DocumentCode :
1705662
Title :
A 120nW 18.5kHz RC oscillator with comparator offset cancellation for ±0.25% temperature stability
Author :
Paidimarri, A. ; Griffith, D. ; Wang, Aiping ; Chandrakasan, Anantha P. ; Burra, G.
Author_Institution :
Massachusetts Inst. of Technol., Cambridge, MA, USA
fYear :
2013
Firstpage :
184
Lastpage :
185
Abstract :
Integrated low-frequency oscillators can replace crystal oscillators as sleep-mode timers to reduce the size and cost of wireless sensors [1]. Since the timer is one of the few continuously functioning circuits, minimizing its power consumption can greatly reduce sleep-mode power of highly duty-cycled systems. Temperature stability of the oscillator is important in order to minimize timing uncertainly and guard time for the radios, and thus maximizing sleep time. The voltage-averaging feedback method described in [2] achieves high stability in the MHz frequencies, but when scaled to the kHz range, requires very large filters. On the other extreme, gate leakage-based timers have been designed for sub-nW power consumption, but operate in the sub-Hz frequencies [3]. In the past, high accuracy RC oscillators in the kHz range have been designed with feed-forward correction [1] and self-chopped operation [4]. In this work, an offset cancellation architecture achieves long-term frequency stability and temperature stability while operating at lower power.
Keywords :
comparators (circuits); frequency stability; radiofrequency oscillators; RC oscillator; comparator offset cancellation; continuous functioning circuits; crystal oscillators; feedforward correction; frequency 18.5 kHz; gate leakage-based timers; highly duty-cycled systems; integrated low-frequency oscillators; long-term frequency stability; offset cancellation architecture; power 120 nW; power consumption; sleep-mode power reduction; sleep-mode timers; temperature stability; voltage-averaging feedback method; wireless sensors; Capacitors; Circuit stability; Delays; Oscillators; Temperature measurement; Temperature sensors; Thermal stability;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Solid-State Circuits Conference Digest of Technical Papers (ISSCC), 2013 IEEE International
Conference_Location :
San Francisco, CA
ISSN :
0193-6530
Print_ISBN :
978-1-4673-4515-6
Type :
conf
DOI :
10.1109/ISSCC.2013.6487692
Filename :
6487692
Link To Document :
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