Zhang Quanwei, Li Cun, Zhao Yulong, Li Bo, Han Chao
State Key Laboratory for Manufacturing System Engineering, Xi'an Jiaotong University, Xi'an, Shanxi 710049, People's Republic of China.
Rev Sci Instrum. 2019 Jun;90(6):065003. doi: 10.1063/1.5094212.
A high sensitivity quartz resonant pressure sensor with differential output and self-correction is proposed. Although compared to other resonant devices, quartz resonators have less influence on external environmental factors due to their own high quality factor Q; the influence of external environment such as temperature, vibration, and humidity cannot be ignored in high-precision applications. These errors need to be eliminated or compensated. Therefore, this paper divides the core unit of the sensor into two parts: the working unit and the reference unit. The working unit provides the differential outputs which not only improves the sensitivity but also suppresses some interference such as time drift and temperature drift, and it is rarely used in quartz resonant pressure sensors. The reference unit can effectively detect and offset the interference of temperature and vibration which is named as self-correction, and it can also provide temperature measurement. Double-ended tuning fork quartz resonators used in both units are manufactured by micromachining technology. Bellows and flexible mechanisms used as pressure conversion units are manufactured using modern mechanical technology. The test results show that the sensor has the conformity accuracy of the fitting formula of 0.0148% full scale (FS), the good basic accuracy of 0.06% FS, and the high sensitivity of 36.58 Hz/kPa which meets well with the theoretical result. It is shown by the experiments that the reference unit can effectively correct the interference of temperature and vibration. The theoretical analysis and experimental results prove the feasibility of the resonant pressure sensor which can meet the application requirements of pressure measurement in the high-tech industries.
提出了一种具有差分输出和自校正功能的高灵敏度石英谐振压力传感器。尽管与其他谐振器件相比,石英谐振器由于其自身的高品质因数Q对外部环境因素的影响较小;但在高精度应用中,温度、振动和湿度等外部环境的影响仍不可忽视。这些误差需要消除或补偿。因此,本文将传感器的核心单元分为两部分:工作单元和参考单元。工作单元提供差分输出,这不仅提高了灵敏度,还抑制了一些干扰,如时间漂移和温度漂移,而这在石英谐振压力传感器中很少使用。参考单元可以有效地检测和抵消温度和振动的干扰,即自校正,并且还可以提供温度测量。两个单元中使用的双端音叉石英谐振器采用微加工技术制造。用作压力转换单元的波纹管和柔性机构采用现代机械技术制造。测试结果表明,该传感器拟合公式的一致性精度为满量程(FS)的0.0148%,基本精度良好,为0.06%FS,灵敏度高达36.58Hz/kPa,与理论结果吻合良好。实验表明,参考单元可以有效地校正温度和振动的干扰。理论分析和实验结果证明了该谐振压力传感器的可行性,其能够满足高科技产业中压力测量的应用需求。