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A Laterally Vibrating Lithium Niobate MEMS Resonator Array Operating at 500 °C in Air.

Authors :
Eisner SR
Chapin CA
Lu R
Yang Y
Gong S
Senesky DG
Source :
Sensors (Basel, Switzerland) [Sensors (Basel)] 2020 Dec 29; Vol. 21 (1). Date of Electronic Publication: 2020 Dec 29.
Publication Year :
2020

Abstract

This paper reports the high-temperature characteristics of a laterally vibrating piezoelectric lithium niobate (LiNbO <subscript>3</subscript> ; LN) MEMS resonator array up to 500 °C in air. After a high-temperature burn-in treatment, device quality factor ( Q ) was enhanced to 508 and the resonance shifted to a lower frequency and remained stable up to 500 °C. During subsequent in situ high-temperature testing, the resonant frequencies of two coupled shear horizontal (SH0) modes in the array were 87.36 MHz and 87.21 MHz at 25 °C and 84.56 MHz and 84.39 MHz at 500 °C, correspondingly, representing a -3% shift in frequency over the temperature range. Upon cooling to room temperature, the resonant frequency returned to 87.36 MHz, demonstrating the recoverability of device performance. The first- and second-order temperature coefficient of frequency (TCF) were found to be -95.27 ppm/°C and 57.5 ppb/°C <superscript>2</superscript> for resonant mode A, and -95.43 ppm/°C and 55.8 ppb/°C <superscript>2</superscript> for resonant mode B, respectively. The temperature-dependent quality factor and electromechanical coupling coefficient ( k <subscript>t</subscript> <superscript>2</superscript> ) were extracted and are reported. Device Q decreased to 334 and total k <subscript>t</subscript> <superscript>2</superscript> increased to 12.40% after high-temperature exposure. This work supports the use of piezoelectric LN as a material platform for harsh environment radio-frequency (RF) resonant sensors (e.g., temperature and infrared) incorporated with high coupling acoustic readout.

Details

Language :
English
ISSN :
1424-8220
Volume :
21
Issue :
1
Database :
MEDLINE
Journal :
Sensors (Basel, Switzerland)
Publication Type :
Editorial & Opinion
Accession number :
33383685
Full Text :
https://doi.org/10.3390/s21010149