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Comparative Study of 2-DOF Micromirrors for Precision Light Manipulation

机译:用于自由光操纵的2自由度微镜的比较研究

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Many industry experts predict that the future of fiber optic telecommunications depends on the development of all-optical components for switching of photonic signals from fiber to fiber throughout the networks. MEMS is a promising technology for providing all-optical switching at high speeds with significant cost reductions. This paper reports on the the analysis of two designs for 2-DOF electrostatically actuated MEMS micromirrors for precision controllable large optical switching arrays. The behavior of the micromirror designs is predicted by coupled-field electrostatic arid modal analysis using a finite element analysis (FEA) multi-physics modeling software. The analysis indicates that the commonly used gimbal type mirror design experiences electrostatic interference and would therefore be difficult to precisely control for 2-DOF motion. We propose a new design approach which preserves 2-DOF actuation while minimizing electrostatic interference between the drive electrodes and the mirror. Instead of using two torsional axes, we use one actuator which combines torsional and flexural DOFs. A comparative analysis of the conventional gimbal design and the one proposed in this paper is performed.
机译:许多行业专家预测,光纤电信的未来取决于全光组件的发展,以在整个网络中将光子信号从光纤切换到光纤。 MEMS是一种有前途的技术,可提供高速的全光交换并显着降低成本。本文报告了两种用于精确可控大型光开关阵列的2自由度静电驱动MEMS微镜设计的分析。通过使用有限元分析(FEA)多物理场建模软件的耦合场静电干旱模态分析预测微镜设计的行为。分析表明,常用的万向节型镜设计会受到静电干扰,因此很难精确控制2自由度运动。我们提出了一种新的设计方法,该方法可以保留2自由度驱动,同时最大程度地减小驱动电极和反射镜之间的静电干扰。代替使用两个扭转轴,我们使用一个组合了扭转和挠曲自由度的执行器。对传统的云台设计与本文提出的设计进行了比较分析。

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