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Fig.1 Forward Current vs. Fig.2 Collector Power Dissipation vs.
Ambient Temperature
Fig.4 Forward Current vs.
Fig.5 Current Transfer Ratio vs.
Forward Current Fig.6 Collector Current vs.
Collect or-emitter Voltage
Forward voltage V (V)
Forward current I (mA)
F
FCE
F
Forward current I (mA)
F
-55
Ta= 75 C
50 C 25 C
0 C
-25 C
Ta= 25 C
I = 30mA
Pc(MAX.)
5mA
10mA
20mA
F
80
R =
500k 100k
2mA
Ambient Temperature
Forward current I (mA)
Ambient temperature T a ( C) Ambient temperature T a ( C)
Collector power dissipation Pc (mW)
Collector current Ic (mA)
Current transfer ratio CT R (%)
Collector-emitter voltage V (V)
60
40
20
0-25 0 25 50 75 100 125 50-25-55 0 25 12575 100
200
100
50
150
0
160
0
10.5 1.0 1.5 2.0 2.5 3.0
2
5
10
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50
100
200
500
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10
15
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25
30
35
40
45
0
02 5 10 20 50
20
40
80
100
120
140
160
200
180
60
Forward Voltage
o
oo
o
o
o
o
o
o
Fig.3 Collector-emitter Saturation
Voltage vs. Fo rward Current
Forward current I (mA)
F
Collector-emitter saturation voltage
V (sat) (V)
2mA
3mA
1mA
5mA
Ic= 0.5mA Ta= 25 C
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0
1
2
3
4
5
6
VCE=5V
Ta= 25 C
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Fig.11 Frequency Response
Fig.9 Colle ct or Da rk Cu rren t vs.
Voltage gain Av (dB)
Frequency f (kHz)
-8
-100.5 1
-4
-2
-6
2 5 10 20
R = 200
50010050 200
150 75
Ambient temperature Ta ( C)
10
Collector dark current I (A)
2
0
10
10 -30
-13
-12
20040
Ambient Temperature
10
10
10
10
CEO
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-10
-9
-8
10
-7
-6
100
Vcc= 5V
I = 10mA
T a= 25 C
F
o
o
60 80
90%
Test Ci rcuit for Frequency Response
Output
Vcc
td
tr tf
ts
Output
Test Circuit for Response Time
Load resistance RL (k )
Load Resistance
Fig.1 0 Re sp on se Time vs.
Response time ( s)
1
0.5
0.02
Input
Vcc
0.05
10
5
2
Output
Input
0.1 0.2
10%
0.5
tr
tf
o
Fig.7 Relat ive Current Transfer Ratio vs.
Ambient temperature Ta ( C)
50
R e lative current transfer ratio (%)
-55
0
100
0-25 25
Ambient Temperature
150
100
o
7550
vs. Ambi e nt Temper atu r e
Ambient temperature Ta ( C)
Fig.8 Collector-emitter Saturation Voltage
Coll e ctor -e mit te r sa tu r ation v olt a ge
0.14
0.12
0.10
0.08
0.06
0.04
0.02
0-55
V (sat) (V)
-25 0
0.16
7525 50 o100
RDRL
RDRL
IF= 10mA
VCC=5V
Ta= 25 C
IF= 10mA
VCE=5V IF= 10mA
IC=2.5mA
VCE=10V
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