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Leveraging tapped-inductor architectures to increase power density of single and dual-polarity-output buck-boost converters

机译:利用抽头电感架构来提高单极性和双极性输出降压-升压转换器的功率密度

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Compact, efficient, non-isolated DC-DC converters where the output voltage falls within the input voltage range are needed in numerous commercial applications, including industrial, automotive and low voltage battery systems. Traditional approaches such as SEPIC, four-switches buck boost or transformer-based topologies can solve the application requirement, however they also bring some compromises depending on the topology selected, whether that is increased size, complexity or losses. This paper analyses a tap-to-ground tapped-inductor buck boost architecture that introduces a different approach to solve this application requirement. It's compact, uncomplicated and flexible enough to be used in single output applications as well as to generate dual complementary rails, very common requirement when powering analog electronics.
机译:在包括工业,汽车和低压电池系统在内的众多商业应用中,需要输出电压落在输入电压范围内的紧凑,高效,非隔离式DC-DC转换器。传统方法(例如SEPIC,四开关降压/升压或基于变压器的拓扑)可以解决应用需求,但是根据所选择的拓扑(无论是增大尺寸,复杂度还是降低损耗),它们也会带来一些折衷。本文分析了一种抽头接地抽头电感器降压升压架构,该架构引入了解决该应用要求的另一种方法。它结构紧凑,简单,灵活,足以用于单输出应用以及生成双互补轨,这是给模拟电子设备供电时非常常见的要求。

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