Controllable silicon, also known as thyristor, is a commonly used semiconductor device that can control the magnitude of current like a gate
Categories:Product knowledge Date:2025-03-03 Hits:1264 View »
The quality of a bidirectional thyristor can be determined using a meter, but specific parameters cannot be measured.
Categories:Product knowledge Date:2025-03-03 Hits:641 View »
Judgment of the quality of high-power thyristors
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Method for distinguishing the positive and negative poles of T-shaped surface mounted light-emitting diodes
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Unidirectional thyristor (SCR) is a semiconductor device and the earliest type of thyristor. It consists of four semiconductor regions with three electrodes: anode, cathode, and control electrode. Unidirectional thyristors have unidirectional conductivity and can only flow from the anode to the cathode, with very little reverse current. Meanwhile, unidirectional thyristors have controllability and can control their conduction state through signals from the control electrode, making them widely u
Categories:Product knowledge Date:2025-02-28 Hits:786 View »
Thyristor, also known as thyristor, is the abbreviation for semiconductor thyristor. Thyristor is a high-power PNPN type 4-layer 3-terminal component that can convert alternating current into pulsating direct current with adjustable voltage, as well as direct current into alternating current. It can also adjust the alternating current voltage and make contactless switches. Thyristors are widely used in controllable rectification, speed regulation of DC motors, and electroplating industries.
Categories:Product knowledge Date:2025-02-27 Hits:475 View »
Thyristor, also known as silicon controlled rectifier (SCR), is a high-power semiconductor device composed of three PN structures. In terms of performance, thyristors not only have unidirectional conductivity, but also possess more valuable controllability than silicon rectifier components, with only two states: on and off.
Categories:Product knowledge Date:2025-02-27 Hits:627 View »
In general, MOSFETs commonly used for high-end driving require a gate voltage greater than the source voltage when conducting. However, for high-end driving MOSFETs, the source voltage and drain voltage (VCC) are the same when conducting, so the gate voltage should be 4V or 10V higher than VCC
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As a switching element, MOS transistors also operate in two states: off or on. As MOS transistors are voltage controlled components, their operating state is mainly determined by the gate source voltage uGS.
Categories:Product knowledge Date:2025-02-27 Hits:636 View »
Why are MOS transistors broken down and how to solve this problem:
Categories:Product knowledge Date:2025-02-27 Hits:649 View »