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  2. Zener diode - Wikipedia

    en.wikipedia.org/wiki/Zener_diode

    The Zener diode's operation depends on the heavy doping of its p–n junction. The depletion region formed in the diode is very thin (< 1 μm) and the electric field is consequently very high (about 500 kV/m) even for a small reverse bias voltage of about 5 V, allowing electrons to tunnel from the valence band of the p-type material to the ...

  3. Diode - Wikipedia

    en.wikipedia.org/wiki/Diode

    In the Zener diode, the concept of PIV is not applicable. A Zener diode contains a heavily doped p–n junction allowing electrons to tunnel from the valence band of the p-type material to the conduction band of the n-type material, such that the reverse voltage is "clamped" to a known value (called the Zener voltage), and avalanche does not ...

  4. Noise generator - Wikipedia

    en.wikipedia.org/wiki/Noise_generator

    Zener diode based noise source. A noise generator is a circuit that produces electrical noise (i.e., a random signal). Noise generators are used to test signals for measuring noise figure, frequency response, and other parameters. Noise generators are also used for generating random numbers. [1]

  5. Step recovery diode - Wikipedia

    en.wikipedia.org/wiki/Step_recovery_diode

    Signal of a SRD frequency comb generator (HP 33003A) Circuit symbol In electronics, a step recovery diode (SRD, snap-off diode or charge-storage diode or memory varactor [a]) is a semiconductor junction diode with the ability to generate extremely short pulses.

  6. Blocking oscillator - Wikipedia

    en.wikipedia.org/wiki/Blocking_oscillator

    When the absorber is in the primary circuit, e.g. a Zener diode (or LED) with voltage V z connected "backwards" across the primary windings, the current waveshape is a triangle with the time t open determined by the formula I p = I peak,m - V z ×T open /L p, here I peak,m being the primary current at the time the switch opens. When the ...

  7. Coherent Showcases Thought Leaders at Photonics West 2025

    lite.aol.com/tech/story/0022/20250123/9336758.htm

    High-brightness semiconductor laser diodes for LIDAR application (Speaker: Sujoy Paul) Direct diode laser solutions for drying applications (Speaker: Bernd Köhler) Multi kW high efficiency high filling factor 870nm and 940nm QCW semiconductor diode laser bar for inertial fusion energy applications (Speaker: Guoli Liu) January 28: