DocumentCode :
2298968
Title :
Proposing a novel low-power high-speed mixed GDI Full Adder topology
Author :
Agrawal, Adarsh Kumar ; Mishra, Shivshankar ; Nagaria, R.K.
Author_Institution :
Motilal Nehru Nat. Inst. of Technol., Allahabad, India
fYear :
2010
fDate :
Nov. 29 2010-Dec. 1 2010
Firstpage :
1
Lastpage :
6
Abstract :
This paper deals with the implementation of full adder chains by mixing different CMOS full adder topologies. The proposed approach is based on cascading fast Gate Diffusion Input (GDI) Full Adders interrupted by static gate having driving capability, such as inverter, thus exploiting the intrinsic low power consumption of such topologies. The results obtained show that the proposed mixed-topology approach based on GDI adders is capable of very low-power consumption and a very high-speed. This also enables a high degree of design freedom, given that the same (mixed) topology can be used for a wide range of applications. This greater flexibility also affords a significant reduction in the design effort. Delay and power has been evaluated by HSPICE simulation using TSMC 0.18μm CMOS technology considering minimum power design. The simulation results reveal better delay and power performance of proposed topology as compared to existing topologies at 1.8V supply voltage.
Keywords :
CMOS logic circuits; adders; logic gates; low-power electronics; network topology; CMOS full adder topology; HSPICE simulation; TSMC CMOS technology; gate diffusion input full adders; inverter; mixed-topology approach; power design; size 0.18 mum; static gate; voltage 1.8 V; Adders; CMOS integrated circuits; Delay; Logic gates; Power demand; Topology; Transistors; Adders; Arithmetic circuits; Circuit design; Gate Diffusion Input (GDI); High-speed; Low-power;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power, Control and Embedded Systems (ICPCES), 2010 International Conference on
Conference_Location :
Allahabad
Print_ISBN :
978-1-4244-8543-7
Type :
conf
DOI :
10.1109/ICPCES.2010.5698636
Filename :
5698636
Link To Document :
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