基于MEMS的梳状驱动隧道效应陀螺仪的设计、仿真与建模

B. Hazarika, N. Afzulpurkar, C. Punyasai, D. Kumar Das
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引用次数: 2

摘要

在基于MEMS的高灵敏度加速度计和AFM中,电子力显微镜的原理是一个众所周知的传感现象。我们打算将这一概念扩展到陀螺仪的开发,基于陀螺仪传感器是加速度计,但具有驱动模式的事实。本文设计了一种基于MEMS的电子隧穿传感器隧道陀螺仪。利用COVENTORWARE软件进行有限元分析,计算了单轴陀螺仪建模所需的重要参数弹簧常数、阻尼系数和谐振频率。采用基于SIMULINK的模型对模型的响应行为进行了分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design, simulation & modelling of MEMS based comb-drive tunneling effect gyroscope
The principle of electron force microscopy is a well-known phenomenon of sensing in high sensitive MEMS based accelerometers & AFM. We intend to extend this concept towards development of a gyroscope, based on the fact that gyroscope sensors are accelerometers, but with a drive mode. In this paper we present a design of a MEMS based tunneling gyroscope with electron tunneling a sense mechanism. The important parameters required for modeling of the single axis gyroscope is like spring constant, damping coefficient and resonance frequencies are calculated using FEA analysis using COVENTORWARE. A SIMULINK based model is used to examine the response behavior of the model.
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