Broadband-Filled Dielectric Resonator Antenna Based on LCP Suspended Coplanar Waveguide

Jia-Xing Guo, J. Xiao
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Abstract

In this report, a self-packaged millimeter wave filled dielectric resonator antenna (DRA) is presented, which is based on polymer liquid crystal polymer (LCP) multilayer suspended coplanar waveguide (CPW) structure. By filling the dielectric resonator in the substrate, our design provides a new way to fix the dielectric resonator antenna. Meanwhile, the dielectric resonators filled in the substrate form a stacking form with the lower substrate, which can excite more modes and expand the antenna bandwidth. The antenna adopts the form of coplanar waveguide slot fed dielectric resonator for mixed radiation. The center frequency of the antenna is 47.85GHz, the relative bandwidth is 31%, and the maximum gain is 8.8dB.
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基于LCP悬浮共面波导的宽带填充介质谐振器天线
本文提出了一种基于聚合物液晶聚合物(LCP)多层悬浮共面波导(CPW)结构的自封装毫米波填充介质谐振器天线(DRA)。本设计通过在衬底中填充介质谐振器,为介质谐振器天线的固定提供了一种新的方法。同时,填充在衬底中的介电谐振腔与下部衬底形成叠加形式,可以激发更多模式,扩大天线带宽。天线采用共面波导缝隙馈电介质谐振腔的形式进行混合辐射。天线中心频率为47.85GHz,相对带宽为31%,最大增益为8.8dB。
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