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  2. Schottky diode - Wikipedia

    en.wikipedia.org/wiki/Schottky_diode

    The Schottky diode (named after the German physicist Walter H. Schottky), also known as Schottky barrier diode or hot-carrier diode, is a semiconductor diode formed by the junction of a semiconductor with a metal. It has a low forward voltage drop and a very fast switching action.

  3. Diode - Wikipedia

    en.wikipedia.org/wiki/Diode

    Various semiconductor diodes. Left: A four-diode bridge rectifier.Next to it is a 1N4148 signal diode.On the far right is a Zener diode.In most diodes, a white or black painted band identifies the cathode into which electrons will flow when the diode is conducting.

  4. PIN diode - Wikipedia

    en.wikipedia.org/wiki/PIN_diode

    A PIN diode switch can switch much more quickly (e.g., 1 microsecond), although at lower RF frequencies it isn't reasonable to expect switching times in the same order of magnitude as the RF period. For example, the capacitance of an "off"-state discrete PIN diode might be 1 pF. At 320 MHz, the capacitive reactance of 1 pF is 497 ohms:

  5. 1N4148 signal diode - Wikipedia

    en.wikipedia.org/wiki/1N4148_signal_diode

    Three 1N4148 diodes in glass DO-35 axial package. The black band on the right is the cathode side. Diode schematic symbol vs cathode marking on the package. The 1N4148 is a standard silicon switching signal diode. It is one of the most popular and long-lived switching diodes because of its dependable specifications and low cost.

  6. Flyback diode - Wikipedia

    en.wikipedia.org/wiki/Flyback_diode

    The arc can damage the switch contacts, causing pitting and burning, eventually destroying them. If a transistor is used to switch the current, such as switching power supplies, the high reverse voltage can destroy the transistor. To prevent the inductive voltage pulse on turnoff, a diode is connected across the inductor, as shown in Fig. 3.

  7. Silicon controlled rectifier - Wikipedia

    en.wikipedia.org/wiki/Silicon_controlled_rectifier

    ASCRs are used where either a reverse conducting diode is applied in parallel (for example, in voltage-source inverters) or where reverse voltage would never occur (for example, in switching power supplies or DC traction choppers). Asymmetrical SCRs can be fabricated with a reverse conducting diode in the same package.

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