0
In Production
Capacitive Load Drive |
10,000 pF in 24 ns |
MOSFET Driver Type |
Low Side |
Supply Voltage Max V (volt) |
18 |
Peak Sink Current A (ampere) |
9 |
Peak Source Current A (ampere) |
9 |
Propagation Delay tD1 ns (nanosecond) |
24 |
Propagation Delay tD2 ns (nanosecond) |
24 |
Sink Resistance Ω (ohm) |
0.7 |
Source Resistance Ω (ohm) |
1 |
Fall Time tF ns (nanosecond) |
22 |
Rise Time tR ns (nanosecond) |
22 |
# of Outputs |
1 |
Output Type |
Non-inverting |
Integrated MOSFETs |
External |
Peak Low-Side Source Current (Ampere) |
9 |
Supply Voltage Min V (volt) |
4.5 |
Low-Side Source Resistance Typ (Ohms) Ω (ohm) |
1 |
Low-Side Sink Resistance Typ (Ohms) Ω (ohm) |
0.7 |
Low-Side Rise Time (ns) |
22 |
Low-Side Fall Time (ns) |
22 |
Low-Side Turn-On Prop Delay (ns) |
24 |
Low Side Turn-off Propagation delay (ns) |
24 |
Temp Range (T-Junction) Min °C (degrees Celsius) |
- |
Temp Range (T-Junction) Max °C (degrees Celsius) |
150 |
Temp Range (T-Ambient) Min °C (degrees Celsius) |
-40 |
Temp Range (T-Ambient) Max °C (degrees Celsius) |
125 |
Qualification |
AEC-Q100 |
Output Configuration |
Low-Side |
The MCP14A0901/2 devices are dual output high-speed MOSFET gate drivers that are capable of providing up to 9 A of peak current while operating from a single 4.5 V to 18 V supply. The output configurations available are:
MCP14A0901: Inverting
MCP14A0902: Non-Inverting
These devices feature low shoot through current, fast rise and fall times, and short propagation delays which make them ideal for high switching frequency applications. The MCP14A0901/2 family of MOSFET gate drivers devices offer enhanced control with enable functionality. The active-high enable pin can be driven low to drive the outputs of the MCP14A0901/2 low, regardless of the status of the input pins. An integrated pull-up resistor allows the user to leave the enable pin floating for standard operation. These devices are highly latch-up resistant under any condition within their power and voltage ratings. They can accept up to 500 mA of reverse current being forced back into their outputs without damage or logic upset. All terminals are fully protected against electrostatic discharge (ESD) up to 2 kV (HBM) and 200 V (MM).