A novel FPGA-programmable switch matrix interconnection element in quantum-dot cellular automata
Journal Publication ResearchOnline@JCUThe Quantum-dot cellular automata (QCA) is a novel nanotechnology, promising extra low-power, extremely dense and very high-speed structure for the construction of logical circuits at a nanoscale. In this paper, initially previous works on QCA-based FPGA's routing elements are investigated, and then an efficient, symmetric and reliable QCA programmable switch matrix (PSM) interconnection element is introduced. This element has a simple structure and offers a complete routing capability. It is implemented using a bottom-up design approach that starts from a dense and high-speed 2:1 multiplexer and utilise it to build the target PSM interconnection element. In this study, simulations of the proposed circuits are carried out using QCAdesigner, a layout and simulation tool for QCA circuits. The results demonstrate high efficiency of the proposed designs in QCA-based FPGA routing.
International Journal of Electronics
International Journal of Electronics
102
1362-3060
N/A
4
22
N/A
Taylor & Francis
N/A
N/A
N/A
N/A
N/A
N/A
10.1080/00207217.2014.936526
