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The Equivalent Electron Density Concept for Static and Dynamic Modeling of the IGBT Base in Soft- and Hard-Switching Applications

机译:在软开关和硬开关应用中对IGBT基础进行静态和动态建模的等效电子密度概念

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摘要

The transient and static behavior of an insulated gate bipolar transistor (IGBT) are analyzed through finite elements simulations and physically based equations. The standard model using a bipolar transistor driven by a MOSFET is abandoned for three partial voltage drops in series, each with its specific static and dynamic behavior. One voltage drop on the internal MOSFET, one on the base and one on the collector-base junction. It is found that the dynamic model can be drastically simplified by focusing on the equivalent electron density. This takes into account the most important phenomena related to the carrier mobilities, necessary for an accurate transient modeling. The specific behavior of the gate-collector capacitance in soft switching conditions is discussed. An equation set based on semiconductor physics is developed to determine the static operating points for each contribution. The importance of the minority carriers transit time in soft switching conditions is then shown. The similarity observed between the waveforms obtained through a finite element simulation and the waveforms obtained using the developed IGBT model within various external structures validates the proposed approach.
机译:通过有限元模拟和基于物理的方程式分析了绝缘栅双极型晶体管(IGBT)的瞬态和静态行为。使用由MOSFET驱动的双极型晶体管的标准模型放弃了三个串联的局部压降,每个压降都有其特定的静态和动态特性。内部MOSFET上有一个压降,一个在基极上,一个在集电极-基极结上。发现通过关注等效电子密度可以大大简化动力学模型。这考虑了与载流子迁移率相关的最重要的现象,这对于精确的瞬态建模是必需的。讨论了在软开关条件下栅极-集电极电容的特定行为。开发了基于半导体物理的方程组,以确定每个贡献的静态工作点。然后显示了少数载波在软交换条件下渡越时间的重要性。通过有限元模拟获得的波形与使用已开发的IGBT模型在各种外部结构中获得的波形之间观察到的相似性验证了所提出的方法。

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