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Showing 1 - 9 of 9 matches in All Departments

Brain Computer Interface - EEG Signal Processing (Hardcover): Narayan Panigrahi, Saraju P. Mohanty Brain Computer Interface - EEG Signal Processing (Hardcover)
Narayan Panigrahi, Saraju P. Mohanty
R3,395 Discovery Miles 33 950 Ships in 12 - 17 working days

Explains the basis of Brain Computer Interface and how it can be established using different EEG signal characteristics Covers the detail classification of different types of EEG signals with respect to their physical characteristics Explains detection and diagnosis of epileptic seizures from EEG data of a subject Reviews design and development a low cost and robust EEG acquisition system Provides mathematical analysis of EEG including MATLAB codes for students to experiment with EEG data

Robust SRAM Designs and Analysis (Paperback, 2013 ed.): Jawar Singh, Saraju P. Mohanty, Dhiraj K. Pradhan Robust SRAM Designs and Analysis (Paperback, 2013 ed.)
Jawar Singh, Saraju P. Mohanty, Dhiraj K. Pradhan
R3,459 Discovery Miles 34 590 Ships in 10 - 15 working days

This book provides a guide to Static Random Access Memory (SRAM) bitcell design and analysis to meet the nano-regime challenges for CMOS devices and emerging devices, such as Tunnel FETs. Since process variability is an ongoing challenge in large memory arrays, this book highlights the most popular SRAM bitcell topologies (benchmark circuits) that mitigate variability, along with exhaustive analysis. Experimental simulation setups are also included, which cover nano-regime challenges such as process variation, leakage and NBTI for SRAM design and analysis. Emphasis is placed throughout the book on the various trade-offs for achieving a best SRAM bitcell design. Provides a complete and concise introduction to SRAM bitcell design and analysis; Offers techniques to face nano-regime challenges such as process variation, leakage and NBTI for SRAM design and analysis; Includes simulation set-ups for extracting different design metrics for CMOS technology and emerging devices; Emphasizes different trade-offs for achieving the best possible SRAM bitcell design.

Robust SRAM Designs and Analysis (Hardcover, 2012): Jawar Singh, Saraju P. Mohanty, Dhiraj K. Pradhan Robust SRAM Designs and Analysis (Hardcover, 2012)
Jawar Singh, Saraju P. Mohanty, Dhiraj K. Pradhan
R4,230 Discovery Miles 42 300 Ships in 10 - 15 working days

This book provides a guide to Static Random Access Memory (SRAM) bitcell design and analysis to meet the nano-regime challenges for CMOS devices and emerging devices, such as Tunnel FETs. Since process variability is an ongoing challenge in large memory arrays, this book highlights the most popular SRAM bitcell topologies (benchmark circuits) that mitigate variability, along with exhaustive analysis. Experimental simulation setups are also included, which cover nano-regime challenges such as process variation, leakage and NBTI for SRAM design and analysis. Emphasis is placed throughout the book on the various trade-offs for achieving a best SRAM bitcell design.Provides a complete and concise introduction to SRAM bitcell design and analysis; Offers techniques to face nano-regime challenges such as process variation, leakage and NBTI for SRAM design and analysis;Includes simulation set-ups for extracting different design metrics for CMOS technology and emerging devices;Emphasizes different trade-offs for achieving the best possible SRAM bitcell design.

Low-Power High-Level Synthesis for Nanoscale CMOS Circuits (Paperback, Softcover reprint of hardcover 1st ed. 2008): Saraju P.... Low-Power High-Level Synthesis for Nanoscale CMOS Circuits (Paperback, Softcover reprint of hardcover 1st ed. 2008)
Saraju P. Mohanty, Nagarajan Ranganathan, Elias Kougianos, Priyardarsan Patra
R4,498 Discovery Miles 44 980 Ships in 10 - 15 working days

This self-contained book addresses the need for analysis, characterization, estimation, and optimization of the various forms of power dissipation in the presence of process variations of nano-CMOS technologies. The authors show very large-scale integration (VLSI) researchers and engineers how to minimize the different types of power consumption of digital circuits. The material deals primarily with high-level (architectural or behavioral) energy dissipation.

Low-Power High-Level Synthesis for Nanoscale CMOS Circuits (Hardcover, 2008 ed.): Saraju P. Mohanty, Nagarajan Ranganathan,... Low-Power High-Level Synthesis for Nanoscale CMOS Circuits (Hardcover, 2008 ed.)
Saraju P. Mohanty, Nagarajan Ranganathan, Elias Kougianos, Priyardarsan Patra
R4,531 Discovery Miles 45 310 Ships in 10 - 15 working days

This self-contained book addresses the need for analysis, characterization, estimation, and optimization of the various forms of power dissipation in the presence of process variations of nano-CMOS technologies. The authors show very large-scale integration (VLSI) researchers and engineers how to minimize the different types of power consumption of digital circuits. The material deals primarily with high-level (architectural or behavioral) energy dissipation.

Nano-CMOS and Post-CMOS Electronics, Volume 2 - Circuits and design (Hardcover): Saraju P. Mohanty, Ashok Srivastava Nano-CMOS and Post-CMOS Electronics, Volume 2 - Circuits and design (Hardcover)
Saraju P. Mohanty, Ashok Srivastava
R4,061 R3,498 Discovery Miles 34 980 Save R563 (14%) Ships in 10 - 15 working days

The demand for ever smaller and portable electronic devices has driven metal oxide semiconductor-based (CMOS) technology to its physical limit with the smallest possible feature sizes. This presents various size-related problems such as high power leakage, low-reliability, and thermal effects, and is a limit on further miniaturization. To enable even smaller electronics, various nanodevices including carbon nanotube transistors, graphene transistors, tunnel transistors and memristors (collectively called post-CMOS devices) are emerging that could replace the traditional and ubiquitous silicon transistor. This book explores these nanoelectronics at the circuit and systems levels including modelling and design approaches and issues. Topics covered include self-healing analog and radio frequency circuits; on-chip gate delay variability measurement in scaled technology node; nanoscale finFET devices for PVT aware SRAM; data stability and write ability enhancement techniques for finFET SRAM circuits; low-leakage techniques for nanoscale CMOS circuits; thermal effects in carbon nanotube VLSI interconnects; lumped electro-thermal modeling and analysis of carbon nanotube interconnects; high-level synthesis of digital integrated circuits in the nanoscale mobile electronics era; SPICEless RTL design optimization of nanoelectronic digital integrated circuits; green on-chip inductors for three-dimensional integrated circuits; 3D network-on-chips; and DNA computing. This book is essential reading for researchers, research-focused industry designers/developers, and advanced students working on next-generation electronic devices and circuits.

Nano-CMOS and Post-CMOS Electronics, Volume 1 - Devices and modelling (Hardcover): Saraju P. Mohanty, Ashok Srivastava Nano-CMOS and Post-CMOS Electronics, Volume 1 - Devices and modelling (Hardcover)
Saraju P. Mohanty, Ashok Srivastava
R4,043 R3,481 Discovery Miles 34 810 Save R562 (14%) Ships in 10 - 15 working days

The demand for ever smaller and portable electronic devices has driven metal oxide semiconductor-based (CMOS) technology to its physical limit with the smallest possible feature sizes. This presents various size-related problems such as high power leakage, low-reliability, and thermal effects, and is a limit on further miniaturization. To enable even smaller electronics, various nanodevices including carbon nanotube transistors, graphene transistors, tunnel transistors and memristors (collectively called post-CMOS devices) are emerging that could replace the traditional and ubiquitous silicon transistor. This book explores these nanoelectronics at the device level including modelling and design. Topics covered include high-k dielectrics; high mobility n and p channels on gallium arsenide and silicon substrates using interfacial misfit dislocation arrays; anodic metal-insulator-metal (MIM) capacitors; graphene transistors; junction and doping free transistors; nanoscale gigh-k/metal-gate CMOS and FinFET based logic libraries; multiple-independent-gate nanowire transistors; carbon nanotubes for efficient power delivery; timing driven buffer insertion for carbon nanotube interconnects; memristor modeling; and neuromorphic devices and circuits. This book is essential reading for researchers, research-focused industry designers/developers, and advanced students working on next-generation electronic devices and circuits.

Advanced Technologies for Next Generation Integrated Circuits (Hardcover): Ashok Srivastava, Saraju P. Mohanty Advanced Technologies for Next Generation Integrated Circuits (Hardcover)
Ashok Srivastava, Saraju P. Mohanty
R3,762 R3,237 Discovery Miles 32 370 Save R525 (14%) Ships in 10 - 15 working days

Although existing nanometer CMOS technology is expected to remain dominant for the next decade, new non-classical devices are being developed as the potential replacements of silicon CMOS, in order to meet the ever-present demand for faster, smaller, more efficient integrate circuits. Many new devices are based on novel emerging materials such as one-dimensional carbon nanotubes and two-dimensional graphene, non-graphene two-dimensional materials, and transition metal dichalcogenides. Such devices use on/off operations based on quantum mechanical current transport, and so their design and fabrication require an understanding of the electronic structures of materials and technologies. Moreover, new electronic design automation (EDA) tools and techniques need to be developed based on integrating devices from emerging novel material-based technologies. The aim of this book is to explore the materials and design requirements of these emerging integrated circuit technologies, and to outline their prospective applications. It will be useful for academics and research scientists interested in future directions and developments in design, materials and applications of novel integrated circuit technologies, and for research and development professionals working at the cutting edge of integrated circuit development.

IP Core Protection and Hardware-Assisted Security for Consumer Electronics (Hardcover): Anirban Sengupta, Saraju P. Mohanty IP Core Protection and Hardware-Assisted Security for Consumer Electronics (Hardcover)
Anirban Sengupta, Saraju P. Mohanty
R4,405 R3,786 Discovery Miles 37 860 Save R619 (14%) Ships in 10 - 15 working days

IP Core Protection and Hardware-Assisted Security for Consumer Electronics presents established and novel solutions for security and protection problems related to IP cores (especially those based on DSP/multimedia applications) in consumer electronics. The topic is important to researchers in various areas of specialization, encompassing overlapping topics such as EDA-CAD, hardware design security, VLSI design, IP core protection, optimization using evolutionary computing, system-on-chip design and application specific processor/hardware accelerator design. The book begins by introducing the concepts of security, privacy and IP protection in information systems. Later chapters focus specifically on hardware-assisted IP security in consumer electronics, with coverage including essential topics such as hardware Trojan security, robust watermarking, fingerprinting, structural and functional obfuscation, encryption, IoT security, forensic engineering based protection, JPEG obfuscation design, hardware assisted media protection, PUF and side-channel attack resistance.

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