Title :
Experimentally validated and automatically generated multi-energy domain coupled model of a RF-MEMS switch
Author :
Niessner, Martin ; Schrag, Gabriele ; Iannacci, Jacopo ; Wachutka, Gerhard
Author_Institution :
Inst. for Phys. of Electrotechnol., Munich Univ. of Technol., Munich
Abstract :
We present a computationally efficient multi-energy domain coupled system-level model of an electrostatically actuated RF-MEMS switch exposed to squeeze film damping. The physically-based model is systematically derived and calibrated on the basis of a hierarchical modeling approach. The model shows excellent agreement with both static and dynamic measurements performed with a white light interferometer. Especially coupling effects, that are the increased damping and the spring softening whilst actuation, are correctly reproduced by the model. This demonstrates the power of our modeling approach and, in particular, the predictiveness w.r.t. ldquoreal worldrdquo experiments. Furthermore, the automatically generated model is suitable for direct implementation into standard EDA tools for IC´s, like Cadencetrade and Mentor Graphicsreg.
Keywords :
electrostatic actuators; microswitches; electrostatically actuated RF-MEMS switch; hierarchical modeling approach; multi-energy domain coupled model; squeeze film damping; white light interferometer; Damping; Electrostatic measurements; Optical interferometry; Performance evaluation; Power system modeling; Predictive models; Radiofrequency microelectromechanical systems; Softening; Springs; Switches;
Conference_Titel :
Thermal, Mechanical and Multi-Physics simulation and Experiments in Microelectronics and Microsystems, 2009. EuroSimE 2009. 10th International Conference on
Conference_Location :
Delft
Print_ISBN :
978-1-4244-4160-0
Electronic_ISBN :
978-1-4244-4161-7
DOI :
10.1109/ESIME.2009.4938501