Qi Shaocheng, Cunha Joao, Guo Tian-Long, Chen Peiqin, Proietti Zaccaria Remo, Dai Mingzhi
School of Materials Science and Engineering Shanghai University Shanghai 200444 China.
Ningbo Institute of Materials Technology and Engineering Chinese Academy of Sciences Ningbo 315201 P. R. China.
Adv Sci (Weinh). 2020 Jan 24;7(6):1901224. doi: 10.1002/advs.201901224. eCollection 2020 Mar.
Logic functions are the key backbone in electronic circuits for computing applications. Complementary metal-oxide-semiconductor (CMOS) logic gates, with both n-type and p-type channel transistors, have been to date the dominant building blocks of logic circuitry as they carry obvious advantages over other technologies. Important physical limits are however starting to arise, as the transistor-processing technology has begun to meet scaling-down difficulties. To address this issue, there is the crucial need for a next-generation electronics era based on new concepts and designs. In this respect, a single-type channel multigate MOS transistor (SMG-MOS) is introduced holding the two important aspects of processing adaptability and low static dissipation of CMOS. Furthermore, the SMG-MOS approach strongly reduces the footprint down to 40% or even less area needed for current CMOS logic function in the same processing technology node. Logic NAND, NOT, AND, NOR, and OR gates, which typically require a large number of CMOS transistors, can be realized by a single SMG-MOS transistor. Two functional examples of SMG-MOS are reported here with their analysis based both on simulations and experiments. The results strongly suggest that SMG-MOS can represent a facile approach to scale down complex integrated circuits, enabling design flexibility and production rates ramp-up.
逻辑功能是计算应用电子电路中的关键支柱。互补金属氧化物半导体(CMOS)逻辑门,包含n型和p型沟道晶体管,迄今为止一直是逻辑电路的主要构建模块,因为它们相对于其他技术具有明显优势。然而,随着晶体管处理技术开始遇到缩小尺寸的困难,重要的物理限制开始出现。为了解决这个问题,迫切需要基于新概念和设计的下一代电子时代。在这方面,引入了单型沟道多栅MOS晶体管(SMG-MOS),它兼具CMOS的处理适应性和低静态功耗这两个重要特性。此外,在相同的处理技术节点下,SMG-MOS方法能将所需面积大幅减少至当前CMOS逻辑功能所需面积的40%甚至更小。通常需要大量CMOS晶体管的逻辑与非门、非门、与门、或非门和或门,都可以由单个SMG-MOS晶体管实现。这里报告了SMG-MOS的两个功能示例,并基于模拟和实验对其进行了分析。结果有力地表明,SMG-MOS可以成为缩小复杂集成电路规模的简便方法,实现设计灵活性并提高生产率。