Fig.4 Total Power Dissipation vs. Ambient
Temperature
0
30
10
0255075100 125
20
30
40
50
60
Ambient temperature T
a
(˚C)
Forward current I
F
(mA)
Fig.1 Forward Current vs. Ambient
Temperature
7
PC852X Series/PC853X Series
100
200
300
320
400
0
Ambient Temperature T
a
(˚C)
Total Power dissipation P
tot
(mW)
025507510030
PC853X
PC852X
Fig.5 Peak Forward Current vs. Duty Ratio
Duty ratio
5
5
Pulse width100µs
T
a
=25˚C
10
20
100
50
200
500
210
3
10
2
52 10
1
525
Peak forward current I
FM
(mA)
1
10 000
5 000
2 000
1 000
Fig.3-b Collector Power Dissipation vs.
Ambient Temperature
0
100
350
50
150
250
200
300
Collector power dissipation P
C
(mW)
Ambient temperature T
a
(˚C)
30 0 25 50 75 100 125
(PC853X)
0
0 125
100
200
50
150
25 50 75 10030
Collector power dissipation P
C
(mW)
Ambient temperature T
a
(˚C)
(PC852X)
Fig.3-a Collector Power Dissipation vs.
Ambient Temperature
Diode power dissipation P (mW)
Ambient temperature T
a
(˚C)
0
100
80
70
60
40
20
30 0 25 50 55 75 100 125
Fig.2 Diode Power Dissipation vs.
Ambient Temperature
Sheet No.: D2-A04003EN
50
0
100
150
020406080100
Relative current transfer ratio (%)
Ambient Temperature T
a
(˚C)
I
F
=1mA
V
CE
=2V
30
Fig.9 Relative Current Transfer Ratio vs.
Ambient Temperature
8
Fig.7-b Current Transfer Ratio vs. Forward
Current
0
0
100
200
12345
0.5mA
1mA
1.5mA
2mA
2.5mA
3mA
5mA
Collector current I
C
(mA)
Collector-emitter voltage V
CE
(V)
P
C
(MAX.)
T
a
=25˚C
I
F
=10mA
(PC852X)
Fig.8-a Collector Current vs. Collector-
emitter Voltage
0
0.1
Current transfer ratio CTR (%)
0.2 0.5 1012 5
Forward current I
F
(mA)
V
CE
=2V
T
a
=25˚C
5 000
4 000
3 000
2 000
1 000
(PC853X)
Fig.8-b Collector Current vs. Collector-
emitter Voltage
0.5mA
1mA
1.5mA
2mA
2.5mA
3mA
5mA
P
C
(MAX.)
I
F
=10mA
0
0
100
200
12345
Collector current I
C
(mA)
Collector-emitter voltage V
CE
(V)
T
a
=25˚C
(PC853X)
PC852X Series/PC853X Series
0
0.1
Current transfer ratio CTR (%)
0.2 0.5 1012 5
Forward current I
F
(mA)
V
CE
=2V
T
a
=25˚C
5 000
4 000
3 000
2 000
1 000
(PC852X)
Fig.7-a Current Transfer Ratio vs. Forward
Current
Fig.6 Forward Current vs. Forward Voltage
0
2
0.5 1.0 1.5 2.0 2.5 3.0 3.5
5
10
20
50
100
200
500
1
Forward voltage V
F
(V)
Forward current I
F
(mA)
50˚C
25˚C
0˚C
25˚C
T
a
=75˚C
Sheet No.: D2-A04003EN
Frequency f (kHz)
0
0.1
110100
100 10
Voltage gain A
v
(dB)
V
CE
=2V
I
C
=20mA
T
a
=25˚C
R
L
=1k
1 000
25
20
15
10
5
Fig.14 Frequency Response
Remarks : Please be aware that all data in the graph are just for reference and not for guarantee.
9
Collector-emitter saturation voltage V
CE (sat)
(V)
Forward current I
F
(mA)
0
0
1
2
3
4
5
12345
10mA
30mA
50mA
70mA
100mA
T
a
=25˚C
I
C
=5mA
Fig.15 Collector-emitter Saturation Voltage
vs. Forward Current
Response time (µs)
2
1
5
10
20
50
100
200
500
0.01 0.1 1 10
V
CE
=2V
I
C
=20mA
T
a
=25˚C
t
r
t
f
t
d
t
s
1 000
Load resistance R
L
(k)
Fig.12 Response Time vs. Load Resistance
V
CC
t
f
t
r
t
s
90%
10%
t
d
Output
Input
R
L
Input
OutputR
D
Please refer to the conditions in Fig.12.
V
CE
Fig.13 Test Circuit for Response Time
PC852X Series/PC853X Series
20
0
40 60 80 100
10
10
10
9
10
8
10
7
10
6
10
5
Collector dark current I
CEO
(A)
Ambient temperature T
a
(˚C)
V
CE
=200V
30
10
11
Fig.11 Collector Dark Current vs. Ambient
Temperature
0
30
0.2
020406080100
0.4
0.6
0.8
1.0
1.2
Ambient temperature T
a
(˚C)
Collector-emitter saturation voltage V
CE (sat)
(V)
I
F
=20mA
I
C
=100mA
Fig.10 Collector - emitter Saturation Voltage
vs. Ambient Temperature
Sheet No.: D2-A04003EN

PC853X

Mfr. #:
Manufacturer:
Sharp Microelectronics
Description:
OPTOISOLATOR 5KV DARL 4DIP
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
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