Optocoupler/LED/nixie tube/photoelectric device
The FOD852 includes a Gallium Arsenide Infrared Emitting Diode within a 4-pin dual inline plug-inencapsulation driving a silicon photo Darlington output (with integrated base emitter resistor).
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The MOC306XM and MOC316XM devices consist of a GaAs infrared light-emitting diode optically coupled to a monolithic silicon detector, performing the function of a zero voltage crossing double-sided triple driver. These devices are suitable for triacs in logic system interfaces from 115/240V AC line powered equipment such as solid state relays, industrial controls, motors, solenoid valves, and consumer equipment.
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These optocouplers consist of an AlGaAS LED optically coupled to a very high-speed integrated photodetector logic gate. These devices include a tunable output. This output has an open collector, thus allowing a wired OR output. Coupling parameters are guaranteed from -40°C to +85°C. Input signals up to 5 mA provide a minimum output sink of 13 mA (fan-out 8). Internal noise shielding provides excellent common-mode rejection, typically 50 kV/µs at 1,000V common-mode.
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The QSB363 is a silicon phototransistor with black infrared transparent T-3/4 encapsulation.
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The FODM100x series of single-channel DC-sense input optocouplers feature a stretched body SOP 4-pin encapsulation containing a gallium arsenide (GaAs) infrared light-emitting diode optically coupled to a phototransistor. The input-output isolation voltage VISO is rated at 5,000 VACRMS.
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The MOC3081M, MOC3082M, and MOC3083M devices consist of a GaAs infrared light-emitting diode optically coupled to a monolithic silicon detector, performing the function of a zero voltage crossover double-sided triple driver. These devices are ideal for split power triacs in logic system interfaces from 240V AC line powered equipment such as solid state relays, industrial controls, motors, solenoid valves, and consumer equipment.
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