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Increasing parallel plate stop-band in gap waveguides using inverted pyramid-shaped nails for slot array application above 60GHz

机译:在60 GHz以上的缝隙阵列应用中,使用倒金字塔形钉增加缝隙波导中的平行板阻带

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This paper presents a proposal for a slot array antenna for frequencies above 60 GHz. Also, The array is using the new air gap waveguide as a feeding structure. Here we present a new structure for the parallel plate stop-band based on replacing the uniform cross sectional nails with inverted pyramidal shaped pins. This new type of pin is more suitable for micromachining and manufacturing of gap waveguides above 60 GHz. The wider parallel-plate bandwidth achieved with this new type of pins makes it suitable for integration of very wideband active MMIC circuit with gap waveguide without package resonance problem. Once the RF circuitry is integrated with gap waveguide, the slot arrays can be easily built by having slots on the top metal wall of the gap waveguide thus enabling low cost integrated antenna solution at frequencies above 60GHz.
机译:本文提出了针对60 GHz以上频率的缝隙阵列天线的建议。而且,该阵列正在使用新的气隙波导作为馈电结构。在这里,我们提出了一种新的平行板阻带结构,该结构基于将均匀横截面的钉子换成倒金字塔形的销钉。这种新型的引脚更适合微加工和制造60 GHz以上的间隙波导。用这种新型引脚实现的较宽的平行板带宽使其适合于非常宽带的有源MMIC电路与间隙波导的集成,而不会出现封装谐振问题。一旦将RF电路与间隙波导集成在一起,就可以通过在间隙波导的顶部金属壁上具有缝隙来轻松构建缝隙阵列,从而在60 GHz以上的频率下实现低成本的集成天线解决方案。

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