用作多相耦合电感磁芯的铁氧体材料的特性

N. Lečić, A. Kuniyil, G. Stojanović
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引用次数: 1

摘要

在铁氧体磁芯电感的设计过程中,选择合适的磁芯材料是一个重要的步骤。这项工作是开发创新多相耦合电感器的第一步。元件将用于MHz频率区域,并打算用于紧凑型DC/DC转换器。在第一次迭代中,选择了三种NiZn材料作为多相耦合电感的核心材料。分析了铁氧体铁心对电感频率特性和q因子的贡献。本文对铁氧体的SEM结构分析和应力性能作为选择过程中的附加参数进行了分析。研究结果表明,在器件的进一步开发中,选用了两种铁氧体材料作为电感磁芯。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of ferrite materials used as a core for multi-phase coupled inductors
In the process of design inductors with ferrite cores, one of important steps is the selection of proper core material. This work presents first steps in the process of development innovative multi-phase coupled inductor. Component will be used in MHz frequency region and it is intended to be used in the compact DC/DC converters. In first iteration, three types of NiZn materials have been selected as core materials for multi-phase coupled inductors. Results and analysis of ferrite core contribution to inductance frequency characteristic and Q-factor have been analyzed. SEM structural analysis and stress performance of ferrites are presented and analyzed in this work as additional parameter in process of selection. As result of this research, two ferrite materials are selected to be used as inductor cores in further development of component.
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