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微机械硅谐振式加速度计的设计与实现。

Design and implementation of a micromechanical silicon resonant accelerometer.

机构信息

Key Laboratory of Micro-Inertial Instruments and Advanced Navigation Technology, Ministry of Education, Nanjing 210096, China.

出版信息

Sensors (Basel). 2013 Nov 19;13(11):15785-804. doi: 10.3390/s131115785.

Abstract

The micromechanical silicon resonant accelerometer has attracted considerable attention in the research and development of high-precision MEMS accelerometers because of its output of quasi-digital signals, high sensitivity, high resolution, wide dynamic range, anti-interference capacity and good stability. Because of the mismatching thermal expansion coefficients of silicon and glass, the micromechanical silicon resonant accelerometer based on the Silicon on Glass (SOG) technique is deeply affected by the temperature during the fabrication, packaging and use processes. The thermal stress caused by temperature changes directly affects the frequency output of the accelerometer. Based on the working principle of the micromechanical resonant accelerometer, a special accelerometer structure that reduces the temperature influence on the accelerometer is designed. The accelerometer can greatly reduce the thermal stress caused by high temperatures in the process of fabrication and packaging. Currently, the closed-loop drive circuit is devised based on a phase-locked loop. The unloaded resonant frequencies of the prototype of the micromechanical silicon resonant accelerometer are approximately 31.4 kHz and 31.5 kHz. The scale factor is 66.24003 Hz/g. The scale factor stability is 14.886 ppm, the scale factor repeatability is 23 ppm, the bias stability is 23 μg, the bias repeatability is 170 μg, and the bias temperature coefficient is 0.0734 Hz/°C.

摘要

微机械硅谐振式加速度计因其输出准数字信号、灵敏度高、分辨率高、动态范围宽、抗干扰能力强、稳定性好等优点,在高精度 MEMS 加速度计的研究和开发中受到了广泛关注。由于硅和玻璃的热膨胀系数不匹配,基于硅玻璃(SOG)技术的微机械硅谐振式加速度计在制造、封装和使用过程中深受温度的影响。温度变化引起的热应力直接影响加速度计的频率输出。基于微机械谐振式加速度计的工作原理,设计了一种特殊的加速度计结构,可降低温度对加速度计的影响。该加速度计可大大降低制造和封装过程中高温产生的热应力。目前,基于锁相环设计了闭环驱动电路。微机械硅谐振式加速度计的原型无负载谐振频率约为 31.4 kHz 和 31.5 kHz。标度因数为 66.24003 Hz/g。标度因数稳定性为 14.886 ppm,标度因数重复性为 23 ppm,偏置稳定性为 23 μg,偏置重复性为 170 μg,偏置温度系数为 0.0734 Hz/°C。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/26c1/3871141/d88d66c29ddb/sensors-13-15785f1.jpg

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