In recent years Quantum-dot Cellular Automata (QCA) has been considered one of the emerging nano-technology for future generation digital circuits and systems. QCA technology is a promising alternative to Complementary Metal Oxide Semiconductor (CMOS) technology. Thus, QCA offers a novel electronics paradigm for information processing and communication system. It has attractive features such as faster speed, higher scale integration, higher switching frequency, smaller size and low power consumption compared to the transistor based technology. It is projected as a promising nanotechnology for future Integrated Circuits (ICs). A quantum dot cellular automaton complex gate is composed from simple 3-input majority gate. In this paper, a 8-3 en...
Application of quantum-dot is a promising technology for implementing digital systems at nano-scale....
Quantum-dot cellular automata (QCA) is one of the promising budding technologies which is able to pr...
The Quantum effects instigate to dominate device recital when transistor geometries are abridged. S...
In recent years Quantum-dot Cellular Automata (QCA) has been considered one of the emerging nano-tec...
Quantum-dot cellular automata are the rising nanotechnology used to structure the nano scale circuit...
QCA technology is a possible substitution for semiconductor-based technology. This paper presents a ...
QCA technology is a possible substitution for semiconductor-based technology. This paper presents a ...
In the last few decades, scaling in feature size and increase in processing power have been ach...
Quantum-dot cellular automata are the rising nanotechnology used to structure the nano scale circuit...
In recent years, quantum cellular automata (QCA) have been used widely to digital circuits and syste...
Quantum-dot Cellular Automata (QCA) technology is one of the most important technologies, which can ...
A novel expandable five-input majority gate for quantum-dot cellular automata and a new full-adder c...
A novel expandable five-input majority gate for quantum-dot cellular automata and a new full-adder c...
The Quantum effects instigate to dominate device recital when transistor geometries are abridged. S...
Application of quantum-dot is a promising technology for implementing digital systems at nano-scale....
Application of quantum-dot is a promising technology for implementing digital systems at nano-scale....
Quantum-dot cellular automata (QCA) is one of the promising budding technologies which is able to pr...
The Quantum effects instigate to dominate device recital when transistor geometries are abridged. S...
In recent years Quantum-dot Cellular Automata (QCA) has been considered one of the emerging nano-tec...
Quantum-dot cellular automata are the rising nanotechnology used to structure the nano scale circuit...
QCA technology is a possible substitution for semiconductor-based technology. This paper presents a ...
QCA technology is a possible substitution for semiconductor-based technology. This paper presents a ...
In the last few decades, scaling in feature size and increase in processing power have been ach...
Quantum-dot cellular automata are the rising nanotechnology used to structure the nano scale circuit...
In recent years, quantum cellular automata (QCA) have been used widely to digital circuits and syste...
Quantum-dot Cellular Automata (QCA) technology is one of the most important technologies, which can ...
A novel expandable five-input majority gate for quantum-dot cellular automata and a new full-adder c...
A novel expandable five-input majority gate for quantum-dot cellular automata and a new full-adder c...
The Quantum effects instigate to dominate device recital when transistor geometries are abridged. S...
Application of quantum-dot is a promising technology for implementing digital systems at nano-scale....
Application of quantum-dot is a promising technology for implementing digital systems at nano-scale....
Quantum-dot cellular automata (QCA) is one of the promising budding technologies which is able to pr...
The Quantum effects instigate to dominate device recital when transistor geometries are abridged. S...