大电流光子触发晶闸管的研究进展

A. Griffin
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引用次数: 1

摘要

晶闸管是一种半导体闭合开关,具有固有的低正向压降和高电压阻断能力。通常,这些装置是用电流脉冲到栅极或由局部光脉冲打开的。这两种方法都限制了电流的上升速率(dl/dt),特别是对于高压器件。增大栅极面积导致dl/dt增大,但代价是载流面积减小。随着使用“漏光”光纤的光触发技术的进步,晶闸管的准均匀照明现在可以实现,从而为高压(>10 kV)器件提供高dl/dt。采用光纤耦合二极管激光棒实现大面积照明。给出了使用大面积照明晶闸管(~100 kA, ~lMA2-sec)的测试电路示例及其相应的电流波形。
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Advances in Photon Triggered Thyristors for High Current Applications
Thyristors are a semiconductor closing switch with inherent low forward voltage drop and high voltage blocking capability. Typically, these devices are turned on with a current pulse to a gate electrode or by a localized light pulse. Both of these methods limit the rate-of-rise of current (dl/dt), especially for high voltage devices. Increasing the gate area results in an increased dl/dt but at the expense of a reduction in the current carrying area. With the advance of light triggering using "leaky" fibers, quasi-uniform illumination of a thyristor can now be realized resulting in high dl/dt for high voltage (>10 kV) devices. The large area illumination is accomplished using fiber-coupled diode laser bars. Examples of test circuits and their corresponding current waveforms are shown using large area illumination thyristors (~100 kA, ~lMA2-sec).
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