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A Robust and Fast Digital Background Calibration Technique for Pipelined ADCs

机译:流水线ADC的稳健而快速的数字背景校准技术

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This paper presents a background calibration scheme for pipelined analog-to-digital converters (ADCs) that is robust and has short calibration time. For a switched-capacitor (SC) pipeline stage, by splitting its input sampling capacitor, a random sequence can be injected into the ADC''s signal path, and then calibration data can be extracted from the ADC''s digital output without interrupting its normal conversion operation. Using an input-dependent scheme to generate the calibration random sequence, no additional signal range is required to accommodate the extra calibration signal. Furthermore, using random choppers to scramble signal can ensure that all necessary calibration data can be collected within a given time regardless of input conditions, resulting in a more robust ADC. A split-channel ADC architecture is proposed to reduce the calibration time. The split-channel ADC consists of two A/D channels that receive the same analog input but employ different random sequences for calibration. The calibration time can be greatly reduced by comparing the digital outputs from both channels and then removing the embedded perturbations before extracting the calibration data. The proposed calibration techniques are analyzed by using both theoretical formulation and system-level simulation.
机译:本文提出了一种鲁棒且校准时间短的流水线模数转换器(ADC)的背景校准方案。对于开关电容器(SC)管线级,通过分流其输入采样电容器,可以将随机序列注入ADC的信号路径,然后可以在不中断的情况下从ADC的数字输出中提取校准数据。正常的转换操作。使用依赖于输入的方案来生成校准随机序列,不需要额外的信号范围来容纳额外的校准信号。此外,使用随机斩波器对信号进行加扰可以确保无论输入条件如何,都可以在给定时间内收集所有必需的校准数据,从而获得更强大的ADC。提出了一种分离通道ADC架构,以减少校准时间。分离通道ADC由两个A / D通道组成,它们接收相同的模拟输入,但采用不同的随机序列进行校准。通过比较两个通道的数字输出,然后在提取校准数据之前去除嵌入的干扰,可以大大减少校准时间。通过使用理论公式和系统级仿真来分析所提出的校准技术。

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