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A 0.4 V 6.4 μW 3.3 MHz CMOS Bootstrapped Relaxation Oscillator with ±0.71% Frequency Deviation over −30 to 100 °C for Wearable and Sensing Applications
Lei, K. M.; Mak, P. I.; Martins, R. P.
2018-05-01
Conference NameIEEE International Symposium on Circuits and Systems (ISCAS)
Source Publication2018 IEEE International Symposium on Circuits and Systems (ISCAS)
Conference DateMAY 27-30, 2018
Conference PlaceFlorence, ITALY
Abstract

Wearable and sensing electronics are evolving towards energy harvesting from the environment (e.g. thermal and solar energy). Ultra-low-voltage (ULV) circuits that allow direct-powering by sub-0.5 V energy sources can maximize the power efficiency. This work is a 0.4 V 65 nm CMOS relaxation oscillator with bootstrapped logic gates and outputs. The bootstrapped logic gates enable an output swing of 1.15 V surmounting the adverse effect of ULV digital circuits without extra voltage source. The ULV comparator with bulk-driven-inputs shows an 18 dB gain with 3 cascaded stages. Also, featuring a background delay-time cancellation scheme, the 3.3 MHz relaxation oscillator with built-in calibration exhibits a frequency deviation of ±0.71% and ±0.57% against temperature (−30 to 100 °C) and voltage (0.36 to 0.44 V) variations, respectively, from Monte-Carlo simulations (N=30). The simulated power consumption is 6.4 μW, resulting in an energy efficiency of 1.9 pJ per cycle.

KeywordCmos Relaxation Oscillator (Rxo) Bootstrap Bulk-driven Amplifier Ultra-low-voltage (Ulv) Wearable Devices
DOI10.1109/ISCAS.2018.8351650
URLView the original
Indexed ByCPCI-S
Language英語English
WOS Research AreaEngineering
WOS SubjectEngineering, Electrical & Electronic
WOS IDWOS:000451218703099
The Source to ArticlePB_Publication
Scopus ID2-s2.0-85057139923
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Citation statistics
Document TypeConference paper
CollectionUniversity of Macau
Corresponding AuthorMak, P. I.
Recommended Citation
GB/T 7714
Lei, K. M.,Mak, P. I.,Martins, R. P.. A 0.4 V 6.4 μW 3.3 MHz CMOS Bootstrapped Relaxation Oscillator with ±0.71% Frequency Deviation over −30 to 100 °C for Wearable and Sensing Applications[C], 2018.
APA Lei, K. M.., Mak, P. I.., & Martins, R. P. (2018). A 0.4 V 6.4 μW 3.3 MHz CMOS Bootstrapped Relaxation Oscillator with ±0.71% Frequency Deviation over −30 to 100 °C for Wearable and Sensing Applications. 2018 IEEE International Symposium on Circuits and Systems (ISCAS).
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