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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Electric-Magnetic-Electric Slow-Wave Microstrip Line and Bandpass Filter of Compressed Size
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Electric-Magnetic-Electric Slow-Wave Microstrip Line and Bandpass Filter of Compressed Size

机译:压缩尺寸的电-磁-电慢波微带线和带通滤波器

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This paper presents a novel integrated microstrip low-loss slow-wave line. The new microstrip replaces the conventional metal strip by composite metals paralleling the electric surface and magnetic surface (MS). The MS made of an array of coupled inductors shows a high-impedance state in the stopband, below which the propagation properties can be well controlled by varying the dimensions of the electric surface and MS. The dispersion curves obtained by matrix-pencil analyses closely correspond to those obtained by scattering-parameter extraction. Theoretical results, as confirmed experimentally, indicate that an increase of over 60 in the slow-wave factor can be achieved without sacrificing propagation losses, using the proposed structure. This electric-magnetic-electric (EME) microstrip is insensitive to the alignment position of the periodical structure, and can be constructed using conventional printed-circuit-board fabrication processes and integrated with other microwave components in a multilayered circuit. A compact EME bandpass filter (BPF) with suppressed harmonic responses is presented. The length of the filter is reduced by 26, and the measured insertion loss and fractional bandwidth is comparable to that of a conventional microstrip BPF on the same substrate.
机译:本文提出了一种新型集成微带低损耗慢波线。新的微带线用平行于电表面和磁表面 (MS) 的复合金属取代了传统的金属带。由耦合电感器阵列组成的MS在阻带中显示出高阻抗状态,低于该状态可以通过改变电表面和MS的尺寸来很好地控制传播特性。通过矩阵铅笔分析得到的色散曲线与通过散射参数提取得到的色散曲线非常吻合。实验证实的理论结果表明,使用所提出的结构,可以在不牺牲传播损耗的情况下实现慢波因子增加60%以上。这种电-磁-电 (EME) 微带对周期结构的对准位置不敏感,可以使用传统的印刷电路板制造工艺构建,并与多层电路中的其他微波元件集成。该文提出了一种具有抑制谐波响应的紧凑型EME带通滤波器(BPF)。滤波器的长度减少了 26%,测得的插入损耗和分数带宽与同一基板上的传统微带 BPF 相当。

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