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MEMS-based microgratings: preliminary results of novel configurations

机译:基于MEMS的微观花草:新颖配置的初步结果

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The advent of micromachining has opened new doors for reducing the size and weight of conventional systems. A significant example is in the area of optics in which the size reduction can be exploited to produce ultra-miniature systems using MEMS device as the sensing or control elements. Using MEMS-based fabrication methods (the MUMPS runs), a series of optical diffraction gratings has been produced to examine limitations on the production methods and explore alternative applications. These devices consist of a variety of structures including single gratings, arrays of gratings and multi-periodic gratings. These devices are based on 3D architectures which can be adjusted in real time using electrostatic attraction from custom segmented electrode structures. The gratings were released and packaged for laboratory tests. Selected packaged devices were equipped with windows and integrated into a compact spectrograph to document spectral quality and performance. Preliminary results of mechanical, optical and electrical tests will be discussed.
机译:微机械线的出现打开了新的门,以降低传统系统的尺寸和重量。一个重要的例子在光学领域,其中可以利用尺寸减小来产生使用MEMS器件作为感测或控制元件的超微型系统。使用基于MEMS的制造方法(腮腺炎运行),已经制作了一系列光衍射光栅以检查生产方法的限制,并探索替代应用。这些装置包括各种结构,包括单一光栅,光栅阵列和多周期性光栅。这些设备基于3D架构,其可以使用来自自定义分段电极结构的静电吸引力实时调整。光栅被释放并包装用于实验室测试。选定的封装设备配备了窗口,并集成到紧凑的光谱仪中,以记录谱质量和性能。将讨论机械,光学和电气测试的初步结果。

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