Low Power Designs in Nanodevices and Circuits for Emerging Applications

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Low Power Designs in Nanodevices and Circuits for Emerging Applications

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  • 製本 Paperback:紙装版/ペーパーバック版/ページ数 312 p.
  • 言語 ENG
  • 商品コード 9781032604602
  • DDC分類 621.3815

Full Description

This reference textbook discusses low power designs for emerging applications. This book focuses on the research challenges associated with theory, design, and applications towards emerging Microelectronics and VLSI device design and developments, about low power consumptions. The advancements in large-scale integration technologies are principally responsible for the growth of the electronics industry.

This book is focused on senior undergraduates, graduate students, and professionals in the field of electrical and electronics engineering, nanotechnology. This book:

Discusses various low power techniques and applications for designing efficient circuits
Covers advance nanodevices such as FinFETs, TFETs, CNTFETs
Covers various emerging areas like Quantum-Dot Cellular Automata Circuits and FPGAs and sensors
Discusses applications like memory design for low power applications using nanodevices

The number of options for ICs in control applications, telecommunications, high-performance computing, and consumer electronics continues to grow with the emergence of VLSI designs. Nanodevices have revolutionized the electronics market and human life; it has impacted individual life to make it more convenient. They are ruling every sector such as electronics, energy, biomedicine, food, environment, and communication. This book discusses various emerging low power applications using CMOS and other emerging nanodevices.

Contents

Chapter 1
Low Power VLSI Design Using Clock Gated Technique
J.L Mazher Iqbal, A. Selwin Mich Priyadharson, T. Manikandan, V.S. Janani, A. Jose Anand

Chapter 2
Emerging Applications and Challenges in Low Power Device Designs in Flexible and Stretchable Low Power Devices and Strategies
Anurag Nain, Divya Bajpai Tripathy, Anjali Gupta, Vinny Sharma

Chapter 3
A Highly Stable Reliable Ultralow-Power Design for 11T Near-Threshold FINFET SRAM
Erfan Abbasian, Maryam Nayeri

Chapter 4
Investigation and Optimization of High Stability 6T CNTFET SRAM Cell with Low Power
M. Elangovan, S.Jayanthi, P.Raja

Chapter 5
Study of Transistor Sizing Techniques for Low Power Design in FinFET Technology
Ehsan Mahmoodi, Morteza Gholipour

Chapter 6
Emerging Nano Devices for Low Power Applications: A Research Point of View
G.Boopathi Raja

Chapter 7
A Review of the Current Research on Graphene and its Promising Future
Sujit Kumar, H.K. Yashaswini, V. Trupti, Hannah Jessie Rani, Raghu N

Chapter 8
Analysis and Optimization for Low Power SRAM Cells
Deepika Sharma, Shilpi Birla

Chapter 9
A Comparative Review on Leakage Power Minimization Techniques in SRAM
Appikatla Phani Kumar, Rohit Lorenzo

Chapter 10
Nonvolatile Configurable Logic Block for FPGAs
Chee Hock Leong, T. Nandha Kumar, Haider A.F. Almurib

Chapter 11
Efficient Layout Techniques to Design Physically Realizable Quantum-Dot Cellular Automata Circuits
Marshal R, Raja Sekar K, Lakshminarayanan Gopalakrishnan, Seok-Bum Ko, Anantharaj Thalaimalai Vanaraj

Chapter 12
Low Power Reduction Techniques for A 6T-SRAM Cell Design using CNTFET Technology
G. Karthy, P. Sivakumar, T. Jayasankar

Chapter 13
Design and Development of Integrated Low power High Performance MOSFET Structure
Debasis Mukherjee

Chapter 14
Low Power Designs for Enhanced CMOS Performance
Gowsika Dharmaraj, Ashwin Kumar S, Chandra Prakash S, Reba P

Chapter 15
Recent Advances in Carbon Nanotubes Based Sensors
Amandeep Kaur, Jitender Kumar, Avtar Singh

Chapter 16
Low Power and Low Area Multiplier and Accumulator Block for Efficient Implementation of FIR Filter
J. L Mazher Iqbal, G. Narayan, T. Manikandan, M. Meena, Jose Anand

Chapter 17
One-Sided Schmitt-Trigger-Based 10T SRAM Cell with Expanded Read/Write Stabilities and Less Leakage Power Dissipation in 10-nm GNRFET Technology
Erfan Abbasian, Mahdieh Nayeri, Shilpi Birla

Chapter 18
Advances in Low Power Devices: FinFETs, Nanowire FETS, and CNT FET
Savitesh Madhulika Sharma, Avtar Singh

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