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Showing 1 to 3 of 3 for “"Graphene Nanoribbon Field Effect Transistor"”.

  1. Physical Modeling of Graphene Nanoribbon Field Effect Transistor Using Non-Equilibrium Green Function Approach for Integrated Circuit Design

    … processing systems is scaling down the transistor dimensions. For decades, this has enhanced the device performance and density. However, the International Technology Roadmap for Semiconductors (ITRS) states the end of Moore’s law in the next decade due to the scaling challenges of …

    lsu-thes Repository record for Physical Modeling of Graphene Nanoribbon Field Effect Transistor Using Non-Equilibrium Green Function Approach for Integrated Circuit Design (opens in a new tab)

  2. Multiple-valued logic: technology and circuit implementation

    … on and off switching mechanism of the prevailing transistors. With the exponential increase of data processing and storage needs, there is a strong push to move to a higher radix logic/number system that can eradicate or lessen many limitations of the binary system. Anticipated saturation of …

    umkc Repository record for Multiple-valued logic: technology and circuit implementation (opens in a new tab)

  3. Circuit level delay and power analysis of graphene nano-ribbon field-effect transistors using monte carlo simulations and standard cell library characterization

    Graphene nano-ribbon (GNR) transistors have emerged as a promising candidate to replace traditional silicon transistors in future scaled technologies. Since these devices are very small, the impact of process variation on the circuit’s performance is very large. In this work, we study the impact of …

    uiuc Repository record for Circuit level delay and power analysis of graphene nano-ribbon field-effect transistors using monte carlo simulations and standard cell library characterization (opens in a new tab)