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A non-resonant fiber scanner based on an electrothermally-actuated MEMS stage

机译:基于电热驱动MEMS平台的非谐振光纤扫描仪

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摘要

Scanning fiber tips provides the most convenient way for forward-viewing fiber-optic microendoscopy. In this paper, a distal fiber scanning method based on a large-displacement MEMS actuator is presented. A single-mode fiber is glued on the micro-platform of an electrothermal MEMS stage to realize large range non-resonantscanning. The micro-platform has a large piston scan range of up to 800 µm at only 6V. The tip deflection of the fiber can be further amplified by placing the MEMS stage at a proper location along the fiber. A quasi-static model of the fiber-MEMS assembly has been developed and validated experimentally. The frequency response has also been studied and measured. A fiber tip deflection of up to 1650 µm for the 45 mm-long movable fiber portion has been achieved when the MEMS electrothermal stage was placed 25 mm away from the free end. The electrothermally-actuated MEMS stage shows a great potential for forward viewing fiber scanning and optical applications.
机译:扫描光纤尖端为前视光纤显微内窥镜检查提供了最方便的方法。本文提出了一种基于大位移MEMS驱动器的远侧纤维扫描方法。将单模光纤胶粘在电热MEMS平台的微平台上,以实现大范围的非谐振扫描。该微型平台在仅6V的电压下具有高达800 µm的大活塞扫描范围。通过将MEMS平台放置在沿着光纤的适当位置,可以进一步放大光纤的尖端偏转。光纤MEMS组件的准静态模型已经开发并通过实验验证。频率响应也已被研究和测量。当将MEMS电热平台放置在距自由端25 mm处时,对于45 mm长的可动纤维部分,光纤尖端的挠曲已达到1650 µm。电热驱动的MEMS平台对于前视光纤扫描和光学应用显示出巨大的潜力。

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