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A two terminal optical signal and image processing p-i-n/p-i-n image and colour sensor

机译:两端光信号和图像处理p-i-n / p-i-n图像和色彩传感器

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摘要

A two terminal optically addressed image processing device based on two stacked sensing/switching p-i-n a-SiC:H diodes is presented. The charge packets are injected optically into the p-i-n sensing photodiode and confined at the illuminated regions changing locally the electrical field profile across the p-i-n switching diode. A red scanner is used for charge readout. The various design parameters and addressing architecture trade-offs are discussed. The influence on the transfer functions of an a-SiC:H sensing absorber optimized for red transmittance and blue collection or of a floating anode in between is analysed. Results show that the thin a-SiC:H sensing absorber confines the readout to the switching diode and filters the light allowing full colour detection at two appropriated voltages. When the floating anode is used the spectral response broadens, allowing B&W image recognition with improved light-to-dark sensitivity. A physical model supports the image and colour recognition process.
机译:提出了基于两个堆叠的感测/开关式p-i-n a-SiC:H二极管的两端光学寻址图像处理设备。电荷包以光学方式注入到p-i-n传感光电二极管中,并被限制在照明区域,从而局部改变p-i-n开关二极管上的电场分布。红色扫描仪用于电荷读取。讨论了各种设计参数和解决架构的权衡问题。分析了对优化用于红色透射率和蓝色收集的a-SiC:H传感吸收剂或两者之间的浮置阳极的传递函数的影响。结果表明,薄的a-SiC:H传感吸收器将读数限制在开关二极管中,并对光进行过滤,从而允许在两个适当的电压下进行全色检测。当使用浮动阳极时,光谱响应会变宽,从而可以以更高的明暗灵敏度识别黑白图像。物理模型支持图像和颜色识别过程。

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