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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >Phase Velocities Equalization of Coupled Microstrip Lines Using -Shaped Particles and Suppression of the Second Harmonic
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Phase Velocities Equalization of Coupled Microstrip Lines Using -Shaped Particles and Suppression of the Second Harmonic

机译:形颗粒耦合微带线相速度均衡与二次谐波抑制

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摘要

This paper represents a new technique for equalization of phase velocities in coupled microstrip lines using $Omega$ -shaped particles. In the first step, the initial idea is investigated by considering a homogenized model for the substrates, and the structure is analyzed using a developed numerical code. This analysis provides an overview in finding the proper orientation of the particles as well as examining the pseudochirality effect. It is demonstrated that placing the omega particles in a specific orientation inside the substrate leads to a remarkable increase in the phase velocity of odd modes and can provide the phase velocities equalization. In the second step, the proposed structure is simulated with few numbers of particles. The results confirm the considered effective medium for the substrate and the presented physical explanations. The dispersive characteristics of $Omega$ particles found to be valuable in proposing a simple and yet efficient method for designing coupled line filters. This procedure is based on finding the dimensions of a conventional filter with a narrower bandwidth than the desired one. In order to validate the effectiveness of the proposed method, a third order Chebychev filter is designed on FR4 substrate and a suppression level higher than 60 dB is achieved. Finally, the proposed structure is fabricated and it is observed that the experimental results are in good agreement with the simulated data.
机译:本文介绍了一种新的技术,用于使用$ Omega $形颗粒均衡耦合微带线中的相速度。第一步,通过考虑基材的均质化模型研究最初的想法,并使用开发的数字代码分析结构。该分析为寻找颗粒的正确方向以及检查拟手性效应提供了概述。已经证明,将欧米伽粒子以特定的方向放置在基板内部会导致奇数模式的相速度显着增加,并且可以提供相速度均衡。在第二步中,用很少数量的粒子模拟提出的结构。结果证实了所考虑的基材有效介质和提出的物理解释。发现Omega $粒子的色散特性在提出一种简单而有效的耦合线滤波器设计方法中很有价值。此过程基于找到带宽比所需带宽窄的常规滤波器的尺寸。为了验证所提方法的有效性,在FR4基板上设计了一个三阶Chebychev滤波器,实现了高于60 dB的抑制水平。最后,制造了所提出的结构,并观察到实验结果与模拟数据吻合良好。

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