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Towards micro-assembly of hybrid MOEMS components on a reconfigurable silicon free-space micro-optical bench

机译:在可重配置的硅自由空间微光学平台上实现混合MOEMS组件的微组装

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摘要

The 3D integration of hybrid chips is a viable approach for the micro-optical technologies to reduce the costs of assembly and packaging. In this paper a technology platform for the hybrid integration of MOEMS components on a reconfigurable silicon free-space micro-optical bench (FS-MOB) is presented. In this approach a desired optical component (e.g. micromirror, microlens) is integrated with a removable and adjustable silicon holder which can be manipulated, aligned and fixed in the precisely etched rail of the silicon baseplate by use of a robotic micro-assembly station. An active-based gripping system allows modification of the holder position on the baseplate with nanometre precision. The fabrication processes of the micromachined parts of the micro-optical bench, based on bulk micromachining of standard silicon wafer and SOI wafer, are described. The successful assembly of the holders, equipped with a micromirror and a refractive glass ball microlens, on the baseplate rail is demonstrated.
机译:混合芯片的3D集成是微光学技术降低装配和封装成本的可行方法。本文提出了一种技术平台,用于将MOEMS组件混合集成在可重配置的硅自由空间微光学平台(FS-MOB)上。在这种方法中,所需的光学部件(例如微镜,微透镜)与可移动且可调节的硅保持器集成在一起,该硅保持器可以通过使用机器人微装配站被操纵,对准和固定在硅基板的精确蚀刻的轨道中。基于主动的夹持系统允许以纳米精度修改基板上的固定器位置。描述了基于标准硅晶片和SOI晶片的批量微加工的微光学工作台的微加工零件的制造过程。展示了在基板导轨上成功安装了带有微镜和折射玻璃球微透镜的支架。

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