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5SHX2645L0004 5SHX series thyristor

5SHX2645L0004 5SHX series thyristor

The 5SHX2645L0004 is a thyristor (also known as a thyristor or silicon controlled rectifier) belonging to the 5SHX series. Thyristor is a four-layer three-terminal semiconductor device, which has the characteristics of silicon rectifier devices, and can work under high voltage and high current conditions, and its working process can be controlled. Therefore, it is often used in a variety of situations where precise control of current or voltage is required.

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Essential details:5SHX2645L0004 5SHX series thyristor

The 5SHX2645L0004 is a thyristor (also known as a thyristor or silicon controlled rectifier) belonging to the 5SHX series. Thyristor is a four-layer three-terminal semiconductor device, which has the characteristics of silicon rectifier devices, and can work under high voltage and high current conditions, and its working process can be controlled. Therefore, it is often used in a variety of situations where precise control of current or voltage is required.

The thyristors of the 5SHX series usually share some common characteristics, such as:

High reliability: These devices undergo rigorous quality control and testing to ensure stable operation in a variety of operating environments.
Fast response: thyristor can quickly respond to control signals, so as to achieve rapid control of current or voltage.
Easy to control: By adjusting the control signal, the size of the current or voltage through the thyristor can be precisely controlled.
Wide application: Because of these characteristics of thyristors, they are widely used in various industrial automation, motor control, lighting dimming, power management and other fields.

5SHX2645L0004

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5SHX2645L0004 5SHX series thyristor

IGCT is a combination of GCT(gate commutated thyristor) and integrated gate drive circuit, which has GTO high blocking capability and low on-state voltage drop, as well as the same switching performance as IGBT, is an ideal megawatt-level, medium-voltage switching device, widely used in high-power medium-voltage converters. The basic working principle is as follows:

When the IGCT works in the on-state, it is a positive feedback switch like a thyristor, which is characterized by strong current carrying capacity and low on-state voltage. In the off state, the pn junction between the IGCT gate and the cathode enters the reverse bias in advance, and effectively exits the work, the entire device works in a transistor way, the equivalent circuit diagram of the device in these two states, IGCT off, by opening a switch in series with the cathode (usually MOSFET), the P base n emitter is reversed. This quickly prevents cathode injection, forcing the overall anode current into a gate current (usually within ls), thus transforming the GTO into a contactless base PNP transistor, eliminating the cathode emitter contraction effect. As a result, its maximum turn-off current is much higher than the rated current of a conventional GTO. Since the IGCT is turned off when the gain approaches 1, the protective absorption circuit can be omitted.