Tunable Microelectromechanical Filters that Exploit Parametric Resonance

Author:

Rhoads Jeffrey F.,Shaw Steven W.12,Turner Kimberly L.,Baskaran Rajashree34

Affiliation:

1. (517)-432-1085 (517)-353-1750 rhoadsje@egr.msu.edu

2. Department of Mechanical Engineering, Michigan State University, 2555 Engineering Building, East Lansing, MI 48824

3. (805)-893-5106 (805)-893-8651 turner@engineering.ucsb.edu

4. Department of Mechanical and Environmental Engineering, University of California, Santa Barbara, 1171 Engineering Building II, Santa Barbara, CA 93106

Abstract

Abstract Background: This paper describes an analytical study of a bandpass filter that is based on the dynamic response of electrostatically-driven MEMS oscillators. Method of Approach: Unlike most mechanical and electrical filters that rely on direct linear resonance for filtering, the MEM filter presented in this work employs parametric resonance. Results: While the use of parametric resonance improves some filtering characteristics, the introduction of parametric instabilities into the system does present some complications with regard to filtering. Conclusions: The aforementioned complications can be largely overcome by implementing a pair of MEM oscillators with tuning schemes and some processing logic to produce a highly effective bandpass filter.

Publisher

ASME International

Subject

General Engineering

Reference18 articles.

1. Mechanical Filters—A Review of Progress;Johnson;IEEE Trans. Sonics Ultrason.

2. Micromechanical Filters for Miniaturized Low-Power Communications;Nguyen

3. Parametrically Excited MEMS-Based Filters;Shaw

4. Surface Micromachined Piezoelectric Resonant Beam Filters;Piekarski;Sens. Actuators, A

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