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Integrating Active, Passive and EMI-Filter Functions in Power Electronics Systems: A Case Study of Some Technologies

机译:在电力电子系统中集成有源,无源和EMI滤波器功能:一些技术的案例研究

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Assemblies of power semiconductor switches and their associated drive circuits are at present available in modules. Upward into the multi-kilowatt range, mixed mode module construction is used. This incorporates monolithic, hybrid, surface mount, and wirebond technology. However, a close examination of the applications in motor drives and power supplies indicates that there has been no dramatic volume reduction of the subsystem. The power semiconductor modules have shrunk the power switching part of the converter, but the bulk of the subsystem volume still comprises the associated control, sensing, electromagnetic power passives (inductors, transformers, capacitors) and interconnects. This paper addresses the improvement of power processing technology through advanced integration of power electronics. The goal of a subsystem in a module necessitates this advanced integration, incorporating active switching stages, electromagnetic interference (EMI) filters, and electromagnetic power passives into modules by integration technology. The central philosophy of the technology development research in the National Science Foundation Engineering Research Center for Power Electronic Systems is to advance the state of the art by providing the concept of integrated power electronics modules (IPEMs) for all these functions. The technology underpinning such an IPEM approach is discussed.
机译:功率半导体开关及其相关的驱动电路的组件目前在模块中可用。向上进入多千瓦范围,使用混合模式模块构造。它结合了单片,混合,表面安装和引线键合技术。但是,仔细检查电动机驱动器和电源中的应用程序,可以发现子系统的体积没有显着减少。功率半导体模块缩小了转换器的功率开关部分,但是子系统的大部分体积仍然包括相关的控制,感测,电磁功率无源元件(电感器,变压器,电容器)和互连。本文致力于通过电力电子技术的高级集成来改进电力处理技术。模块中子系统的目标需要这种高级集成,通过集成技术将有源开关级,电磁干扰(EMI)滤波器和电磁功率无源器件整合到模块中。美国国家科学基金会电力电子系统工程研究中心的技术开发研究的中心思想是,通过提供用于所有这些功能的集成电力电子模块(IPEM)的概念,来提高技术水平。讨论了支持此类IPEM方法的技术。

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