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E-plane Stepped -Impedance Bandpass Filter with Wide Stopband

机译:具有宽阻带的电子平面步进阻抗带通滤波器

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This paper presents E-plane stepped-impedance bandpass filter with wide stopband. In comparison with the well-known E-plane filters on homogeneous resonators, the stopband of proposed structure is much wider and has higher attenuation. Significant improvement of these characteristics was achieved by a slight change in the topology of the filter resonators - the implementation of each resonator was realized using fin-lines of significantly different slot widths. These changes in topology dramatically change the frequency response of the resonators. In resonators with a significant predominance of the length of the low-impedance fin-line section, an increase in the bandwidth between the main and high order resonances can exceed 50% compared to homogeneous resonator. This is accompanied by a significant increase in the attenuation level in this frequency band and the appearance on the attenuation pole, the frequency of which can vary over a wide range by changing the impedance of the low-impedance section. The filter synthesis procedure is based on the use of a modified technique with K-inverters. The size of the elements required to implement the inverter specifications were calculated using a FDTD simulation. The two-resonator filter with a central frequency of 17.25 GHz, with a bandwidth of 300 MHz was calculated and manufactured; it showed losses in the passband of the order of 1 dB, losses of higher than 30 dB up to 29.5 GHz in the stopband, and a maximum attenuation of 45 dB in the stopband. In comparison, the calculated values for a two-resonator filter using homogeneous resonators with the same specifications produces the same stopband losses only up to 21 GHz, a maximum loss of 32 dB, and moreover, the proposed filter has a reduction in size of 25%.
机译:本文提出了一种具有宽阻带的E平面步进阻抗带通滤波器。与同质谐振器上的众所周知的E平面滤波器相比,所提出结构的阻带宽得多并且具有更高的衰减。通过略微改变滤波器谐振器的拓扑结构,可以实现这些特性的显着改善-每个谐振器的实现都是使用缝隙宽度明显不同的鳍线实现的。拓扑结构的这些变化极大地改变了谐振器的频率响应。在低阻抗鳍状线段的长度明显占优势的谐振器中,与同质谐振器相比,主谐振和高阶谐振之间的带宽增加可以超过50%。这伴随着该频带中的衰减水平的显着增加以及在衰减极上的出现,其频率可以通过改变低阻抗部分的阻抗而在很宽的范围内变化。滤波器合成过程基于带有K逆变器的改进技术的使用。使用FDTD仿真来计算实现逆变器规格所需的元件尺寸。计算并制造了中心频率为17.25 GHz,带宽为300 MHz的双谐振滤波器;它显示出通带中的损耗约为1 dB,阻带中高达29.5 GHz的损耗高于30 dB,阻带中的最大衰减为45 dB。相比之下,使用具有相同规格的同质谐振器的两个谐振器滤波器的计算值仅在高达21 GHz时产生相同的阻带损耗,最大损耗为32 dB,此外,所建议的滤波器尺寸减小了25 %。

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