This paper introduces an architecture for quantum- dot cellular automata circuits with the potential for high through- put and low power dissipation. The combination of regions with Bennett clocking and memory storage combines the low power advantage of reversible computing with the high throughput ad- vantage of pipelining. Two case studies are initially presented to evaluate the proposed pipelined architecture in terms of through- put and power consumption due to information dissipation. A general model for assessing power consumption is also proposed. This paper shows that the advantages possible by using a Bennett clock- ing scheme also depend on circuit topology, thus also confirming the validity of the proposed analysis and model
Nanotechnologies, remarkably Quantum-dot Cellular Automata (QCA), offer an attractive perspective fo...
Nanotechnologies, notably Quantum-dot Cellular Automata (QCA), provide an attractive perspective for...
Quantum-dot cellular automata (QCA) as an emerging nanotechnology are envisioned to overcome the sca...
This paper introduces an architecture for quantum- dot cellular automata circuits with the potential...
This paper introduces an architecture for quantum- dot cellular automata circuits with the potential...
This paper introduces an architecture for quantum- dot cellular automata circuits with the potential...
The quantum-dot cellular automata (QCA) represent emerging nanotechnology that is poised to supersed...
By the progressive scaling of the feature size and power consumption in VLSI chips the part of energ...
In recent years low power and small size are the keyword in the IC industry. This is where the impor...
Heat dissipation is one of the major problems in the construction of electronic devices. Reversible ...
A nano-scale quantum-dot cellular automaton (QCA) is one of the most promising replacements for CMOS...
A nano-scale quantum-dot cellular automaton (QCA) is one of the most promising replacements for CMOS...
Quantum-dot cellular automata is a promising nanotechnology and a possible alternative to complement...
Quantum-dot cellular automata (QCA) nanotechnology is a practical suggestion for replacing present s...
Many efforts have been done about designing nano-based devices till today. One of these devices is Q...
Nanotechnologies, remarkably Quantum-dot Cellular Automata (QCA), offer an attractive perspective fo...
Nanotechnologies, notably Quantum-dot Cellular Automata (QCA), provide an attractive perspective for...
Quantum-dot cellular automata (QCA) as an emerging nanotechnology are envisioned to overcome the sca...
This paper introduces an architecture for quantum- dot cellular automata circuits with the potential...
This paper introduces an architecture for quantum- dot cellular automata circuits with the potential...
This paper introduces an architecture for quantum- dot cellular automata circuits with the potential...
The quantum-dot cellular automata (QCA) represent emerging nanotechnology that is poised to supersed...
By the progressive scaling of the feature size and power consumption in VLSI chips the part of energ...
In recent years low power and small size are the keyword in the IC industry. This is where the impor...
Heat dissipation is one of the major problems in the construction of electronic devices. Reversible ...
A nano-scale quantum-dot cellular automaton (QCA) is one of the most promising replacements for CMOS...
A nano-scale quantum-dot cellular automaton (QCA) is one of the most promising replacements for CMOS...
Quantum-dot cellular automata is a promising nanotechnology and a possible alternative to complement...
Quantum-dot cellular automata (QCA) nanotechnology is a practical suggestion for replacing present s...
Many efforts have been done about designing nano-based devices till today. One of these devices is Q...
Nanotechnologies, remarkably Quantum-dot Cellular Automata (QCA), offer an attractive perspective fo...
Nanotechnologies, notably Quantum-dot Cellular Automata (QCA), provide an attractive perspective for...
Quantum-dot cellular automata (QCA) as an emerging nanotechnology are envisioned to overcome the sca...