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A Ferrite LTCC-Based Monolithic SIW Phased Antenna Array

机译:基于铁氧体LTCC的单片SIW相控天线阵列

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摘要

In this work, we present a novel configuration for realizing monolithic SIW-based phased antenna arrays using Ferrite LTCC technology. Unlike the current common schemes for realizing SIW phased arrays that rely on surface-mount component (p-i-n diodes, etc) for controlling the phase of the individual antenna elements, here the phase is tuned by biasing of the ferrite filling of the SIW. This approach eliminates the need for mounting of any additional RF components and enables seamless monolithic integration of phase shifters and antennas in SIW technology. As a proof of concept, a two-element slotted SIW-based phased array is designed, fabricated and measured. The prototype exhibits a gain of 4.9 dBi at 13.2 GHz and a maximum E-plane beam-scanning of 28 degrees using external windings for biasing the phase shifters. Moreover, the array can achieve a maximum beam-scanning of 19 degrees when biased with small windings that are embedded in the package. This demonstration marks the first time a fully monolithic SIW-based phased array is realized in Ferrite LTCC technology and paves the way for future larger-size implementations.
机译:在这项工作中,我们提出了一种新颖的配置,用于使用铁氧体LTCC技术实现基于单片SIW的相控天线阵列。与当前的用于实现SIW相控阵的常见方案不同,SIW相控阵依靠表面安装组件(p-i-n二极管等)来控制单个天线元件的相位,这里的相位是通过偏置SIW的铁氧体来调整的。这种方法无需安装任何额外的RF组件,并且可以实现SIW技术中移相器和天线的无缝单片集成。作为概念验证,设计,制造和测量了基于二元素缝隙SIW的相控阵。该原型在13.2 GHz频率下的增益为4.9 dBi,使用外部绕组偏置移相器时,最大E平面光束扫描度为28度。此外,当阵列中嵌入的小绕组偏置时,阵列可以实现19度的最大光束扫描。该演示标志着铁氧体LTCC技术首次实现了完全基于SIW的单片相控阵,并为将来的更大尺寸实现铺平了道路。

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