Title :
A 7-to-10b 0-to-4MS/s flexible SAR ADC with 6.5-to-16fJ/conversion-step
Author :
Harpe, Pieter ; Zhang, Yan ; Dolmans, Guido ; Philips, Kathleen ; De Groot, Harmke
Author_Institution :
Holst Centre / imec, Eindhoven, Netherlands
Abstract :
Applications like wireless sensor nodes require ultra-low-power ADCs. However, each application has different requirements for accuracy and bandwidth. Recent power-efficient ADCs for sensor applications are mostly designed for a fixed accuracy and a limited range of sample rates. An efficiently scalable sample rate (10kS/s to 10MS/s) has been demonstrated before, but without scalability of resolution. In, an ADC with both flexible resolution and sample rate is reported; however, its power efficiency is not as good as the point-solutions in. This paper describes a SAR ADC that achieves both good power efficiency (6.5-to-16fJ/conversion-step) and a wide range of flexibility (7-to-10b resolution, sample rates up to 4MS/s) to cover a large variety of applications, thereby reducing cost, design-time and overall complexity. To optimize the power efficiency for each resolution, both the DAC and comparator are reconfigurable. A 2-step conversion scheme is proposed for 9 and 10b settings to further reduce the power consumption. Finally, the use of an asynchronous architecture and dynamic circuitry ensures that the power consumption scales inherently proportional to the sample rate.
Keywords :
analogue-digital conversion; asynchronous circuits; comparators (circuits); digital-analogue conversion; flexible electronics; network synthesis; wireless sensor networks; 2-step conversion scheme; asynchronous architecture; comparator; dynamic circuitry; flexible SAR ADC; power consumption; power efficiency; power-efficient ADCs; resolution scalability; ultralow-power ADC; wireless sensor node; word length 7 bit to 10 bit; Accuracy; Arrays; CMOS integrated circuits; Capacitors; Noise; Power demand; Solid state circuits;
Conference_Titel :
Solid-State Circuits Conference Digest of Technical Papers (ISSCC), 2012 IEEE International
Conference_Location :
San Francisco, CA
Print_ISBN :
978-1-4673-0376-7
DOI :
10.1109/ISSCC.2012.6177096