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Split Ring Resonator-based Bandpass Filter with Multi-Transmission Zeros and Flexibly Controllable Bandwidth Using Multipath Source-Load Couplings

机译:具有多传输零点和使用多径源负载耦合灵活控制带宽的基于裂环谐振器的带通滤波器

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This letter presents a high-selectivity compact microstrip bandpass filter (BPF) with a flexibly controllable bandwidth, based on multi-path source-load couplings and a square-type split-ring resonator (STSRR). An STSRR, which is enclosed between the capacitively coupled source and load transmission feed lines, forms the structure of the proposed BPF. The main advantages of the proposed BPF lie in its simple structure and high selectivity due to multiple transmission zeros generated by multipath source-load couplings based on STSRR-enabled magnetic coupling between the feed lines with dual capacitive couplings. In addition, the bandwidth of the proposed BPF can be flexibly controlled by varying the magnetic coupling gap between the STSRR and the feed lines. The measured pass-band insertion and return loss of 0.83 and 27.23 dB, respectively, for a prototype BPF with a central frequency of 3.83 GHz and corresponding bandwidth of 12.98%, demonstrates the validity of the proposed method.
机译:这封信提出了一种基于多径源-负载耦合和方形开环谐振器(STSRR)的,带宽可灵活控制的高选择性紧凑型微带通滤波器(BPF)。封装在电容耦合源极和负载传输馈线之间的STSRR构成了所提出的BPF的结构。提出的BPF的主要优点在于其结构简单和选择性高,这是由于基于双电容耦合的馈线之间基于STSRR的磁耦合,多路径源-负载耦合产生了多个传输零点。另外,可以通过改变STSRR与馈线之间的磁耦合间隙来灵活地控制所提出的BPF的带宽。对于中心频率为3.83 GHz,对应带宽为12.98%的原型BPF,测得的通带插入和回波损耗分别为0.83和27.23 dB,证明了该方法的有效性。

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