Microwave Characterization of Microshield Lines

R. F. Drayton, L. Katehi
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引用次数: 3

Abstract

An experimental characterization of a new type of monolithic planar transmission line, the microshield, is presented. Theoretically, it is shown to have the tendency to radiate less than the conventional coplanar waveguide (CPW). To characterize the line, experimental measurement of a scattering parameters of the microwave model is essential. This paper presents characterization through the design, fabrication and measurement of the line and a discontinuity such as the two coupled open-end line. The frequency dependence of the effective dielectric constant is measured and compared to the computed values. Although proposed for applications at lower sub-mm-wave frequencies, fabrication in a hybrid fashion allows for use at microwave frequencies. Present applications of microshield technology are seen in Microtech Cascade probes and feed throughs for package connections in CPW interconnects. In addition, it is possible to use the microshield to connect MMIC's by designing the shield width to accommodate an MMIC. Therefore characterization of the microshield line and discontinuities is necessary.
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微屏蔽线的微波特性
介绍了一种新型单片平面传输线——微屏蔽线的实验特性。从理论上讲,它比传统的共面波导(CPW)具有更小的辐射趋势。为了对谱线进行表征,必须对微波模型的散射参数进行实验测量。本文通过设计、制造和测量线和不连续线(如两个耦合的开口线)来表征。测量了有效介电常数的频率依赖性,并与计算值进行了比较。虽然建议在较低的亚毫米波频率下应用,但以混合方式制造允许在微波频率下使用。微屏蔽技术目前的应用见于微级联探针和CPW互连中封装连接的馈通。此外,通过设计屏蔽宽度以容纳MMIC,可以使用微屏蔽连接MMIC。因此,表征微屏蔽线和不连续是必要的。
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