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Rotary traveling wave oscillator frequency division at nanoscale technologies

Published: 02 May 2013 Publication History
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    References

    [1]
    W. Andress and D. Ham. Standing wave oscillators utilizing wave-adaptive tapered transmission lines. IEEE Journal of Solid-State Circuits, 40(3):638--651, March 2005.
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    V. Cordero and S. Khatri. Clock distribution scheme using coplanar transmission lines. In Design, Automation and Test in Europe (DATE) Proceedings, pages 985--990, March 2008.
    [3]
    J.Wood. Frequency Divider. Patent: US 2008/0258780A1, Oct. 2008.
    [4]
    J. Lu, V. Honkote, X. Chen, and B. Taskin. Steiner tree based rotary clock routing with bounded skew and capacitive load balancing. In Design, Automation and Test in Europe (DATE) Proceedings, pages 455--460, March 2011.
    [5]
    V. Sathe, S. Arekapudi, C. Ouyang, et al. Resonant clock design for a power-efficient high-volume x86-64 microprocessor. In IEEE International Solid-State Circuits Conference (ISSCC) Proceedings, pages 68--70, feb. 2012.
    [6]
    Y. Teng and B. Taskin. Synchronization scheme for brick-based rotary oscillator arrays. In ACM Great Lakes Symposium on VLSI (GLSVLSI) Proceedings, pages 117--122, May 2012.
    [7]
    J. Wood, T. Edwards, and S. Lipa. Rotary traveling-wave oscillator arrays: A new clock technology. IEEE Journal of Solid-State Circuits, 36(11):1654--1665, November 2001.

    Cited By

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    • (2018)Low Frequency Rotary Traveling Wave Oscillators2018 IEEE International Symposium on Circuits and Systems (ISCAS)10.1109/ISCAS.2018.8351205(1-5)Online publication date: May-2018

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    1. Rotary traveling wave oscillator frequency division at nanoscale technologies

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      cover image ACM Conferences
      GLSVLSI '13: Proceedings of the 23rd ACM international conference on Great lakes symposium on VLSI
      May 2013
      368 pages
      ISBN:9781450320320
      DOI:10.1145/2483028

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      Association for Computing Machinery

      New York, NY, United States

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      Published: 02 May 2013

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      Author Tags

      1. clocking
      2. frequency divider
      3. oscillator
      4. resonant
      5. vlsi

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      GLSVLSI '13 Paper Acceptance Rate 76 of 238 submissions, 32%;
      Overall Acceptance Rate 312 of 1,156 submissions, 27%

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      • (2018)Low Frequency Rotary Traveling Wave Oscillators2018 IEEE International Symposium on Circuits and Systems (ISCAS)10.1109/ISCAS.2018.8351205(1-5)Online publication date: May-2018

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