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A 0.8–1.2 V 10–50 MS/s 13-bit Subranging Pipelined-SAR ADC Using a Temperature-Insensitive Time-Based Amplifier

机译:使用温度不敏感的基于时间的放大器的0.8–1.2 V 10–50 MS / s 13位子范围流水线SAR ADC

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摘要

This paper presents an energy-efficient 13-bit 10-50 MS/s subranging pipelined-successive approximation register (SAR) analog-to-digital converter (ADC) with power supply scaling. In the presented ADC, an SAR-assisted subranging floating capacitive DAC switching algorithm reduces switching energy along with enhanced linearity and speed in the first-stage SAR ADC. A following temperature-insensitive time-based residue amplifier realizes open-loop residual amplification without background calibration, while maintaining the benefits of dynamic operation and noise filtering. Furthermore, asynchronous SAR control logic employs a pre-window technique to accelerate SAR logic operations. The prototype ADC was fabricated in a 130-nm CMOS process with an active area of 0.22 mm2. With a 1.2-V power supply and a Nyquist frequency input, the ADC consumes 1.32 mW at 50 MS/s and achieves signal-to-noise and distortion ratio and spurious-free dynamic range of 69.1 and 80.7 dB, respectively. The operating speed is scalable from 10 to 50 MS/s with a scalable power supply range of 0.8-1.2 V. Walden FoMs of 4-11.3 fJ/conversion-step are achieved.
机译:本文提出了一种具有电源缩放功能的高能效13位10-50 MS / s细分流水线逐次逼近寄存器(SAR)模数转换器(ADC)。在提出的ADC中,SAR辅助子级浮动电容DAC开关算法在第一级SAR ADC中降低了开关能量,并提高了线性度和速度。随后的温度不敏感的基于时间的残差放大器无需背景校准即可实现开环残差放大,同时保留了动态操作和噪声过滤的优势。此外,异步SAR控制逻辑采用预窗口技术来加速SAR逻辑操作。 ADC原型是在130 nm CMOS工艺中制造的,其有效面积为0.22 mm 2 。借助1.2V电源和奈奎斯特频率输入,该ADC在50 MS / s时的功耗为1.32 mW,信噪比和失真比以及无杂散动态范围分别为69.1 dB和80.7 dB。工作速度可在10至50 MS / s的范围内扩展,电源范围可在0.8-1.2 V范围内扩展。Walden FoM达到4-11.3 fJ /转换步长。

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