IRF840 | Datasheet, Circuit Diagram, Pinout, Equivalent Motorola
- Type de FET : canal N
- Tension drain-source (Vdss) : 500 V
- Courant-Drain continu (Id) à 25 °C : 8A (Tc)
- Emballer: TO-220AB

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IRF840 MOSFET Complete Details | Working Principle and Best 5 Equivalent MOSFETs | IRF840 Advantages
IRF840 Pinout
The IRF840 is a high-voltage N-channel MOSFET commonly packaged in a TO-220AB case. It is widely used in power supplies, motor control, and inverter circuits due to its fast switching performance and high breakdown voltage. Understanding the correct pin configuration is essential for proper circuit integration and to avoid device failure.
Numéro de code PIN | Nom de la broche | Description |
---|---|---|
1 | Gate (G) | Controls the MOSFET. A voltage applied here turns the device on or off. |
2 | Drain (D) | Main current flows through this terminal when the MOSFET is turned on. |
3 | Source (S) | Connected to ground or the low-side of the circuit. It completes the circuit path. |
Accurate identification of the IRF840’s Gate, Drain, and Source pins ensures optimal performance and safe operation in high-voltage applications. Always consult the datasheet for maximum ratings and thermal management considerations when designing with this MOSFET.
IRF840 Circuit
irf840 Pinout Diagram
The irf840 is an N-channel type MOS field effect tube using a TO-220 package. The main features are low gate charge, low feedback capacitance, and very fast switching, so it is used as a switching tube in most cases, such as high-efficiency DC-DC (where different DC voltages can be output by switching at different frequencies).
The use of irf840 in circuit design should be noted that: almost all of the mos tube in the circuit design, need to drive the circuit, the direct use of microcontroller or DSP output control signals are mostly not up to the MOS tube required to drive the voltage or current, so the need for driver circuit. Driver circuit is generally divided into current-driven and voltage-driven according to the MOS is current-controlled or voltage-controlled to choose the type of driver circuit. Specifically as shown in the following two diagrams:
Current Control Picture
Voltage Control Picture