Curvature-dependent electrostatic field as a principle for modelling membrane MEMS device with fringing field
Author:
Publisher
Springer Science and Business Media LLC
Subject
Applied Mathematics,Computational Mathematics
Link
http://link.springer.com/content/pdf/10.1007/s40314-021-01480-z.pdf
Reference32 articles.
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4. Cassani D, Tarsia A (2016) Periodic solutions to nonlocal MEMS equations. Discrete Contin Dyn Syst Ser S 9(3):631–642
5. Cauchi M et al (2018) Analytical. Numerical and Experimental study of a horizontal electrothermal mems microgripper for the deformability characterisation of human red blood cells. Micromachines 9(3):108–119
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1. Solution Properties of a New Dynamic Model for MEMS with Parallel Plates in the Presence of Fringing Field;Mathematics;2022-12-01
2. Deformable MEMS with Fringing Field: Models, Uniqueness Conditions and Membrane Profile Recovering;Electronics;2022-03-03
3. A Semi-Linear Elliptic Model for a Circular Membrane MEMS Device Considering the Effect of the Fringing Field;Sensors;2021-08-02
4. MEMS with fringing field: curvature-dependent electrostatic field and numerical techniques for recovering the membrane profile;Computational and Applied Mathematics;2021-05-01
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