基于多模谐振器的微波滤波器研究

S. Khodenkov, N. A. Shepeta, Alexey M. Popov, Konstantin E. Gaipov
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引用次数: 0

摘要

采用三维微带模型的数值电动力学分析方法,研究了一端裂接另一端接地的矩形带状导体多模微波谐振器及其超宽带带通滤波器。在计算所有微波器件的幅频特性时,采用高介电常数$\varepsilon=80$的单片衬底(微波材料- TBNS陶瓷)。结果表明,在多模谐振腔中,带状导体弯曲时,其通带会产生额外的共振。在考虑的谐振器中组织额外的功率通道是可能的,这显着提高了它们的选择特性。基于所提出的多模微带谐振器,也有可能实现相对带宽至少为100%的超宽带带通滤波器。滤波器可以在器件中使用一个谐振器和几个反向谐振器来设计。所有合成的微波结构都给出了构造尺寸。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of Microwave Filters Based on Multimode Resonators
Multimode microwave resonators with a rectangular strip conductor split at one end and grounded to the base at the opposite end, as well as ultra-wideband bandpass filters based on them, were studied by means of numerical electrodynamic analysis of their three-dimensional microstrip models. When calculating amplitude-frequency characteristics of all microwave devices, monolithic substrates with a high dielectric constant $\varepsilon=80$ (microwave material - TBNS ceramics) were used. It is shown that in multimode resonator, the folding of a strip conductor in the form of a meander is accompanied by additional resonances to its passband. It is possible to organize an additional channel of power passage in the considered resonators, which significantly improves their selective properties. There is also a possibility to implement ultra-wideband bandpass filters with a relative bandwidth of at least 100% based on the proposed multimode microstrip resonators. Filters can be designed using both one resonator and several counter-directional resonators in the device. All synthesized microwave structures are given with constructive dimensions.
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