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Conception and realization of highly selective band-pass filters in Ka-band built on thin polymer films

机译:基于聚合物薄膜的Ka波段高选择性带通滤波器的构想和实现

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A novel structure of high performance narrow band-pass filters on thin polymer film is reported in this paper. It's composed of two microstrip resonators placed between two via-free microstrip-grounded coplanar waveguide transitions. It combines therefore compactness, low-cost, fabrication easiness of microstrip lines and connection facility of coplanar pads. Narrow band-pass filters have been optimized by using HFSS software, realized and characterized, over the range of Ka-band frequencies. With the band-pass filter realized on thin BCB polymer (benzocyclobutene, relative permittivity er = 2.65 and loss tangent tanô = 0.0025) film of 60 μm thick, the performance obtained for a center frequency optimized at 30.5 GHz is 28.8 for quality factor and -1.4 dB for insertion losses, with very good agreement between simulation and experiment results.
机译:本文报道了一种在聚合物薄膜上的新型高性能窄带通滤波器的结构。它由两个微带谐振器组成,两个谐振器放置在两个无孔微带接地共面波导过渡之间。因此,它结合了微带线的紧凑性,低成本,易制造性和共面焊盘的连接便利性。窄带通滤波器已通过使用HFSS软件进行了优化,已在Ka频段频率范围内实现并表征。在厚度为60μm的薄BCB聚合物(苯并环丁烯,相对介电常数er = 2.65,损耗正切损耗角正切= 0.0025)薄膜上实现带通滤波器后,对于品质因数,在30.5 GHz处优化的中心频率可获得的性能为28.8。插入损耗为1.4 dB,仿真结果与实验结果非常吻合。

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