Modeling of pixel sensors for image systems with VHDL-AMS

F. Dadouche, A. Pinna, P. Ganfla, A. Alexamlr
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引用次数: 3

Abstract

The design of mixed signal systems on chip is in a continuous growth these last few years. So the technical progress for systems integration allows the implementation of millions of active or passive pixel sensors (APS or PPS) on a same chip in order to define image matrix (system on chip). It has become crucial for the design of these systems to accurately predict their behavior prior to manufacture. Now the emergence of standard description languages as VHDL-AMS offers an effective and efficient way to describe these multiple domain and mixed-signal electronic systems. The aim of this work is the modeling of pixel sensors (APS and PPS), basic cells of CMOS image systems. Pixel sensors are composed of photodetectors for photogeneration of current and photocircuit for conversion and/or pre amplification of this current. PPS are usually associated to an operational amplifier (OPA). So in this paper the authors present models for each one of these parts and we instantiate them to simulate PPS and APS cells
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基于VHDL-AMS的图像系统像素传感器建模
近年来,片上混合信号系统的设计在不断发展。因此,系统集成的技术进步允许在同一芯片上实现数百万个有源或无源像素传感器(APS或PPS),以定义图像矩阵(片上系统)。在这些系统的设计中,在制造之前准确地预测它们的行为已经变得至关重要。现在,VHDL-AMS等标准描述语言的出现为描述这些多域混合信号电子系统提供了一种有效的方法。这项工作的目的是像素传感器(APS和PPS)的建模,CMOS图像系统的基本单元。像素传感器由用于产生光电流的光电探测器和用于转换和/或预放大该电流的光电电路组成。PPS通常与运算放大器(OPA)相关联。因此,在本文中,作者提出了每个部分的模型,并对它们进行了实例化,以模拟PPS和APS细胞
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