Core Size Scaling Law of Two-Phase Coupled Inductors – Demonstration in a 48-to-1.8 V Hybrid Switched-Capacitor MLB-PoL Converter

T. Ge, Rose A. Abramson, Zichao Ye, R. Pilawa-Podgurski
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引用次数: 8

Abstract

Conventional design of coupled inductors is focused on a specific converter topology, and the size advantage of coupled inductors over uncoupled inductors is rarely analyzed systematically. This work models the core size for generalized two-phase gapped coupled inductors and provides an effective way to compare the core size for different duty ratios (corresponding to different topologies) and different coupling coefficients. Both the analytical model and hardware prototypes are provided to demonstrate a significant size reduction by using tightly-coupled inductors in hybrid switched-capacitor converters with a large duty ratio. The proposed coupled inductors are applied in a Multi-Level Binary (MLB) Point-of-Load (PoL) converter, achieving 94.4% peak system efficiency and 474 W/in3 power density with 48-to-1.8 V conversion and 60 A output. Both the efficiency and power density are higher than the conventional MLB-PoL converter using discrete inductors.
两相耦合电感的磁芯尺寸缩放规律——在48- 1.8 V混合开关电容MLB-PoL变换器中的演示
传统的耦合电感设计主要集中在特定的变换器拓扑结构上,很少系统地分析耦合电感相对于非耦合电感的尺寸优势。本文建立了广义两相间隙耦合电感的铁芯尺寸模型,为比较不同占空比(对应不同拓扑结构)和不同耦合系数下的铁芯尺寸提供了一种有效的方法。分析模型和硬件原型都证明了在具有大占空比的混合开关电容器变换器中使用紧密耦合电感可以显着减小尺寸。所提出的耦合电感应用于多级二进制(MLB)负载点(PoL)转换器,在48- 1.8 V转换和60 a输出下,实现了94.4%的峰值系统效率和474 W/in3的功率密度。其效率和功率密度均高于采用离散电感的传统MLB-PoL变换器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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