1. 中国科学院苏州生物医学工程技术研究所医学检验技术研究室
2. 中国科学院大学
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王澍沁, 王弼陡, 吕丹辉, 等. 梳齿式二维微纳传感器的物理设计[J]. 机械强度, 2018,40(4):857-862.
WANG ShuQin, WANG BiDou, LV DanHui, et al. DESIGN OF A TWO-AXIS MEMS SENSOR FOR MEASURING THE FORCE AND TORQUE WITH COMB STRUCTURE[J]. 2018,40(4):857-862.
王澍沁, 王弼陡, 吕丹辉, 等. 梳齿式二维微纳传感器的物理设计[J]. 机械强度, 2018,40(4):857-862. DOI: 10.16579/j.issn.1001.9669.2018.04.016.
WANG ShuQin, WANG BiDou, LV DanHui, et al. DESIGN OF A TWO-AXIS MEMS SENSOR FOR MEASURING THE FORCE AND TORQUE WITH COMB STRUCTURE[J]. 2018,40(4):857-862. DOI: 10.16579/j.issn.1001.9669.2018.04.016.
在MEMS技术的基础上,设计了一种梳齿式二维微纳传感器的芯片结构。通过应用硅基力敏感结构,实现了将微弱不可测力学信号转换为可测电信号;建立有限元模型,分析计算了微力传感器的结构和电学特性,得到了力学信号与电学信号的对应关系;对模型进行了模态分析和谐响应分析,验证了结构的固有频率和谐响应频率远离系统的工作驱动频率,保证了芯片的工作稳定性和测量精度。仿真分析结果表明,微力传感器芯片的力和力矩的分辨率分别达到2.85μN和0.0382μN·m,信号转换线性度分别达到0.999 6、0.999 9。模态固有频率(第一阶、第二阶)和谐响应频率分别为783.28 Hz、1 294.3 Hz和770 Hz,均满足性能指标要求。
Based on the micro-electro-mechanical systems(MEMS) technology,the chip structure of a two-axis force sensor with comb structure was designed.Silicon force sensitive structure converted the faint mechanical signals into measurable electrical signals.After finite element model was established,the structure and electrical properties of the sensor were analyzed.The corresponding relation between the mechanical signals and the electrical signal was obtained.The mode analysis and harmonic response analysis were performed for the model.The natural frequency of the structure and the harmonic response frequency both are verified that far away from the operating frequency of the system.The work stability and measurement accuracy of the chip are guaranteed.The resolutions of force and moment of the sensor chip are 2.85 μm and 0.0382 μN·m,respectively.The linearity of the signal conversion reached 0.999 6 and 0.999 9.The first and second order modal natural frequency is783.28 Hz and 1 294.3 Hz and harmonic response frequency is 770 Hz.Simulation results meet the requirement of performance specification.
微电子机械系统(MEMS)力传感器二维梳齿结构物理设计
Micro-electromechanical systems(MEMS)Force sensorTwo-axisComb structurePhysical design
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