FAIRCHILD 6-PIN DIP ZERO-CROSS PHOTOTRIAC DRIVER OPTOCOUPLER Data Sheet
Summary
This zero-crossing photocriac driver optocoupler simplifies the logic control of high AC mains voltages (115/240 VAC). Designed for reliable interfacing, it optically isolates and detects voltage crossings for efficient power switching. This component is essential for engineers building industrial automation systems, solid-state relays, HVAC controls, and motor starters. The accompanying manual provides comprehensive technical documentation, including detailed electrical specifications, absolute maximum ratings, and operational guidelines for optimal zero-crossing performance.
Page 1 Text Content
6-PIN DIP ZERO-CROSS
PHOTOTRIAC DRIVER OPTOCOUPLER
(600V PEAK)
MOC3061-M MOC3062-M MOC3063-M MOC3162-M MOC3163-M
PACKAGE SCHEMATIC
ANODE MAIN TERM.
CATHODE NC*
N/C CROSSING MAIN TERM.
CIRCUIT
*DO NOT CONNECT (TRIAC SUBSTRATE)
DESCRIPTION The MOC306X-M and MOC316X-M devices consist of a Ga As infrared emitting diode optically coupled to a monolithic silicon detector performing the function of a zero voltage crossing bilateral triac driver. They are designed for use with a triac in the inter- face of logic systems to equipment powered from 115/240 VAC lines, such as solid-state relays, industrial controls, motors, sole- noids and consumer appliances, etc.
FEATURES Simplifies logic control of 115/240 VAC power Zero voltage crossing dv/dt of 1000 V/µs guaranteed (MOC316X-M), 600 V/µs guaranteed (MOC306X-M) VDE recognized (File # 94766) ordering option V (e.g., MOC3063V-M) Underwriters Laboratories (UL) recognized (File #E90700, volume 2)
APPLICATIONS Solenoid/valve controls Static power switches Temperature controls AC motor starters Lighting controls AC motor drives E.M. contactors Solid state relays
© 2005 Fairchild Semiconductor Corporation Page 1 of 10 6/15/05
Page Summary Contents For FAIRCHILD 6-PIN DIP ZERO-CROSS PHOTOTRIAC DRIVER OPTOCOUPLER Data Sheet
Manual Details
| Brand | Fairchild |
|---|---|
| Pages | 10 |
| File Size | 533.33 KB |
| Published | May 19, 2026 |
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