Binovel Low-Power and High Performance Full-Adder Cell In 180nm Cmos Technology
Mohsen Sadeghi, Maaruf Ali, Abbas Golmakani
Abstract
Mohsen Sadeghi, Maaruf Ali, Abbas Golmakani
Abstract
A novel low-power and high speed 1-bit full-adder is described which is designed based on pass transistor and Transmission Gate (TG)logic. The main advantage of this design is its inherent very low propagation delay and low power consumption. The consequence of which leads to achieving lower Power Delay Product (PDP)than others designs. Intensive HSPICE simulation shows that the new full-adder consumes around 40% less power than the SS16T adder,moreover its Energy Delay Product (EDP) is 49.4% less than the SS16T full-adder. We have compared some of the most popular full-adders like: 28T, CPL, SS16T, 22T and 14T with the proposed full-adder.Simulation has been carried out by HSPICE using 0.18µm technology at 1.8V supply voltage.
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A novel low-power and high speed 1-bit full-adder is described which is designed based on pass transistor and Transmission Gate (TG)logic. The main advantage of this design is its inherent very low propagation delay and low power consumption. The consequence of which leads to achieving lower Power Delay Product (PDP)than others designs. Intensive HSPICE simulation shows that the new full-adder consumes around 40% less power than the SS16T adder,moreover its Energy Delay Product (EDP) is 49.4% less than the SS16T full-adder. We have compared some of the most popular full-adders like: 28T, CPL, SS16T, 22T and 14T with the proposed full-adder.Simulation has been carried out by HSPICE using 0.18µm technology at 1.8V supply voltage.
Key concepts: Adder, Power–delay product, Transmission gate, CMOS, Serial binary adder, Computer science, Carry-save adder, Power (physics)