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A novel additive-manufactured multiple-infill ultra-lightweight cavity-backed slot antenna for UWB applications

机译:一种新型的增材制造的多填充超轻型背腔缝隙天线,用于UWB应用

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摘要

A rectangular ultra-wide band (UWB) cavity-backed slot antenna manufactured by combining 3D printing and inkjet printing technology is introduced in this paper. The antenna substrate is made of polylactic acid (PLA) and is fabricated by using fusion deposition modeling (FDM). Two different infills are used for the slot area and for the area corresponding to the microstrip ground plane to reduce waste and dielectric loss. Thanks to 3D printing versatility, a cavity with slant sides, providing high gain, has been designed. This shape is aimed at increasing the antenna impedance bandwidth and directivity. The rectangular-like proximity-coupled feeding line of the antenna is fabricated by depositing silver nano-particle ink on a layer of SU8. The prototype has been tested and measurements confirmed the satisfactory antenna operation over the whole band of interest, from 3.1 to 10.6 GHz.
机译:本文介绍了一种结合3D打印和喷墨打印技术制造的矩形超宽带(UWB)腔背隙缝隙天线。天线基板由聚乳酸(PLA)制成,并通过使用熔融沉积建模(FDM)制成。插槽区域和与微带接地平面对应的区域使用两种不同的填充物,以减少浪费和电介质损耗。得益于3D打印的多功能性,已设计出具有倾斜面且可提供高增益的腔体。这种形状旨在增加天线的阻抗带宽和方向性。天线的矩形接近耦合馈线是通过在SU8层上沉积银纳米粒子墨水制成的。该原型已经过测试,测量结果证明,在3.1至10.6 GHz的整个关注频段上,天线均能令人满意地工作。

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