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Asymmetrical Inductance Utilized for Switching Loss Reduction In Power Modules

机译:用于减少电源模块的不对称电感

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摘要

High efficiency of power conversion circuits is a design goal on its own.At the top end competing solar inverter manufacturer to develop the most efficient topologies using components with the lowest power dissipation.But high efficiency is also the key for other approaches. The reduction of switching losses is the basis for higher switching frequencies which lead to a reduction of the size and weight of the passive components. The improvement from 96% to 99% efficiency will reduce the effort for cooling by factor four.It is obvious that high efficient circuits are the smartest way to achieve compact design and highest power density.With the utilization of parasitic inductance and consequent execution of basic rules of power electronics is a new power electronics solution based on standard Si components disclosed which extends the traditional designs. The presented new power module concept combines a low inductive turn off with the utilization of the parasitic inductance for a reduction of the turn on losses and the usage of three level switching circuits with the paralleling of fast switching components with components with low forward voltage drop.
机译:高效率的功率转换电路是其自己的设计目标。最顶端竞争太阳能逆变器制造商,使用功耗最低的组件开发最有效的拓扑。但是高效率也是其他方法的关键。切换损耗的减小是更高开关频率的基础,这导致无源元件的尺寸和重量的减小。从96%到99%的提高效率将减少对FIGPER FORP的努力。这是显而易见的,高效电路是实现紧凑设计和最高功率密度的最聪明的方式。与寄生电感的利用率和基本的执行执行。电力电子规则是一种基于标准SI组件的新型电力电子解决方案,延长了传统设计。所提出的新电源模块概念将低电感关闭结合利用寄生电感,以降低开启损耗的损耗和三个电平开关电路的使用与具有低正向电压下降的部件的快速切换部件的平行。

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