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A Second-Order Noise Shaping SAR ADC With Parallel Multiresidual Integrator
Journal article   Peer reviewed

A Second-Order Noise Shaping SAR ADC With Parallel Multiresidual Integrator

Yang Zhou, Wenjie Wang, Longbin Zhu, Zhengtao Zhu, Risheng Su, Jianan Zheng, Siyuan Xie, Jihong Li, Fanyi Meng, Zhijun Zhou, …
IEEE transactions on very large scale integration (VLSI) systems, Vol.32(11), pp.2135-2138
01/11/2024

Abstract

Analog-to-digital converter (ADC) Noise Noise shaping noise shaping (NS) parallel multiresidual (PMR) passive integrator Poles and zeros Quantization (signal) Registers Signal resolution successive approximation register (SAR) Very large scale integration
This brief proposes a parallel multiresidual (PMR) integrator to enhance the noise-shaping (NS) effect for successive approximation register (SAR) analog-to-digital converter (ADC). The PMR employs passive integrators in parallel to simultaneously integrate the average result of the multiple sequential residual voltages. The proposed PMR technique provides an alternative scheme to enhance the NS rather than increasing the order of the integrator to suppress the instability and power. A prototype 7-bit second-order NS-SAR ADC is designed and simulated in a 130-nm CMOS process. PMR increases the effective number of bits (ENOBs) to 10.6 bit, which enhances the NS effect of 3.6 bit. It achieves a peak signal-to-noise and distortion ratio (SNDR) of 65.84 dB over a bandwidth of 1.3 kHz at the oversampling ratio (OSR) of 16.

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