Download MCP1402 Datasheet PDF
Microchip Technology
MCP1402
MCP1402 is High-Speed Power MOSFET Driver manufactured by Microchip Technology.
Features - High Peak Output Current: 500 m A (typical) - Wide Input Supply Voltage Operating Range: - 4.5V to 18V - Low Shoot-Through/Cross-Conduction Current in Output Stage - High Capacitive Load Drive Capability: - 470 p F in 19 ns (typical) - 1000 p F in 34 ns (typical) - Short Delay Times: 35 ns (typical) - Matched Rise/Fall Times - Low Supply Current: - With Logic ‘1’ Input - 0.85 m A (typical) - With Logic ‘0’ Input - 0.1 m A (typical) - Latch-Up Protected: Will Withstand 500 m A Reverse Current - Logic Input Will Withstand Negative Swing up to 5V - Space-Saving 5-Lead SOT-23 Package Applications - Switch Mode Power Supplies - Pulse Transformer Drive - Line Drivers - Motor and Solenoid Drive General Description The MCP1401/02 are high-speed MOSFET drivers capable of providing 500 m A of peak current. The inverting or non-inverting single channel output is directly controlled from either TTL or CMOS (3V to 18V). These devices also feature low shoot-through current, matched rise/fall times and propagation delays which make them ideal for high switching frequency applications. The MCP1401/02 devices operate from a single 4.5V to 18V power supply and can easily charge and discharge 470 p F gate capacitance in under 19 ns (typical). They provide low enough impedances in both the On and Off states to ensure the MOSFET’s intended state will not be affected, even by large transients. These devices are highly latch-up resistant under any conditions within their power and voltage ratings. They are not subject to damage when up to 5V of noise spiking (of either polarity) occurs on the Ground pin. They can accept, without damage or logic upset, up to 500 m A of reverse current being forced back into their outputs. All terminals are fully protected against Electrostatic Discharge (ESD) up to 1 k V (HBM) and 300V (MM). Package Types SOT-23 MCP1401 MCP1402 GND 1 VDD 2 IN 3 5 OUT 4 GND  2007-2014 Microchip Technology Inc. DS20002052D-page...