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Compact Wide-Stopband Dual-Band Balanced Filter Using an Electromagnetically Coupled SIR Pair With Controllable Transmission Zeros and Bandwidths

机译:使用具有可控传输零和带宽的电磁耦合的SiR对紧凑型宽-Tapband双频平衡滤波器

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摘要

This brief presents a dual-band balanced filter with wide stopband, controllable transmission zeros and bandwidths, and compact size based on a newly designed electromagnetically coupled stepped impedance resonator (SIR) pair. The proposed SIR contains three different impedance lines, which can lead to more degrees of design freedom for resonant frequency control. Two electrical length ratios of the SIR can be individually tuned to obtain two desired differential-mode (DM) resonant frequencies for dual-band design, while keeping the first spurious frequency far away for wide-stopband design. Moreover, an inherent common-mode (CM) suppression can also be obtained without adding extra structures due to the discriminating CM resonant frequencies. The mechanism of transmission zeros (TZs) generation is also investigated by means of phases and admittance analysis. It reveals that four TZs around the two operating bands can be flexibly controlled via adjusting the ratio of magnetic and electric coupling coefficients of the SIR pair as well as the coupling space of the feeding lines, which have greatly enhanced the passband selectivities and the band-to-band isolation. Subsequently, the graphs of coupling coefficients and external quality factors for the filter design are extracted, showing sufficient degrees of design freedom for bandwidth control. The proposed dual-band balanced filter is finally fabricated and measured at 1.75 GHz and 3.64 GHz, respectively. Measured results are in good agreement with the simulated ones. Compared with the state-of-the-art works, the proposed circuit performs a deeper and wider stopband of $4.5{f}_{1}^{d}$ with 40dB attenuation (where ${f}_{1}^{d}$ is the fundamental frequency), and more than 50-/45-dB in-band CM suppressions with compact size ( $0.14lambda _{g} imes 0.27{lambda }_{g}$ , where ${lambda }_{g}$ is the guided wavelength of the fundamental frequency).
机译:本简述介绍了双带平衡滤波器,具有宽的阻带,可控传输零和带宽,以及基于新设计的电磁耦合的阶梯式阻抗谐振器(SIR)对的紧凑尺寸。所提出的先生包含三条不同的阻抗线,这可能导致谐振频率控制更多的设计自由度。 SIR的两个电长度比可以单独调整以获得用于双频设计的两个所需的差分模式(DM)谐振频率,同时将第一种杂散频率保持远离宽固定设计。此外,还可以获得固有的共模(CM)抑制而不增加由于鉴别的CM谐振频率引起的额外结构。还通过阶段和终止分析研究了透射零(TZS)产生的机制。它揭示了通过调节SIR对的磁性和电耦合系数的比率以及馈电线的耦合空间来灵活地控制两个操作带周围的四个TZ,这极大地增强了通带选择性和带 - 带隔离。随后,提取耦合系数和外部质量因子的曲线图,显示了用于带宽控制的足够的设计自由度。最终拟议的双频频率平衡过滤器分别在1.75GHz和3.64GHz下进行制造和测量。测量结果与模拟的结果吻合良好。与最先进的工作相比,所提出的电路执行更深层次和更广泛的阻带<内联公式XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3.org/1999/xlink”> $ 4.5 {f} _ {1} ^ {d} $ 40db衰减(其中<内联公式XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3.org/1999/xlink”> $ {F} _ {1} ^ {d} $ 是基本频率),且超过50- / 45dB的带内CM抑制,具有紧凑的尺寸(<内联公式XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3.org/1999/xlink”> $ 0.14 lambda _ {g} times 0.27 { lambda} _ {g} $ , 在哪里<内联公式XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3.org/1999/xlink”> $ { lambda} _ {g} $ 是基频的导向波长)。

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