Large electrostatically and electromagnetically actuated mirror system for space applications

D. Bayat, Ç. Ataman, B. Guldimann, S. Lani, W. Noell, N. D. de Rooij
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引用次数: 1

Abstract

We present the design and microfabrication technology of a tip-tilt 2 degree of freedom mirror system made out of SOI wafers with two movable mirrors that have diameters of 1cm. The system is intended for precise beam positioning applications and tracking. Having two mirrors allows one mirror to have large static mechanical scan angles (±3.5°) and the other to have fast fine pointing capabilities within ±0.2° static mechanical scan angle. The first mirror is magnetically actuated and has a resonance frequency of 150Hz. The second mirror is actuated electrostatically and has a resonance frequency of 1 KHz. This mirror enables rapid fine-pointing. Potential space applications are robotic 3D vision, imaging LIDARS, docking sensors and inter-satellite laser communications.
空间用大型静电和电磁驱动反射镜系统
我们提出了一种由SOI晶圆制成的2自由度倒立式反射镜系统的设计和微加工技术,该系统具有两个直径为1cm的可移动反射镜。该系统用于精确的波束定位应用和跟踪。具有两个反射镜允许一个反射镜具有大的静态机械扫描角度(±3.5°),另一个反射镜具有在±0.2°静态机械扫描角度内的快速精细指向能力。第一面镜子是磁驱动的,谐振频率为150Hz。第二个反射镜是静电驱动的,其共振频率为1khz。这面镜子可以快速精确对准。潜在的空间应用包括机器人3D视觉、成像激光雷达、对接传感器和卫星间激光通信。
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