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OC100HG

VMI
Part Number OC100HG
Manufacturer VMI
Description Opto Coupler
Published Jan 12, 2007
Detailed Description www.DataSheet4U.com Opto Coupler • High Current Gain • High Isolation Voltage • RoHS Compliant OC100HG ABSOLUTE MAXIM...
Datasheet PDF File OC100HG PDF File

OC100HG
OC100HG


Overview
www.
DataSheet4U.
com Opto Coupler • High Current Gain • High Isolation Voltage • RoHS Compliant OC100HG ABSOLUTE MAXIMUM RATINGS LED • Forward DC Current • Surge Current • Reverse Voltage • Power Dissipation (25°C) Photodiode • Reverse Voltage • Power Dissipation 10,000 V 1.
0 W 100 mA 500 mA 5V 190 mW LED ELECTRICAL CHARACTERISTICS • Forward Voltage (If = 20 mA) • Reverse Leakage Current VR = 5 V Photodiode • Foward Voltage (If = 0.
6 A) • Reverse Leakage Current VR = 10 kV, ILED = 0 mA VR = 10 kV, ILED = 50 mA Coupled • DC Current Transfer Ratio • TON • TOFF (25°C UNLESS OTHERWISE NOTED) 0.
38% MIN / 0.
60% MAX 2 µs 2 µs 250 nA Typical 230 µA Typical 12.
0 V MAX 1.
5 V 100 nA _____________________________________________________ • Storage Temperature • Operating Temperature • Isolation Test Voltage -40°C to +100°C -40°C to +70°C 25 kV (From Pins 1, 2, 3 & 4 to Pins 5 & 6) VOLTAGE MULTIPLIERS INC.
8711 W.
Roosevelt Ave.
Visalia, CA 93291 TEL 559-651-1402 FAX 559-651-0740 www.
voltagemultipliers.
com OC100HG 1000.
0 PHOTODIODE REVERSE CURRENT VS.
TEMPERATURE AT Vrwm Reverse Current (uA) 100.
0 10.
0 1.
0 25 50 75 100 Temperature Temperature (°C) (C) Temperature (°C) 125 150 0.
60 0.
50 0.
40 0.
30 0.
20 0.
10 OPTOCOUPLER GAIN VS.
TEMPERATURE 100 90 80 LED (µA) LED Current Current (mA) 70 60 50 40 30 20 10 DIODE CURRENT VS.
LED CURRENT Percent Percent Gain Gain 0.
00 -40 -30 -20 -10 0 0 10 20 30 40 Temperature (°C) 50 60 70 0 100 200 300 Diode Current (µA) 400 500 OC100HG 10 kV Power Supply Typical HV Linear Regulator Circuit • The two graphs below represent the relationship between output voltage and LED current with different values of Rs.
• Output voltage is found by the following Feedback & Control RLOAD formula: VOUT = VIN - {[IOUT + (ILED * Gain)] * RS} • Select resistor value to optimize circuit for VOUT and IOUT range.
Typical HV Linear Regulator Circuit Select resistor value to optimize circuit for VOUT and IOUT range.
10.
0 9.
0 8.
0 Output Volt...



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