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Miniaturization, Selectivity and Rejection Bandwidth Improvements of a Multi-Band Stopband Filter Based on Circular Split Ring Resonator

机译:基于圆形裂环谐振器的多频带阻带滤波器的小型化,选择性和抑制带宽的改进

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This paper presents a stopband filter design with null gapping between coupled microstrip lines embedded by short-circuited ring resonators. The open and split ring resonators are integrated along the 50-Ω transmission line. Important achievements in size and creation of multiple resonances covering S-band, C-band, X-band, and Ku-band are obtained. Firstly, we load the filter by symmetrical single open ring resonators; this design allows important shifting to lower frequencies accompanied with the appearance of dual band and wide rejection bandwidth of approximately 57.34%. It’s noticed that, the proposed filter presents many advantages in comparison with a similar one loaded by stubs. Secondly the filter is loaded by two symmetrical coupled SRR resonators. It is demonstrated that more shifting toward low frequencies and multi-band stopbands are obtained with improvements in selectivity and rejection bandwidth. L-C equivalent circuit models and current distribution for each case were presented and investigated.
机译:本文提出了一种阻带滤波器设计,该设计在由短路环形谐振器嵌入的耦合微带线之间具有零间隙。开环和开环谐振器沿50Ω传输线集成。获得了在尺寸和创建涵盖S波段,C波段,X波段和Ku波段的多个共振方面的重要成就。首先,我们通过对称的单开环谐振器加载滤波器;这种设计允许将重要的频率移至更低的频率,同时出现双频和大约57.34%的宽抑制带宽。值得注意的是,与类似的存根加载的过滤器相比,该过滤器具有许多优势。其次,滤波器由两个对称耦合的SRR谐振器加载。结果表明,随着选择性和抑制带宽的提高,获得了更多的向低频和多频带阻带的转移。提出并研究了每种情况下的L-C等效电路模型和电流分布。

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