Title :
An applicable high-efficient CNTFET-based full adder cell for practical environments
Author :
Moradi, Mona ; Mirzaee, Reza Faghih ; Moaiyeri, Mohammad Hossein ; Navi, Keivan
Author_Institution :
Dept. of Comput. Eng., Islamic Azad Univ., Tehran, Iran
Abstract :
Full adder is among the most practical logic blocks. It is the main arithmetical component of all digital systems. This paper presents the novel design of a high-speed and high-efficient full adder cell which is on the basis of low-complex pass-transistor logic. Using carbon nanotube field effect transistors, formation of transmission gates are not required and the usage of extra transistors is avoided. It benefits from ultra high computational speed which makes it ideal for high-speed and high-frequency applications. It could be employed in portable devices as it consumes very low power. It has also the advantage of working reliably in spite of fabrication imperfections. Simulations are carried out using Synopsys HSPICE in a realistic test bench and other various strict conditions. Simulation results demonstrate higher efficiency with respect to other conventional and state-of-the-art CNTFET and MOSFET implementations.
Keywords :
MOSFET; SPICE; adders; carbon nanotube field effect transistors; logic gates; CNTFET-based full adder cell; MOSFET; Synopsys HSPICE; carbon nanotube field effect transistors; high-efficient full adder cell; high-speed full adder cell; low-complex pass-transistor logic; portable device; practical environment; realistic test bench; transmission gate; ultra high computational speed; Adders; CNTFETs; Computer architecture; Delay; Logic gates; Microprocessors; CNTFET; Exclusive-OR; Full Adder; High-Frequency; High-Speed; Nanoelectronics;
Conference_Titel :
Computer Architecture and Digital Systems (CADS), 2012 16th CSI International Symposium on
Conference_Location :
Shiraz, Fars
Print_ISBN :
978-1-4673-1481-7
DOI :
10.1109/CADS.2012.6316411