基于mems的宽带频率可重构微带贴片天线的新设计

H. Mirzajani, Mojtaba Mohammadi Nasiri, H. B. Ghavifekr
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引用次数: 17

摘要

本文介绍了一种新型的微机械宽带频率可重构微带贴片天线。采用表面微加工和本体微加工相结合的方法制备了可调谐天线系统。采用热致动来精确调整工作频率,电压范围与当今的CMOS电路兼容。包含热致动器的大块微机械硅膜作为天线贴片的平台。该贴片通过接近耦合由50Ω馈线激发。垂直于天线表面的热致动器的面外运动使贴片相对于固定地平面向下偏转。这种偏转降低了天线贴片和馈线之间的气隙高度,从而降低了天线的谐振频率。研究了初始气隙高度对天线可调谐范围和带宽的影响,给出了最佳调谐范围。天线的上态工作频率为22.61GHz,可连续降低至22.17GHz。通过1.5V的CMOS兼容驱动电压,实现了440MHz的调谐范围。天线在上下状态位置的带宽分别为1.34 ghz和1.27GHz。对天线的射频性能和力学性能进行了有限元分析,在调谐范围内得到了满意的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A new design of MEMS-based wideband frequency reconfigurable microstrip patch antenna
A new micromachined wideband frequency reconfigurable microstrip patch antenna is demonstrated in this paper. The tunable antenna system is fabricated by a combination of surface and bulk micromachining processes. Thermal actuation is employed to precisely adjust the operating frequency with voltage ranges compatible with today's CMOS circuitries. A bulk micromachined silicon membrane containing thermal actuators serves as a platform for antenna patch. The patch is excited by a 50Ω feed line through proximity coupling. The out-of-plane motion of the thermal actuators normal to the antenna surface deflects the patch downward respect to the fixed ground plane. This deflection reduces the air gap height between the antenna patch and feed line and consequently, resonant frequency of the antenna. The effect of initial air gap height on achievable tuning range and bandwidth of the antenna is also investigated and the optimum range is presented. The up-state operating frequency of the antenna is 22.61GHz which continuously can be lowered to 22.17GHz. A tuning range of 440MHz was achieved by a CMOS compatible actuation voltage of 1.5V. The bandwidth of the antenna for up and down-state positions are 1.34 and 1.27GHz respectively. The RF performance of the antenna and its mechanical behavior is investigated by FEM analysis and satisfactory results are obtained within the tuning range.
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