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Optimum design of nondissipative snubbers by the evaluation of transistor's switching loss, surge voltage, and surge current

机译:通过评估晶体管的开关损耗,浪涌电压和浪涌电流来优化非耗散缓冲器的设计

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A nondissipative LC snubber has recently been used to suppress transistor's surge voltage and switching power loss in a switching power converter. Its suppression capability is improved with the increase in snubber capacitance, if the reactor current is assumed to be independent of the snubber. However, the increase in snubber capacitance yields the increase in reactor current. Both the surge and Switching loss increase with the reactor current. From these facts, there exists the limitation in suppressing the surge and switching loss. This paper clarifies the limitation of snubber effect quantitatively through the detailed analysis of the fundamental characteristics and the turnoff transient operation in a typical buck-boost converter.
机译:最近,非耗散LC缓冲器已被用于抑制开关电源转换器中晶体管的浪涌电压和开关电源损耗。如果假设电抗器电流与缓冲电流无关,则其抑制能力会随着缓冲电容的增加而提高。然而,缓冲电容的增加导致电抗器电流的增加。电涌和开关损耗都随电抗器电流的增加而增加。基于这些事实,在抑制电涌和开关损耗方面存在局限性。本文通过对典型降压-升压转换器的基本特性和关断瞬态操作的详细分析,定量地阐明了缓冲效应的局限性。

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