ER-A490 (serv.man4). ERA490 Option Service Manual - Sharp ECR Service Manual (repair manual). Page 31

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4. Power supply circuit
The ER-A495G supplies +5V to +24V, and 
±
12V is generated from
+24V in the DC/DC convertor circuit.
Fig. 4-1
(1)
The PX signal from the OPC1 alternately turns on and off the
comparator output of IC 8 (pin 7), which causes Q1 to turn on
and off. (Circuit 
A
 )
Fig. 4-2
T1: Software starting:
26.04us
Normal operation:
13.02us
*
 After POFF cancel (Power ON), software start is made for
     13.3ms.
Duty (Q1: ON/OFF) : Software strating: 12.5%
Noemalperation : 25%
(2)
The potential at point 
a
  is 4.8V when the output voltage is
+12V(About +11V). A load fluctuation causes the +12V output to
change. At point 
b
  of the comparators (+) side, a triangular
waveform appears as shown in Fig. 4-2.
(3)
The comparator (IC No. 8...Circuit 
B
), the potential at point 
a
 
is compared with that of point 
b
  . If the potential at point 
a
 is
lower than point 
b
  , Q1 activating time is prolonged to raise
the output voltage (by  increasing the duty cycle). On the con-
trary, if the potential at point 
a
  is higher, the transistor activat-
ing time is hortened to decrease the output voltage (by decreas-
ing the duty cycle). As Q1 duties cycles are varied by detecting
the +12V output fluctuation in the comparator (Circuit 
B
), the
output voltage is regulated at a constant level.
Fig. 4-3
Potential at point a changes according to a fluctuation in the
+12V output. Waveform at point a differs depending on the state
of +12V output.
(4)
The pin 3 output of the IC9 chip at circuit 
C
 is at a high level
when the pin 1 input is at 5V. But, when it drops below 4.5V, the
line goes to the GND level. This causes Q1 to turn off so that
+12V and 12V are shut off. It is provided for prevention from
malfunction in the logic circuit when the +5V supply from mal-
function in the logic circuit when the +5V supply from the ER-
A495G main frame drops.
*
IC9: Not used
5. ER-A5RS channel setting
The ER-A5RS ports can be set to channel 1 - 7 and invalid (inhibit)
with SW1 on the PWB.
SW1 setting contents
SW1 1~3 are used for channel setting of RS-232 connector 1
(RSCN1).
SW1 4~6 are used for channel setting of RS-232 connector 2
(RSCN2).
+24V
+24V
+5V
+12V
-12V
T800mA
+ C49
100µ
50V
R22
4.3K
IC 9
1
2
D 2
+
+
C 51
C 52
RD33EB1
ZD 2
R 17
2.7KG
8
4
2
3
+
-
R14
10KG
C28
330P
R13
100K G
+
-
6
5
R16
R15
10K
10K
C
B
A
Q1
ZD1
RD27EB4
T1
H6752RC
+5V
3
D 3
100µ35V x 2
R24
2.2K
1
R18
2.2KG
IC8
9393
7
IC8
9393
D1
E352
C50
10µ
16V
ZD3
RD5.1EL1
PX
c
a
b
+5V
GND
OFF
ON
+5V
GND
OFF
ON
OFF
PX
Q1
ON,OFF
c
Point
3.255µs
T1
ON
OFF
ON
ON
OFF
OFF
OFF
+5V
GND
500mV
+4.8V
+1.4V
GND
GND
+1.4V
+4.8V
+5V
PX
Q1
ON,  OFF
Point
a
b
c
Point
Point
a
Point
c
Point
+3V
*1
*2
*3
(a)
(0)
(1)
SW1
RSCN1
RSCN2
OPTCN1
SW1
RSCN1
setting
3
2
1
0
0
0
RS-232 invalid
0
0
1
Channel 1
0
1
0
Channel 2
0
1
1
Channel 3
1
0
0
Channel 4
1
0
1
Channel 5
1
1
0
Channel 6
1
1
1
Channel 7
SW1
RSCN2
setting
6
5
4
0
0
0
RS-232 invalid
0
0
1
Channel 1
0
1
0
Channel 2
0
1
1
Channel 3
1
0
0
Channel 4
1
0
1
Channel 5
1
1
0
Channel 6
1
1
1
Channel 7
Note
1) If RSCN1 port and RSCN2 port of the ER-A5RS are set to the
same channel, RSCN2 port becomes invalid and only RSCN1 is
valid.
2) If RSCN of the ER-A5RS connector are set to the same channel,
the buses compete and the operation cannot be assured. In addi-
tion, it may break the hardware. Never set the two to the same
channel. Be sure to set them to different channels or to set invalid.
6
5
4
3
2
1
O
F
F
1
0
6
5
4
CN2
3
2
1
CN1
3 – 7
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