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一种具有平面内驱动模式的静电微机电系统滚转-俯仰旋转速率传感器。

An Electrostatic MEMS Roll-Pitch Rotation Rate Sensor with In-Plane Drive Mode.

作者信息

Khaled Ahmed, Salman Ahmed M, Aljehani Nawaf S, Alzahem Ibrahim F, Almikhlafi Ridha S, Noor Radwan M, Seddiq Yasser M, Alghamdi Majed S, Soliman Mostafa, Mahmoud Mohamed A E

机构信息

Si-Ware Systems, Heliopolis, Cairo 11361, Egypt.

Mechatronics Engineering Department, Ain Shams University, Cairo 11535, Egypt.

出版信息

Sensors (Basel). 2022 Jan 18;22(3):702. doi: 10.3390/s22030702.

Abstract

In this paper, we presented a novel electrostatic Roll/Pitch MEMS gyroscope with in-plane drive mode and out-of-plane sense mode. The proposed structure is developed based on a tuning fork gyroscope with decoupled sense mass on each tine that control the sense out-of-plane frequency. A multi-height deep reactive ion etching (DRIE) fabrication process was utilized to achieve and enhance decoupling between the drive and sense modes. We presented our design methodology followed by an analytical and finite element (FEM) model. Our experimental results showed a good match between the analytical model and those obtained experimentally, from the drive and sense oscillation frequencies. Our characterization setup used a custom made application specific integrated circuit (ASIC) for characterization and was able to achieve ARW of 0.2 deg/rt-h, a bias instability 5.5 deg/h, and scale factor non-linearity (SFNL) 156 ppm FS.

摘要

在本文中,我们展示了一种新型的静电式滚转/俯仰微机电系统(MEMS)陀螺仪,其具有面内驱动模式和面外传感模式。所提出的结构是基于一种音叉陀螺仪开发的,在每个叉指上具有解耦的敏感质量块,用于控制面外传感频率。采用了一种多高度的深反应离子刻蚀(DRIE)制造工艺来实现并增强驱动模式和传感模式之间的解耦。我们展示了我们的设计方法,随后是一个解析模型和有限元(FEM)模型。我们的实验结果表明,解析模型与通过驱动和传感振荡频率实验获得的结果之间具有良好的匹配。我们的表征装置使用定制的专用集成电路(ASIC)进行表征,能够实现0.2度/根号小时的角随机游走(ARW)、5.5度/小时的偏置不稳定性以及156 ppm满量程(FS)的标度因数非线性(SFNL)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e856/8839371/5dfd06e50d77/sensors-22-00702-g001.jpg

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