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Home2004March

Month: March 2004

TechConnect Proceedings Papers

Compliant Force Amplifier Mechanisms for Surface Micromachined Resonant Accelerometers

Pedersen C.B.W., Seshia A.A., University of Cambridge, UK
The present work deals with the optimization of a compliant force amplifier mechanism in a surface micromachined resonant accelerometer. Figures of merit including noise floor and scale factor are critically dependent on the gain of [...]

Interdigitated Low-Loss Ohmic RF-MEMS Switches

Gaddi R., Bellei M., Gnudi A., Margesin B., Giacomozzi F., ARCES - University of Bologna, IT
An interdigitated design for MEMS RF-switches is applied to both a shunt and a series ohmic contact configuration. Interdigitated Al-Ti-TiN RF-signal paths and poly actuation electrodes are arranged underneath an electrodeposited gold plate, suspended by [...]

New Accurate 3-D Finite Element Technology for Solving Geometrically Complex Coupled-Field Problems

Avdeev I., Gyimesi M., Lovell M., Ostergaard D., University of Pittsburgh, US
Increased functionality of microelectromechanical systems (MEMS) has lead to the development of micro-scale devices that are geometrically complex. These complex configurations require the development of new and more efficient finite element (FE) techniques for modeling [...]

Function-Oriented Geometric Design Approach To Surface Micromachined MEMS

Gao F., Hong Y.S., University of Toledo, US
Geometric modeling is an important aspect of MEMS design. It not only creates geometric model for visual evaluation, but also supplies input for device performance analysis. This paper focuses on developing a feature-based geometric design [...]

Dynamic Modeling and Input Shaping for MEMS

Popa D.O., Wen J.T., Stephanou H.E., Skidmore G., Ellis M., Rensselaer Polytechnic Institute, US
In this paper we show that the dynamic performance of MEMS devices can be significantly enhanced using reduced-order modeling techniques and open-loop control via input shaping. Specifically, we apply this methodology to a variety of [...]

Computationally Efficient Dynamic Modeling of MEMS

Popa D.O., Critchley J., Sadowski M., Anderson K.S., Skidmore G., Rensselaer Polytechnic Institute, US
Traditional modeling work in MEMS includes simplified PDE/ODE formulation, based on physical principles, and Finite Element Analysis. More recently, reduced order modeling techniques using Krylov subspace decomposition have been proposed in the context of nodal [...]

Guidelines of Creating Krylov-subspace Macromodels for Lateral Viscous Damping Effects

Yen P-C, Yang Y-J, National Taiwan University, TW
It is well known that modeling 3-D lateral viscous damping effects requires considerable computational resources. Therefore, earlier works on lateral viscous damping were based on the 1-D analytical Stokes and Couette flow solutions [1,2]. Recently, [...]

MEMS Compact Modeling Meets Model Order Reduction: Examples of the Application of Arnoldi Methods to Microsystem Devices

Lienemann J., Billger D., Rudnyi E.B., Greiner A., Korvink J.G., IMTEK, Albert Ludwig University, DE
Modeling and simulation of the behavior of a system consisting of many single devices is an essential requirement for the reduction of design cycles in the development of microsystem applications. Analytic solutions for the describing [...]

Characterization of an Electro-thermal Microactuator with Multi-lateral Motion in Plane

Pan C.H., Chen Y.K., Chang C.L., National Chin-Yi Institute of Technology, TW
We present a new electro-thermal microactuator to have multi-lateral motion in plane by only varying voltage potentials at the contact pads. To extend the operating function, the larger operating range or multi-mode switch, relay and [...]

Modeling, Fabrication and Experiment of a Novel Lateral MEMS IF/RF Filter

Motiee M., Khajepour A., Mansour R.R., University of Waterloo, CA
MEMS based mechanical resonators and filters have shown promising characteristics in achieving high Q values and good stability. This paper introduces a novel V-shape coupling element that is used to mechanically couple two clamped-clamped MEMS [...]

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