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Temporal Noise Analysis of Charge-Domain Sampling Readout Circuits for CMOS Image Sensors

机译:CMOS图像传感器的电荷域采样读出电路的时间噪声分析

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摘要

This paper presents a temporal noise analysis of charge-domain sampling readout circuits for Complementary Metal-Oxide Semiconductor (CMOS) image sensors. In order to address the trade-off between the low input-referred noise and high dynamic range, a Gm-cell-based pixel together with a charge-domain correlated-double sampling (CDS) technique has been proposed to provide a way to efficiently embed a tunable conversion gain along the read-out path. Such readout topology, however, operates in a non-stationery large-signal behavior, and the statistical properties of its temporal noise are a function of time. Conventional noise analysis methods for CMOS image sensors are based on steady-state signal models, and therefore cannot be readily applied for Gm-cell-based pixels. In this paper, we develop analysis models for both thermal noise and flicker noise in Gm-cell-based pixels by employing the time-domain linear analysis approach and the non-stationary noise analysis theory, which help to quantitatively evaluate the temporal noise characteristic of Gm-cell-based pixels. Both models were numerically computed in MATLAB using design parameters of a prototype chip, and compared with both simulation and experimental results. The good agreement between the theoretical and measurement results verifies the effectiveness of the proposed noise analysis models.
机译:本文介绍了互补金属氧化物半导体(CMOS)图像传感器的电荷域采样读出电路的时间噪声分析。为了解决低输入参考噪声和高动态范围之间的折衷问题,已提出基于Gm单元的像素以及电荷域相关双采样(CDS)技术,以提供一种有效的方式沿读出路径嵌入可调的转换增益。然而,这种读出拓扑以非文具的大信号行为运行,并且其时间噪声的统计特性是时间的函数。 CMOS图像传感器的常规噪声分析方法基于稳态信号模型,因此不能轻易应用于基于Gm单元的像素。在本文中,我们通过使用时域线性分析方法和非平稳噪声分析理论,开发了基于Gm单元的像素中的热噪声和闪烁噪声的分析模型,这有助于定量地评估Gm单元的时间噪声特性。基于Gm单元的像素。两种模型都是使用原型芯片的设计参数在MATLAB中进行数值计算的,并与仿真和实验结果进行了比较。理论和测量结果之间的良好一致性验证了所提出的噪声分析模型的有效性。

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