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Dynamic Characterization of Parallel-Connected High-Power IGBT Modules

机译:并联大功率IGBT模块的动态特性

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摘要

In high-power converter design, insulated gate bipolar transistor (IGBT) modules are often operated in parallel to reach high output currents. Evaluating the electrical and thermal behavior of the parallel IGBTs is crucial for the design and reliable operation of converter systems. This paper investigates the static and dynamic characterization of parallel IGBTs and the influence of the electrical parameters on the IGBT behavior. Si-based IGBT power modules with voltage rating of 4.5 kV and current rating of 1 kA are used for the experimental evaluation of module parallel connections. Parallel-connected modules have been driven by several commercial IGBT gate units at various dc-link voltages and current levels and with different temperatures. The tested IGBT gate units show good current sharing performance between the two parallel modules. Other important influencing factors such as busbar design layout, stray inductance variation, and gate driving are also investigated for parallel connections of IGBT modules. Finally, the switching energy of the parallel modules is extracted for IGBTs and diodes under different conditions.
机译:在大功率转换器设计中,绝缘栅双极晶体管(IGBT)模块通常并联运行以达到高输出电流。评估并联IGBT的电气和热性能对于转换器系统的设计和可靠运行至关重要。本文研究了并联IGBT的静态和动态特性,以及电参数对IGBT行为的影响。额定电压为4.5 kV和额定电流为1 kA的硅基IGBT功率模块用于模块并联的实验评估。并联连接的模块已由多个商用IGBT栅极单元以不同的直流链路电压和电流水平以及不同的温度驱动。经过测试的IGBT栅极单元在两个并联模块之间显示出良好的均流性能。还针对IGBT模块的并联连接研究了其他重要的影响因素,例如母线设计布局,杂散电感变化和栅极驱动。最后,提取不同条件下IGBT和二极管并联模块的开关能量。

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