Design of a ternary static memory cell using carbon nanotube-based transistors
Kae-Dyi You, Kundan Nepal
Abstract
Kae-Dyi You, Kundan Nepal
Abstract
In this Letter, the authors investigate the use of carbon nanotube-based field effect transistors (CNTFET) for the design of a ternary static random access memory (SRAM). The authors consider two designs – one using 8 transistors and the other using 14 transistors. Using circuit simulation models for CNTFETs, the authors show that both designs produce a functional ternary SRAM cell. The authors also measure the delay and power of the read-and-write operation of the ternary SRAM created using both models and show that the delays are comparable.
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In this Letter, the authors investigate the use of carbon nanotube-based field effect transistors (CNTFET) for the design of a ternary static random access memory (SRAM). The authors consider two designs – one using 8 transistors and the other using 14 transistors. Using circuit simulation models for CNTFETs, the authors show that both designs produce a functional ternary SRAM cell. The authors also measure the delay and power of the read-and-write operation of the ternary SRAM created using both models and show that the delays are comparable.
Key concepts: Carbon nanotube field-effect transistor, Static random-access memory, Ternary operation, Transistor, Memory cell, Carbon nanotube, Field-effect transistor, Computer science