光电探测器
动态范围
对偶(语法数字)
视网膜
双模
视网膜
图像传感器
模式(计算机接口)
Cone(正式语言)
光学
材料科学
高动态范围
光电子学
物理
计算机科学
眼科
工程类
医学
电子工程
算法
艺术
文学类
操作系统
作者
Shuren Zhou,Haodong Fan,Shaofeng Wen,Yiyang Wei,Haohan Chen,Yunchen Zhang,Tao Zou,Pan Gao,Dapeng Wei,Yi Yin,Changyong Lan,Chun Li,Yong Liu
标识
DOI:10.1002/lpor.202402192
摘要
Abstract Capturing images with high fidelity that can discern objects in scenes across diverse lighting conditions is crucial for machine vision systems. Despite great efforts that have been adopted in conventional silicon‐photodiode‐based image sensors to achieve a high dynamic range (HDR), their dynamic range is still limited. Inspired by the dynamic adaptability of retinal cone/rod cells, a novel dual‐mechanism bionic vision sensor based on silicon‐on‐insulator and graphene stacks is reported. Under reverse bias, the device functions as a cone cell in photodiode mode, while under forward bias, it transitions to photoconductor mode, mimicking the behavior of a rod cell. This robust switch between photodiode and photoconductor modes mimics the complementary versatility of cone and rod cells in diverse lighting scenarios, achieving an expansive dynamic perception range of up to 170 dB. With response times of 5 ns and 4 µs in photodiode and photoconductor modes, respectively, the device fulfills the rapid response requisites of machine vision. Furthermore, imaging fusions are demonstrated by combining mean filtering based on images captured by the detector operating at different modes. This pioneering development offers a new device architecture that elevates the performance of photodetectors in image sensors for future machine vision systems.
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