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Accurate Design Procedure for Waffle-Iron Low-Pass Filter

机译:华夫铁低通滤波器的准确设计程序

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摘要

In this paper, an accurate synthesis procedure for designing classical low-pass waffle-iron waveguide filters is proposed. The novel design technique is based on the decomposition of the filter into a finite number of design entities (DEs), which are composed of an$mathbf{waffle}$n-iron section inserted between two uniform rectangular waveguide sections. Then, the physical dimensions of each DE are calculated by means of their associated frequency responses along the device. The proposed method has been tested through the design of a Ku-band filter, which shows a remarkable accordance between the ideal and simulated frequency response. A prototype of this filter has been also fabricated to prove the feasibility of designing classical waffle-iron filters with the novel design procedure.
机译:本文提出了一种设计经典低通华夫铁波导滤波器的精确合成程序。新颖的设计技术基于将滤波器分解成有限数量的设计实体(DE),这些设计实体由 $ mathbf {waffle} $ n铁部分插入两个均匀的矩形波导部分之间。然后,借助每个DE沿设备的相关频率响应来计算它们的物理尺寸。通过Ku波段滤波器的设计对提出的方法进行了测试,该滤波器显示出理想频率响应和模拟频率响应之间的显着一致性。还制造了该过滤器的原型,以证明采用新颖的设计程序设计经典的华夫铁过滤器的可行性。

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