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RF Characterization of Magnetodielectric Material Using Cavity Perturbation Technique

机译:利用腔微扰技术对磁介电材料进行射频表征

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Magnetodielectric (MD) materials find application in many areas of microwave engineering, and therefore, measurement of their dielectric and magnetic properties is very important. This paper presents a novel MD material characterization method using the cavity perturbation technique (CPT) with substrate-integrated waveguide (SIW) cavity resonators. Frequency dependent complex permittivity and permeability of MD material can be extracted with a single SIW cavity structure by inserting the sample material into different locations. The fundamental theory of CPT is explained and its analysis for SIW cavity is discussed. Cobalt nanoparticles are synthesized with a fluoropolymer matrix to realize the MD materials and their properties are measured in the frequency range 1–4 GHz. The effect of volume fraction and density of the synthesized MD materials on the dielectric and magnetic properties has been studied.
机译:磁电(MD)材料在微波工程的许多领域中得到了应用,因此,测量其介电和磁性能非常重要。本文提出了一种新的MD材料表征方法,该方法使用具有衬底集成波导(SIW)腔谐振器的腔扰动技术(CPT)。通过将样品材料插入不同位置,可以使用单个SIW腔结构提取MD材料的频率相关复介电常数和磁导率。解释了CPT的基本原理,并讨论了其对SIW腔的分析。钴纳米粒子与含氟聚合物基体合成以实现MD材料,并在1-4 GHz频率范围内测量其性能。研究了合成MD材料的体积分数和密度对介电和磁性能的影响。

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