Yang Bo, Wang Xingjun, Dai Bo, Liu Xiaojun
School of Instrument Science & Engineering, Southeast University, Nanjing 210096, China.
Sensors (Basel). 2015 Jan 5;15(1):687-702. doi: 10.3390/s150100687.
Presented in the paper is the design, the simulation, the fabrication and the experiment of a new z-axis resonant accelerometer based on the electrostatic stiffness. The new z-axis resonant micro-accelerometer, which consists of a torsional accelerometer and two plane resonators, decouples the sensing movement of the accelerometer from the oscillation of the plane resonators by electrostatic stiffness, which will improve the performance. The new structure and the sensitive theory of the acceleration are illuminated, and the equation of the scale factor is deduced under ideal conditions firstly. The Ansys simulation is implemented to verify the basic principle of the torsional accelerometer and the plane resonator individually. The structure simulation results prove that the effective frequency of the torsional accelerometer and the plane resonator are 0.66 kHz and 13.3 kHz, respectively. Then, the new structure is fabricated by the standard three-mask deep dry silicon on glass (DDSOG) process and encapsulated by parallel seam welding. Finally, the detecting and control circuits are designed to achieve the closed-loop self-oscillation, to trace the natural frequency of resonator and to measure the system frequency. Experimental results show that the new z-axis resonant accelerometer has a scale factor of 31.65 Hz/g, a bias stability of 727 µg and a dynamic range of over 10 g, which proves that the new z-axis resonant micro-accelerometer is practicable.
本文介绍了一种基于静电刚度的新型z轴谐振加速度计的设计、仿真、制造及实验。这种新型z轴谐振微加速度计由一个扭转加速度计和两个平面谐振器组成,通过静电刚度将加速度计的传感运动与平面谐振器的振荡解耦,这将提高其性能。阐述了加速度计的新结构和敏感理论,并首先在理想条件下推导了标度因数方程。分别对扭转加速度计和平面谐振器的基本原理进行了Ansys仿真验证。结构仿真结果表明,扭转加速度计和平面谐振器的有效频率分别为0.66 kHz和13.3 kHz。然后,采用标准的三掩膜玻璃上深干法刻蚀硅(DDSOG)工艺制造了该新型结构,并通过平行缝焊进行封装。最后,设计了检测和控制电路,以实现闭环自振荡、跟踪谐振器的固有频率并测量系统频率。实验结果表明,新型z轴谐振加速度计的标度因数为31.65 Hz/g,偏置稳定性为727 μg,动态范围超过10 g,这证明了新型z轴谐振微加速度计是可行的。