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A Volterra Series Nonlinear Model of the Sampling Distortion in Flash ADCs Due to Substrate Noise Coupling

机译:衬底噪声耦合引起的Flash ADC采样失真的Volterra级数非线性模型

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摘要

This brief presents a Volterra series model to evaluate the impact of substrate noise on Flash analog-to-digital converters. The proposed approach first relates substrate noise to the induced timing uncertainty of the comparator by means of an analytical linear model. The analysis then expresses the resulting sampling distortion power by also considering the comparator's nonlinearities and thus models the signal-to-noise-and-distortion ratio (SNDR) of the converter. In particular, it is shown that substrate noise causes an FM modulation of the clock, and the resulting timing error is a joint effect of AM–FM modulation of the input signal and the coupled noise. The derivation of the analytical expression is also valid for any multitone ground perturbation and is validated on a high-resolution Flash converter. The developed nonlinear model for the SNDR is found to almost double the noise amplitude range compared with the linear model, thus predicting the impact of realistically large noise signals.
机译:本简介介绍了Volterra系列模型,以评估基板噪声对Flash模数转换器的影响。所提出的方法首先通过解析线性模型将基板噪声与比较器的感应时序不确定性相关。然后,分析还通过考虑比较器的非线性度来表达所产生的采样失真功率,从而对转换器的信噪比(SNDR)进行建模。特别是,显示出基板噪声会导致时钟的FM调制,并且由此产生的时序误差是输入信号的AM–FM调制和耦合噪声的共同影响。解析表达式的推导对于任何多音地面扰动也是有效的,并且已在高分辨率Flash转换器上进行了验证。与线性模型相比,已发现为SNDR开发的非线性模型几乎使噪声幅度范围增加了一倍,从而预测了现实中较大噪声信号的影响。

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