Capacitorless One-Transistor Dynamic Random-Access Memory with Novel Mechanism: Self-Refreshing

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8

초록

In this paper, we propose for the first time a self-refreshing mechanism in a junctionless field-effect transistor (JLFET) based on one-transistor dynamic random-access memory (1T-DRAM) with a silicon-on-insulator (SOI) structure. The self-refreshing mechanism continuously creates holes by appropriately generating impact ionization during the holding process through the application of an appropriate operation bias voltage. This leads to self-refreshing, which prevents the recombination of holes. When using the self-refreshing mechanism for the proposed device, the sensing margins were 15.4 and 12.7 mu A/mu m at 300 and 358 K, respectively. Moreover, the device achieved an excellent performance retention time of >500 ms, regardless of the temperature of the 1T-DRAM with a single gate. Furthermore, cell disturbance analysis and voltage optimization were performed to evaluate the in-cell reliability of the proposed device. It also showed excellent performance in terms of energy consumption and writing speed.

키워드

junctionless field-effect transistor; silicon-on-insulator; one-transistor dynamic random-access memory; self-refreshing operation; DRAM; GATE; 1T-DRAM; MOSFET
제목
Capacitorless One-Transistor Dynamic Random-Access Memory with Novel Mechanism: Self-Refreshing
저자
Lee, Sang Ho; Park, Jin; Yoon, Young Jun; Kang, In Man
DOI
10.3390/nano14020179
발행일
2024-01
유형
Article
저널명
NANOMATERIALS
권
14
호
2