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Superposition Model for Dielectric Charging of RF MEMS Capacitive Switches Under Bipolar Control-Voltage Waveforms

机译:双极性控制电压波形下RF MEMS电容开关介电充电的叠加模型

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摘要

Bipolar control-voltage waveforms, under which the control voltage alternates between positive and negative after each cycle, have been proposed to mitigate dielectric charging in electrostatically actuated RF microelectromechanical system capacitive switches. In this study, dielectric charging under bipolar waveforms is modeled and characterized quantitatively. In general, the experimental results agree with predictions based on the superposition of unipolar charging models that are extracted under positive and negative voltages, respectively. The basic assumptions for such a superposition model are examined in detail and validated experimentally. The current analysis indicates that, while bipolar waveforms can reduce charging, it is difficult to fine tune the waveforms to completely eliminate charging.
机译:已经提出了双极性控制电压波形,在该波形下控制电压在每个周期之后在正负之间交替变化,以减轻静电驱动的RF微机电系统电容开关中的介电电荷。在这项研究中,对双极性波形下的介电电荷进行建模和定量表征。通常,实验结果与基于分别在正电压和负电压下提取的单极性充电模型的叠加的预测相符。对这种叠加模型的基本假设进行了详细检查,并进行了实验验证。电流分析表明,尽管双极性波形可以减少充电,但很难对波形进行微调以完全消除充电。

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