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A 0.65-V 10-bit 320-kS/s SAR-ADC with Charge Average and Skip Switching Algorithm
Conference paper

A 0.65-V 10-bit 320-kS/s SAR-ADC with Charge Average and Skip Switching Algorithm

Yi-Han Ou-Yang, Cheng-Chun Wu and Kea-Tiong Tang
2018 IEEE Asia Pacific Conference on Circuits and Systems, APCCAS 2018, pp.98-101
01/2019

Abstract

charge averaging detect and skip energy efficiency Low power low voltage SAR ADC Biomedical Engineering Electrical and Electronic Engineering Instrumentation
A high resolution and low power fully differential 10-bit successive approximation register (SAR) analog-To-digital converter (ADC) is presented in this work aiming at neural signal data acquisition. By utilizing surplus energy restored by MSB-split capacitors of alternative switching structure both in conversion phase and reset phase, the proposed charge average and skip switching algorithm achieves superior DAC switching energy efficiency without the requirement of an external Vcm reference. Implemented in 180nm CMOS process, the proposed chip occupied a 0.0564-mm 2 core area. Operating at 320-kS/s sampling rate with 0.65-V supply voltage, it achieved an ENOB of 9.66-bit and FoM of 6.26 fJ/conv.-step. The measured DNL and INL results are within 0.29 LSB and 0.38 LSB, respectively.

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