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An Electrostatic Comb Excitation Resonant Pressure Sensor for High Pressure Applications

Jie Yu, Yulan Lu, Bo Xie,Qinggang Meng,Zongze Yu, Jiaxin Qin, Jian Chen,Junbo Wang, Deyong Chen

IEEE Sensors Journal(2022)

Cited 3|Views9
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Abstract
In order to meet growing attentions and demands in the high-accuracy and high-pressure applications of deep-sea sciences, petroleum exploration, special industrial manufacturing, a silicon resonant high-pressure sensor with the measurement range of 50 MPa was developed based on double resonators of dual electrostatic comb excitation and piezoresistive detection in this paper. When operating, the frequency shifts of the resonators suspended in a sensitive diaphragm were produced due to the deformation of the diaphragm by applied pressure. The sensor structures were investigated by adopting the finite element analysis to extend the pressure-sensitive range with focusing on sensitivities, strength and the amplitude of the output signal and were fabricated by bulk-micromachining processes. Besides, by adopting dual synthetic comb-driven-force in the resonator, the direct current biased voltage and the negative stiffness effect of the sensor were decreased. The developed sensor here exhibited a high Q-factor value of similar to 46000, a differential pressure sensitivity of similar to 66 Hz/MPa (similar to 930 ppm/MPa) with a linear coefficient of 0.99999, a low differential temperature sensitivity of similar to 0.1 Hz/degrees C (similar to 1.4 ppm/degrees C). Benefiting from aforementioned characteristics, fitting errors of the sensor were better than 0.01% full scale (gas pressure of 0.11 to 7 MPa) under temperature range (-30 to 80 degrees C) by using a polynomial algorithm and measurement errors of the sensor were better than 0.018% full scale (gas pressure of 0.11 to 7 MPa) under temperature range (-10 to 80 degrees C).
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Key words
Dual H-type resonator electrostatic comb excitation,micromachining technology,piezoresistive detection,resonant high-pressure sensor,50 MPa
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