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Unlock the future of nanotechnology with this essential guide, which provides an exhaustive exploration of solutions to overcome the physical limits of silicon and optimize the performance of next-generation nanoscale semiconductor devices.
As the role of microelectronics grows in today's world, there is a need for new material solutions that move away from the limited conductivity of silicon to improve the electronic properties in nanoscale semiconductor devices. This unique guide exhaustively explores a number of topics, including 2D materials, microelectronic devices, large VLSI circuit design, and leakage mitigation techniques. The book showcases in-depth analyses of microelectronic device structures and their applications, properties, and characterization. With its easy-to-understand approach, this book is an excellent resource for novices and experts alike.
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Unlock the future of nanotechnology with this essential guide, which provides an exhaustive exploration of solutions to overcome the physical limits of silicon and optimize the performance of next-generation nanoscale semiconductor devices.
As the role of microelectronics grows in today's world, there is a need for new material solutions that move away from the limited conductivity of silicon to improve the electronic properties in nanoscale semiconductor devices. This unique guide exhaustively explores a number of topics, including 2D materials, microelectronic devices, large VLSI circuit design, and leakage mitigation techniques. The book showcases in-depth analyses of microelectronic device structures and their applications, properties, and characterization. With its easy-to-understand approach, this book is an excellent resource for novices and experts alike.