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Keywords: MEMS clamped circular plates
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Proceedings Papers

Proc. ASME. DSCC2020, Volume 2: Intelligent Transportation/Vehicles; Manufacturing; Mechatronics; Engine/After-Treatment Systems; Soft Actuators/Manipulators; Modeling/Validation; Motion/Vibration Control Applications; Multi-Agent/Networked Systems; Path Planning/Motion Control; Renewable/Smart Energy Systems; Security/Privacy of Cyber-Physical Systems; Sensors/Actuators; Tracking Control Systems; Unmanned Ground/Aerial Vehicles; Vehicle Dynamics, Estimation, Control; Vibration/Control Systems; Vibrations, V002T39A003, October 5–7, 2020
Paper No: DSCC2020-3217
... amplitudes and lower frequency. MEMS clamped circular plates subharmonic resonance of one-third order frequency-amplitude response FREQUENCY-AMPLITUDE RESPONSE OF SUBHARMONIC RESONANCE OF ONE-THIRD ORDER OF ELECTROSTATICALLY ACTUATED MEMS CIRCULAR PLATES Dumitru I. Caruntu1, Julio Beatriz, Miguel...
Proceedings Papers

Proc. ASME. DSCC2020, Volume 2: Intelligent Transportation/Vehicles; Manufacturing; Mechatronics; Engine/After-Treatment Systems; Soft Actuators/Manipulators; Modeling/Validation; Motion/Vibration Control Applications; Multi-Agent/Networked Systems; Path Planning/Motion Control; Renewable/Smart Energy Systems; Security/Privacy of Cyber-Physical Systems; Sensors/Actuators; Tracking Control Systems; Unmanned Ground/Aerial Vehicles; Vehicle Dynamics, Estimation, Control; Vibration/Control Systems; Vibrations, V002T39A004, October 5–7, 2020
Paper No: DSCC2020-3251
... is considered significant. The two branches, one unstable and one stable, with a saddle node bifurcation point are predicted. Both methods are in agreement for amplitudes up to 0.7 of the gap. The effect of damping and voltage on the frequency response are reported. MEMS clamped circular plates...