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Design of an APS CMOS image sensor for low light level applications using standard CMOS technology

机译:使用标准CMOS技术为弱光应用设计APS CMOS图像传感器

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摘要

CMOS image sensors (or APS: Active pixel sensors) are now the technology of choice for most imaging applications, such as digital video cameras. Whereas their sensitivity doesn't reach the one of the best actual CCD's (whose fill factor is about 100%), they are now commonly used because of their multiple functionalities (windowing, on-chip signal processing) and their easy serial fabrication. In this paper, we present a study of different pixel photodiodes and architectures, in order to increase their sensitivity and reduce their spatial and temporal noise. These chips will be used in satellite star trackers, and should be hardened to radiation. Two different architectures are investigated. The first one uses the photodiode capacitance for signal integration, as it is usually done in literature [1-3]. This capacitance should be as lower as possible, to increase conversion factor (the gain of the pixel) and reduce reset noise, and that's why different standard CMOS photodiodes have been studied and quantified. The second architecture uses a low-value poly1/poly2 capacitor inside each pixel for signal integration, thus resulting in increasing the gain but degrading the fill factor.
机译:如今,CMOS图像传感器(或APS:有源像素传感器)已成为大多数成像应用(如数码摄像机)的首选技术。尽管它们的灵敏度没有达到最佳的实际CCD之一(其填充系数约为100%),但由于其多种功能(开窗,片上信号处理)以及易于串行制造,它们现在被普遍使用。在本文中,我们对不同的像素光电二极管和架构进行了研究,以提高其灵敏度并减少其空间和时间噪声。这些芯片将用于卫星恒星追踪器,并应进行辐射固化。研究了两种不同的体系结构。第一个使用光电二极管电容进行信号积分,正如文献[1-3]中通常所做的那样。该电容应尽可能低,以增加转换因子(像素的增益)并减少复位噪声,这就是为什么要研究和量化不同的标准CMOS光电二极管的原因。第二种架构在每个像素内部使用一个低值的poly1 / poly2电容器进行信号积分,从而导致增益增加但填充系数下降。

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