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Mitigation and utilization of the inductor coupling effect in interleaved multiphase DC/DC converters

机译:交错多相DC / DC转换器中电感耦合效应的缓解和利用

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Interleaved multiphase synchronous buck converters have been used in powering CPU, GPU and memory due to ever increasing load current and fast load slew-rate requirements of the processors. The unwanted inductor coupling exists between adjacent phases but has not been studied systematically and has been ignored in multiphase converter designs. In some cases, the unwanted inductor coupling increases the current ripple and affects the inductor current sensing accuracy and therefore should be minimized. In other cases, the inductor coupling effect can be utilized to improve load transient response and/or converter efficiency. This paper presents magnetic simulation on three different types of inductors commonly used in multiphase converters to demonstrate the coupling effect and its influence on inductor current. The simulation results of the inductor coupling effect have been verified by experiments. Recommendations are provided to minimize the unwanted coupling effect in some designs or utilize the coupling effect in others.
机译:由于不断增加的负载电流和处理器对快速摆率的要求,交错式多相同步同步降压转换器已用于为CPU,GPU和内存供电。不必要的电感耦合存在于相邻相之间,但尚未进行系统的研究,在多相转换器设计中已被忽略。在某些情况下,不需要的电感耦合会增加电流纹波并影响电感电流感测精度,因此应将其最小化。在其他情况下,可以利用电感耦合效应来改善负载瞬态响应和/或转换器效率。本文介绍了多相转换器中常用的三种不同类型电感器的磁仿真,以证明耦合效应及其对电感器电流的影响。实验证明了电感耦合效应的仿真结果。提供了一些建议,以使某些设计中的有害耦合效应最小化,或在其他设计中利用耦合效应。

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