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  2. Tunnel diode - Wikipedia

    en.wikipedia.org/wiki/Tunnel_diode

    Another type of tunnel diode is a metal-insulator-insulator-metal (MIIM) diode, where an additional insulator layer allows "step tunneling" for more precise control of the diode. [11] There is also a metal-insulator-metal (MIM) diode, but due to inherent sensitivities, its present application appears to be limited to research environments.

  3. Resonant-tunneling diode - Wikipedia

    en.wikipedia.org/wiki/Resonant-tunneling_diode

    A resonant-tunneling diode (RTD) is a diode with a resonant-tunneling structure in which electrons can tunnel through some resonant states at certain energy levels. The current–voltage characteristic often exhibits negative differential resistance regions. All types of tunneling diodes make use of quantum mechanical tunneling. Characteristic ...

  4. Quantum tunnelling - Wikipedia

    en.wikipedia.org/wiki/Quantum_tunnelling

    Tunneling applications include the tunnel diode, [5] quantum computing, flash memory, and the scanning tunneling microscope. Tunneling limits the minimum size of devices used in microelectronics because electrons tunnel readily through insulating layers and transistors that are thinner than about 1 nm. [6]

  5. Negative resistance - Wikipedia

    en.wikipedia.org/wiki/Negative_resistance

    The tunnel diode circuit (see diagram) is an example. [82] The tunnel diode TD has voltage controlled negative differential resistance. [54] The battery adds a constant voltage (bias) across the diode so it operates in its negative resistance range, and provides power to amplify the signal.

  6. Diode logic - Wikipedia

    en.wikipedia.org/wiki/Diode_logic

    Consequently, tunnel diode logic circuits required a means to reset the diode after each logical operation. However, a simple tunnel diode gate offered little isolation between inputs and outputs and had low fan in and fan out. More complex gates, with additional tunnel diodes and bias power supplies, overcame some of these limitations. [7]

  7. Tunnel field-effect transistor - Wikipedia

    en.wikipedia.org/wiki/Tunnel_field-effect_transistor

    The tunnel field-effect transistor (TFET) is an experimental type of transistor. Even though its structure is very similar to a metal–oxide–semiconductor field-effect transistor ( MOSFET ), the fundamental switching mechanism differs, making this device a promising candidate for low power electronics .

  8. Zener effect - Wikipedia

    en.wikipedia.org/wiki/Zener_effect

    In electronics, the Zener effect (employed most notably in the appropriately named Zener diode) is a type of electrical breakdown, discovered by Clarence Melvin Zener. It occurs in a reverse biased p-n diode when the electric field enables tunneling of electrons from the valence to the conduction band of a semiconductor , leading to numerous ...

  9. File:Tunnel diode amplifier.svg - Wikipedia

    en.wikipedia.org/wiki/File:Tunnel_diode...

    English: A demonstration circuit showing how a tunnel diode can amplify a signal using negative differential resistance. The DC voltage V b biases the tunnel diode TD into its negative resistance region and also supplies the power used in amplifying the signal. For stability the resistor R must be less than the diodes negative resistance r.