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Design and Fabrication of a Tunable Superconductive Resonator Utilizing Micromachined Tunable Capacitor

机译:利用微加工可调谐电容器的可调谐超导谐振器的设计与制作

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This paper presents the design, fabrication, and characterizations of a flip-chip-bonded micromachined capacitor for tuning a high-temperature superconductive resonator. The major issue of the tunable superconductive resonator is its high driving voltage due to the accumulated thermal stresses and the sensitivity of the superconductive material to the fabrication process. The tunable capacitor in the form of a microbridge with flexible boundaries is proposed to reduce thermal stress. Thermal stress is reduced to 10 MPa, and the pull-in voltage of the capacitor is 25 V. The micromachined capacitor and the superconductive resonator are fabricated separately and then integrated together by using a flip-chip-bonding technique. This integration method prevents the superconductor material from the high-temperature process. At 75-K operation temperature, the measured center frequency of the fabricated tunable resonator changes from 2.93 to 2.87 GHz when the driving voltage increases from 0 to 40 V.$hfill$[2008-0243]
机译:本文介绍了用于调谐高温超导谐振器的倒装芯片键合微机械电容器的设计,制造和特性。可调谐超导谐振器的主要问题是由于累积的热应力以及超导材料对制造工艺的敏感性而导致的高驱动电压。提出了具有柔性边界的微桥形式的可调电容器以减小热应力。热应力降低至10 MPa,电容器的引入电压为25V。微加工电容器和超导谐振器分别制造,然后通过倒装芯片结合技术集成在一起。这种集成方法可以防止超导体材料进入高温过程。在75-K的工作温度下,当驱动电压从0 V增加到40 V时,所制造的可调谐振器的中心频率从2.93 GHz改变为2.87 GHz。$ hfill $ [2008-0243]

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