Features: • Normally Closed, Single Pole Single Throw Operation• Control 350 VAC or DC Voltage• Switch 100 mA Loads• LED Control Current, 1.5 mA• Low ON-Resistance• dv/dt, >500 V/ms• Isolation Test Voltage, 3750 VACRMS• Current Limiting• Und...
LH1298: Features: • Normally Closed, Single Pole Single Throw Operation• Control 350 VAC or DC Voltage• Switch 100 mA Loads• LED Control Current, 1.5 mA• Low ON-Resistance̶...
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• Normally Closed, Single Pole Single Throw Operation
• Control 350 VAC or DC Voltage
• Switch 100 mA Loads
• LED Control Current, 1.5 mA
• Low ON-Resistance
• dv/dt, >500 V/ms
• Isolation Test Voltage, 3750 VACRMS
• Current Limiting
• Underwriters Lab File # E52744
Terminal Voltage ............................................. 350 V
Terminal Current .......................................... 100 mA
LED Forward Current..................................... .60 mA
LED Reverse Current....................................... .6 mA
Isolation Test Voltage..........................3750 VACRMS
Isolation Resistance
VIO=500 V, TA=25 ............................. 1012
VIO=500 V, TA=100 ........................... 1011 W
Operating Temperature Range........... 40 to +85
Storage Temperature Range ............40 to +150
Lead Soldering Temperature
at 260 , 2 mm from case.......................... 5 sec.
The LH1298 is a single pole single throw (SPST), normally closed (NC), solid state relay. The relay can control AC or DC loads currents up to 100 mA, with a supply voltage up to 350 V. The device is packaged in a six pin 0.3 inch dual-in line package. This package offers an insulation dielectric withstand of 3750 VACRMS.
The LH1298 consists of a AlGaAs LED that is optically coupled to a dielectrically isolated monolithic integrated circuit. The LH1298 consists of a photodiode array, control circuitry and high voltage DMOS transistors. The LH1298 between the output terminals is 30 W at 0 mA LED current. The switch offers low off-state leakage current at LED current of 5 mA or greater. There is on board output current limiting circuitry.