4.7 Article

Investigation of Multiple-valued Logic Technologies for Beyond-binary Era

期刊

ACM COMPUTING SURVEYS
卷 54, 期 1, 页码 -

出版社

ASSOC COMPUTING MACHINERY
DOI: 10.1145/3431230

关键词

Multiple-valued logic (MVL); ternary logic; resonant tunneling diode (RTD); single electron transistor (SET); fin field effect transistor (FinFET); fully depleted silicon on insulator (FDSOI); quantum dot gate field effect transistor (QDGFET); memristor; carbon nano tube field effect transistor (CNTFET); graphene nano ribbon field effect transistor (GNRFET); memcapacitor; metal-insulator transition (MIT)

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Computing technologies are currently based on binary logic/number system, but there is a strong push to move towards a higher radix logic/number system to overcome the limitations of binary system as data processing needs increase. This push is motivated by anticipated saturation of Moore's law and the necessity to increase information density and processing speed in future micro and nanoelectronic circuits and systems.
Computing technologies are currently based on the binary logic/number system, which is dependent on the simple on and off switching mechanism of the prevailing transistors. With the exponential increase of data processing and storage needs, there is a strong push to move to a higher radix logic/number system that can eradicate or lessen many limitations of the binary system. Anticipated saturation of Moore's law and the necessity to increase information density and processing speed in the future micro and nanoelectronic circuits and systems provide a strong background and motivation for the beyond-binary logic system. In this review article, different technologies for Multiple-valued-Logic (MVL) devices and the associated prospects and constraints are discussed. The feasibility of the MVL system in real-world applications rests on resolving two major challenges: (i) development of an efficient mathematical approach to implement the MVL logic using available technologies, and (ii) availability of effective synthesis techniques. This review of different technologies for the MVL system is intended to perform a comprehensive investigation of various MVL technologies and a comparative analysis of the feasible approaches to implement MVL devices, especially ternary logic.

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