If VFDP is short-circuited to GND, or if the DC electric potential
at FL AC1 becomes GND level (in Normal mode: about -27 V)
because of a failure in the DC bias circuit of FL AC1, Q114 then
Q115 are turned on, and the level of XPROTECT becomes low.
→
The microcomputer detects the XPROTECT level and shuts
the power to the unit off.
2
When the main power supply becomes LO level
because of short-circuit or disconnection of
connectors
3
When the FAN connector is disconnected or
when rotation of the fan is interrupted
FAN–
If no fan is connected between FAN+ and FAN-, or when the fan
cannot rotate because of a foreign object caught in the blades, the
BASE of Q3652 becomes OPEN, and Q3652 and Q3651-
1/2
(E, C,
B) are turned off. Then Q3651-
2/2
(E2, B2, C2) is turned on, and
the level of XPROTECT becomes low.
→
The microcomputer detects the XPROTECT level and shuts
the power to the unit off.
When FAN+ and FAN- are short-circuited, the electric potential at
Point
A
becomes higher than GND level by the addition of the
values at D3656 and D3657. As this value is lower than that at
D3658, Q3651 (E, C, B) is turned off, Q3651 (E2, B2, C2) is
turned on, and the level of XPROTECT becomes low.
* ( )means the wiring No. of VP+15 line.
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