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On the Use of a New Class of Simplified Multi-Window Iris Notch in the Design of Ultra-Compact High-Rejection Waveguide Filters for Satellite Links

机译:关于在超紧凑的高抑制波导过滤器设计中使用新类简化的多窗口缺口,用于卫星链接

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摘要

This work introduces a simplified multi-aperture iris notch suitable for designing waveguide filters having an extremely improved compactness/rejection ratio, regarding available solutions, and adequate pass-band performances. The proposed iris architecture, analyzed for the first time, exhibits a unique transmission zero in the waveguide mono-mode bandwidth which can be easily located below or above the pass-band. The frequency of this transmission zero is evaluated in terms of the iris dimensions thus providing useful guidelines for designing filters with suitable responses. As a consequence of this simplified topology, any designed filter can be easily manufactured by cutting along its E-field symmetry plane. This strategy greatly improves the filter’s insertion loss regarding classical implementations based on more complicated arrangements with piled thin metallic sheets. Two exemplary filters have been designed and tested to be used in a high-performance X-band SATCOM terminal with an 80% size reduction with respect to the existing systems. Both filters covering the Rx (7.25–75 GHz) and Tx (7.9–8.4 GHz) sub-bands show a reflection of −25 dB with insertion losses below 1 dB in the pass-band, whereas they present a very sharp out-of-band rejection of at least 90 dB, that is, a 600 dB/GHz slope at X band.
机译:这项工作引入了一个简化的多孔径可变适合用于设计具有非常改进的紧凑性/抑制比波导滤波器,关于可用的解决方案,和充分的通带性能的凹口。所提出的架构虹膜,首次分析,其中可以容易地位于下方或通带高于波导的单模式带宽表现出独特的传输零点。这个传输零点的频率在虹膜从而尺寸提供有用的指导用于与合适的响应设计滤波器的方面进行评价。由于这种简化拓扑的结果,任何设计的滤波器可容易地通过沿其E-场对称平面切割制造。这种策略大大提高了过滤器的关于基于与堆积的薄金属片材更复杂的安排古典实现插入损耗。两个示例性过滤器已经设计和测试,在一个高性能的X波段SATCOM终端使用用80%的尺寸的减小相对于所述现有的系统。覆盖在Rx(7.25-75千兆赫)和Tx(7.9-8.4 GHz)的子带两个过滤器显示出的-25dB的与所述通带低于1dB的插入损耗的反射,而它们呈现出非常尖锐的失波段排斥至少90分贝,即,在X波段600分贝/ GHz的斜率。

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