DOI QR코드

DOI QR Code

Low Power Reliable Asynchronous Digital Circuit Design for Sensor System

센서 시스템을 위한 저전력 고신뢰의 비동기 디지털 회로 설계

  • Ahn, Jihyuk (Department of Electronic Engineering, Daegu University) ;
  • Kim, Kyung Ki (Department of Electronic Engineering, Daegu University)
  • Received : 2017.05.20
  • Accepted : 2017.05.26
  • Published : 2017.05.31

Abstract

The delay-insensitive Null Convention Logic (NCL) asynchronous design as one of innovative asynchronous logic design methodologies has many advantages of inherent robustness, power consumption, and easy design reuses. However, transistor-level structures of conventional NCL gate cells have weakness of high area overhead and high power consumption. This paper proposes a new NCL gate based on power gating structure. The proposed $4{\times}4$ NCL multiplier based on power gating structure is compared to the conventional NCL $4{\times}4$ multiplier and MTNCL(Multi-Threshold NCL) $4{\times}4$ multiplier in terms of speed, power consumption, energy and size using PTM 45 nm technology.

Keywords

References

  1. Huajun Chi, Sangman Kim, and Jusung Park, "Mixed Dualrail Data Encoding Method Proposal and Verification for Low Power Asynchronous System Design," Journal of IEEK, Vol. 51, No 7, pp. 66-102, 2014.
  2. Myeong-Hoon Oh, "Design of QDI Model Based Encoder/ Decoder Circuits for Low Delay-Power Product Data Transfers in GALS Systems," Journal of IEEK (SD), Vol. 43, No. 1, pp. 27-37, 2006.
  3. Scott C. Smith, Jia Di, "Designing Asynchronous Circuits using NULL Convention Logic (NCL)," Morgan & Claypool Publishers, 2009.
  4. F. A. Parsan, W. K. Al-Assadi, S. C. Smith, "Gate Mapping Automation for Asynchronous NULL Convention Logic Circuits," IEEE Trans. on VLSI Systems, Vol. 22, Issue 1, pp.99-112, Jan. 2014. https://doi.org/10.1109/TVLSI.2012.2231889
  5. Kyung Ki Kim, "Design and Implementation of low power ALU based on NCL (Null Convention Logic)," Journal of the Korea Industrial Information System Society, Vol. 18, No. 5, pp. 59-65, 2013.
  6. Zhou, L.; Parameswaran, R.; Parsan, F.A.; Smith, S.C.; Di, J. Multi-Threshold NULL ConventionLogic (MTNCL): An ultra-low power asynchronous circuit design methodology. J. Low PowerElectron. Appl. 2015, 5, 81-100. https://doi.org/10.3390/jlpea5020081