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Titlebook: Emerging Nanotechnologies; Test, Defect Toleran Mohammad Tehranipoor Book 2008 Springer-Verlag US 2008 CMOS.Nanotechnologie.Nanotube.Techno

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楼主: Harding
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https://doi.org/10.1007/978-0-387-74747-7CMOS; Nanotechnologie; Nanotube; Technologie; carbon nanotubes; circuit; design; diagnosis; logic; nanotechno
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The valley grassland vegetationequires circuit designs exploiting the capabilities of molecular electronics while compensating for limitations of current fabrication approaches, particularly defects. Creating such circuits in spite of fabrication defects requires economic trade-offs. For instance, accepting lower yields or improv
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Lifestyles Envisioned with Backcasting,ulties within the next few years. In order to enhance the domain of information processing applications beyond CMOS capabilities and continue Moore‘s law, several technologies are being examined for future computing devices. Among these technologies, quantum devices, optical devices, biologically in
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Coffee, Poverty, and Environment speed and small area.The continuous decrease in transistor feature size has been pushing the CMOS process to its physical limits caused by ultra-thin gate oxides,short channel effects, doping fluctuations, and the unavailability of lithography in nanoscale range. To continue the size/speed improvem
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The Origins of Economic Wealth,aw and the International Technology Roadmap for Semiconductors (ITRS). For manufacturing, molecular QCA implementations have been proposed to allow for room temperature operation; the feature of wire crossing on the same plane (coplanar crossing) provides a significant advantage over CMOS. Coplanar
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Nidhi Datta,Virender Singh Chauhanects, dopant-induced disorder, and power dissipation may hinder further progress in scaling microelectronics. As the scaling approaches a molecular level, a new paradigm beyond using current switches to encode binary information may be needed. Quantum-dot cellular automata (QCA) [1–3, 5, 11, 12, 15,
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