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首页> 外文期刊>International Journal of Microwave and Wireless Technologies >Design and characterization of an active recovering mechanism for high-performance RF MEMS redundancy switches
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Design and characterization of an active recovering mechanism for high-performance RF MEMS redundancy switches

机译:高性能RF MEMS冗余开关的有源恢复机制的设计和表征

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This paper presents the design and characterization of an active push/pull toggle RF micro-electro-mechanical systems (MEMS) switch for satellite redundancy networks. The actively controlled pull-up mechanism allows for extended restoring capabilities of the switch in case of ON-state stiction. As a proof of concept an active push/pull MEMS capacitive switch was modeled, designed, and manufactured in shunt configuration on a 50 Ω coplanar transmission line. RF measurement results show a return loss better than 15 dB in the 0.1-40 GHz range and an insertion loss better than 0.5 dB over the same range. The restoring capability of the switch was experimentally proved up to 9 h, and a predictive model was proposed for the estimation of the switch time to failure.
机译:本文介绍了一种用于卫星冗余网络的有源推挽式RF微机电系统(MEMS)开关的设计和特性。主动控制的上拉机制允许在导通状态静摩擦的情况下扩展开关的恢复能力。作为概念验证,在50Ω共面传输线上以并联配置对有源推挽MEMS电容开关进行建模,设计和制造。射频测量结果显示,在0.1-40 GHz范围内,回波损耗优于15 dB,在相同范围内,插入损耗高于0.5 dB。实验证明了该开关的恢复能力可长达9 h,并提出了一个预测模型来估计开关的失效时间。

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