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Reduction Process of Dislocation and Standby Leakage Current for Embedded Flash Memory Using Nano-Scale Integration
- Sun, Jong-Won;
- Park, Ji Hwan;
- Yang, Taek-Seung;
- Choi, Heesoo;
- Cui, Yinhua;
- ... Kim, Soo-Kil;
- ... Son, Hyungbin;
- ... Pyo, Sung Gyu;
- 외 7명
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1초록
We determined that the use of densification, sacrificial oxidation, gate oxidation and source/drain implantation has the capability to reduce the dislocation. A dislocation-free process is proposed, and its mechanism presented in embedded flash memory. The dislocation decreased when n-type ions were implanted at a low energy level for source and drain. A dry oxidation process using only oxygen without hydrogen and oxidation for logic gates led to the formation of a sacrificial oxide on the rapid thermal oxidation (RTP) methods without densification after gap-filling as reducing dislocation processes. These methods dramatically reduced the standby leakage current.
키워드
Embedded Flash Memory; Dislocation; Leakage Current; Rapid Thermal Oxidation; Nano Integration; FLOATING-GATE; NANOPARTICLES; TRANSISTOR; DEVICES; FILM
- 제목
- Reduction Process of Dislocation and Standby Leakage Current for Embedded Flash Memory Using Nano-Scale Integration
- 저자
- Sun, Jong-Won; Park, Ji Hwan; Yang, Taek-Seung; Choi, Heesoo; Cui, Yinhua; Choi, Eunmi; Kim, Areum; Oh, Lee Seul; Lee, Sun Jae; Park, Hyunjin; Kim, Chang Hyun; Kim, Soo-Kil; Son, Hyungbin; Lee, Dong Hyun; Pyo, Sung Gyu
- 발행일
- 2013-06
- 유형
- Article
- 권
- 13
- 호
- 6
- 페이지
- 4291 ~ 4296
- 언어
- ENG
- 출판사
- AMER SCIENTIFIC PUBLISHERS
- 발행국가
- 미국
- 분량
- 6 페이지
- ISSN
- E 1533-4899
P 1533-4880