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  2. Push–pull converter - Wikipedia

    en.wikipedia.org/wiki/Pushpull_converter

    Push-pull converter (+12V → ±18V; 50W) as potted module. ① transformer; ② and ③ electrolytic capacitors vertical and horizontal mounted; ④ discrete circuit board in through-hole technology. A pushpull converter is a type of DC-to-DC converter, a switching converter that uses a transformer to change the voltage of a DC

  3. DC-to-DC converter - Wikipedia

    en.wikipedia.org/wiki/DC-to-DC_converter

    A DC-to-DC converter is an electronic circuit or electromechanical device that converts a source of direct current ... Push-pull (half bridge) - 2 transistors drive.

  4. H-bridge - Wikipedia

    en.wikipedia.org/wiki/H-bridge

    Most DC-to-AC converters (power inverters), most AC/AC converters, the DC-to-DC push–pull converter, isolated DC-to-DC converter [2] most motor controllers, and many other kinds of power electronics use H bridges. In particular, a bipolar stepper motor is almost always driven by a motor controller containing two H bridges.

  5. Push–pull - Wikipedia

    en.wikipedia.org/wiki/Pushpull

    Pushpull output, type of electronic circuit; Pushpull converter, in electronics, is a type of DC to DC converter that uses a transformer; Pushpull connector, an electronic cable connector; Push technology / Pull technology, in network communications

  6. File:Push-pull converter schematic.svg - Wikipedia

    en.wikipedia.org/wiki/File:Push-pull_converter...

    English: Circuit diagram of a push-pull DC to DC converter. This is used in battery-powered electronic devices such as laptops to convert DC power to a higher voltage. The switches (left) represent pairs of switching transistors, with the driving circuits omitted. They are switched simultaneously at a high frequency of 10 - 80 kHz They switch ...

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  8. Push–pull output - Wikipedia

    en.wikipedia.org/wiki/Pushpull_output

    A class-B pushpull amplifier is more efficient than a class-A power amplifier because each output device amplifies only half the output waveform and is cut off during the opposite half. It can be shown that the theoretical full power efficiency (AC power in load compared to DC power consumed) of a pushpull stage is approximately 78.5%.

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