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Diodes as pseudo-active elements in high-frequency DC/DC converters

机译:二极管作为高频DC / DC转换器中的伪有源元件

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摘要

A novel approach to realizing zero-voltage switching in high-frequency DC/DC converters is presented. Utilizing the parasitic associated with the diode stored charge, it is shown that the diode reverse current established for charge removal can be used advantageously to accomplish soft switching. The entire family of single-transistor DC/DC converters can be realized using the technique. The converter topologies are seen to differ from their hard-switched counterparts only by the presence of a resonant capacitor. It is also shown that device and component stresses are moderate as compared to existing quasi-resonant and resonant techniques. Converter analysis is rather complex as a result of the dominant diode nonlinearities, and no closed-form expressions are possible. Converter transfer characteristics are obtained through simulation, and operating limits are analytically obtained. The concept is validated by experimental results using buck-type converters rated at approximately 100 W and operating at frequencies around 1 MHz.
机译:提出了一种在高频DC / DC转换器中实现零电压开关的新颖方法。利用与二极管存储的电荷相关的寄生效应,可以看出,为去除电荷而建立的二极管反向电流可以有利地用于完成软开关。使用该技术可以实现整个单晶体管DC / DC转换器系列。仅在存在谐振电容器的情况下,才能看到转换器的拓扑结构与硬开关的拓扑结构有所不同。还表明,与现有的准谐振和谐振技术相比,器件和组件的应力适中。由于主要的二极管非线性,转换器分析相当复杂,并且不可能有闭合形式的表达式。通过仿真获得转换器的传输特性,并通过分析获得运行极限。使用额定功率约为100 W且工作频率约为1 MHz的降压型转换器的实验结果验证了该概念。

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