Article ID Journal Published Year Pages File Type
807762 Sensing and Bio-Sensing Research 2016 7 Pages PDF
Abstract

•Simulation of MEFM performance for various structure parameters.•Results show the optimal ratio between structure parameters to maximize performance.•Shutter with trapezoidal cross-sectional perforations is simulated.

This paper describes the design optimization of a micromachined electric field mill, in relation to maximizing its output signal. The cases studied are for a perforated electrically grounded shutter vibrating laterally over sensing electrodes. It is shown that when modeling the output signal of the sensor, the differential charge on the sense electrodes when exposed to vs. visibly shielded from the incident electric field must be considered. Parametric studies of device dimensions show that the shutter thickness and its spacing from the underlying electrodes should be minimized as these parameters very strongly affect the MEFM signal. Exploration of the shutter perforation size and sense electrode width indicate that the best MEFM design is one where shutter perforation widths are a few times larger than the sense electrode widths.

Related Topics
Physical Sciences and Engineering Chemistry Analytical Chemistry
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