On-chip micromachined dipole antenna with parasitic radiator for mm-wave wireless systems

M. Sallam, M. Serry, A. Shamim, S. Sedky, E. Soliman
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Abstract

In this paper, we present a micromachined dipole antenna with parasitic radiator. The antenna is designed for operation at 60 GHz. It consists of two Ig/2 dipole radiators fed by coplanar strips waveguide. Two slightly shorter dipoles are placed in proximity to the main radiators. They act as parasitic dipole arms which increase the bandwidth of the antenna. Two versions of the same antenna topology are presented in this paper in which one uses a high resistivity silicon substrate while the other uses a low resistivity one. The proposed antenna was optimized using HFSS and the final design was simulated using both HFSS and CST for verifying the obtained results. Both simulators are in good agreement. They show that the antenna has very good radiation characteristics where its directivity is around 7.5 dBi. The addition of the parasitic arms increased the bandwidth of the antenna from 1.3 GHz (3.62 GHz) to 4.3 GHz (7.44 GHz) when designed on high (low) resistivity silicon substrate.
毫米波无线系统中带寄生辐射体的片上微机械偶极子天线
本文提出了一种带有寄生辐射体的微机械偶极子天线。该天线的设计工作频率为60ghz。它由两个Ig/2偶极体组成,由共面条形波导馈电。两个稍短的偶极子被放置在主散热器附近。它们充当寄生的偶极臂,增加天线的带宽。本文提出了同一天线拓扑的两种版本,其中一种使用高电阻率硅衬底,另一种使用低电阻率硅衬底。利用HFSS对天线进行了优化,并利用HFSS和CST对最终设计进行了仿真验证。两个模拟器都很一致。结果表明,该天线具有良好的辐射特性,其指向性约为7.5 dBi。当设计在高(低)电阻硅衬底上时,寄生臂的加入使天线的带宽从1.3 GHz (3.62 GHz)提高到4.3 GHz (7.44 GHz)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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