DocumentCode :
3605333
Title :
A 1 mW 71.5 dB SNDR 50 MS/s 13 bit Fully Differential Ring Amplifier Based SAR-Assisted Pipeline ADC
Author :
Yong Lim ; Flynn, Michael P.
Author_Institution :
Univ. of Michigan, Ann Arbor, MI, USA
Volume :
50
Issue :
12
fYear :
2015
Firstpage :
2901
Lastpage :
2911
Abstract :
This paper presents a 13 bit 50 MS/s fully differential ring amplifier based SAR-assisted pipeline ADC, implemented in 65 nm CMOS. We introduce a new fully differential ring amplifier, which solves the problems of single-ended ring amplifiers while maintaining the benefits of high gain, fast slew based charging and an almost rail-to-rail output swing. We implement a switched-capacitor (SC) inter-stage residue amplifier that uses this new fully differential ring amplifier to give accurate amplification without calibration. In addition, a new floated detect-and-skip (FDAS) capacitive DAC (CDAC) switching method reduces the switching energy and improves linearity of first-stage CDAC. With these techniques, the prototype ADC achieves measured SNDR, SNR, and SFDR of 70.9 dB (11.5b), 71.3 dB and 84.6 dB, respectively, with a Nyquist frequency input. The prototype achieves 13 bit linearity without calibration and consumes 1 mW. This measured performance is equivalent to Walden and Schreier FoMs of 6.9 fJ/conversion ·step and 174.9 dB, respectively.
Keywords :
CMOS integrated circuits; analogue-digital conversion; differential amplifiers; digital-analogue conversion; switched capacitor networks; CMOS integrated circuit; Nyquist frequency; SAR assisted pipeline ADC; digital-analog switching method; floated detect-and-skip capacitive DAC; fully differential ring amplifier; power 1 mW; single ended ring amplifier; size 65 nm; switched capacitor interstage residue amplifier; Capacitors; Gain; Linearity; Noise; Pipeline processing; Pipelines; Switches; ADC; SAR ADC; SAR-assisted pipeline ADC; analog to digital converter; energy efficient ADC; fully differential ring amplifier; low power ADC; pipeline ADC; pipelined SAR ADC; switched capacitor;
fLanguage :
English
Journal_Title :
Solid-State Circuits, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9200
Type :
jour
DOI :
10.1109/JSSC.2015.2463094
Filename :
7236937
Link To Document :
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