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Analysis of Subthreshold Current Reset Noise in Image Sensors

机译:图像传感器中亚阈值电流复位噪声的分析

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摘要

To discuss the reset noise generated by slow subthreshold currents in image sensors, intuitive and simple analytical forms are derived, in spite of the subthreshold current nonlinearity. These solutions characterize the time evolution of the reset noise during the reset operation. With soft reset, the reset noise tends to mkT/2CPD when t →  ∞ , in full agreement with previously published results. In this equation, CPD is the photodiode (PD) capacitance and m is a constant. The noise has an asymptotic time dependence of t−1, even though the asymptotic time dependence of the average (deterministic) PD voltage is as slow as logt. The flush reset method is effective because the hard reset part eliminates image lag, and the soft reset part reduces the noise to soft reset level. The feedback reset with reverse taper control method shows both a fast convergence and a good reset noise reduction. When the feedback amplifier gain, A, is larger, even small value of capacitance, CP, between the input and output of the feedback amplifier will drastically decrease the reset noise. If the feedback is sufficiently fast, the reset noise limit when t →  ∞ , becomes mkT(CPD+CP1)22q2A(CPD+(1+A)CP) in terms of the number of electron in the PD. According to this simple model, if CPD = 10 fF, CP/CPD = 0.01, and A = 2700 are assumed, deep sub-electron rms reset noise is possible.
机译:为了讨论图像传感器中缓慢的亚阈值电流产生的复位噪声,尽管存在亚阈值电流非线性,但仍可以得出直观而简单的分析形式。这些解决方案表征了复位操作期间复位噪声的时间演变。使用软复位时,复位噪声趋于 < mrow> m k T / 2 C <当t→∞时/ mi> P D ,与先前发布的结果完全一致。在此等式中,CPD是光电二极管(PD)的电容,m是常数。尽管平均(确定性)PD电压的渐近时间依赖性与logt一样慢,但噪声具有t -1 的渐近时间依赖性。刷新重置方法之所以有效,是因为硬重置部分消除了图像滞后,而软重置部分将噪声降低到了软重置级别。具有反向锥度控制方法的反馈复位显示出快速收敛和良好的复位降噪效果。当反馈放大器增益A较大时,即使在反馈放大器的输入和输出之间的电容CP的值很小,也将大大降低复位噪声。如果反馈足够快,则t→∞时的重置噪声限制将变为 m k T C P D + C P 1 2 2 q 2 A C P D + 1 + A C P < / msub> (以PD中的电子数表示)。根据此简单模型,如果假设CPD = 10 fF,CP / CPD = 0.01,A = 2700,则可能会产生深亚电子均方根复位噪声。

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