DocumentCode
512631
Title
Transistor count optimization of conventional CMOS full adder & optimization of power and delay of new implementation of 18 transistor full adder by dual threshold node design with submicron channel length
Author
Panda, Saradindu ; Kumar, N. Mohan ; Sarkar, C.K.
Author_Institution
Dept. of Electron. & Telecommun. Eng., Jadavpur Univ., Kolkata, India
fYear
2009
fDate
14-16 Dec. 2009
Firstpage
1
Lastpage
4
Abstract
A full adder circuit is one of the basic building blocks of a digital design. In general it is made by CMOS technology. In the CMOS technology the full adder is built by 28 transistors. So, the transistor count is very high. The average power consumption, leakage power consumption and delay is very high. In this paper we made a new circuit which is made by mainly the transmission gate (TG) technology. In our circuit we use only 18 transistors to implement the Boolean expression of the full adder. So, the transistor count decreases. Due to the decreasing of the transistor count we can reduces the average power, leakage power, delay and noise. We also optimized our new circuit by different threshold of MOSFET technology.
Keywords
CMOS digital integrated circuits; MOSFET; adders; delays; electrical faults; integrated circuit design; integrated circuit noise; optimisation; 18-transistor full adder; Boolean expression; CMOS full adder circuit; MOSFET technology; circuit noise; delay optimization; digital design; dual threshold node design; leakage power; power optimization; submicron channel length transistor; transistor count optimization; transmission gate technology; Adders; Buildings; CMOS technology; Computational Intelligence Society; Delay; Design optimization; Energy consumption; MOSFET circuits; Noise reduction; Power MOSFET; Delay; Full Adder; Leakage; MUX;
fLanguage
English
Publisher
ieee
Conference_Titel
Computers and Devices for Communication, 2009. CODEC 2009. 4th International Conference on
Conference_Location
Kolkata
Print_ISBN
978-1-4244-5073-2
Type
conf
Filename
5407195
Link To Document