Design and Development of High Frequency Passive and Active Micromachined Antennas

S. Koul
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Abstract

This paper presents methodology for the design and development of passive and active micromachined antennas operating in the microwave and millimeter wave frequency region. The passive antenna design is based on dividing the circuit into bulk feed line, micromachined line to bulk feed line transition and membrane supported micromachined antenna. Each region is modeled using full wave electromagnetic simulation software HFSS. In the active antenna, the two-port membrane supported micromachined antenna is connected in positive feedback path of an MMIC amplifier chip using bulk feed lines. The fabricated micromachined passive antenna element resonated at 34.2 GHz. This antenna exhibited a bandwidth of 1.4 GHz for VSWR<2.0. The measured 3-dB E-plane and H-plane beam widths are 65-70 degrees that agrees fairly well with the simulated results. The initial active antenna oscillated at 35.64 GHz with 47.2 dBm power and showed a clean spectrum.
高频无源和有源微机械天线的设计与开发
本文介绍了微波和毫米波频段无源和有源微机械天线的设计和开发方法。无源天线设计的基础是将电路分为批量馈线、微加工线向批量馈线过渡和膜支撑微机械天线。利用全波电磁仿真软件HFSS对各区域进行建模。在有源天线中,双端口膜支撑的微机械天线通过批量馈线连接在MMIC放大芯片的正反馈路径上。所制备的微机械无源天线元件谐振频率为34.2 GHz。当VSWR<2.0时,该天线的带宽为1.4 GHz。实测的3-dB e面和h面波束宽度为65 ~ 70度,与模拟结果吻合较好。初始有源天线振荡频率为35.64 GHz,功率为47.2 dBm,频谱清晰。
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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