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A new microstrip coupling system for realization of a differential dual-band bandpass filter

机译:一种用于实现差分双频带通滤波器的新微带耦合系统

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In this paper, a new Differential Dual-Band Wide-Bandpass Filter (DDWBF) using a new coupling system is presented. The adjustable coupling system composed of Two Coupled U-Shaped Structures (TCUSs) which create and control two initial passbands. Four TCUSs are then placed in four ports and connected through a defected fractal-based low impedance transmission line. Third order of Sierpinski fractal is applied on the transmission line to improve the out of band rejection of the differential mode along with common mode suppression. An analytical analysis is also presented to calculate the transmission zeros and poles of the DDWBF which verifies the authenticity of the design procedure. A prototype of the filter has been fabricated and tested which shows a very good agreement with the predicted results. According to the measured results, two wide passbands with fractional bandwidths of 45% and 13.5% at central frequencies of 4.32 and 8.61 GHz, respectively, have been achieved. The differential mode return loss is higher than 15 dB in both bands and the common mode suppression level is better than 14.85 dB. (C) 2018 Elsevier GmbH. All rights reserved.
机译:本文介绍了一种使用新耦合系统的新的差分双频宽带通道滤波器(DDWBF)。由两个耦合U形结构(TCUSS)组成的可调节耦合系统,其产生和控制两个初始通带。然后将四个TCUSS放入四个端口并通过缺陷的基于分形的低阻抗传输线连接。 Sierpinski分形的第三顺序应用于传输线,以改善差分模式的带外抑制以及共模抑制。还提出了分析分析来计算DDWBF的传输零和极点,验证设计过程的真实性。已经制造和测试过滤器的原型,其与预测结果非常良好。根据测量结果,已经实现了分别在4.32和8.61GHz的中央频率下分数为45%和13.5%的两个宽通带。两个带中的差分模式返回损耗高于15 dB,共模抑制电平优于14.85 dB。 (c)2018年Elsevier GmbH。版权所有。

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