● Product Features and Main Applications: An NPNPN five-layer silicon bidirectional device; featuring proprietary single-sided trenching technology and mesa glass passivation; with a multi-layer metallized back-side electrode; offering high breakdown voltage and excellent thermal stability. Primarily used in: motor speed controllers for vacuum cleaners, power tools, and similar applications; solid-state relays; heating controllers (temperature regulation); and other phase-control circuits.

SiC Schottky Barrier Rectifier Features: • Reverse withstand voltage: 1200 V • Zero reverse recovery current • High operating frequency • Switching characteristics unaffected by: - Temperature • Fast switching speed • Positive temperature coefficient of forward voltage drop Applications: • Switch-mode power supplies, AC/DC converters • Power factor correction • Motor drives • Photovoltaic inverters and wind turbines Advantages: • Extremely low switching losses • Higher efficiency • Reduced dependence on heat sinks • No thermal runaway when devices are paralleled

SiC Schottky Barrier Rectifier Features: • Reverse withstand voltage: 650 V • Zero reverse recovery current • High operating frequency • Switching characteristics unaffected by: – Temperature • Fast switching speed • Positive temperature coefficient of forward voltage drop Applications: • Switch-mode power supplies, AC/DC converters • Power factor correction • Motor drives • Photovoltaic inverters and wind turbines Advantages: • Extremely low switching losses • Higher efficiency • Reduced dependence on heat sinks • No thermal runaway when devices are paralleled

SiC Schottky Barrier Rectifier Features: • Reverse withstand voltage: 650 V • Zero reverse recovery current • High operating frequency • Switching characteristics unaffected by: – Temperature • Fast switching speed • Positive temperature coefficient of forward voltage drop Applications: • Switch-mode power supplies, AC/DC converters • Power factor correction • Motor drives • Photovoltaic inverters and wind turbines Advantages: • Extremely low switching losses • Higher efficiency • Reduced dependence on heat sinks • No thermal runaway when devices are paralleled

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