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High-Order Dual-Band Superconducting Bandpass Filter With Controllable Bandwidths and Multitransmission Zeros

机译:具有可控制带宽和多传输零点的高阶双带超导带通滤波器

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摘要

In this paper, a compact dual-mode hairpin ring resonator (HRR) with two controllable resonances is proposed to design high-order dual-band high-temperature superconducting (HTS) bandpass filters. Its noncoupled dual-mode resonant characteristics and the mechanism for inherent transmission zero (TZ) production are studied. Moreover, a general dual-path coupling scheme is introduced for high-order coupling realization and applied to the third-order and eighth-order dual-band filter design. Also, two coupling structures for the adjacent HRRs with different orientations are proposed to excite TZs between the passbands for high selectivity. Besides, dual-parallel input–output feeding structure is adopted to tune the external quality factors of the dual-mode HRR individually so that the two passband are realized easily using high-order structure. For demonstration, an eighth-order dual-band HTS filter both operating at 1.9 and 2.6 GHz for mobile communications application are designed and analyzed. Compared with the third-order one, the selectivity of the eighth-order filter has at least 4.2 times improvement and five TZs are produced for high band-edge selectivity. Finally, the eighth-order dual-band filter is fabricated on MgO substrate with YBCO thin films. Measured results agree well with the simulations and show the excellent performance with 0.12-dB minimum insertion loss and better than −75-dB rejection level up to 5 GHz. In addition, the nonlinear characteristics of the fabricated HTS filter is observed by experiment, which shows the temperature dependence of filter center frequency performance and microwave insertion loss.
机译:本文提出了一种具有两个可控谐振的紧凑型双模发夹式环形谐振器(HRR),以设计高阶双带高温超导(HTS)带通滤波器。研究了其非耦合双模谐振特性以及固有传输零(TZ)产生的机理。此外,为实现高阶耦合引入了通用的双路径耦合方案,并将其应用于三阶和八阶双频带滤波器设计。另外,为了高​​选择性,提出了具有不同取向的用于相邻HRR的两个耦合结构以激发通带之间的TZ。此外,采用双并行输入输出馈电结构分别调整双模HRR的外部品质因数,从而可以使用高阶结构轻松实现两个通带。为了演示,设计并分析了在移动通信应用中工作于1.9 GHz和2.6 GHz的八阶双频HTS滤波器。与三阶滤波器相比,八阶滤波器的选择性提高了至少4.2倍,并且产生了五个TZ,以实现高频带边缘选择性。最后,在具有YBCO薄膜的MgO衬底上制作了八阶双带滤波器。测量结果与仿真非常吻合,并显示了出色的性能,最小插入损耗为0.12 dB,在5 GHz以下时的抑制水平优于-75 dB。另外,通过实验观察了所制造的高温超导滤波器的非线性特性,表明了滤波器中心频率性能和微波插入损耗的温度依赖性。

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