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Closed-Form Design Formulas for the Equivalent Circuit Characterization of Ferrite Inductors

机译:铁氧体电感器等效电路表征的闭式设计公式

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Miniature inductors, consisting of thin-wire solenoidal or toroidal coils wound on a high-permeability soft ferrite core, find wide application in the filtering of noise or electromagnetic interference at RF. An understanding of the high-frequency parasitic and packaging effects of the inductor, such as stray capacitance, magnetic losses, self-resonance, etc., can be gained from an equivalent circuit characterization of the inductor. In this paper, we present a rigorous experimental method to fully characterize the RF behavior of ferrite inductors. The equivalent circuit parameters of the inductor, namely, series inductance, loss resistance, and stray capacitance, as well as the effective permeability of the core, are extracted in closed form from an accurate measurement of the RF impedance, without recourse to cumbersome optimization procedures usually followed in equivalent circuit extraction from measured data. We derive design equations for the equivalent circuit elements based on the proposed measurement-based model, and rigorously validate the model using inductors wound on commercial toroidal and rod-type Ni–Zn ferrite cores.
机译:微型电感器由缠绕在高磁导率软铁氧体磁芯上的细线螺线管或环形线圈组成,可广泛用于过滤射频的噪声或电磁干扰。可以从电感的等效电路特性中获得对电感的高频寄生效应和封装效应的了解,例如杂散电容,磁损耗,自谐振等。在本文中,我们提出了一种严格的实验方法来完全表征铁氧体电感器的RF行为。电感的等效电路参数,即串联电感,损耗电阻和杂散电容,以及铁芯的有效磁导率,是通过精确测量RF阻抗以封闭形式提取的,而无需进行繁琐的优化程序通常是从测量数据中提取等效电路。我们根据提出的基于测量的模型导出等效电路元件的设计方程,并使用绕在商用环形和棒状Ni-Zn铁氧体磁芯上的电感器严格验证该模型。

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