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Histogram-Based Calibration Method for Pipeline ADCs

机译:基于直方图的管道ADC校准方法

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摘要

Measurement and calibration of an analog-to-digital converter (ADC) using a histogram-based method requires a large volume of data and a long test duration, especially for a high resolution ADC. A fast and accurate calibration method for pipelined ADCs is proposed in this research. The proposed calibration method composes histograms through the outputs of each stage and calculates error sources. The digitized outputs of a stage are influenced directly by the operation of the prior stage, so the results of the histogram provide the information of errors in the prior stage. The composed histograms reduce the required samples and thus calibration time being implemented by simple modules. For 14-bit resolution pipelined ADC, the measured maximum integral non-linearity (INL) is improved from 6.78 to 0.52 LSB, and the spurious-free dynamic range (SFDR) and signal-to-noise-and-distortion ratio (SNDR) are improved from 67.0 to 106.2dB and from 65.6 to 84.8dB, respectively.
机译:使用基于直方图的方法进行模数转换器(ADC)的测量和校准需要大量数据,并且测试时间较长,尤其是对于高分辨率ADC而言。本文提出了一种快速,准确的流水线ADC校准方法。提出的校准方法通过每个阶段的输出组成直方图,并计算误差源。一级的数字化输出直接受前级操作的影响,因此直方图的结果提供了前级中的错误信息。组成的直方图减少了所需的样本,因此可以通过简单的模块实现校准时间。对于14位分辨率的流水线ADC,测得的最大积分非线性(INL)从6.78 LSB提高到0.52 LSB,无杂散动态范围(SFDR)和信噪比(SNDR)分别从67.0提高到106.2dB,从65.6提高到84.8dB。

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