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A 68/36ppm/Degrees C Tc 32.768khz-To-1mhz Rc -Based Oscillator With 72/6pj Start-Up Energy

2019 IEEE CUSTOM INTEGRATED CIRCUITS CONFERENCE (CICC)(2019)

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Abstract
This paper describes a 32.768kHz-to-1MHz RC-based oscillator (RCO) suitable for high- and low-duty-cycle sleep-mode timers in emerging sensor node applications. In contrast to crystal oscillators (X()) based frequency references which employ long and energy intensive restarts, the proposed RC() achieves a 1000X reduction in restarting time. Measurement shows that the implemented RCO achieves a temperature stability of 68.5ppm/degrees C @32.768kHz and 37.5ppm/degrees C @1MHz. A proposed autonomous digital scheme uses coarse and fine tuning to compensate for process and temperature variations. Measurements report an energy efficiency of 1.46nW/k13z@IMHz occupying an area of 0 055mm(2) in a pure digital 180nm CMOS process node.
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