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A Compact and Selective Low-Pass Filter With Reduced Spurious Responses, Based on CPW Tapered Periodic Structures

机译:基于CPW锥形周期结构的紧凑型选择性低通滤波器,具有降低的寄生响应

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摘要

This paper describes a new low-pass filter topology based on tapered periodic structures. These filters exhibit interesting characteristics in terms of compactness, return loss, insertion loss, selectivity, and the suppression of spurious frequency bands. Hybrid prototypes with a 1-GHz cutoff frequency, based on a coplanar-waveguide technology, and using both low-cost and high-performance substrates, have been fabricated and measured. Spurious frequency bands can be suppressed to below -22 dB at frequencies up to 20 GHz. Passband ripples are negligible, and the return loss is better than 20 dB. A two-section filter has a length of 0.2lambda and exhibits a -120-dB/dec selectivity, while a six-section filter is 0.51lambda long and has a -560-dB/dec selectivity. A design procedure has been established. These filters are compatible with monolithic microwave integrated circuit technologies in which the capacitors can be realized as metal-insulator-metal structures.
机译:本文介绍了一种基于锥形周期结构的新型低通滤波器拓扑。这些滤波器在紧凑性,回波损耗,插入损耗,选择性和杂散频带抑制方面表现出令人感兴趣的特性。基于共面波导技术并使用低成本和高性能基板的具有1 GHz截止频率的混合原型已经被制造和测量。在高达20 GHz的频率下,杂散频带可以抑制到-22 dB以下。通带纹波可忽略不计,回波损耗优于20 dB。两段滤波器的长度为0.2lambda,选择性为-120dB / dec,而六段滤波器的长度为0.51lambda,选择性为-560dB / dec。建立了设计程序。这些滤波器与单片微波集成电路技术兼容,在单片微波集成电路技术中,电容器可以实现为金属-绝缘体-金属结构。

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