边缘和运动检测使用生物启发CMOS视觉芯片鲁棒器件不匹配

Jong-Ho Park, Jung-Hwan Kim, Jang-Kyoo Shin, Minho Lee, P. Choi
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引用次数: 3

摘要

人的视网膜能够通过有效的机制检测物体的边缘和运动。通过对视网膜边缘和运动检测细胞的建模,设计并制作了CMOS视觉芯片。在CMOS制造过程中,影响mosfet特性的波动因素有很多,这种影响表现为视觉芯片的输出偏置。输出偏置影响整个视觉系统的工作效率。为了消除输出偏移,我们设计了一种利用CDS(相关双采样)技术进行边缘和运动检测的视觉芯片。采用0.6 um CMOS工艺制作了视觉芯片,并对其特性进行了测量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Edge and motion detection using a bio-inspired CMOS vision chip robust to device mismatches
Human retina is able to detect the edge and motion of the object by effective mechanism. We designed and fabricated a CMOS vision chip by modeling retinal cells involved in edge and motion detection. There are several fluctuation factors which affect characteristics of MOSFETs during CMOS fabrication process and this effect appears as output offset of the vision chip. The output offset affects the efficiency of entire vision system. In order to eliminate the output offset, we designed a vision chip for edge and motion detection utilizing CDS (correlated double sampling) technique. The designed vision chip was fabricated using 0.6 um CMOS process and the characteristics were measured.
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