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Simulation Study of Sensitivity Performance of MEMS Capacitive Bending Strain Sensor for Spinal Fusion Monitoring

机译:脊柱融合监测用MEMS电容弯曲应变传感器灵敏度性能的仿真研究

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摘要

This study evaluates the sensitivity of microelectromechanical system (MEMS) capacitive bending strain sensor with a double layer cantilever designed to meet the requirements of spinal fusion monitoring. The cantilever structure of the sensor consists of two parallel substrate plates which constitute the electrodes, attached to an anchor made of silicon dioxide. The sensor was able to monitor bending strain value ranging from 0 to 1000 με. In order to evaluate the sensitivity of the sensor, parametric study was carried out by varying electrode gap, anchor length, and dielectric coverage between the electrodes. The nominal capacitive strain sensor for various applications has sensitivity ranging from 255 aF/με to 0.0225 pV/με. An increase in the sensitivity was observed on reducing the electrode gap and the anchor length and increasing the dielectric coverage, resulting in a highest sensitivity value of 0.2513 pF/με. It was also observed that dielectric constant has a significant effect on the sensitivity behavior of the sensor.
机译:这项研究评估了具有双层悬臂的微机电系统(MEMS)电容弯曲应变传感器的灵敏度,该传感器设计用于满足脊柱融合监测的要求。传感器的悬臂结构由构成电极的两个平行基板组成,该基板固定在由二氧化硅制成的锚上。该传感器能够监控0到1000με范围内的弯曲应变值。为了评估传感器的灵敏度,通过改变电极间隙,锚定长度和电极之间的电介质覆盖范围进行了参数研究。用于各种应用的标称电容应变传感器的灵敏度范围为255 aF /με至0.0225 pV /με。在减小电极间隙和锚定长度并增加电介质覆盖率方面,观察到了灵敏度的提高,导致最高灵敏度值为0.2513 pF /με。还观察到介电常数对传感器的灵敏度行为有重要影响。

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  • 来源
    《Modelling and simulation in engineering》 |2012年第2期|614070.1-614070.11|共11页
  • 作者单位

    School of Mechanical Engineering, University Sains Malaysia, Engineering Campus, Seberang Perai Selatan, Penang,14300 Nibong Tebal, Malaysia;

    School of Mechanical Engineering, University Sains Malaysia, Engineering Campus, Seberang Perai Selatan, Penang,14300 Nibong Tebal, Malaysia;

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