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Design Tradeoffs of A DC-DC Buck-Boost Converter Employing An RCD Snubber

机译:采用RCD缓冲器的DC-DC降压-升压转换器的设计折衷

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The RCD (resistor-capacitor-diode) snubber is typically used in low-power applications to limit the maximum voltage stress across the semiconductor during turn off, although power dissipation occurs in the resistor with consequent reduction of efficiency. Even though it may not be an adequate solution for high power levels, it is still widely employed instead of soft switching circuits due to inherent simplicity. This work presents an optimized and practical step-by-step design procedure for an RCD snubber applied to a dc-dc buck-boost converter, which is not found in power electronics-related books. It is effectively shown how it is possible to design the snubber and the converter while maintaining acceptable voltage stresses across the switches with reduced losses. An experimental prototype is developed, as it is possible to validate the theoretical analysis properly.
机译:RCD(电阻-电容-二极管)缓冲器通常用于低功率应用中,以限制关断期间半导体上的最大电压应力,尽管电阻中会发生功耗,从而导致效率降低。即使对于高功率电平可能不是适当的解决方案,但由于其固有的简单性,它仍然被广泛采用,而不是软开关电路。这项工作提出了一种适用于DC-DC降压-升压转换器的RCD缓冲器的优化,实用的分步设计程序,这在与电力电子相关的书籍中找不到。有效地显示了如何设计缓冲器和转换器,同时保持开关两端可接受的电压应力,并降低损耗。由于有可能正确验证理论分析,因此开发了实验原型。

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