A nano-scale n-bit ripple carry adder using an optimized XOR gate and quantum-dots technology with diminished cells and power dissipation
In the nano-scale era, quantum-dot cellular automata (QCA) technology has become an
appealing substitute for transistor-based technologies. QCA will be the preferred technology …
appealing substitute for transistor-based technologies. QCA will be the preferred technology …
Design of an efficient multilayer arithmetic logic unit in quantum-dot cellular automata (QCA)
S Babaie, A Sadoghifar… - IEEE Transactions on …, 2018 - ieeexplore.ieee.org
Quantum-dot cellular automata (QCA) is a new nano-scale technology that due to making
significant improvements in the design of electronic circuits can be considered as an …
significant improvements in the design of electronic circuits can be considered as an …
Design and implementation of a nano-scale high-speed multiplier for signal processing applications
Digital signal processing (DSP) is an engineering field involved with increasing the
precision and dependability of digital communications and mathematical processes …
precision and dependability of digital communications and mathematical processes …
The design and implementation of a robust single-layer QCA ALU using a novel fault-tolerant three-input majority gate
Inverter and majority gates are considered as two important primitive gates for designing
logical circuits in the quantum-dot cellular automata (QCA) technology. Up to now, many …
logical circuits in the quantum-dot cellular automata (QCA) technology. Up to now, many …
Designing a new reversible ALU by QCA for reducing occupation area
SM Oskouei, A Ghaffari - The Journal of Supercomputing, 2019 - Springer
Quantum-dot cellular automata (QCA) is a novel promising nanoscale technology with high
speed, low power consumption and high density that allows the design of integrated circuits …
speed, low power consumption and high density that allows the design of integrated circuits …
A revolution in nanostructure designs by proposing a novel QCA full-adder based on optimized 3-input XOR
Quantum-dot cellular automata is one of the best alternative technologies of CMOS at nano-
scale. It is an emerging technology promising to design circuits with low power consumption …
scale. It is an emerging technology promising to design circuits with low power consumption …
A reversible ALU using HNG and Ferdkin gates in QCA nanotechnology
Quantum dot cellular automata (QCA) with the characteristics such as low energy dissipation
and high density is a suitable alternative technology to CMOS technology. Arithmetic logic …
and high density is a suitable alternative technology to CMOS technology. Arithmetic logic …
Robust QCA full‐adders using an efficient fault‐tolerant five‐input majority gate
Quantum‐dot cellular automata (QCA) is considered as a top candidate for nanoscale
technologies with unique features such as very low occupancy and ultralow power …
technologies with unique features such as very low occupancy and ultralow power …
Designing a three-level full-adder based on nano-scale quantum dot cellular automata
Some of the vital problems around the conventional CMOS technology are leakage-power
consumption, physical-scalability limits, and short-channel effects. These deficiencies have …
consumption, physical-scalability limits, and short-channel effects. These deficiencies have …
A novel fault-tolerant multiplexer in quantum-dot cellular automata technology
Quantum-dot cellular automaton (QCA) has emerged as one of the best alternatives to
CMOS technology in nanoscale. In spite of the potential advantages of QCA technology over …
CMOS technology in nanoscale. In spite of the potential advantages of QCA technology over …