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Design of 140GHz Narrow Band-pass Planar Filters Based on Open Loop Resonators

机译:基于开环谐振器的140GHz窄带通平面滤波器的设计

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In this paper, a universal design procedure for narrow-band filter based on square open-loop resonators is established. The square open-loop resonator is partitioned into microstrips and coupled microstrips which are characterized separately. The coupled microstrips are represented as a four-port device and a BP neural network is established to map the entire S-parameter while the gap and folded microstrips are modeled simply by lumped parasitic-included equivalent circuits. The entire design procedure is demonstrated by implementing a planar D-band narrow band band-pass filter. The measurement results show that the filter exhibits insertion loss around 4.3dB at 140GHz and FBW about 6% which are close to most waveguide filters. To the best of the authors' knowledge, this is the narrowest bandwidth in D-band filter with relatively low insertion loss among planar solutions.
机译:本文建立了一种基于方形开环谐振器的窄带滤波器通用设计程序。方形开环谐振器分为微带和耦合微带,分别进行表征。耦合的微带被表示为一个四端口设备,并且建立了BP神经网络以映射整个S参数,而间隙和折叠微带则通过集总的寄生等效电路简单地建模。通过实现平面D波段窄带带通滤波器来演示整个设计过程。测量结果表明,该滤波器在140GHz处的插入损耗约为4.3dB,而​​FBW约为6%,这与大多数波导滤波器相近。据作者所知,这是D波段滤波器中最窄的带宽,平面解决方案中的插入损耗相对较低。

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