In the absence of confirmation by device specification sheets, SHARP takes no responsibility for any defects that occur in equipment using any of SHARP's devices, shown in catalogs,
data books, etc. Contact SHARP in order to obtain the latest version of the device specification sheets before using any SHARP's device.”
PC866 Series
s
Absolute Maximum Ratings
Parameter
Forward current
*1
Peak forward current
Reverse voltage
Power dissipation
Collector-emitter voltage
Emitter-collector voltage
Collector current
Collector power dissipation
Total power dissipation
*2
Isolation voltage
Operating temperature
Storage temperature
*3
Soldering temperature
Symbol
I
F
I
FM
V
R
P
V
CEO
V
ECO
I
C
P
C
P
tot
V
iso
T
opr
T
stg
T
sol
( Ta = 25˚C )
Rating
50
1
6
70
80
6
50
150
200
5 000
- 30 to + 100
- 55 to + 125
260
Unit
mA
A
V
mW
V
V
mA
mW
mW
V
rms
˚C
˚C
˚C
Input
Output
*1 Pulse width <=100µs, Duty ratio : 0.001
*2 40 to 60% RH, AC for 1 minute
*3 For 10 seconds
s
Electoro-optical Characteristics
Parameter
Forward voltage
Peak forward voltage
Reverse current
Terminal capacitance
Collector dark current
Collector-emitter breakdown voltage
Emitter-collector breakdown voltage
Current transfer ratio
Collector-emitter saturation voltage
Isolation resistance
Floating capacitance
Cut-off frequency
Response time
Rise time
Fall time
Symbol
V
F
V
FM
I
R
C
t
I
CEO
BV
CEO
BV
ECO
CTR
V
CE ( sat )
R
ISO
C
f
fc
t
r
t
f
Conditions
I
F
= 10mA
I
FM
= 0.5A
V
R
= 4V
V = 0, f = 1kHz
V
CE
= 24V, I
F
= 0
I
C
= 0.1mA, I
F
= 0
I
E
= 10
µA,
I
F
= 0
I
F
= 1mA, V
CE
= 0.5V
I
F
= 1mA, I
C
= 0.2mA
DC500V, 40 to 60% RH
V = 0, f = 1MHz
V
CE
= 5V, I
C
= 2mA, R
L
= 100
Ω
- 3dB
V
CE
= 2V, I
C
= 2mA
R
L
= 100
Ω
MIN.
-
-
-
-
-
80
6
100
-
5 x 10
10
-
-
-
-
TYP.
1.2
-
-
30
-
-
-
-
-
10
11
0.6
50
8
8
( Ta = 25˚C )
MAX.
1.4
3.0
10
250
100
-
-
-
0.4
-
1.0
-
-
-
Unit
V
V
µ
A
pF
nA
V
V
%
V
Ω
pF
kHz
µ
s
Input
Output
Transfer
charac-
teristics
PC866 Series
Fig. 1 Forward Current vs.
Ambient Temperature
60
Fig. 2 Diode Power Dissipation vs.
Ambient Temperature
120
40
Diode power dissipation P ( mW )
50
100
Forward current I
F
( mA )
80
70
60
30
20
40
25
20
0
- 30
10
0
- 30
0
25
50
75
a
Ambient temperature T
100
( ˚C )
125
0
25
50
75
a
100
( ˚C )
125
Ambient temperature T
Fig. 3 Collector Power Dissipation vs.
Ambient Temperature
200
Collector power dissipation P
C
( mW )
Fig. 4 Power Dissipation vs.
Ambient Temperature
250
Power dissipation P
tot
( mW )
150
200
100
150
100
50
50
0
- 30
0
- 30
0
25
50
75
100
125
0
25
50
75
( ˚C )
100
125
Ambient temperature T
a
( ˚C )
Ambient temperature T
a
Fig. 5 Peak Forward Current vs. Duty Ratio
10 000
5 000
FM
( mA )
Fig. 6 Forward Current vs. Forward Voltage
500
200
100
( mA )
50
20
10
5
2
1
T
a
= 75˚C
50˚C
25˚C
0˚C
- 25˚C
Pulse width <=100
µs
T
a
= 25˚C
2 000
1 000
500
200
100
50
20
10
5
5
Peak forward current I
10
-3
2
5
10
-2
2
5
10
-1
2
Forward current I
F
5
1
0
0.5
1.0
1.5
2.0
2.5
3.0
3.5
Duty ratio
Forward voltage V
F
( V )
PC866 Series
Fig. 7 Current Transfer Ratio vs.
Forward Current
500
V
CE
= 0.5V
T
a
= 25˚C
400
Current transfer ratio CTR ( % )
Collector current I
C
( mA)
40
20mA
30
10mA
Fig. 8 Collector Current vs.
Collector-emitter Voltage
50
I
F
= 30mA
P
C
( MAX.)
300
200
20
5mA
10
1mA
100
0
0.1
1
Forward current I
F
( mA )
5
0
0
1
2
3
4
Collector-emitter voltage V
CE
( V)
5
Fig. 9 Relative Current Transfer Ratio vs.
Ambient Temperature
150
I
F
= 1mA
V
CE
= 0.5V
Fig.10 Collector-emitter Saturation Voltage
vs. Ambient Temperature
0.16
Collector-emitter saturation voltage V
CE ( sat )
( V )
0.14
0.12
0.10
0.08
0.06
0.04
0.02
0
- 30
0
20
40
60
80
100
I
F
= 20mA
I
C
= 1mA
Relative current transfer ratio ( % )
100
50
0
- 30
0
20
40
60
80
( ˚C )
100
Ambient temperature T
a
Ambient temperature T
a
(˚C)
Fig.11 Collector Dark Current vs.
Ambient Temperature
10
10
Collector dark current I
CEO
( A )
-5
Fig.12 Response Time vs. Load Resistance
500
V
CE
= 2V
I
C
= 2mA
T
a
= 25˚C
5
-6
V
CE
= 24V
200
100
Response time (
µ
s )
50
20
10
5
5
10
-7
5
t
r
t
f
10
-8
5
t
d
2
1
0.5
0.2
0.1
0.01
t
s
10
-9
5
10
10
- 10
5
- 11
- 30
20
0
40
60
Ambient temperature T
a
( ˚C )
80
100
0.1
1
Load resistance R
L
( k
Ω
)
10
50
PC866 Series
Fig.13 Frequency Response
Test Circuit for Response Time
V
CE
= 5V
I
C
= 2mA
T
a
= 25˚C
V
CC
Input
R
D
R
L
Output
Input
Output
10%
90%
t
d
t
s
t
r
t
f
0
Voltage gain Av ( dB )
R
L
= 10k
Ω
- 10
1k
Ω
100
Ω
Test Circuit for Frepuency Response
V
CC
- 20
R
D
1
2
5
10
20
50 100 200
500
R
L
Output
0.5
Frequency f ( kHz )
Fig.14 Collector-emitter Saturation Voltage
vs. Forward Current
(V)
6
T
a
= 25˚C
5
7mA
5mA
3mA
CE ( sat )
Collector-emitter saturation voltage V
4
3
2
1mA
I
C
= 0.5mA
1
0
0
2
4
6
8
10
12
F
14
16
18
20
Forward current I
( mA )
q
Please refer to the chapter “ Precautions for Use ”