Investigation of the parameters of MEMS deflectors to determine the magnetic permeability of the dipole material

V. S. Korneyev, S. L. Shergin
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Abstract

Micro-electromechanical (MEMS) deflectors with electromagnetic control and an experimental stand for measuring their functional parameters are considered. The electromagnetic control method makes it possible to obtain a high positioning accuracy of the reflected beam along one spatial coordinate, and also provides increased speed with the time of deviation of the light flux to a predetermined position of 5–10 μs. Graphs of experimental and theoretical dependences of the angle of deviation of the light flux on the induction of the control magnetic field of MEMS deflectors are presented. Using the method of successive approximations, the value of the magnetic permeability of the dipole material µ = 120 was selected, and the maximum value of the angular deviation of the light flux along one spatial coordinate was determined, which is 13.50. The MEMS presented in this paper can be used, first of all, as high-speed deflectors and optical flow scanners with a beam diameter of up to 2.5 mm.
MEMS偏转器参数测定偶极子材料磁导率的研究
提出了一种电磁控制微机电偏转器及其功能参数测量实验台。采用电磁控制的方法可以使反射光束沿一个空间坐标获得较高的定位精度,并且随着光通量偏离预定位置的时间增加,速度增加5 ~ 10 μs。给出了光通量偏差角与MEMS偏转板控制磁场感应的实验关系图和理论关系图。采用逐次逼近的方法,选取偶极子材料的磁导率µ= 120,确定光通量沿一个空间坐标的角偏差最大值为13.50。首先,本文提出的MEMS可以用作高速偏转器和光流扫描仪,光束直径可达2.5 mm。
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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