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微机械谐振式加速度计的温度不敏感结构设计。

Temperature-Insensitive Structure Design of Micromachined Resonant Accelerometers.

机构信息

Department of Precision Instrument, Tsinghua University, Beijing 100084, China.

出版信息

Sensors (Basel). 2019 Mar 30;19(7):1544. doi: 10.3390/s19071544.

Abstract

Micromachined resonant accelerometers (MRAs), especially those devices fabricated by silicon on glass technology, suffer from temperature drift error caused by inherent thermal stress. This paper proposes two structure designs to attenuate the effect of thermal stress. The first MRA structure is realized by optimizing the locations of the bonding anchors and utilizing a special-shaped substrate to isolate the thermal stress generated during the die attach process. The second structure is designed using an isolation frame fixed by a single anchor to replace all dispersed anchors associated with the suspension beams and micro-levers. Simulated and experimental results show that both of the MRA structures can effectively reduce the thermal stress effect. The experimental results on one MRA prototype indicate that the differential temperature sensitivity reduces down to 1.9 μg/°C and its 15-day bias stability reaches 1.4 μg.

摘要

微机械谐振式加速度计(MRAs),特别是采用硅玻璃技术制造的器件,会受到固有热应力引起的温度漂移误差的影响。本文提出了两种结构设计来减轻热应力的影响。第一种 MRA 结构通过优化键合锚点的位置并利用特殊形状的衬底来隔离在芯片粘接过程中产生的热应力来实现。第二种结构采用由单个锚点固定的隔离框架来代替与悬浮梁和微杠杆相关的所有分散的锚点来设计。模拟和实验结果表明,这两种 MRA 结构都可以有效地降低热应力的影响。对一个 MRA 原型的实验结果表明,差分温度灵敏度降低到 1.9μg/°C,其 15 天的偏置稳定性达到 1.4μg。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c19f/6479284/a79a39bcfa19/sensors-19-01544-g001.jpg

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