Investigation of the frequency shift of a SAD circuit loop and the internal micro-cantilever in a gas sensor

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Abstract

Micro-cantilever sensors for mass detection using resonance frequency have attracted considerable attention over the last decade in the field of gas sensing. For such a sensing system, an oscillator circuit loop is conventionally used to actuate the micro-cantilever, and trace the frequency shifts. In this paper, gas experiments are introduced to investigate the mechanical resonance frequency shifts of the micro-cantilever within the circuit loop(mechanical resonance frequency, MRF) and resonating frequency shifts of the electric signal in the oscillator circuit (system working frequency, SWF). A silicon beam with a piezoelectric zinc oxide layer is employed in the experiment, and a Self-Actuating-Detecting (SAD) circuit loop is built to drive the micro-cantilever and to follow the frequency shifts. The differences between the two resonating frequencies and their shifts are discussed and analyzed, and a coefficientα related to the two frequency shifts is confirmed. © 2010 by the authors; licensee MDPI, Basel, Switzerland.

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Guan, L., Zhao, J., Yu, S., Li, P., & You, Z. (2010). Investigation of the frequency shift of a SAD circuit loop and the internal micro-cantilever in a gas sensor. Sensors, 10(7), 7044–7056. https://doi.org/10.3390/s100707044

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