Large-range large-aperture MEMS micromirrors for biomedical imaging applications

Huikai Xie
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引用次数: 1

Abstract

Micromirrors with large scan ranges, large aperture sizes, fast speeds, low voltages and low cost are needed for optical switching, displays and biomedical imaging, but it is very challenging to simultaneously meet all the requirements. This paper introduces electrothermal bimorph based micromirrors that can overcome the challenge. For example, a large-vertical-displacement (LVD) micromirror scans 0.7 mm vertically at less than 25 Vdc. A lateral-shift-free (LSF) LVD generates a piston motion of 0.6 mm and scans more than 30° about two axes at less than 8 Vdc. An inverted-series-connected (ISC) micromirror scans ±30° about two axes with no rotation axis shifts. All these mirrors have an optical aperture of 1 mm. Their resonant frequencies range from 300 Hz to 2 kHz. Some of these micromirrors have been applied in biomedical imaging applications.
用于生物医学成像应用的大范围大孔径MEMS微镜
光学开关、显示和生物医学成像都需要具有大扫描范围、大孔径、快速度、低电压和低成本的微镜,但同时满足所有要求是非常具有挑战性的。本文介绍了一种基于电热双晶片的微镜,可以克服这一挑战。例如,大垂直位移(LVD)微镜在小于25 Vdc的情况下垂直扫描0.7 mm。横向无移位(LSF) LVD产生0.6 mm的活塞运动,在小于8 Vdc的情况下扫描约两个轴超过30°。一个反串联(ISC)微镜扫描±30°左右的两个轴,没有旋转轴移位。所有这些镜子的光学孔径都是1毫米。它们的共振频率范围从300赫兹到2千赫。其中一些微镜已应用于生物医学成像。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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