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- W2040157578 abstract "It is well recognized that novel computational models, devices and technologies are needed in order to sustain the remarkable advancement of CMOS-based VLSI circuits and systems. Regardless of the models, devices and technologies, any enhancement/replacement to CMOS must show significant gains in at least one of the key metrics (including speed, power and cost) for at least a subset of application domains currently employing CMOS circuits. In addition, effective defect tolerant techniques are a critical factor for the successful adoption of any new computing device due to the fact that nano-scale structures will have defect rates much higher than today's CMOS chips. The task of identifying application domains that could benefit the most from a new model/device/technology and ensuring that the resultant system meets functional requirements in the presence of defects requires synergistic efforts of physical scientists, and circuit and system design researchers." @default.
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- W2040157578 date "2008-10-19" @default.
- W2040157578 modified "2023-10-16" @default.
- W2040157578 title "Design and defect tolerance beyond CMOS" @default.
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- W2040157578 doi "https://doi.org/10.1145/1450135.1450187" @default.
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