Adaptive power gating for function units in a microprocessor

Kimiyoshi Usami, Tatsunori Hashida, Satoshi Koyama, Tatsuya Yamamoto, Daisuke Ikebuchi, Hideharu Amano, Mitaro Namiki, Masaaki Kondo, Hiroshi Nakamura

研究成果: Conference contribution

7 被引用数 (Scopus)

抄録

This paper describes adaptive fine-grain control to power gate function units based on temperature dependent breakeven time (BET). An analytical model to express the temperature dependent BET is introduced and the accuracy of the model was examined. Results demonstrated that the model well represents the exponential decrease in BET with the temperature. Meanwhile, it was found that the accuracy gets worse at higher temperature and the cause is energy dissipation due to transient glitch at the wakeup. We propose four power-gating policies employing time-based or history-based approaches. Effectiveness in energy savings was evaluated using real design data of four function units in a microprocessor implemented in a 65nm technology. Results showed that introducing adaptive control to make use of temperature-dependent BET enhances energy savings by up to 21% in the time-based approach and by up to 18% in the history-based approach. The adaptive history-based policy with a limiter outperforms the adaptive time-based policy in energy savings and reduces the total energy of four function units to 11.8% at 100°C as compared to the non-powergating case.

本文言語English
ホスト出版物のタイトルProceedings of the 11th International Symposium on Quality Electronic Design, ISQED 2010
ページ29-37
ページ数9
DOI
出版ステータスPublished - 2010 5月 28
イベント11th International Symposium on Quality Electronic Design, ISQED 2010 - San Jose, CA, United States
継続期間: 2010 3月 222010 3月 24

出版物シリーズ

名前Proceedings of the 11th International Symposium on Quality Electronic Design, ISQED 2010

Other

Other11th International Symposium on Quality Electronic Design, ISQED 2010
国/地域United States
CitySan Jose, CA
Period10/3/2210/3/24

ASJC Scopus subject areas

  • 電子工学および電気工学

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