A novel static random-access memory (SRAM) cell with nine carbon nanotube MOSFETs (9-CN-MOSFETs) is proposed in this paper. With the new 9-CN-MOSFET SRAM cell, the read data stability is enhanced by 99.09%, while providing similar read speed as compared with the conventional six-transistor (6T) SRAM cell in a 16-nm carbon nanotube transistor technology. The worst-case write voltage margin is increased by (4.57\times ) and (3.90\times ) with the proposed 9-CN-MOSFET SRAM cell as compared with the conventional 6T SRAM cell and a previously published eight-transistor (8T) SRAM cell, respectively. A 1 Kibit SRAM array with the new memory cells consumes 34.18% and 12.27% lower leakage power as compared with the memory arrays with 6T and 8T SRAM ...
AbstractThis paper presents different low-leakage power Carbon NanoTube FET (CNTFET) based SRAM cell...
The size and parameter optimization for the 5-nm carbon nanotube field effect transistor (CNFET) sta...
As the feature size of silicon semiconductor devices scales down to nanometer range, planar bulk CMO...
A novel static random-access memory (SRAM) cell with nine carbon nanotube MOSFETs (9-CN-MOSFETs) is ...
A novel static random-access memory (SRAM) cell with nine carbon nanotube MOSFETs (9-CN-MOSFETs) is ...
A novel static random-access memory (SRAM) cell with nine carbon nanotube MOSFETs (9-CN-MOSFETs) is ...
A novel static random-access memory (SRAM) cell with nine carbon nanotube MOSFETs (9-CN-MOSFETs) is ...
A novel static random-access memory (SRAM) cell with nine carbon nanotube MOSFETs (9-CN-MOSFETs) is ...
A novel static random-access memory (SRAM) cell with nine carbon nanotube MOSFETs (9-CN-MOSFETs) is ...
A novel static random-access memory (SRAM) cell with nine carbon nanotube MOSFETs (9-CN-MOSFETs) is ...
A novel static random-access memory (SRAM) cell with nine carbon nanotube MOSFETs (9-CN-MOSFETs) is ...
A novel static random-access memory (SRAM) cell with nine carbon nanotube MOSFETs (9-CN-MOSFETs) is ...
Metallic carbon nanotubes (m-CNs) cause malfunction by shorting the source and drain terminals in ca...
In deep sub-micron technology, leakage power consumption has become a major concern in VLSI circuits...
Thesis (Ph.D.), School of Electrical Engineering and Computer Science, Washington State UniversityIn...
AbstractThis paper presents different low-leakage power Carbon NanoTube FET (CNTFET) based SRAM cell...
The size and parameter optimization for the 5-nm carbon nanotube field effect transistor (CNFET) sta...
As the feature size of silicon semiconductor devices scales down to nanometer range, planar bulk CMO...
A novel static random-access memory (SRAM) cell with nine carbon nanotube MOSFETs (9-CN-MOSFETs) is ...
A novel static random-access memory (SRAM) cell with nine carbon nanotube MOSFETs (9-CN-MOSFETs) is ...
A novel static random-access memory (SRAM) cell with nine carbon nanotube MOSFETs (9-CN-MOSFETs) is ...
A novel static random-access memory (SRAM) cell with nine carbon nanotube MOSFETs (9-CN-MOSFETs) is ...
A novel static random-access memory (SRAM) cell with nine carbon nanotube MOSFETs (9-CN-MOSFETs) is ...
A novel static random-access memory (SRAM) cell with nine carbon nanotube MOSFETs (9-CN-MOSFETs) is ...
A novel static random-access memory (SRAM) cell with nine carbon nanotube MOSFETs (9-CN-MOSFETs) is ...
A novel static random-access memory (SRAM) cell with nine carbon nanotube MOSFETs (9-CN-MOSFETs) is ...
A novel static random-access memory (SRAM) cell with nine carbon nanotube MOSFETs (9-CN-MOSFETs) is ...
Metallic carbon nanotubes (m-CNs) cause malfunction by shorting the source and drain terminals in ca...
In deep sub-micron technology, leakage power consumption has become a major concern in VLSI circuits...
Thesis (Ph.D.), School of Electrical Engineering and Computer Science, Washington State UniversityIn...
AbstractThis paper presents different low-leakage power Carbon NanoTube FET (CNTFET) based SRAM cell...
The size and parameter optimization for the 5-nm carbon nanotube field effect transistor (CNFET) sta...
As the feature size of silicon semiconductor devices scales down to nanometer range, planar bulk CMO...