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Circuit
Features
Description
Absolute Maximum Ratings
Electrical Characteristics

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IS202: OPTICALLY COUPLED ISOLATORS

Circuit

Features

5000 V Isolation.
High Current Transfer Ratio (125% to 250%).
Low Cost Dual-In-Line Package.
Single Configuration.

Description

The IS202 is an optically coupled isolator consisting of a Gallium Arsenide infrared emitting diode and an NPN silicon phototransistor mounted in a standard 6-pin dual-in-line package. Surface Mount Option Available.
The IS202 is a single channel isolator.
All electrical parameters are 100% tested by manufacturing. Specifications are guaranteed to a cumulative 0.65% AQL.

Absolute Maximum Ratings: (Ta=25°C)

Storage Temperature:
Operating Temperature:
Lead Soldering:
Input-to-Output Isolation Voltage:
-55°C to +150°C
-55°C to +100°C
260°C for 10s, 1.6mm from case
±5000Vdc (note 1)

Input Diode

Forward DC Current:
Reverse DC Voltage:
Peak Forward Current:
Power Dissipation:
Derate Linearly:
60mA
3V
1A (PW.=100µs duty ratio 0.001)
100mW
1.33mW/°C above 25°C

Output Transistor

Collector-Emitter Voltage:
Emitter-Collector Voltage:
Power Dissipation:
Derate Linearly:
30V
7V
150mW
2.00mW/°C above 25°C

Package

Total Power Dissipation:
Derate Linearly:
200mW
2.67mW/°C above 25°C

Electro-optical Characteristics: (Ta=25°C)

INPUT PARAMETER CONDITIONS MIN TYP MAX UNIT
VF Forward Voltage IF=20mA
1.2 1.5 V
IF=1mA
1 1.2 V
IR Reverse Current VR=3V

10 µA
OUTPUT PARAMETER CONDITIONS MIN TYP MAX UNIT
HFE
IC=100µA, VCE=5V 100 200

BVCEO Collector-Emitter Voltage IC=1mA 30

V
BVECO Emitter-Collector Voltage IE=0.1mA 7

V
ICEO Collector-Emitter Dark Current VCE=10V

50 nA
COUPLED PARAMETER CONDITIONS MIN TYP MAX UNIT
CTR DC Current Transfer Ratio IF=10mA, VCE=10V 125
250 %
CTR DC Current Transfer Ratio IF=1mA, VCE=10V 30 50
%
VCE(SAT) Collector-Emitter Saturation Voltage IF=10mA, IC=2mA
0.2 0.4 V
CF Floating Capacitance V=0, f=1MHz
0.6 1 pf
RISO Input-Output Isolation Resistance VIO=500V (note 1) 5E11

ohm

Notes

1. Measured with input leads shorted together and output leads shorted together.

Isocom takes great effort to ensure accurate data, but regrettably cannot be held liable for any error on its website. Visit File Lists to confirm old printouts are up-to-date.

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