DocumentCode
3742571
Title
Design of a 45nm 8-bit 2GS/s 250mW CMOS folding A/D converter with an adaptive digital error correction technique
Author
Yanghyuck Choi;Seonghyun Park;Mun-Kyo Lee;Sun-Phil Nah;Minkyu Song
Author_Institution
Dept. of Semiconductor Science, Dongguk University, 3-26, Phil-dong, Choong-ku, Seoul, Korea
fYear
2015
Firstpage
75
Lastpage
76
Abstract
An 8-bit 2GS/s 250mW low power folding A/D converter(ADC) with a 45nm CMOS technology is described. In order to reduce the power consumption, a new folding block with a shut-down circuit is proposed. The role of shut-down circuit selectively cuts off the power supply of folding amplifiers, according to the input analog voltage. Further, an adaptive digital error correction technique is discussed to reduce the code errors. The proposed ADC has been fabricated with a 1.2V 45nm 1-poly 8-metal CMOS process. The effective chip area is 1.98mm2 (ADC core : 1.1mm2, Calibration : 0.88mm2) and the power consumption is about 250mW. The measured SNDR is 46dB at the conversion rate of 2GS/s. The measured values of INL and DNL are within 2.5LSB and 1.0 LSB, respectively.
Keywords
"Semiconductor device measurement","Frequency measurement","CMOS integrated circuits","Error correction","Power demand","CMOS technology","Encoding"
Publisher
ieee
Conference_Titel
SoC Design Conference (ISOCC), 2015 International
Type
conf
DOI
10.1109/ISOCC.2015.7401640
Filename
7401640
Link To Document