26.1 A 1mW 71.5dB SNDR 50MS/S 13b fully differential ring-amplifier-based SAR-assisted pipeline ADC

Yong Lim, M. Flynn
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引用次数: 34

Abstract

The SAR-assisted pipeline ADC is an energy-efficient architecture for high resolution [1]. Consisting of two low-resolution charge-redistribution SARADCs coupled by a residue amplifier, a SAR-assisted pipeline ADC relaxes the noise requirements of the second stage and enhances the overall ADC speed while maintaining excellent power efficiency [1-4]. However, designs reported in [1,2] rely on power-hungry telescopic amplifiers that also limit the available inter-stage residue gain due to low output swing. A lower-power alternative is a dynamic amplifier, which operates as an open-loop time-domain integrator [3,4]. Although time-domain integration provides the benefit of noise filtering, the calibration required to achieve an accurate residue gain increases design complexity and test cost, and limits robustness. We introduce an uncalibrated fully differential ring-amplifier-based 13b 50MS/s rail-to-rail input swing SAR-assisted pipeline ADC with Waiden and Schreier (SNDR) FoMs of 6.9fJ/conversion-step and 174.9dB, respectively. We also present an improved DAC switching technique that further reduces the first DAC energy consumption and also reduces the DAC errors.
26.1 A 1mW 71.5dB SNDR 50MS/S 13b全差分环放大器sar辅助流水线ADC
sar辅助管道ADC是一种高分辨率的节能架构[1]。sar辅助的流水线ADC由两个低分辨率电荷再分配的saradc和一个残差放大器组成,降低了第二级的噪声要求,提高了整体ADC速度,同时保持了优异的功率效率[1-4]。然而,在[1,2]中报道的设计依赖于耗电的伸缩放大器,由于输出摆幅低,这也限制了可用的级间剩余增益。一种低功耗的替代方案是动态放大器,它作为开环时域积分器工作[3,4]。虽然时域集成提供了噪声滤波的好处,但实现准确剩余增益所需的校准增加了设计复杂性和测试成本,并限制了鲁棒性。我们介绍了一种未经校准的全差分环形放大器,基于13b 50MS/s轨对轨输入摆幅sar辅助管道ADC,其waden和Schreier (SNDR)波形分别为6.9fJ/转换步长和174.9dB。我们还提出了一种改进的DAC开关技术,该技术进一步降低了第一DAC的能量消耗并降低了DAC误差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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