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Although nanoelectronics won't replace CMOS for some time, research is needed now to develop the architectures, methods, and tools to maximally leverage nanoscale devices and terascale capacity. Addressing the complementary architectural and system issues involved requires greater collaboration at all levels. The effective use of nanotechnology calls for total system solutions
silicon, monolithic integrated circuits, nanoelectronics, nanoarchitecture, silicon nanoelectronics architectures, nanoscale devices, Silicon, Nanoelectronics, Hardware, Nanoscale devices, Redundancy, Computer architecture, CMOS technology, Costs, Carbon nanotubes, Optical devices, Computer architectures, Nanotechnology, Silicon devices
M. Pedram, A. Orailoglu, W.H. Joyner, J. Harlow, D. Marculescu, C. Lau, D. Hammerstrom, R.I. Bahar, "Architectures for silicon nanoelectronics and beyond", Computer, vol. 40, no. , pp. 25-33, January 2007, doi:10.1109/MC.2007.7
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