DocumentCode :
1503936
Title :
A 53-nW 9.1-ENOB 1-kS/s SAR ADC in 0.13- \\mu m CMOS for Medical Implant Devices
Author :
Zhang, Dai ; Bhide, Ameya ; Alvandpour, Atila
Author_Institution :
Dept. of Electr. Eng., Linkoping Univ., Linkoping, Sweden
Volume :
47
Issue :
7
fYear :
2012
fDate :
7/1/2012 12:00:00 AM
Firstpage :
1585
Lastpage :
1593
Abstract :
This paper describes an ultra-low power SAR ADC for medical implant devices. To achieve the nano-watt range power consumption, an ultra-low power design strategy has been utilized, imposing maximum simplicity on the ADC architecture, low transistor count and matched capacitive DAC with a switching scheme which results in full-range sampling without switch bootstrapping and extra reset voltage. Furthermore, a dual-supply voltage scheme allows the SAR logic to operate at 0.4 V, reducing the overall power consumption of the ADC by 15% without any loss in performance. The ADC was fabricated in 0.13-μm CMOS. In dual-supply mode (1.0 V for analog and 0.4 V for digital), the ADC consumes 53 nW at a sampling rate of 1 kS/s and achieves the ENOB of 9.1 bits. The leakage power constitutes 25% of the 53-nW total power.
Keywords :
CMOS analogue integrated circuits; CMOS digital integrated circuits; analogue-digital conversion; bioMEMS; biomedical electronics; biomedical equipment; design; power consumption; prosthetics; switching circuits; CMOS; dual-supply voltage scheme; full-range sampling; leakage power; matched capacitive DAC; medical implant devices; power 53 nW; power consumption; size 0.13 mum; switch bootstrapping; switching scheme; total power; transistor count; ultralow power SAR ADC; ultralow power design strategy; Capacitance; Capacitors; Layout; Leakage current; Power demand; Switches; Transistors; ADC; analog-to-digital conversion; leakage power consumption; low-power electronics; medical implant devices; successive approximation;
fLanguage :
English
Journal_Title :
Solid-State Circuits, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9200
Type :
jour
DOI :
10.1109/JSSC.2012.2191209
Filename :
6190725
Link To Document :
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