A background calibration scheme for pipelined ADCs including non-linear operational amplifier gain and reference error correction

A. Larsson, S. Sonkusale
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引用次数: 10

Abstract

This paper presents a background noninvasive true calibration technique to correct for nonidealities in pipelined analog-to-digital converters (ADCs). Pipelined ADC suffers from finite nonlinear gain in amplifiers, ratio mismatch in capacitors, and errors in voltage references. Most calibration schemes do not account for reference voltage errors or nonlinearity in amplifiers, which introduce severe distortion in pipelined ADCs designed in a deep-submicron and nanometer-scale digital CMOS process. The proposed digital calibration scheme uses an insignificant, low-speed, low-power, high-resolution sigma-delta ADC to estimate a set of digital error-correction parameters in background using an adaptive LMS algorithm. The technique is shown to correct all static errors within a single framework - finite amplifier gain, capacitor ratio mismatch, voltage reference errors and amplifier nonlinearity. The scheme is demonstrated for a 14-bit A/D converter intended for speeds higher than 100Msample/s.
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一种包含非线性运算放大器增益和参考误差校正的流水线adc背景校正方案
本文提出了一种校正流水线模数转换器(adc)非理想性的背景非侵入式真校正技术。流水线ADC受到放大器有限非线性增益、电容比例失配和参考电压误差的困扰。大多数校准方案没有考虑放大器的参考电压误差或非线性,这在深亚微米和纳米级数字CMOS工艺中设计的流水线adc中引入了严重的失真。提出的数字校准方案使用一个无关的、低速度、低功耗、高分辨率的σ - δ ADC,使用自适应LMS算法在后台估计一组数字纠错参数。该技术被证明可以在单一框架内纠正所有静态误差-有限放大器增益,电容比失配,电压参考误差和放大器非线性。该方案在速度高于100Msample/s的14位a /D转换器上进行了演示。
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