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Nanoscale Memristor Device and Circuits Design

Contributor(s): Raj, Balwinder (Editor), Hemani, Ahmed (Editor), Jabir, Abusaleh M (Editor), Khandelwal, Saurabh (Editor)

ISBN: 9780323907934

Publisher: Elsevier

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Pub Date: November 10, 2023

Lexile Code: 0000

Target Age Group: NA to NA

Physical Info: 0.53" H x 9.25" L x 7.50" W ( 0.97 lbs) 252 pages

Series: Micro and Nano Technologies

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Description:

Nanoscale Memristor Device and Circuits Design provides theoretical frameworks, including (i) the background of memristors, (ii) physics of memristor and their modeling, (iii) menristive device applications, and (iv) circuit design for security and authentication. The book focuses on a broad aspect of realization of these applications as low cost and reliable devices. This is an important reference that will help materials scientists and engineers understand the production and applications of nanoscale memrister devices. A memristor is a two-terminal memory nanoscale device that stores information in terms of high/low resistance. It can retain information even when the power source is removed, i.e., "non-volatile."

In contrast to MOS Transistors (MOST), which are the building blocks of all modern mobile and computing devices, memristors are relatively immune to radiation, as well as parasitic effects, such as capacitance, and can be much more reliable. This is extremely attractive for critical safety applications, such as nuclear and aerospace, where radiation can cause failure in MOST-based systems.

Brief description: Balwinder Raj is Associate Professor, in the Department. of ECE, NITTTR Chandigarh, India. His research interests are nanoelectronics, nanoscale semiconductor devices, classical/non-classical nanoscale devices modeling (FinFET, nanowire, TFET, CNTFET etc.), ultra-low power VLSI/ULSI design and technology, nanoscale memory design, digital VLSI circuit design, and reconfigurable FPGA implementation.

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