期刊文献+

High-precision low-power quartz tuning fork temperature sensor with optimized resonance excitation 被引量:3

High-precision low-power quartz tuning fork temperature sensor with optimized resonance excitation
原文传递
导出
摘要 This paper presents the design,fabrication,and characterization of a quartz tuning fork temperature sensor based on a new ZY-cut quartz crystal bulk acoustic wave resonator vibrating in a flexural mode.Design and performance analysis of the quartz tuning fork temperature sensor were conducted and the thermal sensing characteristics were examined by measuring the resonance frequency shift of this sensor caused by an external temperature.Finite element method is used to analyze the vibratory modes and optimize the structure of the sensor.The sensor prototype was successfully fabricated and calibrated in operation from 0 to 100 ℃ with the thermo-sensitivity of 70×10-6/℃.Experimental results show that the sensor has high thermo-sensitivity,good stability,and good reproducibility.This work presents a high-precision low-power temperature sensor using the comprehensive thermal characterization of the ZY-cut quartz tuning fork resonator. This paper presents the design, fabrication, and characterization of a quartz tuning fork temperature sensor based on a new ZY-cut quartz crystal bulk acoustic wave resonator vibrating in a flexural mode. Design and performance analysis of the quartz tuning fork temperature sensor were conducted and the thermal sensing characteristics were examined by measuring the resonance frequency shift of this sensor caused by an external temperature. Finite element method is used to analyze the vibratory modes and optimize the structure of the sensor. The sensor prototype was successfully fabricated and calibrated in operation from 0 to 100℃ with the thermo-sensitivity of70×10^-6/℃. Experimental results show that the sensor has high thermo-sensitivity, good stability, and good reproducibility. This work presents a high-precision low-power temperature sensor using the comprehensive thermal characterization of the ZY-cut quartz tuning fork resonator.
出处 《Journal of Zhejiang University-Science C(Computers and Electronics)》 SCIE EI 2013年第4期264-273,共10页 浙江大学学报C辑(计算机与电子(英文版)
基金 Project (No. 11551074) supported by the Science Research Fund of Heilongjiang Provincial Education Department,China
关键词 温度传感器 石英音叉 高精度 低功耗 优化 激励 共振 振动模式 Tuning fork, ZY-cut quartz, Quartz micromachining, Thermal sensing, Temperature sensor
  • 相关文献

参考文献34

  • 1Beeby, S.P., Ensell, G., White, N.M., 2000. Microengineered silicon double-ended tuning fork resonators. Eng. Sci. Educ. J., 9(6):265 -271. [doi:l 0.10491esej:20000606].
  • 2Benes, E., GrOschl, M., Burger, W., Schmid, M., 1995. Sensors based on piezoelectric resonators. Sens. Actuat. A, 48(1): 1-21. [doi:10.1016/0924-4247(95)00846-2].
  • 3Castellanos-Gomez, A., Agrait, N., Rubio-Bollinger, G., 2011. Force-gradient-induced mechanical dissipation of quartz tuning fork force sensors used in atomic force microscopy Ultramicroseopy, 111(3):186-190. [doi:10.1016/j.ultramic 2010.11.032].
  • 4Clubb, D.O., Buu, O.V.L., Bowley, R.M., Nyman, R., Owers- Bradley, J.R., 2004. Quartz tuning fork for viscometers for helium liquids. 7. Low Temp. Phys., 136(1-2):1-13. [doi: 10.1023/B:,IOLT.0000035368.63197.16].
  • 5Ctistis, G., Frater, E.H., Huisman, S.R., Korterik, J.P., Herek, J.L., Vos, W.L., Pinkse, P.W.H., 2011. Controlling thequality factor of a tuning-fork resonance between 9 and 300 K for scaning-probe microscopy. J. Phys. D, 44(37): 375502. [doi:10.108810022-3727/441371375502].
  • 6Dinger, R.J., 1982. The Torsional Tuning Fork as a Tempera- ture. 36th Annual Symp. on Frequency Control, p.265-269. [doi:10.1109/FREQ.1982.200581].
  • 7EerNisse, E.P., Wiggins, R.B., 2001. Review of thickness- shear mode quartz resonator sensors for temperature and pressure. IEEE Sens. J., 1(1):79-87. [doi:10.1109/JSEN. 2001.923590].
  • 8EerNisse, E.E, Ward, R.W., Wiggins, R.B., 1988. Survey of quartz bulk resonator sensor technologies. IEEE Trans. UItrason. Ferroelectr. Freq. Control, 35(3):323-330. [doi: 10.1109/58.20453].
  • 9Friedt, J.M., Carry, E., 2007. Introduction to the quartz tuning fork. Am. J. Phys., 75(5):415-422. [doi:10.1119/1. 2711826].
  • 10Gil, M., Manzaneque, T., Hemando-Garcia, J., Ababenh, A., Seidel, H., Rojas, J.L., 2011. Piezoelectric Micro-Scale Tuning Fork Resonators for Sensing Application. 16th Int. Solid-State Sensors, Actuators and Microsystems Conf., p.1496-1499. [Ooi:10.1109/TRANSDUCERS.2011.5969 6821.

同被引文献28

引证文献3

二级引证文献9

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部