Extraction of rf permeability of ferrite materials using direct measurement of inductors on ferrite cores

K. Naishadham
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引用次数: 4

Abstract

Ferrite materials are widely used as chokes to minimize common-mode currents in antenna feeds, in the design of artificial magnetic conductors, and in the filtering of noise at radio frequencies (RF). Miniature inductors, consisting of a thinwire coil around a high-permeability soft ferrite core, find wide application in RF and microwave circuits. An understanding of the high-frequency parasitic and packaging effects, such as stray capacitance, magnetic losses, resonant characteristics, etc., useful in the design of these components, can be gained from an equivalent circuit characterization of the inductor. In this paper, we present a rigorous experimental method to fully characterize the frequency dependent RF behavior of ferrite inductors. The equivalent circuit parameters of the inductor, as well as the complex effective permeability of the core, are extracted in closed form from an accurate measurement of the RF impedance, without recourse to cumbersome optimization procedures.
利用直接测量铁氧体铁芯上的电感提取铁氧体材料的射频磁导率
铁氧体材料广泛用作扼流圈,以减少天线馈电中的共模电流,用于人工磁性导体的设计以及射频噪声的滤波。在高磁导率软铁氧体铁芯周围绕一个细线圈组成的微型电感器在射频和微波电路中有着广泛的应用。了解高频寄生和封装效应,如杂散电容、磁损耗、谐振特性等,可以从电感的等效电路特性中获得,这对这些元件的设计很有用。在本文中,我们提出了一种严格的实验方法来充分表征铁氧体电感器的频率相关射频行为。电感器的等效电路参数,以及磁芯复杂的有效磁导率,都是从射频阻抗的精确测量中以封闭形式提取出来的,而无需求助于繁琐的优化程序。
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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