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An Optimal Design Methodology of Ternary Logic in Iso-device Ternary CMOS
- Ko, Jonghyun;
- Park, Kwanwoo;
- Yong, Suhyeong;
- Jeong, Taegam;
- Kim, Taehak;
- ... Song, Taigon
SCOPUS
10초록
Studies report the possibility of the end of scaling, which is the key engine that has led the era of binary computers. Ternary computing is reported to have one of the highest potential to replace binary computers in the near future. Regarding this forecast, ternary CMOS (T-CMOS) is a device said to be a great candidate. However, research on actual circuit design must follow to verify its advantages fully. Thus, this paper studies the methodologies to design actual ternary logic based on T-CM OS devices. On top of the various novel ternary logic cells that we design, we propose an optimization technique to design arbitrary ternary logic with a minimum number of T-CMOS devices. Enlightening the usefulness of T-CMOS, we implemented a balanced ternary adder using only 68 transistors. Comparing between iso-device designs, we highlight that our ternary adder uses -30.6% fewer transistors than the most compact ternary adder currently-developed. © 2021 IEEE.
키워드
- 제목
- An Optimal Design Methodology of Ternary Logic in Iso-device Ternary CMOS
- 저자
- Ko, Jonghyun; Park, Kwanwoo; Yong, Suhyeong; Jeong, Taegam; Kim, Taehak; Song, Taigon
- 발행일
- 2021
- 유형
- Conference paper
- 권
- 2021-May
- 페이지
- 189 ~ 194
- 언어
- ENG
- 출판사
- IEEE Computer Society
- 분량
- 6 페이지
- ISSN
- P 0195-623X