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Showing 1 to 3 of 3 for “"Dynamic Pull-in"”.

  1. Modeling and Simulation of Microelectromechanical Systems in Multi-Physics Fields

    … simulate microelectromechanical systems (MEMS) in multi-physics fields. These include electric actuation (AC and DC), squeeze-film damping, thermoelastic damping, and structural forces. The second objective is to investigate MEMS phenomena, such as squeeze-film damping and dynamic pull-in, and …

    vt Repository record for Modeling and Simulation of Microelectromechanical Systems in Multi-Physics Fields (opens in a new tab)

  2. Applications of Non-linearities in RF MEMS Switches and Resonators

    The 21st century is emerging into an era of wireless ubiquity. To support this trend, the RF (Radio Frequency) front end must be capable of processing a range of wireless signals (cellular phone, data connectivity, broadcast TV, GPS positioning, etc.) spanning a total bandwidth of nearly 6 GHz. …

    vt Repository record for Applications of Non-linearities in RF MEMS Switches and Resonators (opens in a new tab)

  3. Modeling, Simulation, and Analysis of Micromechanical Filters Coupled with Capacitive Transducers

    … analytically the mode shapes and corresponding natural frequencies and determine critical buckling loads of mechanically coupled microbeam resonators with a focus on micromechanical filters. The second objective is to adopt a nonlinear approach to build a reduced-order model and obtain …

    vt Repository record for Modeling, Simulation, and Analysis of Micromechanical Filters Coupled with Capacitive Transducers (opens in a new tab)