Datasheet
Figure 1. Forward current vs. temperature. Figure 2. Collector power dissipation vs. tempera-
ture.
Figure 3. Frequency response.
* CTR = x 100%
I
C
I
F
Electrical Specications (T
A
= 25˚C)
Parameter Symbol Min. Typ. Max. Units Test Conditions
Forward Voltage V
F
– 1.4 1.7 V I
F
= 60 mA
Reverse Current I
R
– – 10 µA V
R
= 6 V
Terminal Capacitance C
t
– – 100 pF V = 0, f = 1 MHz
Collector Dark Current I
CEO
– – 50 nA V
CE
= 10 V
Collector-Emitter Breakdown Voltage BV
CEO
70 – – V I
C
= 0.1 mA, I
F
= 0
Emitter-Collector Breakdown Voltage BV
ECO
6 – – V I
E
= 10 µA, I
F
= 0
Collector-Base Breakdown Voltage BV
CBO
70 – – V I
C
= 0.1 mA, I
F
= 0
Collector Current I
C
4 – 32 mA I
F
= 10 mA
*Current Transfer Ratio CNY17-1 CTR 40 – 80 % V
CE
= 5 V
CNY17-2 63 – 125
CNY17-3 100 – 200
CNY17-4 160 – 320
Collector-Emitter Saturation Voltage V
CE(sat)
– – 0.3 V I
F
= 10 mA, I
C
= 2.5 mA
Response Time (Rise) t
r
– 5 10 µs V
CE
= 5 V, I
C
= 10 mA
Response Time (Fall) t
f
– 5 10 µs R
L
= 100 Ω
Isolation Resistance R
iso
1 x 10
11
– – Ω DC 500 V
40 ~ 60% R.H.
Floating Capacitance C
f
– – 2 pF V = 0, f = 1 MHz
I
F
– FORWARD CURRENT – mA
0
T
A
– AMBIENT TEMPERATURE – °C
-25 75 125
60
25
20
40
0 50 100-55
80
CNY17-1 fig 1
P
C
– COLLECTOR POWER DISSIPATION – mW
0
T
A
– AMBIENT TEMPERATURE – °C
-25 75 125
100
25
50
200
0 50 100-55
150
CNY17-1 fig 2
160
VOLTAGE GAIN AV – dB
-10
f – FREQUENCY – kHz
1 20 500
-2
5
-8
-6
2
2 10 500.5
0
CNY17-1 fig 3
100 200
R
L
= 200 Ω
I
F
= 10 mA
V
CC
= 5 V
T
A
= 25°C
R
L
= 150 Ω
R
L
= 75 Ω
-4