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首页> 外文期刊>Applied Superconductivity, IEEE Transactions on >Integration of Niobium Low-Temperature-Superconducting RF Circuits With Gold-Based RF MEMS Switches
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Integration of Niobium Low-Temperature-Superconducting RF Circuits With Gold-Based RF MEMS Switches

机译:铌低温超导RF电路与基于金的RF MEMS开关的集成

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摘要

A novel eight-mask fabrication process for the integration of low-temperature-superconducting niobium (Nb) RF circuits with gold-based RF microelectromechanical system (MEMS) switches is proposed. DC-contact and capacitive-contact RF MEMS switches integrated with Nb-based transmission lines are presented for the first time. A comparison of the RF performance of the switches at room and cryogenic temperatures indicate that the proposed gold-based MEMS fabrication process did have a major impact on the superconducting characteristics of Nb. A switched capacitor bank is also designed, implementing a dc-contact RF MEMS switch. The measured results of the capacitor bank show the variation of the capacitance value from 0.22 to 5.25 pF at 4 K. A thermal analysis of the devices under test (DUTs) is also performed, and an investigation is carried out to minimize the thermal loss between the chuck and the DUT.
机译:提出了一种新型的八掩模制造工艺,用于将低温超导铌(Nb)RF电路与金基RF微机电系统(MEMS)开关集成在一起。首次展示了与基于Nb的传输线集成的DC接触和电容接触RF MEMS开关。室温和低温下开关的RF性能的比较表明,建议的金基MEMS制造工艺确实对Nb的超导特性产生了重大影响。还设计了一个开关电容器组,实现了直流接触RF MEMS开关。电容器组的测量结果表明,在4 K下,电容值从0.22到5.25 pF的变化。还对被测器件(DUT)进行了热分析,并进行了研究以最大程度地减少之间的热损耗。卡盘和DUT。

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