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A 79.1dB-SNDR 20MHz-BW 2nd-Order SAR-Assisted Noise-Shaping Pipeline ADC with Gain and Offset Background Calibrations Based on Convergence Enhanced Split-Over-Time Architecture

机译:A 79.1DB-SNDR 20MHz-BW 2ND订购的SAR辅助噪声整形管道ADC,基于收敛增强的分流架构的增益和偏移背景校准

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Thanks to the noise-shaped comparator, Noise-Shaping SAR (NS-SAR) ADCs offer high resolution and simultaneously inherit the outstanding energy-efficiency from the SAR ADC [1] –[5]. The poor NS efficacy however calls for a large OSR/order to compensate [1], making a wide bandwidth (BW) and together with low power become challenge. The high speed NS-SAR in [2] only allows a passive NS configuration where its NS efficacy is degraded by the residue attenuation. To improve the efficacy while preserving low power, the dynamic amplifier (D-amp) is used in [3] and [4] to obtain the negative poles and optimized zeros, respectively. They however suffer from the slow sequential integration procedure, thus limiting the BW < 5MHz. In [5], the D-amp is adopted to enable both pipeline and 1st-order error feedback (EF) NS where it achieves a decent NS efficacy by incorporating the extra feed-forward (FF) path in the 2nd stage. Nevertheless, the NS effect is weaker than the ideal 2nd-order for stability consideration. In this work, the NS efficacy of SAR-assisted NS pipeline architecture is further extended to 2nd order with optimized zeros, utilizing only a single D-amp. It enables an 8.5 dB superior SQNR than [5] with a small OSR of 6.5. The prototype also includes a split-over-time facilitated offset and gain calibration with a convergence enhancement configuration.
机译:由于噪音形比较器,噪声整形SAR(NS-SAR)ADCS提供高分辨率,同时继承SAR ADC [1] - [5]的出色能效。然而,差的NS功效呼吁大型osr /命令来补偿[1],制作宽带宽(BW),以及低功耗成为挑战。 [2]中的高速NS-SAR仅允许被动NS构型,其中其NS功效因残余物衰减而降低。为了提高保留低功率的效果,动态放大器(D-AMP)在[3]和[4]中用于分别获得负极和优化的零。然而,它们遭受缓慢的顺序集成程序,从而限制了BW <5MHz。在[5]中,采用D-AMP来实现管道和1 st - 通过在2中结合额外的前馈(FF)路径,它通过结合额外的前馈(FF)路径来实现误差反馈(EF)NS。 nd 阶段。然而,NS效果比理想2弱 nd - 用于稳定性考虑。在这项工作中,SAR辅助NS管道架构的NS功效进一步扩展到2 nd 使用优化的零,仅利用单个D-AMP。它使8.5 dB优越的SQNR能够超过[5],小OSR为6.5。原型还包括分流促进的偏移并通过收敛增强配置增益校准。

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