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Neuromorphic optical sensor chip with color change-intensity change disambiguation

机译:具有变色强度变化消除歧义的神经形态光学传感器芯片

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In this paper, we describe the development of a novel, retina-like neuromorphic chip that has an array of two types of retina 'cells' arranged to mimic the fovea structure in certain animals. One of the two retina cell types performs irradiance detection and the other can perform color detection. Together, via the two parallel pathways the retina chip can perform color change intensity change disambiguation (CCICD). The irradiance detection cell has a wide-dynamic detection range that spans almost 3 orders of magnitude. The color detection cell has a buried double junction (BDJ) photodiode as the photoreceptor followed by two parallel logarithmic I-V converters. The output from this is a color response which has at least a 50nm resolution for wavelengths from 400nm to 900nm. With these two cells, the array can perform color change -intensity change disambiguation (CCICD) to determine if a change in the output of the irradiance pathway is because of irradiance change, color change, or both. This biological retina-like neuromorphic sensor array is implemented in ON-SEMI 0.5μm technology, a standard CMOS fabrication process available at MOSIS.
机译:在本文中,我们描述了一种新型的,类似视网膜的神经形态芯片的开发,该芯片具有两种类型的视网膜“细胞”阵列,可以模拟某些动物的中央凹结构。两种视网膜细胞类型中的一种执行辐照度检测,另一种可以执行颜色检测。视网膜芯片可以通过两条平行路径一起执行颜色变化强度变化消歧(CCICD)。辐照度检测单元具有广泛的动态检测范围,涵盖了几乎3个数量级。颜色检测单元具有一个埋入式双结(BDJ)光电二极管作为感光体,其后是两个并联的对数I-V转换器。它的输出是色彩响应,对于400nm至900nm的波长,分辨率至少为50nm。利用这两个单元,阵列可以执行颜色变化-强度变化消除歧义(CCICD),以确定辐照度路径输出的变化是否是由于辐照度变化,颜色变化或两者所致。这种生物类视网膜神经形态传感器阵列采用ON-SEMI0.5μm技术实现,这是MOSIS提供的标准CMOS制造工艺。

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