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STL40N75LF3 MOSFET Transistor

The STL40N75LF3 is a N-Channel metal-oxide semiconductor field-effect transistor (MOSFET) is the most common type of field-effect transistor (FET). This transistor has a three-terminal device with Gate (G), Drain (D) and Source (S) terminals.

Circuit diagram symbol of the STL40N75LF3 transistor as follows.

Circuit diagram symbol of the STL40N75LF3 transistor

STL40N75LF3 Transistor Specification

Transistor Code STL40N75LF3
Transistor Type MOSFET
Control Channel Type N-Channel
Package POWERFLAT5X6
Transistor SMD Code 40N75LF3
Drain-Source Voltage (Maximum) VDS 75V
Gate-Source Voltage (Maximum) VGS 16V
Drain Current (Maximum) ID 10A
Drain-Source On-State Resistance (Maximum) RDS(on) 0.019Ohm
Power Dissipation (Maximum) PD 4.8W
Drain-Source Capacitance 228pF
Operating Junction Temperature (Maximum) 175°C
Rise Time 25nS
Gate-Threshold Voltage (Maximum) 1V
Total Gate Charge 12nC

STL40N75LF3 MOSFET Transistor Overview

The STL40N75LF3 is a transistor, a MOSFET, used for on and off switching in electrical gadgets and power control applications. It is a N-Channel MOSFET, which means it conducts when a positive voltage is applied to the gate with respect to the source.

This device comes in a POWERFLAT5X6 package, making it suitable for projects that require low power handling and reliable switching performance.

Key Electrical Characteristics of the STL40N75LF3 MOSFET

Followings are the key electrical characteristics of the STL40N75LF3 MOSFET transistor

  • Maximum Drain-Source Voltage (VDS)
  • The maximum drain-source voltage that can safely block between drain and source in STL40N75LF3 MOSFET transistor is 75V.

    This is the highest voltage the MOSFET transistor can safely block between the drain and source without damadging to the transistor.

  • Maximum Gate-Source Voltage (VGS)
  • The maximum safe voltage that can be used between the gate and source of the STL40N75LF3 MOSFET transistor is 16V without any harm. This limit should not be exceeded to prevent damage from the gate voltage.

  • Maximum Drain Current (ID)
  • The maximum continuous current flowing between the drain and source of the STL40N75LF3 MOSFET transistor is 10A. This is the highest current that can safely flow between drain and source without damaging the MOSFET transistor.

  • Drain-Source On-State Resistance (RDS(on))
  • The internal resistance between the drain and source of STL40N75LF3 MOSFET transistor when the transistor is fully turned on is 0.019 Ohm that defines the amount of lost power that is wasted as heat when the transistor is operating.

  • Maximum Power Dissipation (PD)
  • The maximum power that the STL40N75LF3 MOSFET transistor can comfortably transfer into heat without breaking is 4.8W. This indicates the amount of power that can safely be dissipated to the device as heat.

  • Drain-Source Capacitance
  • The capacitance between drain and source of the STL40N75LF3 MOSFET transistor is 228pF. This value influences to the switching speed of the STL40N75LF3 MOSFET transistor and the high-frequency performance.

    This is the ability to hold a small electric charge between the drain and source of a MOSFET transistor, like a tiny built-in capacitor.

  • Rise Time
  • The time that the drain current or output voltage increases between low to high when the STL40N75LF3 MOSFET transistor is switched on is 25nS. This is the rate at which STL40N75LF3 MOSFET transistor switches on.

    This shows how fast the MOSFET transistor switched on.

Thermal Performance of the STL40N75LF3 MOSFET

  • Maximum Operating Junction Temperature
  • The maximum internal temperature of the semiconductor junction of STL40N75LF3 MOSFET transistor can be safely operated at the 175°C without damaging the transistor.

UXPython is not the creator or an official representative of the STL40N75LF3 MOSFET transistor. You can download the official STL40N75LF3 MOSFET transistor datasheet to get more infromation about this transistor.

Note : Copyrighted materials belong to their creator or official representative.

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