首页> 外文会议>SPIE Conference on Adaptive Coded Aperture Imaging and Non-Imaging Sensors >Utilizing micro-electro-mechanical systems (MEMS) micro-shutter designs for adaptive coded aperture imaging (ACAI) technologies
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Utilizing micro-electro-mechanical systems (MEMS) micro-shutter designs for adaptive coded aperture imaging (ACAI) technologies

机译:利用微机电系统(MEMS)微快门设计,用于自适应编码孔径成像(ACAI)技术

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Coded aperture imaging (CAI) has been used in both the astronomical and medical communities for years due to its ability to image light at short wavelengths and thus replacing conventional lenses. Where CAI is limited, adaptive coded aperture imaging (ACAI) can recover what is lost. The use of photonic micro-electro-mechanical-systems (MEMS) for creating adaptive coded apertures has been gaining momentum since 2007. Successful implementation of micro-shutter technologies would potentially enable the use of adaptive coded aperture imaging and non-imaging systems in current and future military surveillance and intelligence programs. In this effort, a prototype of MEMS microshutters has been designed and fabricated onto a 3 mm x 3 mm square of silicon substrate using the РoIyМUМРS~(TM) process. This prototype is a line-drivable array using thin flaps of polysilicon to cover and uncover an 8 x 8 array of 20 μm apertures. A characterization of the micro-shutters to include mechanical, electrical and optical properties is provided. This prototype, its actuation scheme, and other designs for individual microshutters have been modeled and studied for feasibility purposes. In addition, microshutters fabricated from an Al-Au alloy on a quartz wafer were optically tested and characterized with a 632 nm HeNe laser.
机译:由于其在短波长的图像光线和因此更换传统镜片的情况下,编码孔径成像(CAI)已被用于天文和医疗社区多年。其中CAI受限,自适应编码孔径成像(ACAI)可以恢复丢失的内容。用于创建自适应编码孔的光子微电机械系统(MEMS)已经获得了自2007年以来的动力。微快门技术的成功实现可能使得能够使用当前的自适应编码孔径成像和非成像系统和未来的军事监测和情报计划。在这种努力中,使用“РIIYммрs〜(TM)”工艺已经设计和制造在3mm×3mm平方的3mm×3mm平方中的MEMS微型型。该原型是一种线路可驱动阵列,使用多晶硅的薄襟翼覆盖,并露出8×8阵列的20μm孔。提供了微百叶窗的表征,包括机械,电气和光学性质。该原型,其致动方案和用于各个微型器的其他设计已经建模和研究了可行性目的。另外,光学测试和以632nm Hene激光进行光学测试和表征由石英晶片的Al-Au合金制造的微型乳膏。

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