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Short circuit protection of high speed, high power IGBT modules

机译:高速,大功率IGBT模块的短路保护

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At SLAC, research and development for the next linear collider (NLC) is progressing. The 8-Pack project is a test stand in which key NLC components will be developed. Presently the setup is such that an induction modulator [R. L. Cassel et al., The Prototype Solid State Induction Modulator for SLAC NLC] will generate 400 kV, 1200 A, and 1.6 /spl mu/s flattop pulse to drive four XL4 X-band klystrons. This requires the use of 76 high power IGBT modules operating in parallel at 3600 A and up to 2200 V each. IGBT switching speeds and short circuit protection from klystron arcs are major concerns. This paper describes a gate drive circuit with a new method to protect IGBT modules under short circuit conditions. Using a dI/dt control technique, the gate drive circuit enabled the Mitsubishi module CM600HB-90H to switch 4000 A at speeds up to 10 kA//spl mu/s in normal operation, while holding the short circuit peak-current to about 8000 A. Results from the single IGBT test and the 8-Pack Modulator prototype will be presented.
机译:在斯拉克,下一个线性撞机(NLC)的研发正在进行中。 8-Pack项目是一个测试台,其中将开发密钥NLC组件。目前,设置是一种感应调制器[R. L. Cassel等,SLAC NLC的原型固态感应调制器将产生400kV,1200a和1.6 / SPL MU / S圆增脉冲,以驱动四个XL4 X波段klystrons。这需要使用76个高功率IGBT模块,每个高功率IGBT模块在3600a和高达2200 v并联操作。 IGBT开关速度和克利茨龙弧的短路保护是主要的担忧。本文描述了一种具有新方法的栅极驱动电路,可以在短路条件下保护IGBT模块。使用DI / DT控制技术,栅极驱动电路使MITSUBISHI模块CM600HB-90H能够在正常操作中以高达10kA // SPL MU / S的速度切换4000A,同时将短路峰值电流保持在约8000 A.呈现单个IGBT测试的结果和8-Pack调制器原型。

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