Ferrite Materials and Applications

Tsun-Hsu Chang
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引用次数: 13

Abstract

This chapter starts from a generalized permeability and aims at providing a better understanding of the ferrites behavior in the microwave fields. The formula of the generalized permeability explains why the permeability of the ferrimagnetic or even the ferromagnetic materials strongly depends on the applied magnetic bias and the polarization of the wave. Right-hand circularly polarized (RHCP) wave may synchronize with the precession of the magnetic moment, resulting in a strong resonant effect. Characterizing the ferrites ’ properties, including the complex permittivity, the saturation magnetization, and the resonance linewidth, will be discussed. We then utilize these properties to design and fabricate various microwave devices, such as phase shifters, circulators, and isolators. Detailed analysis and simulation to demonstrate how these ferrite devices work will be shown. The mechanism will be discussed.
铁氧体材料及应用
本章从广义磁导率出发,旨在更好地理解铁氧体在微波场中的行为。广义磁导率公式解释了为什么铁磁甚至铁磁材料的磁导率强烈依赖于外加磁偏和波的极化。右圆极化(RHCP)波可以与磁矩进动同步,产生强烈的共振效应。讨论了铁氧体的特性,包括复介电常数、饱和磁化强度和共振线宽。然后我们利用这些特性来设计和制造各种微波器件,如移相器、环行器和隔离器。详细的分析和仿真将展示这些铁氧体器件是如何工作的。我们将讨论这一机制。
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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