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3. Drive circuit of the indoor fan motor
・
The indoor fan motor receives VDC (motor drive power supply), VCC (power supply for the control circuit inside the motor),
and VS (speed command voltage) from CN2. The indoor fan motor returns an FG signal of a frequency that matches the
rotation speed.
・
VCC stabilizes the primary 18.5 V power supply into 15 V by using Q201 and supplies it.
・
While on standby for a remote control signal, the Q201 shuts down the VCC and reduces the standby power.
・
The VS receives a command voltage from the microcomputer (IC601). The VS terminal undergoes an analog voltage that
matches the Lo level time ratio of the pulse signal from pin
$5
of the microcomputer. (See Fig. 3-2.)
・
The FG terminal undergoes a signal of 12 pulses per revolution of the motor shaft. By counting the pulse rate, the
microcomputer (IC601) recognizes the motor speed, thereby performing feedback control.
< Typical circuit waveform >
Voltage at pin
$5
of microcomputer (between 0 V and pin
$5
)
FG voltage of fan motor (between pins
④
and
⑦
of CN2)
Relationship between the VS voltage of fan motor
(between pins
④
and
⑥
of CN2) and its rotation
speed (a guide)
When slow
(700min-
1
)
1.7ms.
When fast
(1200min-
1
)
1.7ms.
5V
5V
When slow
(700min-
1
)
7.1ms.
When fast
(1200min-
1
)
15V
15V
4.2ms.
1300min-
1
2.1V
5.4V
Primary 18.5 V
Power signal of indoor fan
(from pin
%8
of microcomputer)
Primary 0 V
Rotation speed feedback signal (to pin
^8
of microcomputer)
Output signal of indoor fan (to pin
$5
of microcomputer)
Indoor fan motor
Fig. 3-1
Fig. 3-2
The indoor fan motor and drive circuit are connected to the primary power supply. They therefore have voltage to ground.
Guard against electric shocks.
While the product is energized, do not under any circumstances detach or reattach a connector. Any such practice would
cause a high voltage to run, resulting in the indoor fan motor and board circuit being destroyed. (Check the discharge of
the C003 before detaching or reattaching the connectors.)
Caution
Caution
5
4
7
6
1
M
VDC
GND
VCC
VS
FG
5V
5V
R207
C202
R204
R232
R202
C201
R231
C206
R201
C203
C208
PC202
+
+
−
−
R203
12V
0V
R233
R234
R206
R205
D201
Q201
PC231
ZD202
PC203
IC683
CN2
0V
C63
3
14
3
(DC311V-325V)
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