Design of a Capacitorless DRAM Based on Storage Layer Separated Using Separation Oxide and Polycrystalline Silicon

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SCOPUS

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초록

In this study, a capacitorless one-transistor dynamic random-access memory (1T-DRAM) based on a polycrystalline silicon (Poly-Si) metal-oxide-semiconductor field-effect transistor (MOSFET) with a storage layer separated using a separation oxide was designed and analyzed using technology computer-aided design (TCAD). The channel and storage layers were separated using a separation oxide to improve the inferior retention time of the conventional 1T-DRAM, and we adopted the underlap structure to reduce Shockley-Read-Hall recombination. In addition, poly-Si, which has several advantages, including low manufacturing cost and availability of high-density three-dimensional (3D) memory arrays, is used to easily fabricate silicon-on-insulator (SOI)-like structures. Accordingly, we extracted memory performance by analyzing the effect of grain boundary (GB). The proposed 1T-DRAM achieved a sensing margin of 14.10 mu A/mu m and a retention time of 251 ms at T = 358 K, even in the existence of a GB.

키워드

one-transistor dynamic random-access memory; metal-oxide-semiconductor field-effect transistor; polycrystalline silicon; 1T-DRAM; MEMORY; TRANSISTOR; TECHNOLOGY
제목
Design of a Capacitorless DRAM Based on Storage Layer Separated Using Separation Oxide and Polycrystalline Silicon
저자
Kim, Geon Uk; Yoon, Young Jun; Seo, Jae Hwa; Lee, Sang Ho; Park, Jin; Kang, Ga Eon; Heo, Jun Hyeok; Jang, Jaewon; Bae, Jin-Hyuk; Lee, Sin-Hyung; Kang, In Man
DOI
10.3390/electronics11203365
발행일
2022-10
유형
Article
저널명
ELECTRONICS
권
11
호
20