基于微悬臂梁的探测器的设计与开发

J. Kalambe, R. Patrikar
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引用次数: 0

摘要

微悬臂在各个科学领域都有潜在的应用,从物理和化学传感到生物疾病诊断。传感作用本质上是悬臂梁的挠度。挠度取决于悬臂梁的物理参数,如宽度、长度和厚度,也很大程度上取决于所使用的材料。本文详细介绍了微悬臂梁的装置设计和计算分析。在分析和设计过程中,重要的是要考虑使用读出法进行检测。微悬臂装置纳米级位移的测量是一项具有挑战性的任务。本文介绍了一种新的读出方法,并对该方法进行了分析。读出方法将影响最佳读数的设计参数。本文考虑了基于该读出方法的温度传感器、加速度传感器和生物传感器三个案例进行分析。最后,制作了微悬臂梁并进行了测试,以验证所提出装置的功能。
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Design and Development of Microcantilever Based Detector
Micro cantilever have got potential applications in every field of science ranging from physical and chemical sensing to biological disease diagnosis. The sensing action essentially is the deflection of the cantilever beam. The deflection depends upon the physical parameters of the cantilever such as width, length and thickness and it also strongly depends upon the material used. Device design and computational analysis for micro cantilever are addressed in detail in this paper. During the analysis and design it is important to consider readout method to be used for the detection. Measurement of nanometer range displacement in micro cantilever devices is challenging task. We have introduced new readout method and analysis is done for this method. The readout method will influence the design parameters for optimum readings. Three case studies have been considered for the analysis are temperature sensor, accelerometer and biosensor based on this readout method. Finally the micro cantilevers were fabricated and tested to verify the functionality of the proposed device.
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