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It is becoming increasingly clear that the two-dimensional layout of devices on computer chips is starting to hinder the development of high-performance computer systems. Three-dimensional structures will be needed to provide the performance required to implement computationally intensive tasks. 3D Nanoelectronic Computer Architecture and Implementation reviews the current state-of-the-art in nanoelectronic device design and fabrication and discusses the architectural aspects of 3-D designs, including the possible use of molecular wiring and carbon nanotube interconnections. It will be a valuable reference for those involved in the design and development of nanoelectronic devices and technology.
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It is becoming increasingly clear that the two-dimensional layout of devices on computer chips is starting to hinder the development of high-performance computer systems. Three-dimensional structures will be needed to provide the performance required to implement computationally intensive tasks. 3D Nanoelectronic Computer Architecture and Implementation reviews the current state-of-the-art in nanoelectronic device design and fabrication and discusses the architectural aspects of 3-D designs, including the possible use of molecular wiring and carbon nanotube interconnections. It will be a valuable reference for those involved in the design and development of nanoelectronic devices and technology.