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Multi-contact radiofrequency microelectromechanical systems switch with power divider/combiner structure for high power applications

机译:具有功率分配器/组合器结构的多触点射频微机电系统开关,适用于大功率应用

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摘要

Design, fabrication, and measurement of a metal-contact radiofrequency (RF) microelectromechanical systems switch with a power divider/combiner structure for high power applications are presented in this work. The multi-contact switch with parallel cantilever beams is implemented in a Y-junction power divider/combiner, which suppresses the uneven current distribution through each contact and results in higher power handling capability at high frequency. The measurement results indicate the excellent RF performance of the switch fabricated on the Borofloat glass substrate with insertion loss and isolation of 0.22 dB and 29 dB@10 GHz, respectively. A lumped-element model is developed and it fits well with the measured S-parameters with the contact resistance of 0.6 Ω and up-state capacitance of 1 fF for each contact. The switch can handle power up to 2 W@10 GHz under prolonged hold-down conditions for 2 h. The reliability measurement shows that the packaged switch can operate for over 1 million cycles at 200 mA under cold-switching conditions.
机译:这项工作介绍了具有功率分配器/组合器结构的金属接触射频(RF)微机电系统开关的设计,制造和测量。具有平行悬臂梁的多触点开关在Y结功率分配器/组合器中实现,可抑制通过每个触点的电流分布不均,并在高频下具有更高的功率处理能力。测量结果表明,在Borofloat玻璃基板上制造的开关具有出色的RF性能,插入损耗和10 GHz下的隔离度分别为0.22 dB和29 dB。开发了一个集总模型,它与测得的S参数非常吻合,每个触点的接触电阻为0.6Ω,向上状态电容为1 fF。该开关可在长时间按住条件下2小时内,以高达2 W @ 10 GHz的功率处理功率。可靠性测量表明,在冷切换条件下,封装的开关在200 mA电流下可以运行超过100万个周期。

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