DocumentCode :
1520711
Title :
A 26 \\mu W 8 bit 10 MS/s Asynchronous SAR ADC for Low Energy Radios
Author :
Harpe, Pieter J A ; Zhou, Cui ; Bi, Yu ; van der Meijs, N.P. ; Wang, Xiaoyan ; Philips, Kathleen ; Dolmans, Guido ; De Groot, Harmke
Author_Institution :
Hoist Centre, imec, Eindhoven, Netherlands
Volume :
46
Issue :
7
fYear :
2011
fDate :
7/1/2011 12:00:00 AM
Firstpage :
1585
Lastpage :
1595
Abstract :
This paper presents an asynchronous SAR ADC for flexible, low energy radios. To achieve excellent power efficiency for a relatively moderate resolution, various techniques are introduced to reduce the power consumption: custom-designed 0.5 fF unit capacitors minimize the analog power consumption while asynchronous dynamic logic minimizes the digital power consumption. The variability of the custom-designed capacitors is estimated by a specialized CAD tool and verified by chip measurements. An implemented 8-bit prototype in a 90 nm CMOS technology occupies 228 μm × 240 μm including decoupling capacitors, and achieves an ENOB of 7.77 bit at a sampling frequency of 10.24 MS/s. The power consumption equals 26.3 μW from a 1 V supply, thus resulting in an energy efficiency of 12 fJ/conversion-step. Moreover, the fully dynamic design, which is optimized for low-leakage, leads to a standby power consumption of 6 nW. In that way, the energy efficiency of this converter can be maintained down to very low sampling rates.
Keywords :
CMOS integrated circuits; analogue-digital conversion; capacitors; CAD tool; CMOS technology; ENOB; analog power consumption; asynchronous SAR ADC; capacitance 0.5 fF; chip measurements; custom-designed capacitors; decoupling capacitors; digital power consumption; low energy radios; power 26 muW; power 26.3 muW; power 6 nW; size 90 nm; successive approximation architecture; voltage 1 V; word length 7.77 bit; word length 8 bit; Capacitance; Capacitors; Layout; MIM capacitors; Metals; Power demand; Switches; ADC; CMOS; analog-to-digital conversion; asynchronous; successive approximation;
fLanguage :
English
Journal_Title :
Solid-State Circuits, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9200
Type :
jour
DOI :
10.1109/JSSC.2011.2143870
Filename :
5771068
Link To Document :
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