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» A High Performance, Low Area Overhead Carry Lookahead Adder
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CSREAESA
2004
13 years 6 months ago
A High Performance, Low Area Overhead Carry Lookahead Adder
Adders are some of the most critical data path circuits requiring considerable design effort in order to "squeeze" out as much performance gain as possible. Many adder d...
James Levy, Jabulani Nyathi
ETS
2006
IEEE
122views Hardware» more  ETS 2006»
13 years 8 months ago
Fault Identification in Reconfigurable Carry Lookahead Adders Targeting Nanoelectronic Fabrics
Online repair through reconfiguration is a particularly advantageous approach in the nanoelectronic environment since reconfigurability is naturally supported by the devices. Howe...
Wenjing Rao, Alex Orailoglu, Ramesh Karri
DSD
2004
IEEE
104views Hardware» more  DSD 2004»
13 years 8 months ago
A Static Low-Power, High-Performance 32-bit Carry Skip Adder
In this paper, we present a full-static carry-skip adder designed to achieve low power dissipation and high-performance operation. To reduce the adder's delay and power consu...
Kai Chirca, Michael J. Schulte, John Glossner, Hao...
DATE
2008
IEEE
182views Hardware» more  DATE 2008»
13 years 11 months ago
A Novel Low Overhead Fault Tolerant Kogge-Stone Adder Using Adaptive Clocking
— As the feature size of transistors gets smaller, fabricating them becomes challenging. Manufacturing process follows various corrective design-for-manufacturing (DFM) steps to ...
Swaroop Ghosh, Patrick Ndai, Kaushik Roy
ASPDAC
2008
ACM
154views Hardware» more  ASPDAC 2008»
13 years 6 months ago
Exploring high-speed low-power hybrid arithmetic units at scaled supply and adaptive clock-stretching
Meeting power and performance requirement is a challenging task in high speed ALUs. Supply voltage scaling is promising because it reduces both switching and active power but it al...
Swaroop Ghosh, Kaushik Roy