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A 100 GHz coplanar strip circuit tuned with a sliding planar backshort

机译:100 GHz共面带状电路,采用滑动式平面短路短路进行了调谐

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摘要

A means of mechanically altering the electrical length of a planar transmission line would greatly enhance the use of integrated circuit technology at millimeter and submillimeter wavelengths. Such a mechanically adjustable planar RF tuning element, successfully demonstrated at 100 GHz, is described here. It consists of a thin metallic sheet, with appropriately sized and spaced holes, which slides along on top of a dielectric-coated coplanar-strip transmission line. Multiple RF reflections caused by this structure add constructively, resulting in a movable RF short circuit, with |s11|≫APX=/-0.3 dB, which can be used to vary the electrical length of a planar tuning stub. The sliding short is used here to produce a 2-dB improvement in the response of a diode detector. This tuning element can be integrated with planar circuits to compensate for the effect of parasitic reactance inherent in various devices including semiconductor diodes and superconductor-insulator-superconductor (SIS) junctions.
机译:机械地改变平面传输线的电长度的方法将大大增强集成电路技术在毫米和亚毫米波长下的使用。本文介绍了这种在机械上可调的平面RF调谐元件,该元件已成功在100 GHz频率下进行了演示。它由一块薄金属板构成,上面有适当大小和间隔的孔,该孔沿着电介质涂层共面带状传输线的顶部滑动。由这种结构引起的多次RF反射会相长地相加,导致可移动的RF短路| s11 |≫ APX = /-0.3 dB,可用于改变平面调谐短截线的电气长度。此处使用滑动短路可将二极管检测器的响应提高2 dB。该调谐元件可以与平面电路集成在一起,以补偿包括半导体二极管和超导体-绝缘体-超导体(SIS)结在内的各种设备固有的寄生电抗效应。

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