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An Energy Efficient and Temperature Stable Digital FLL-Based Wakeup Timer With Time-Domain Temperature Compensation
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Title
An Energy Efficient and Temperature Stable Digital FLL-Based Wakeup Timer With Time-Domain Temperature Compensation
Issued Date
2024-07
Citation
Song, Minyoung. (2024-07). An Energy Efficient and Temperature Stable Digital FLL-Based Wakeup Timer With Time-Domain Temperature Compensation. IEEE Transactions on Circuits and Systems II: Express Briefs, 71(7), 3298–3302. doi: 10.1109/TCSII.2024.3365211
Type
Article
Author Keywords
Temperature measurementTime-domain analysisTemperature sensorsTime-frequency analysisResistorsWakeup timerfrequency-locked loop (FLL)Internet of Things (IoT)low-poweroscillatortemperature sensingreal-time clock (RTC)wake-up timerTemperature distributionFrequency modulation
ISSN
1549-7747
Abstract
This brief presents an on-chip digital intensive frequency-locked loop (DFLL)-based wakeup timer with a time-domain temperature compensation featuring a embedded temperature sensor. The proposed compensation exploits the deterministic temperature characteristics of two complementary resistors to stabilize the timer’s operating frequency across the temperature by modulating the activation time window of the two resistors. As a result, it achieves a fine trimming step (± 1 ppm), allowing a small frequency error after trimming (<± 20 ppm). By reusing the DFLL structure, instead of employing a dedicated sensor, the temperature sensing operates in the background with negligible power (2 %) and hardware overhead (< 1 %). The chip is fabricated in 40 nm CMOS, resulting in 0.9 pJ/cycle energy efficiency while achieving 8 ppm/∘C from -40∘C to 80∘C. IEEE
URI
http://hdl.handle.net/20.500.11750/57028
DOI
10.1109/TCSII.2024.3365211
Publisher
IEEE
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송민영
Song, Minyoung송민영

Department of Electrical Engineering and Computer Science

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