0
Your cart

Your cart is empty

Browse All Departments
  • All Departments
Price
  • R2,500 - R5,000 (2)
  • R5,000 - R10,000 (2)
  • -
Status
Brand

Showing 1 - 4 of 4 matches in All Departments

Energy-Efficient Communication Processors - Design and Implementation for Emerging Wireless Systems (Hardcover, 2013 ed.):... Energy-Efficient Communication Processors - Design and Implementation for Emerging Wireless Systems (Hardcover, 2013 ed.)
Robert Fasthuber, Francky Catthoor, Praveen Raghavan, Frederik Naessens
R5,000 Discovery Miles 50 000 Ships in 12 - 19 working days

This book describes a new design approach for energy-efficient, Domain-Specific Instruction set Processor (DSIP) architectures for the wireless baseband domain. The innovative techniques presented enable co-design of algorithms, architectures and technology, for efficient implementation of the most advanced technologies. To demonstrate the feasibility of the author's design approach, case studies are included for crucial functionality of advanced wireless systems with increased computational performance, flexibility and reusability. Designers using this approach will benefit from reduced development/product costs and greater scalability to future process technology nodes.

Ultra-Low Energy Domain-Specific Instruction-Set Processors (Hardcover, 2010 ed.): Francky Catthoor, Praveen Raghavan, Andy... Ultra-Low Energy Domain-Specific Instruction-Set Processors (Hardcover, 2010 ed.)
Francky Catthoor, Praveen Raghavan, Andy Lambrechts, Murali Jayapala, Angeliki Kritikakou, …
R4,595 Discovery Miles 45 950 Ships in 10 - 15 working days

Modern consumers carry many electronic devices, like a mobile phone, digital camera, GPS, PDA and an MP3 player. The functionality of each of these devices has gone through an important evolution over recent years, with a steep increase in both the number of features as in the quality of the services that they provide. However, providing the required compute power to support (an uncompromised combination of) all this functionality is highly non-trivial. Designing processors that meet the demanding requirements of future mobile devices requires the optimization of the embedded system in general and of the embedded processors in particular, as they should strike the correct balance between flexibility, energy efficiency and performance. In general, a designer will try to minimize the energy consumption (as far as needed) for a given performance, with a sufficient flexibility. However, achieving this goal is already complex when looking at the processor in isolation, but, in reality, the processor is a single component in a more complex system. In order to design such complex system successfully, critical decisions during the design of each individual component should take into account effect on the other parts, with a clear goal to move to a global Pareto optimum in the complete multi-dimensional exploration space.

In the complex, global design of battery-operated embedded systems, the focus of Ultra-Low Energy Domain-Specific Instruction-Set Processors is on the energy-aware architecture exploration of domain-specific instruction-set processors and the co-optimization of the datapath architecture, foreground memory, and instruction memory organisation with a link to the required mapping techniques or compiler steps at the early stages of the design. By performing an extensive energy breakdown experiment for a complete embedded platform, both energy and performance bottlenecks have been identified, together with the important relations between the different components. Based on this knowledge, architecture extensions are proposed for all the bottlenecks.

Ultra-Low Energy Domain-Specific Instruction-Set Processors (Paperback, 2010 ed.): Francky Catthoor, Praveen Raghavan, Andy... Ultra-Low Energy Domain-Specific Instruction-Set Processors (Paperback, 2010 ed.)
Francky Catthoor, Praveen Raghavan, Andy Lambrechts, Murali Jayapala, Angeliki Kritikakou, …
R4,387 Discovery Miles 43 870 Ships in 10 - 15 working days

Modern consumers carry many electronic devices, like a mobile phone, digital camera, GPS, PDA and an MP3 player. The functionality of each of these devices has gone through an important evolution over recent years, with a steep increase in both the number of features as in the quality of the services that they provide. However, providing the required compute power to support (an uncompromised combination of) all this functionality is highly non-trivial. Designing processors that meet the demanding requirements of future mobile devices requires the optimization of the embedded system in general and of the embedded processors in particular, as they should strike the correct balance between flexibility, energy efficiency and performance. In general, a designer will try to minimize the energy consumption (as far as needed) for a given performance, with a sufficient flexibility. However, achieving this goal is already complex when looking at the processor in isolation, but, in reality, the processor is a single component in a more complex system. In order to design such complex system successfully, critical decisions during the design of each individual component should take into account effect on the other parts, with a clear goal to move to a global Pareto optimum in the complete multi-dimensional exploration space. In the complex, global design of battery-operated embedded systems, the focus of Ultra-Low Energy Domain-Specific Instruction-Set Processors is on the energy-aware architecture exploration of domain-specific instruction-set processors and the co-optimization of the datapath architecture, foreground memory, and instruction memory organisation with a link to the required mapping techniques or compiler steps at the early stages of the design. By performing an extensive energy breakdown experiment for a complete embedded platform, both energy and performance bottlenecks have been identified, together with the important relations between the different components. Based on this knowledge, architecture extensions are proposed for all the bottlenecks.

Energy-Efficient Communication Processors - Design and Implementation for Emerging Wireless Systems (Paperback, 2013 ed.):... Energy-Efficient Communication Processors - Design and Implementation for Emerging Wireless Systems (Paperback, 2013 ed.)
Robert Fasthuber, Francky Catthoor, Praveen Raghavan, Frederik Naessens
R5,192 Discovery Miles 51 920 Ships in 10 - 15 working days

This book describes a new design approach for energy-efficient, Domain-Specific Instruction set Processor (DSIP) architectures for the wireless baseband domain. The innovative techniques presented enable co-design of algorithms, architectures and technology, for efficient implementation of the most advanced technologies. To demonstrate the feasibility of the author's design approach, case studies are included for crucial functionality of advanced wireless systems with increased computational performance, flexibility and reusability. Designers using this approach will benefit from reduced development/product costs and greater scalability to future process technology nodes.

Free Delivery
Pinterest Twitter Facebook Google+
You may like...
Merging Numeracy with Literacy Practices…
Robyn Jorgensen, Mellony Graven Hardcover R3,139 Discovery Miles 31 390
The Wild-Fowler - a Treatise on Ancient…
Henry Coleman Folkard Paperback R676 Discovery Miles 6 760
Cognitive Integration - Mind and…
John Protevi Hardcover R1,513 Discovery Miles 15 130
The Oxford Handbook of Hoarding and…
Randy O. Frost, Gail Steketee Hardcover R5,460 Discovery Miles 54 600
Telling What She Thinks - Semantics and…
Tomoo Ueda Hardcover R3,095 Discovery Miles 30 950
Power In Action - Democracy, Citizenship…
Steven Friedman Paperback R351 Discovery Miles 3 510
The Industries of Scotland - Their Rise…
David Bremner Paperback R715 Discovery Miles 7 150
Better Choices - Ensuring South Africa's…
Greg Mills, Mcebisi Jonas, … Paperback R350 R317 Discovery Miles 3 170
Battles and Leaders of the Civil War…
Robert Underwood Johnson Paperback R556 Discovery Miles 5 560
50 Fantastic Ideas for Forest School
Jamie Victoria Barnes Paperback  (1)
R358 Discovery Miles 3 580

 

Partners