陈远金, 常维静, 刘庆飞, 戴放, 王岭雪. 1 280×1 024 EMCCD纵向抗光晕设计[J]. 红外与激光工程, 2021, 50(11): 20210083. DOI: 10.3788/IRLA20210083
引用本文: 陈远金, 常维静, 刘庆飞, 戴放, 王岭雪. 1 280×1 024 EMCCD纵向抗光晕设计[J]. 红外与激光工程, 2021, 50(11): 20210083. DOI: 10.3788/IRLA20210083
Chen Yuanjin, Chang Weijing, Liu Qingfei, Dai Fang, Wang Lingxue. Design of 1 280×1 024 vertical antiblooming EMCCD[J]. Infrared and Laser Engineering, 2021, 50(11): 20210083. DOI: 10.3788/IRLA20210083
Citation: Chen Yuanjin, Chang Weijing, Liu Qingfei, Dai Fang, Wang Lingxue. Design of 1 280×1 024 vertical antiblooming EMCCD[J]. Infrared and Laser Engineering, 2021, 50(11): 20210083. DOI: 10.3788/IRLA20210083

1 280×1 024 EMCCD纵向抗光晕设计

Design of 1 280×1 024 vertical antiblooming EMCCD

  • 摘要: 1280×1024 EMCCD是一种内线转移结构的固态微光成像器件,具备从星光条件到阳光环境的全天时成像探测能力,可广泛用于航天遥感、视觉感知和无人驾驶等领域。但由于器件饱和输出的限制,当入射光强度很高的情况下,EMCCD会发生光晕现象,造成图像分辨率降低,影响EMCCD获取目标信息的能力。为了提升EMCCD环境适应性,避免光晕现象的产生,文中分析了EMCCD光晕产生的原因,介绍了纵向抗晕的工作原理,通过理论推导分析和数值模拟仿真的方法,设计了具有纵向抗晕结构的EMCCD像元,制作了具有抗晕功能的1280×1024 EMCCD器件和原理演示样机,仿真数据和测试结果表明,文中设计的纵向抗光晕结构EMCCD具有500倍抗晕能力。

     

    Abstract: 1280×1024 EMCCD is a solid-state low light level imaging device with interline transfer structure. It has the ability of all-time imaging and detection from starlight to sunlight environment. It can be widely used in space remote sensing, visual perception and manless driving. However, due to the limitation of device saturation output, when the incident light intensity is too high for EMCCD, blooming takes place, resulting in the reduction of image resolution and affecting the ability of EMCCD to obtain target information. In order to improve the environmental adaptability of EMCCD and avoid the occurrence of blooming, the causes of EMCCD blooming was analyzed, the working principle of vertical antiblooming was introduced, EMCCD pixels with vertical antiblooming structure were designed through theoretical derivation, analysis and numerical simulation, and a 1280×1024 EMCCD device and principle demonstration prototype with vertical antiblooming function were produced. The simulation data and test results show that the vertical antiblooming EMCCD designed in this paper has 500 times antiblooming ability.

     

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