Design and Fabrication of A Film Transducer with Composite Microstructures for IR Scene Projection

Lang Zhou, Tuo Li, Zhuo Li, Kai Liu, Hongtao Man
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Abstract

A MEMS film transducer used for infrared scene projection was reported. It can absorb the heat of an incident visible image and convert it into an infrared image. The transducer was designed as a thin self-suspended polyimide film with periodic composite microstructure arrays of $1300\times 1300$ and high absorption of 95% in visible wavelength range. The large arrays fabricated by MEMS processes were used to limit in-plane thermal diffusion and enhance radiation spatial resolution. Based on the transducer, high equivalent blackbody temperature of 550 K was obtained at a laser power density of 1.4 W/cm2. Linear radiation power density could be controlled. High resolution infrared images were successfully generated in dual infrared bands of 3-5 and 8-12μm. These results proved the MEMS film transducer was a promising candidate in the large-scale dual-band infrared scene projection.
红外场景投影用复合微结构薄膜传感器的设计与制造
报道了一种用于红外场景投影的MEMS薄膜传感器。它可以吸收入射可见光图像的热量,并将其转换成红外图像。该换能器设计为自悬浮聚酰亚胺薄膜,具有1300\ × 1300$的周期性复合微结构阵列,在可见波长范围内具有95%的高吸收率。采用MEMS工艺制作的大型阵列可以限制平面内热扩散,提高辐射空间分辨率。基于该传感器,在激光功率密度为1.4 W/cm2时获得了550 K的高等效黑体温度。线性辐射功率密度可以控制。在3 ~ 5 μm和8 ~ 12μm双红外波段成功生成高分辨率红外图像。这些结果证明了MEMS薄膜传感器是大规模双波段红外场景投影的理想选择。
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