• Part: MCP14E4
  • Description: 4.0A Dual High-Speed Power MOSFET Drivers
  • Category: MOSFET
  • Manufacturer: Microchip Technology
  • Size: 471.21 KB
Download MCP14E4 Datasheet PDF
Microchip Technology
MCP14E4
MCP14E4 is 4.0A Dual High-Speed Power MOSFET Drivers manufactured by Microchip Technology.
- Part of the MCP14E3 comparator family.
Features - Passes Automotive AEC-Q100 Reliability Testing - High Peak Output Current: 4.0A (typical) - Independent Enable Function for Each Driver Output - Low Shoot-Through/Cross-Conduction Current in Output Stage - Wide Input Supply Voltage Operating Range: - 4.5V to 18V - High Capacitive Load Drive Capability: - 2200 p F in 15 ns (typical) - 5600 p F in 26 ns (typical) - Short Delay Times: 50 ns (typical) - Latch-Up Protected: Will Withstand 1.5A Reverse Current - Logic Input Will Withstand Negative Swing Up To 5V - Space-Saving Packages: - 8-Lead 6x5 DFN-S, PDIP, SOIC Applications - Switch Mode Power Supplies - Pulse Transformer Drive - Line Drivers - Motor and Solenoid Drive General Description The MCP14E3/MCP14E4/MCP14E5 devices are a family of 4.0A buffers/MOSFET drivers. Dual-inverting, dual-noninvertering, and plementary outputs are standard logic options offered. The MCP14E3/MCP14E4/MCP14E5 drivers are capable of operating from a 4.5V to 18V single power supply and can easily charge and discharge 2200 p F gate capacitance in under 15 ns (typical). They provide low impedance in both the ON and OFF states to ensure the MOSFET’s intended state will not be affected, even by large transients. The MCP14E3/ MCP14E4/MCP14E5 inputs may be driven directly from either TTL or CMOS (2.4V to 18V). Additional control of the MCP14E3/MCP14E4/ MCP14E5 outputs is allowed by the use of separate enable functions. The ENB_A and ENB_B pins are active high and are internally pulled up to VDD. The pins maybe left floating for standard operation. The MCP14E3/MCP14E4/MCP14E5 dual-output 4.0A driver family is offered in both surface-mount and pinthrough-hole packages with a - 40°C to +125°C temperature rating. The low thermal resistance of the thermally enhanced DFN-S package allows for greater power dissipation capability for driving heavier capacitive or resistive loads. These devices are highly latch-up resistant under any conditions within their power and voltage ratings. They are...