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Design Principles of a Symmetrically Coupled Inductor Structure for Multiphase Synchronous Buck Converters

机译:多相同步降压转换器的对称耦合电感器结构的设计原理

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The multiphase interleaved synchronous buck converters with coupled phase inductors are being preferred for voltage regulator modules requiring low output voltage, high output current, and fast transient response since they simultaneously offer better steady-state efficiency and faster dynamic response. In this paper, a novel magnetic core structure for symmetrical coupling of multiphase buck converter phase inductors is proposed, which overcomes several limitations of asymmetrical inductor coupling proposed so far. A new analytical technique to arrive at simple dynamic equivalent circuits of the converter, as well as design guidelines for the proposed inductor structure, is presented. Experimental results from a prototype four-phase synchronous buck converter with the proposed inductor demonstrate 2% to 6% improvement in the converter efficiency compared to a similarly rated converter with uncoupled inductors while retaining the same transient performance.
机译:具有耦合相位电感的多相交错式同步降压转换器对于要求低输出电压,高输出电流和快速瞬态响应的稳压器模块是首选,因为它们同时提供了更好的稳态效率和更快的动态响应。本文提出了一种新颖的用于多相降压转换器相电感对称耦合的磁芯结构,克服了迄今为止提出的不对称电感耦合的一些局限性。提出了一种新的分析技术,以求出转换器的简单动态等效电路,以及提出的电感器结构的设计指南。具有所建议电感器的原型四相同步同步降压转换器的实验结果表明,与具有未耦合电感器的类似额定转换器相比,转换器效率提高了2%至6%,同时保持了相同的瞬态性能。

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