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  2. TL431 - Wikipedia

    en.wikipedia.org/wiki/TL431

    In 2015, Texas Instruments announced the ATL431, an improved derivative of the TL431 for very high efficiency switch-mode regulators [49] that has a V REF of 2.5 V instead of 2.495 V. The recommended minimum operating current is only 35 μA (standard TL431: 1 mA); the maximum I CA and V CA are the same as standard (100 mA and 36 V). [ 50 ]

  3. Buck converter - Wikipedia

    en.wikipedia.org/wiki/Buck_converter

    The input is left side, the output with load is right side. The switch is typically a MOSFET, IGBT, or BJT transistor. A buck converter or step-down converter is a DC-to-DC converter which decreases voltage, while increasing current, from its input to its output . It is a class of switched-mode power supply.

  4. Gate driver - Wikipedia

    en.wikipedia.org/wiki/Gate_driver

    When a transistor is switched on or off, it does not immediately switch from a non-conducting to a conducting state; and may transiently support both a high voltage and conduct a high current. Consequently, when gate current is applied to a transistor to cause it to switch, a certain amount of heat is generated which can, in some cases, be ...

  5. H-bridge - Wikipedia

    en.wikipedia.org/wiki/H-bridge

    A common variation of this circuit uses just the two transistors on one side of the load, similar to a class AB amplifier. Such a configuration is called a "half bridge". [ 4 ] It acts as an electronic toggle switch, the half bridge is not able to switch polarity of the voltage applied to the load.

  6. Open collector - Wikipedia

    en.wikipedia.org/wiki/Open_collector

    Open outputs configurations thus differ from push–pull outputs, which use a pair of transistors to output a specific voltage or current. These open outputs configurations are often used for digital applications when the transistor acts as a switch, to allow for logic-level conversion, wired-logic connections, and line sharing.

  7. Push–pull output - Wikipedia

    en.wikipedia.org/wiki/Push–pull_output

    Circuit of TTL NAND gate has a 'totem pole output' stage (right) consisting of two NPN transistors in push pull. When at least one of the inputs is low, transistor V 1 is turned on, V 2 is turned off, V 3 is turned on and V 4 off, pulling output voltage high. When both inputs are high, V 2 is on, V 3 is off and V 4 is turned on, pulling output low.

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