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Inductive Tuned High Isolation RF MEMS Capacitive Shunt Switches

机译:电感调谐高隔离RF MEMS电容并联开关

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This work attempts inductive tuning of Radio Frequency Micro Electro Mechanical (RF MEM) capacitive switches for independent operation in X and Ku bands. The usual isolation characteristics of MEMS switches show wide bandwidth and moderate isolation of around 30 dB. Inductive tuning increases switch beam inductance by a few tens of pico henries. This enhances the Q factor and has the effect of improving the isolation and reducing the bandwidth of the switches. Inductive tuning is achieved by creating notches in the coplanar waveguide (CPW) ground plane in close proximity to the membrane. Membrane inductance enhancement can also be achieved by employing folded suspension beams. Since the current is concentrated on the edges of the signal and ground plane, the part of the beam over the CPW gap will have a dominating effect over the beam inductance. Beam inductance can be extracted from the simulated isolation characteristics of the switch by curve fitting. This paper presents tuning of two different rectangular coil suspension beam geometries to improve the isolation characteristics in the respective bands of frequencies.
机译:这项工作尝试对射频微机电(RF MEM)电容式开关进行电感性调谐,以在X和Ku频段中独立运行。 MEMS开关的通常隔离特性显示出宽带宽和大约30 dB的适度隔离。电感调谐将开关束电感增加了几十微微亨。这提高了Q因子,并具有改善隔离度和减小开关带宽的作用。电感调谐是通过在共面波导(CPW)接地平面中紧靠薄膜的位置形成凹口来实现的。膜电感的增强也可以通过采用折叠式悬臂梁来实现。由于电流集中在信号和接地平面的边缘,因此CPW间隙上方的光束部分将对光束电感产生主要影响。可以通过曲线拟合从开关的模拟隔离特性中提取束电感。本文介绍了两种不同的矩形线圈悬臂梁几何形状的调整,以改善相应频带中的隔离特性。

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