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MCP14A0152

Microchip
Part Number MCP14A0152
Manufacturer Microchip
Description 1.5A MOSFET Driver
Published Sep 14, 2016
Detailed Description MCP14A0151/2 1.5A MOSFET Driver with Low Threshold Input And Enable Features • High Peak Output Current: 1.5A (typical...
Datasheet PDF File MCP14A0152 PDF File

MCP14A0152
MCP14A0152


Overview
MCP14A0151/2 1.
5A MOSFET Driver with Low Threshold Input And Enable Features • High Peak Output Current: 1.
5A (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: - 1000 pF in 11.
5 ns (typical) • Short Delay Times: 33 ns (tD1), 24 ns (tD2) (typical) • Low Supply Current: 375 µA (typical) • Low-Voltage Threshold Input and Enable with Hysteresis • Latch-Up Protected: Withstands 500 mA Reverse Current • Space-Saving Packages: - 6L SOT-23 - 6L 2 x 2 DFN Applications • Switch Mode Power Supplies • Pulse Transformer Drive • Line Drivers • Level Translator • Motor and Solenoid Drive Package Types 6-Lead SOT-23 VDD 1 AGND 2 IN 3 MCP14A0151 MCP14A0152 6 OUT OUT 5 GND 4 EN * Includes Exposed Thermal Pad (EP); see Table 3-1.
General Description The MCP14A0151/2 devices are high-speed MOSFET drivers that are capable of providing up to 1.
5A of peak current while operating from a single 4.
5V to 18V supply.
The inverting (MCP14A0151) or non-inverting (MCP14A0152) single channel output is directly controlled from either TTL or CMOS (2V to 18V) logic.
These devices also feature low shoot-through current, matched rise and fall times, and short propagation delays which make them ideal for high switching frequency applications.
The MCP14A0151/2 family of devices offer enhanced control with Enable functionality.
The active-high Enable pin can be driven low to drive the output of the MCP14A0151/2 low, regardless of the status of the Input pin.
An integrated pull-up resistor allows the user to leave the Enable pin floating for standard operation.
Additionally, the MCP14A0151/2 devices feature separate ground pins (AGND and GND), allowing greater noise isolation between the level-sensitive Input/ Enable pins and the fast, high-current transitions of the push-pull output stage.
These devices are highly latch-up resistant under any condition within their power and v...



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