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Sustainable Materials and Technologies in VLSI and Information Processing

Avtar Singh editor Shilpi Birla editor Shashi Kant Dargar editor Abha Dargar editor D Ganeshaperumal editor

Format:Paperback

Publisher:Taylor & Francis Ltd

Published:23rd May '25

Currently unavailable, and unfortunately no date known when it will be back

This paperback is available in another edition too:

  • Hardback£157.50was £175.00(9781041076490)
Sustainable Materials and Technologies in VLSI and Information Processing cover

The International Conference on Sustainable Materials and Technologies in VLSI and Information Processing aimed to converge advancements in semiconductor technology with sustainable practices, addressing the critical need for eco-consciousness in the field of Very Large Scale Integration (VLSI) and Information Processing. The primary purpose of the conference was to explore innovative materials, manufacturing processes, and design methodologies that minimize environmental impact while optimizing performance and functionality in electronic devices. Key features of the conference included interdisciplinary discussions on sustainable materials such as biodegradable polymers, low-power semiconductor materials, and recyclable electronic components. Additionally, it focused on emerging technologies like quantum computing, neuromorphic computing, and photonic integrated circuits, exploring their potential contributions to sustainability in VLSI and information processing. The intended audience comprised of researchers, scientists, engineers, and industry professionals from academia, government, and private sectors involved in semiconductor technology, materials science, environmental sustainability, and information processing.

What set this conference apart was its unique emphasis on sustainability within the realm of VLSI and information processing. While there are conferences focusing on either semiconductor technology or sustainability separately, this conference bridged the gap between the two, fostering discussions and collaborations that pave the way for greener and more efficient electronic devices and systems.

ISBN: 9781041076513

Dimensions: unknown

Weight: 1380g

506 pages