首页> 外文期刊>Sensors and Actuators, A. Physical >Macromodel-based simulation and measurement of the dynamic pull-in of viscously damped RF-MEMS switches
【24h】

Macromodel-based simulation and measurement of the dynamic pull-in of viscously damped RF-MEMS switches

机译:基于宏模型的粘性阻尼RF-MEMS开关动态吸合的仿真和测量

获取原文
获取原文并翻译 | 示例
           

摘要

We present a physics-based multi-energy domain coupled macromodel that allows for the efficient simulation of the dynamic response of electrostatically controlled and viscously damped ohmic contact RF-MEMS switches on the system-level. The predictive power of the macromodel is evaluated w.r.t. white light interferometer and laser vibrometer measurements. Furthermore, the macromodel is, concerning accuracy and performance, benchmarked versus two alternative state-of-the-art system-level models. The results obtained with the presented macromodel are in very good agreement with the measured quasi-static pull-in characteristics as well as the pull-in and pull-out transients. Due to its capability to account for multiple structural modes, the presented macromodel produces, among the evaluated models, the result that is closest to the measured phase of initial contact during dynamic pull-in. Moreover, a detailed experimental evaluation of the damping model shows a very good agreement (maximum relative error does not exceed 10%) for ambient pressures ranging from 960 hPa down to approximately 200 hPa. Compared to other damping models, this constitutes a very good result, especially because the models contain only geometric parameters and no problem-specific fit factors are needed to obtain this accuracy. The resulting macromodel is physics-based and, hence, scalable and predictive. Due to its generic nature it can be - in general - adapted for any electrostatically actuated device working in contact mode.
机译:我们提出了一个基于物理学的多能量域耦合宏模型,该模型可在系统级上有效仿真静电控制和粘性阻尼的欧姆接触RF-MEMS开关的动态响应。 w.r.t.评估宏观模型的预测能力。白光干涉仪和激光振动仪的测量。此外,与两个替代的最新系统级模型相比,宏模型在准确性和性能方面都进行了基准测试。通过所提供的宏模型获得的结果与测得的准静态吸合特性以及吸合和拔出瞬态非常吻合。由于它具有考虑多种结构模式的能力,因此在评估的模型中,所提供的宏模型产生的结果最接近动态拉入过程中初始接触的测量阶段。此外,对阻尼模型的详细实验评估表明,对于环境压力从960 hPa到大约200 hPa的压力,其一致性非常好(最大相对误差不超过10%)。与其他阻尼模型相比,这是一个很好的结果,尤其是因为模型仅包含几何参数,并且不需要特定于问题的拟合系数即可获得此精度。生成的宏模型基于物理学,因此具有可伸缩性和预测性。由于其通用性质,它通常可适用于以接触模式工作的任何静电驱动设备。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号