DocumentCode :
81394
Title :
Power and Bandwidth Scalable 10-b 30-MS/s SAR ADC
Author :
Byung-Geun Lee
Author_Institution :
Dept. of Mechatron., Gwangju Inst. of Sci. & Technol., Gwangju, South Korea
Volume :
23
Issue :
6
fYear :
2015
fDate :
Jun-15
Firstpage :
1103
Lastpage :
1110
Abstract :
A successive approximation register (SAR) analogto-digital converter (ADC) with a fixed antialiasing frequency that allows tradeoffs between power consumption and signal bandwidth is presented. The ADC, without increasing hardware complexity, can reduce power consumption significantly by skipping MSB conversions when they are unnecessary. By sampling and converting only the difference between two successive input samples, DAC capacitor switching power reduces as oversampling ratio (OSR) increases. For OSR = 1, a 1.2-V 10-b 30-MS/s ADC fabricated in 0.18-μm CMOS process consumes 980 μW and achieves signal-to-noise-plus-distortion ratio (SNDR) and spurios-free dynamic range (SFDR) of 56.2 and 68.6 dB, respectively, resulting in a figure-of-merit (FOM) of 67-fJ/conversion-step for a 14.1-MHz full-scale input. For OSR = 16, the ADC dissipating 231 μW from a 1.2-V supply, achieves a FOM of 42.7-fJ/conversion-step for a 1.125-MHz full-scale input.
Keywords :
CMOS integrated circuits; analogue-digital conversion; flip-flops; DAC capacitor switching power; SAR ADC; analog-to-digital converter; fixed antialiasing frequency; frequency 1.125 MHz; frequency 14.1 MHz; oversampling ratio; power 231 muW; power 980 muW; power consumption; signal bandwidth; signal-to-noise-plus-distortion ratio; size 0.18 mum; spurious-free dynamic range; successive approximation register; voltage 1.2 V; Adders; Bandwidth; Capacitors; Clocks; Noise; Signal resolution; Switches; Analog-to-digital converter (ADC); asynchronous switching; delta-sigma ADC; oversampling ration; successive approximation ADC; successive approximation ADC.;
fLanguage :
English
Journal_Title :
Very Large Scale Integration (VLSI) Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
1063-8210
Type :
jour
DOI :
10.1109/TVLSI.2014.2331354
Filename :
6849464
Link To Document :
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