Bimodal Surface Acoustic Wave Sensor Based on Vanadium-Doped Zinc Oxide Film for High-Precise Pressure Measurement Enabled with Temperature Compensation

Chuqiao Wang, Wei Gao, Guangyao Pei, Yunzhe Liu, Kai Cheng, Zheng Guo, Jian Luo, Binghe Ma

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

In this work, a bimodal surface acoustic wave (SAW) sensor employing a vanadium-doped zinc oxide (VZO) thin film is presented for high precise pressure measurement. The sensor is designed with multilayer waveguide structure to operate on both Rayleigh and Lamb modes to achieve temperature compensation. A 3-mask process platform on a SOI wafer based on MEMS technology is used for the development of the sensor. The influence of the oxygen/argon ratio during RF magnetron sputtering of VZO films are studied. Thepiezoelectric coefficient of the VZO film can reach to 120.3 pm/V,indicating high piezoresponse. The Rayleigh mode resonating at 312.5 MHz and the Lamb mode oscillating at 448.3 MHz of the presented sensor are observed. Calibrations of the pressure at different temperatures ranging from 25°C to 170°C have been conducted. The compensated pressure measurement error is demonstrated to be no more than 2.1%, showing a promising application prospects in high precision pressure measurements.

Original languageEnglish
Title of host publication2024 IEEE Sensors, SENSORS 2024 - Conference Proceedings
PublisherInstitute of Electrical and Electronics Engineers Inc.
ISBN (Electronic)9798350363517
DOIs
StatePublished - 2024
Event2024 IEEE Sensors, SENSORS 2024 - Kobe, Japan
Duration: 20 Oct 202423 Oct 2024

Publication series

NameProceedings of IEEE Sensors
ISSN (Print)1930-0395
ISSN (Electronic)2168-9229

Conference

Conference2024 IEEE Sensors, SENSORS 2024
Country/TerritoryJapan
CityKobe
Period20/10/2423/10/24

Keywords

  • lamb mode
  • rayleigh mode
  • surface acoustic wave sensors
  • temperature compensation
  • vanadium-doped zinc oxide films

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