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The frequency response of this MOSFET is quite good hence it can be used in DC-DC converter circuits also.
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Alternatively, you can also use a driver circuit to provide 10V to the gate pin of this MOSFET using a transistor. So, if you are looking for a MOSFET to be used with a microcontroller then you should consider the logic-level MOSFET like 2N7002 or IRLZ44N etc. But this does not mean that the MOSFET will turn on completely with just 5V, it needs around 10V supplied to the gate pin to turn on completely and supply 27A constant current. This MOSFET has a low gate threshold voltage of only 4V, this means that the MOSFET can be turned on even with 5V from the GPIO pin of microcontrollers like Arduino. As this MOSFET is designed for high-power applications this can be driven by a microcontroller or a logic level device. According to the datasheet, this MOSFET will start conducting with a small gate voltage of 10V, but the max drain current will flow when the gate voltage is 20V. This MOSFET is known for its high drain current and fast switching speed on top of that it has a very low on-resistance that increases the efficiency of this device. The P55NF06 MOSFET is an N-channel power MOSFET that can be used in many different applications. Note: Complete technical details can be found in the P55NF06 datasheet given at the bottom of the page
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Drain Source Resistance (RDS) is 0.018 Ohms.However, a driver circuit is needed if the MOSFET has to be switched in completely.Ĭurrent flows out through Source at leaves MOSFET Hence it is commonly used to drive applications. It also has a VGS of 20V at which the MOSFET will start conducting. The P55NF06 is an N-channel MOSFET with a high drain current of 50A and a low Rds value of 18 mΩ.
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