Department of Laser Measuring and Navigation Systems, Saint Petersburg Electrotechnical University, 5 Prof. Popov str., 197376 Saint Petersburg, Russia.
Sensors (Basel). 2020 Jan 14;20(2):464. doi: 10.3390/s20020464.
We propose the use of aluminum nitride (AlN) membranes acting as sensitive elements for the surface acoustic wave (SAW)-based acceleration measurement. The proposed solution is compared against existing prototypes based on the use of quartz (SiO)/lithium niobate (LiNbO) membranes that are characterized by extensive anisotropic properties. Using COMSOL Multiphysics 5.4 computer simulations we show explicitly that sensitive elements based on less anisotropic AlN membranes overcome both the low sensitivity limitations of SiO and low temperature stability of LiNbO. Moreover, AlN membranes exhibit nearly double the robustness against irreversible mechanical deformations when compared against SiO, which in turn allows for further 1.5-fold sensitivity enhancement over LiNbO based sensors. Taking into account their acceptable frequency characteristics, we thus believe that the AlN membranes are a good candidate forsensitive elements especially for high acceleration measurements.
我们提出使用氮化铝 (AlN) 膜作为基于表面声波 (SAW) 的加速度测量的敏感元件。与基于石英 (SiO)/铌酸锂 (LiNbO) 膜的现有原型相比,所提出的解决方案具有广泛的各向异性特性。使用 COMSOL Multiphysics 5.4 计算机模拟,我们明确表明,基于各向异性较低的 AlN 膜的敏感元件克服了 SiO 的低灵敏度限制和 LiNbO 的低温稳定性。此外,与 SiO 相比,AlN 膜对不可逆机械变形的鲁棒性几乎提高了一倍,这反过来又使基于 LiNbO 的传感器的灵敏度提高了 1.5 倍。考虑到其可接受的频率特性,因此我们认为 AlN 膜是敏感元件的良好候选材料,特别是对于高加速度测量。