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首页> 外文期刊>Instrumentation and Measurement, IEEE Transactions on >Input-Dependent Integral Nonlinearity Modeling for Pipelined Analog–Digital Converters
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Input-Dependent Integral Nonlinearity Modeling for Pipelined Analog–Digital Converters

机译:流水线型模数转换器的输入相关积分非线性建模

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摘要

Integral nonlinearity (INL) for pipelined analog–digital converters (ADCs) operating at RF is measured and characterized. A parametric model for the INL of pipelined ADCs is proposed, and the corresponding least-squares problem is formulated and solved. The INL is modeled both with respect to the converter output code and the frequency stimuli, which is dynamic modeling. The INL model contains a static and a dynamic part. The former comprises two 1-D terms in ADC code that are a sequence of zero-centered linear segments and a polynomial term. The 2-D dynamic part consists of a set of polynomials whose parameters are dependent on the ADC input stimuli. The INL modeling methodology is applied to simulated and experimental data from a 12-bit commercial ADC running at 210 mega samples per second. It is demonstrated that the developed methodology is an efficient way to capture the INL of nowadays ADCs running at RF, and it is believed that the methodology is powerful for INL-based ADC postcorrection in wideband applications.
机译:测量并表征了在RF下工作的流水线模数转换器(ADC)的积分非线性(INL)。提出了流水线ADC的INL参数模型,并提出了相应的最小二乘问题。针对转换器输出代码和频率激励对INL进行建模,这是动态建模。 INL模型包含静态和动态部分。前者包括ADC代码中的两个一维项,它们是零中心线性段和多项式项的序列。二维动态部分由一组多项式组成,这些多项式的参数取决于ADC输入激励。 INL建模方法适用于以每秒210兆采样的速度运行的12位商用ADC的模拟和实验数据。可以证明,开发的方法是捕获当今运行于RF的ADC的INL的有效方法,并且相信该方法对于宽带应用中基于INL的ADC后校正是强大的。

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