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  2. Gate driver - Wikipedia

    en.wikipedia.org/wiki/Gate_driver

    A gate driver is a power amplifier that accepts a low-power input from a controller IC and produces a high-current drive input for the gate of a high-power transistor such as an IGBT or power MOSFET. Gate drivers can be provided either on-chip or as a discrete module. In essence, a gate driver consists of a level shifter in combination with an ...

  3. MOSFET Gate Driver - Wikipedia

    en.wikipedia.org/wiki/MOSFET_Gate_Driver

    ADP3418 MOSFET gate driver on a printed circuit board. MOSFET gate driver is a specialized circuit that is used to drive the gate (gate driver) of power MOSFETs effectively and efficiently in high-speed switching applications. The addition of high-speed MOSFET gate drivers are the last step if the turn-on is intended to fully enhance the ...

  4. Bootstrapping (electronics) - Wikipedia

    en.wikipedia.org/wiki/Bootstrapping_(electronics)

    Most control schemes that use a bootstrap capacitor force the high side driver (N-MOSFET) off for a minimum time to allow for the capacitor to refill. This means that the duty cycle will always need to be less than 100% to accommodate for the parasitic discharge unless the leakage is accommodated for in another manner.

  5. Open collector - Wikipedia

    en.wikipedia.org/wiki/Open_collector

    Open drain output uses MOS transistor (MOSFET) instead of BJTs, and expose the MOSFET's drain as output. [1]: 488ff An nMOS open drain output connects to ground when a high voltage is applied to the MOSFET's gate, or presents a high impedance when a low voltage is applied to the gate.

  6. TL431 - Wikipedia

    en.wikipedia.org/wiki/TL431

    However, low-dropout MOSFET operation requires an additional high-side voltage source (ΔU in schematic) for driving the gate. [29] ΔU can be obviated if a depletion mode MOSFET is used. Closed-loop regulator circuits using the TL431 are always designed to operate in high transconductance mode, with I CA no less than 1 mA (point D on the ...

  7. H-bridge - Wikipedia

    en.wikipedia.org/wiki/H-bridge

    The most efficient MOSFET designs use N-channel MOSFETs on both the high side and low side because they typically have a third of the ON resistance of P-channel MOSFETs. This requires a more complex design since the gates of the high side MOSFETs must be driven positive with respect to the DC supply rail.