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A 36 GHz HTS MMIC Josephson mixer - simulation and measurement

机译:36 GHz HTS MMIC Josephson混频器-仿真和测量

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摘要

Modeling, simulation, and measurement of a compact 36 GHz high-temperature superconducting (HTS) monolithic Josephson junction mixer are presented in this paper. A full HTS microwave monolithic integrated circuit (MMIC) simulation was carried out for the circuit combining HTS passive devices and the Josephson junction. Optimal impedance matching and bias conditions were investigated, and the circuit layout was designed accordingly. The HTS circuit has a compact dimension of 5 × 4 × 0.3 mm3, including filters, resonators, and impedance matching circuits. The HTS MMIC mixer was fabricated and packaged with an LNA to realize a receiver front end with a total dimension of 28 × 25 × 15 mm3. Measurement result showed an overall conversion gain around 35 dB, with local oscillator driving power around -45 dBm at operating temperature of 40 K.
机译:本文介绍了紧凑型36 GHz高温超导(HTS)整体式Josephson结混合器的建模,仿真和测量。对于结合了HTS无源器件和约瑟夫森结的电路,进行了完整的HTS微波单片集成电路(MMIC)仿真。研究了最佳的阻抗匹配和偏置条件,并据此设计了电路布局。 HTS电路的紧凑尺寸为5×4×0.3 mm3,包括滤波器,谐振器和阻抗匹配电路。制造HTS MMIC混频器并与LNA封装在一起,以实现总尺寸为28×25×15 mm3的接收器前端。测量结果表明,在40 K的工作温度下,总的转换增益约为35 dB,本地振荡器的驱动功率约为-45 dBm。

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