• DocumentCode
    1362936
  • Title

    Silicon Resonator Based 3.2 \\mu W Real Time Clock With \\pm 10 ppm Frequency Accuracy

  • Author

    Ruffieux, David ; Krummenacher, Francois ; Pezous, Aurélie ; Spinola-Durante, Guido

  • Author_Institution
    Centre Suisse d´´Electron. et de Microtech., Neuchatel, Switzerland
  • Volume
    45
  • Issue
    1
  • fYear
    2010
  • Firstpage
    224
  • Lastpage
    234
  • Abstract
    This paper presents an ultra-low power generic compensation scheme that is used to implement a real time clock based on an AlN-driven 1 MHz uncompensated silicon resonator achieving 3.2 μW power dissipation at 1 V and ±10 ppm frequency accuracy over a 0-50°C temperature range. It relies on the combination of fractional division and frequency interpolation for coarse and fine tuning respectively. By proper calibration and application of temperature dependent corrections, any frequency below that of the uncompensated resonator can be generated yielding programmability, resonator fabrication tolerances and temperature drift compensation without requiring a PLL. To minimize the IC area, a dual oscillator temperature measurement concept based on a ring oscillator/resistor thermal sensor was implemented yielding a resolution of 0.04°C. The IC was fabricated on a 0.18 μm 1P6M CMOS technology.
  • Keywords
    clocks; oscillators; resonators; temperature measurement; AlN-driven uncompensated silicon resonator; dual oscillator temperature measurement; fractional division; frequency 1 MHz; frequency interpolation; power 3.2 μW; real time clock; resistor thermal sensor; resonator fabrication tolerance; ring oscillator; temperature 0 °C to 50 °C; temperature dependent correction; temperature drift compensation; ultra-low power generic compensation scheme; CMOS technology; Clocks; Frequency conversion; Interpolation; Power dissipation; Ring oscillators; Silicon; Temperature dependence; Temperature distribution; Temperature sensors; MEMS; RTC; oscillator; piezoelectric thin film; silicon resonator; temperature sensor;
  • fLanguage
    English
  • Journal_Title
    Solid-State Circuits, IEEE Journal of
  • Publisher
    ieee
  • ISSN
    0018-9200
  • Type

    jour

  • DOI
    10.1109/JSSC.2009.2034434
  • Filename
    5357571