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A 160??120 Bio-Inspired Vision Chip for Edge Detection Using a MOS-type Photodetector for Logarithmic Active Pixel Sensor

机译:一个160?120生物启发视觉视觉芯片,用于使用MOS型光电探测器进行对数有源像素传感器的边缘检测

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In this paper, a vision chip for edge detection based on the structure of a biological retina is introduced. The key advantage of the structure is high speed of operation. However, the charge accumulation time of a conventional active pixel sensor limits its operation speed. In order to enhance the operation speed, a logarithmic APS using a metal-oxide-semiconductor-type photodetector was applied into the vision chip. By applying a MOS-type photodetector to a logarithmic APS, we could achieve sufficient output swing for a bio-inspired vision chip. We fabricated a 160times120 bio-inspired complementary metal-oxide-semiconductor vision chip using 0.35 mum two-poly four-metal complementary metal-oxide-semiconductor technology, and then investigated.
机译:本文介绍了基于生物视网膜结构的边缘检测视觉芯片。 结构的关键优势是高运行速度。 然而,传统的有源像素传感器的电荷累积时间限制其操作速度。 为了提高操作速度,将使用金属氧化物半导体型光电探测器的对数AP施加到视觉芯片中。 通过将MOS型光电探测器应用于对数APS,我们可以实现足够的输出摆动,用于生物启发的视觉芯片。 我们制造了使用0.35毫米双聚四金属互补金属氧化物 - 半导体技术的160×120生物启发互补金属氧化物半导体视觉芯片,然后调查。

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