Complementary FET (CFET) Standard Cell Design for Low Parasitics and Its Impact on VLSI Prediction at 3-nm Process

Citations

SCOPUS

46

초록

Complementary field-effect transistor (CFET) is a future transistor type with a high potential to be used beyond 3-nm technology nodes. Despite its high future value, studies related to CFETs mostly focused on the device aspects. In other words, the path of CFET full-chip IC design is not fully demystified, knowing that various design factors/steps (such as schematic, layout, parasitics, design flow) must be considered on top of device traits for full-chip level IC. Therefore, this study focuses on enlightening the remaining factors/steps for full-chip IC design. In detail, we notify the importance of parasitics from various aspects of CFET design and provide optimization solutions. Compared to nanosheet FET (NSFET) on the full-chip scale, CFET shows a reduction of the area by -48.2%, power by -29.4%, total wirelength by -32.5%, and the number of cells by -18.1%. © 1993-2012 IEEE.

키워드

Complementary field-effect transistor (CFET); library; N3; parasitic analysis; process design kit (PDK); standard cell
제목
Complementary FET (CFET) Standard Cell Design for Low Parasitics and Its Impact on VLSI Prediction at 3-nm Process
저자
Park, Eunbin; Song, Taigon
DOI
10.1109/TVLSI.2022.3220339
발행일
2023
유형
Article
저널명
IEEE Transactions on Very Large Scale Integration (VLSI) Systems
권
31
호
2
페이지
177 ~ 187