Online Library TheLib.net » SRAM Design for Wireless Sensor Networks: Energy Efficient and Variability Resilient Techniques
cover of the book SRAM Design for Wireless Sensor Networks: Energy Efficient and Variability Resilient Techniques

Ebook: SRAM Design for Wireless Sensor Networks: Energy Efficient and Variability Resilient Techniques

00
27.01.2024
3
0

This book features various, ultra low energy, variability resilient SRAM circuit design techniques for wireless sensor network applications. Conventional SRAM design targets area efficiency and high performance at the increased cost of energy consumption, making it unsuitable for computation-intensive sensor node applications. This book, therefore, guides the reader through different techniques at the circuit level for reducing energy consumption and increasing the variability resilience. It includes a detailed review of the most efficient circuit design techniques and trade-offs, introduces new memory architecture techniques, sense amplifier circuits and voltage optimization methods for reducing the impact of variability for the advanced technology nodes.




This book features various, ultra low energy, variability resilient SRAM circuit design techniques for wireless sensor network applications. Conventional SRAM design targets area efficiency and high performance at the increased cost of energy consumption, making it unsuitable for computation-intensive sensor node applications. This book, therefore, guides the reader through different techniques at the circuit level for reducing energy consumption and increasing the variability resilience. It includes a detailed review of the most efficient circuit design techniques and trade-offs, introduces new memory architecture techniques, sense amplifier circuits and voltage optimization methods for reducing the impact of variability for the advanced technology nodes.

  • Discusses fundamentals of energy reduction for SRAM circuits and applies them to energy limitation challenges associated with wireless sensor nodes;
  • Explains impact of variability resilience in reducing the energy consumption;
  • Describes various memory architectures and provides detailed overview of different types of SRAM cells;
  • Includes sense amplifier design techniques for solving energy-offset tradeoff.




This book features various, ultra low energy, variability resilient SRAM circuit design techniques for wireless sensor network applications. Conventional SRAM design targets area efficiency and high performance at the increased cost of energy consumption, making it unsuitable for computation-intensive sensor node applications. This book, therefore, guides the reader through different techniques at the circuit level for reducing energy consumption and increasing the variability resilience. It includes a detailed review of the most efficient circuit design techniques and trade-offs, introduces new memory architecture techniques, sense amplifier circuits and voltage optimization methods for reducing the impact of variability for the advanced technology nodes.

  • Discusses fundamentals of energy reduction for SRAM circuits and applies them to energy limitation challenges associated with wireless sensor nodes;
  • Explains impact of variability resilience in reducing the energy consumption;
  • Describes various memory architectures and provides detailed overview of different types of SRAM cells;
  • Includes sense amplifier design techniques for solving energy-offset tradeoff.


Content:
Front Matter....Pages i-xii
Introduction....Pages 1-8
SRAM Bit Cell Optimization....Pages 9-30
Adaptive Voltage Optimization Techniques: Low Voltage SRAM Operation....Pages 31-65
Circuit Techniques to Assist SRAM Cell: Local Assist Circuitry....Pages 67-94
SRAM Energy Reduction Techniques....Pages 95-121
Variation Tolerant Low Power Sense Amplifiers....Pages 123-141
Prototypes....Pages 143-162
Conclusions....Pages 163-170



This book features various, ultra low energy, variability resilient SRAM circuit design techniques for wireless sensor network applications. Conventional SRAM design targets area efficiency and high performance at the increased cost of energy consumption, making it unsuitable for computation-intensive sensor node applications. This book, therefore, guides the reader through different techniques at the circuit level for reducing energy consumption and increasing the variability resilience. It includes a detailed review of the most efficient circuit design techniques and trade-offs, introduces new memory architecture techniques, sense amplifier circuits and voltage optimization methods for reducing the impact of variability for the advanced technology nodes.

  • Discusses fundamentals of energy reduction for SRAM circuits and applies them to energy limitation challenges associated with wireless sensor nodes;
  • Explains impact of variability resilience in reducing the energy consumption;
  • Describes various memory architectures and provides detailed overview of different types of SRAM cells;
  • Includes sense amplifier design techniques for solving energy-offset tradeoff.


Content:
Front Matter....Pages i-xii
Introduction....Pages 1-8
SRAM Bit Cell Optimization....Pages 9-30
Adaptive Voltage Optimization Techniques: Low Voltage SRAM Operation....Pages 31-65
Circuit Techniques to Assist SRAM Cell: Local Assist Circuitry....Pages 67-94
SRAM Energy Reduction Techniques....Pages 95-121
Variation Tolerant Low Power Sense Amplifiers....Pages 123-141
Prototypes....Pages 143-162
Conclusions....Pages 163-170
....

Download the book SRAM Design for Wireless Sensor Networks: Energy Efficient and Variability Resilient Techniques for free or read online
Read Download
Continue reading on any device:
QR code
Last viewed books
Related books
Comments (0)
reload, if the code cannot be seen