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Electro-Mechanical Simulation of a Large Aperture MOEMS Fabry-Perot Tunable Filter

机译:大口径MOEMS法布里-珀罗可调滤波器的机电模拟

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摘要

We are developing a micro-machined electrostatically actuated Fabry-Perot tunable filter with a large clear aperture for application in high through-put wide-field imaging spectroscopy and lidar systems. In the first phase of this effort, we are developing key components based on coupled electro-mechanical simulations. In particular, the movable etalon plate design leverages high coating stresses to yield a flat surface in drum-head tension over a large diameter (12.5 mm). In this approach, the cylindrical silicon movable plate is back etched, resulting in an optically coated membrane that is suspended from a thick silicon support ring. Understanding the interaction between the support ring, suspended membrane, and coating is critical to developing surfaces that are flat to within stringent etalon requirements. In this work, we present the simulations used to develop the movable plate, spring suspension system, and electrostatic actuation mechanism. We also present results from tests of fabricated proof of concept components.
机译:我们正在开发一种微机械的静电驱动Fabry-Perot可调滤光器,该滤光器具有较大的净孔径,可用于高通量宽视场光谱学和激光雷达系统。在这项工作的第一阶段,我们将基于耦合的机电仿真来开发关键组件。特别是,可移动的标准具板设计利用高涂层应力在大直径(12.5毫米)的鼓头张力中产生平坦的表面。在这种方法中,对圆柱形硅可移动板进行了回蚀,从而形成了光学涂层膜,该膜从厚硅支撑环上悬挂下来。了解支撑环,悬浮膜和涂层之间的相互作用对于在平坦的标准具要求内平坦的显影表面至关重要。在这项工作中,我们介绍了用于开发可移动板,弹簧悬架系统和静电致动机构的仿真。我们还介绍了概念证明零件的制造测试的结果。

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