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Wide band microstrip to microstrip vertical coaxial transition for radar EW applications

机译:宽带微带到雷达和EW应用的微带垂直同轴转换

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A wide band DC-18 GHz microstrip to microstrip vertical transition for Microwave Integrated Circuits (MICs) using coaxial design approach for Radar & EW applications, is being explained in this paper. A simple, flexible, self-supporting and economical solution for wideband vertical coaxial transition with respect to Microstrip lines for MICs has been brought out in this paper to avoid RF cross overs. It consist of coaxial structure which in turn connected to two microstrip lines in top and bottom side of two different pcbs. The signal is going through two transitions: a) Quasi TEM mode to pure TEM mode and b) TEM mode to Quasi TEM mode. The challenge of this transition is to provide better matching at the transitions to ensure better input and output VSWR, and hence minimum insertion loss for the required frequency band. Insertion loss of max 0.5dB @ 18GHz and return loss more than 20dB for DC-18 GHz frequency band was targeted. Also, the size (length & diameter) of the vertical transition can be customized as per requirement compared to RF glass bead which are available of standard size.
机译:本文解释了一种宽带DC-18 GHz微带,用于微波集成电路(MICS)的微波集成电路(MICS),用于雷达和EW应用中的同轴设计方法。本文提出了一种简单,灵活,自支撑和经济的宽带垂直同轴转换对MICS微带线的微带线路,以避免RF交叉。它包括同轴结构,其又连接到两个不同PCB的顶部和底侧的两个微带线。该信号通过两个转换:a)准tem模式到纯TEM模式和B)TEM模式到准TEM模式。该转换的挑战是在转换中提供更好的匹配,以确保更好的输入和输出VSWR,因此为所需频带的最小插入损耗。最大0.5dB @ 18GHz的插入损耗和用于DC-18 GHz频段的20dB超过20dB的返回损耗是针对性的。而且,与可提供标准尺寸的RF玻璃珠相比,可以根据需要定制垂直转变的尺寸(长度和直径)。

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