Nanoelectronic Circuit Design

Nanoelectronic Circuit Design by Niraj K. Jha, published by Springer New York on November 28, 2014, is a comprehensive exploration of large-scale electronic circuit design influenced by advancements in nanotechnology. This edition, spanning 485 pages, delves into the use of nanoscale devices, including those made from nanomaterials like nanotubes and nanowires, as well as innovative methods such as FinFET and III/V compound-based devices. The book addresses the potential of these technologies to overcome traditional CMOS scaling limitations and emphasizes the importance of translating device-level innovations into system-level applications.
Readers will find a thorough examination of the design issues associated with nanoscale circuits, making this work a significant contribution to the fields of technology and engineering. The content bridges the gap between nanodevice research and the practical aspects of nanosystem design, highlighting the transformative impact of nanotechnology on electronic systems. This book is particularly relevant for those interested in electronics, circuits, and manufacturing, providing insights into how emerging technologies can reshape the future of electronic circuit design.
Official synopsis Publisher
This book is about large-scale electronic circuits design driven by nanotechnology, where nanotechnology is broadly defined as building circuits using nanoscale devices that are either implemented with nanomaterials (e.g., nanotubes or nanowires) or following an unconventional method (e.g., FinFET or III/V compound-based devices). These nanoscale devices have significant potential to revolutionize the fabrication and integration of electronic systems and scale beyond the perceived scaling limitations of traditional CMOS. While innovations in nanotechnology originate at the individual device level, realizing the true impact of electronic systems demands that these device-level capabilities be translated into system-level benefits. This is the first book to focus on nanoscale circuits and their design issues, bridging the existing gap between nanodevice research and nanosystem design.
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