نتایج جستجو برای: Clocking zones
تعداد نتایج: 46802 فیلتر نتایج به سال:
Optimizing arithmetic primitives such as quantum-dot cellular automata (QCA) adders is important for investigating high-performance QCA computers in this emerging nano-technological paradigm. In this paper, we demonstrate that QCA ripple carry adder and bit-serial adder designs actually outperform carry-look-ahead and carry-select adder designs because of the increase in required interconnects....
Quantum-dot Cellular Automata (QCA) is an emerging and promising technology that provides significant improvements over CMOS. Recently QCA has been advocated as an applicant for implementing reversible circuits. However QCA, like other Nanotechnologies, suffers from a high fault rate. The main purpose of this paper is to develop a fault tolerant model of QCA circuits by redundancy in hardware a...
Quantum-dot Cellular Automata (QCA) is an emerging and promising technology that provides significant improvements over CMOS. Recently QCA has been advocated as an applicant for implementing reversible circuits. However QCA, like other Nanotechnologies, suffers from a high fault rate. The main purpose of this paper is to develop a fault tolerant model of QCA circuits by redundancy in hardware a...
This paper proposes a new clocking strategy for dynamic circuit. It provides faster performance and smaller area than conventional clocking scheme. The proposed clocking scheme for dynamic circuits provides the solution of the problem caused by logic polarity and clock skew problem simultaneously. To demonstrate the proposed clocking strategy, a 32 bit Carry Look Ahead adder (CLA) is designed a...
This paper revisits the Space-Time Gradient (STG) method which was developed for efficient analysis of unsteady flows due to rotor–stator interaction and presents from an alternative time-clocking perspective. The STG requires reordering blade passages according their relative clocking positions with respect blades adjacent row. As space-clocking is linked equivalent time-clocking, passage can ...
It is demonstrated that it is possible to switch the magnetisation of nanomagnets by employing the exchange interaction between magnets. This can implement on-chip clocking for nanomagnetic logic circuits by using a current-carrying copper wire circularly wrapped by ferromagnetic cladding. This scheme is potentially more energy efficient than yoked cladding clocking using an external magnetic f...
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