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HomeAuthorsPister K.S.J.

Authors: Pister K.S.J.

Compact Modeling of MEMS Contact Current upon Pull-In

Røst H.I., Clark J.V., Pister K.S.J., Auburn University, US
This work-in-progress presents a parameterizable compact model of a microelectromechanical system (MEMS) beam element that includes mechanical contact and electrical current flow upon gap closure. Quasistatic electromechanical simulation analyses include the initial onset of pull-in [...]

GEMS: A Revolutionary System for Environmental Monitoring

Manobianco D.M., Manobianco J., Evans R.J., Pister K.S.J., Manobianco D.M., Manobianco J., ENSCO, Inc., US
This paper describes a revolutionary, new observing system designed for environmental monitoring that will integrate MicroElectroMechanicalSystems (MEMS) and nanotechnologies. The concept, known as Global Environmental MEMS Sensors (GEMS), features an integrated system of airborne probes [...]

Modified Nodal Analysis for MEMS with Multi-Energy Domains

Clark J.V., Zhou N., Pister K.S.J., University of California at Berkeley, US
A modified nodal analysis approach for the design, simulation, and display of three-dimensional microelectro-mechanical systems with coupled energy domains is presented. Static, steady-state, and transient algorithms are introduced followed by examples. Transient and static analysis [...]

3D MEMS Design via Matlab Interactive Plots

Lo N.R., Pister K.S.J., University of California, US
Matlab is utilized for 3D MEMS design. A preprocessor, written in C, processes the standard, 2D CIF design by applying the topology and spatial information to the design. The Mat3d toolkit then takes the output [...]

Nodal Analysis for MEMS Design Using SUGAR v0.5

Zhou N., Clark J.V., Pister K.S.J., UC-Berkeley, US
This paper presents the development of a simulation program (SUGAR) for planar MEMS devices. The approach is based on nodal analysis to solve coupled nonlinear differential equations. The current version SUGAR vO.5 can perform DC, [...]

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