← 返回 JSSC 论文列表JSSC 2022第3期Data Converters28nmPipeline ADC
A 20 MHz Bandwidth 79 dB SNDR SAR-Assisted Noise-Shaping Pipeline ADC With Gain and
一种20MHz带宽、79dB SNDR的SAR辅助噪声整形流水线ADC,具有优化的噪声传递函数零点和背景校准功能。
28nm CMOS, 1V, 260MS/s, 20MHz带宽, 79.1dB SNDR, 3.1mW功耗
SAR辅助ADC噪声整形流水线ADC背景校准高能效
▸创新点1:优化的噪声传递函数(NTF)零点设计,通过误差反馈(EF)结构实现二阶噪声整形,显著提升带内噪声抑制能力,使ADC在20 MHz带宽下实现79 dB的SNDR。
▸创新点2:背景级间增益和偏移校准技术,采用分时架构和电平移位增益校准,确保ADC的鲁棒性,同时硬件支持快速收敛(4000周期)的偏移校准,提升系统稳定性。
▸创新点3:创新的分时架构与电平移位增益校准,通过共享比较器和EF电容轮换技术,减少硬件开销和功耗,实现260 MHz采样率和3.1 mW低功耗。
▸创新点4:结合粗SAR ADC和部分交织技术,优化噪声整形流水线结构,在高采样率下保持低功耗和强噪声抑制,Schreier品质因数(FoMS)达177.2 dB。
Abstract
This article presents a second-order succes- sive approximation register (SAR )-assisted noise-shaping (NS) pipeline analog-to-digital converter (ADC) with optimized noise transfer function (NTF) zeros, background inter-stage gain, and offset calibrations. The NS, realized with an error-feedback (EF) structure, takes place in the second stage of the pipeline. A single amplifier, utilized for residue handover, realizes the EF and the optimized zeros. Copies of the EF capacitors allow their rotation role for residue saving, feedback, and sampling operations, thus omitting the extra phase for the EF operation. While further incorporating a coarse SAR ADC and partial interleaving techniques, the prototype can run at high speed with low power and strong in-band noise suppression. A split- over-time architecture with level-shift-based gain calibration is introduced to ensure the robustness of the ADC, whose hardware also facilitates the offset calibration. Besides, the split second- stage ADCs also share a single comparator, thus enabling a mismatch error insensitive split-ADC architecture with a fast convergence speed of 4000 cycles. Fabricated in 28 nm CMOS, the ADC prototype runs at a 260 MHz sampling rate and retains 20 MHz bandwidth (BW) with a signal-to-noise-and-distortion ratio (SNDR) of 79.1 dB under a small over-sampling ratio (OSR) of 6.5. It consumes 3.1 mW power at a 1 V supply and yields a Schreier figure-of-merit (FoM S) of 177.2 dB.