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Analysis and Verification of Inductor Coupling Effect in Interleaved Multiphase dc–dc Converters

机译:交错式多相dc-dc转换器中电感耦合效应的分析和验证

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Interleaved multiphase synchronous buck converters are often used to power computer CPU, GPU, and memory to meet the demands for increasing load current and fast current slew rate of the processors. This paper reports and explains undesired coupling between discrete inductors in typical commercial multiphase applications where space is limited. In this paper, equations of coupling coefficient are derived for single-turn and multiturn Ferrite core inductors commonly used in multiphase converters and are verified by Maxwell static simulation. The influence of the coupling effect on inductor current waveforms is demonstrated by Maxwell transient simulation and confirmed by experiments. The analysis provides a useful tool for mitigating the coupling effect in multiphase converters to avoid early inductor saturation and interference between phases. Design guidelines and recommendations are provided to minimize the unwanted coupling effect in multiphase converters.
机译:交错式多相同步同步降压转换器通常用于为计算机CPU,GPU和内存供电,以满足增加处理器的负载电流和快速电流摆率的需求。本文报告并解释了空间受限的典型商用多相应用中分立电感器之间的不良耦合。本文推导了多相转换器中常用的单匝和多匝铁氧体磁芯电感的耦合系数方程,并通过麦克斯韦静态仿真进行了验证。耦合效应对电感器电流波形的影响已通过麦克斯韦瞬变仿真得到证实,并通过实验得到了证实。该分析为减轻多相转换器的耦合效应提供了有用的工具,可避免电感器过早饱和以及相之间的干扰。提供了设计指南和建议,以最大程度地减少多相转换器中的有害耦合效应。

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