System-on-Chip: Next Generation Electronics (Circuits, Devices and Systems)

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System-on-Chip (SoC) represents the next major market for microelectronics, and there is considerable interest world-wide in developing effective methods and tools to support the SoC paradigm. SoC is an expanding field, at present the technical and technological literature about the overall state-of-the-art in SoC is dispersed across a wide spectrum which includes books, journals, and conference proceedings. The book provides a comprehensive and accessible source of state-of-the-art information on existing and emerging SoC key research areas, provided by leading experts in the field. This book covers the general principles of designing, validating and testing complex embedded computing systems and their underlying tradeoffs. The book has twenty five chapters organised into eight parts, each part focuses on a particular topic of SoC. Each chapter has some background covering the basic principles, and extensive list of references. It is aimed at graduate students, designers and managers working in Electronic and Computer engineering.Also available:RFIC and MMIC Design and Technology - ISBN 0852967861High-frequency Circuit Engineering - ISBN 0852968019The Institution of Engineering and Technology is one of the world's leading professional societies for the engineering and technology community. The IET publishes more than 100 new titles every year; a rich mix of books, journals and magazines with a back catalogue of more than 350 books in 18 different subject areas including: -Power & Energy -Renewable Energy -Radar, Sonar & Navigation -Electromagnetics -Electrical Measurement -History of Technology -Technology Management

Author(s): Bashir M. Al-Hashimi
Publisher: Institution of Engineering and Technology
Year: 2006

Language: English
Pages: 940
Tags: Приборостроение;Микро- и наносистемная техника;

Contents......Page 12
PART I – System-level design......Page 30
1 Multi-criteria decision making in embedded system design......Page 32
2 System-level performance analysis – the SymTA/S approach......Page 34
3 Analysis and optimisation of heterogeneous real-time embedded systems......Page 104
4 Hardware/software partitioning of operating systems: focus on deadlock avoidance......Page 150
Models of computation in the design process......Page 190
6 Architecture description languages for programmable embedded systems......Page 216
PART II –Embedded software......Page 250
7 Concurrent models of computation for embedded software......Page 252
8 Retargetable compilers and architecture exploration for embedded processors......Page 280
9 Software power optimisation......Page 318
PART III –Power reduction and management......Page 346
10 Power-efficient data management for dynamic applications......Page 348
11 Low power system scheduling, synthesis and displays......Page 390
12 Power minimisation techniques at the RT-level and below......Page 416
13 Leakage power analysis and reduction for nano-scale circuits......Page 444
PART IV – Reconfigurable computing......Page 478
14 Reconfigurable computing: architectures and design methods......Page 480
PART V–Architectural synthesis......Page 524
15 CAD tools for embedded analogue circuits in mixed-signal integrated Systems-on-Chip......Page 526
16 Clock-less circuits and system synthesis......Page 570
PART VI – Network-on-chip......Page 616
17 Network-on-chip architectures and design methods......Page 618
18 Asynchronous on-chip networks......Page 654
PART VII –Simulation and verification......Page 686
19 Covalidation of complex hardware/software systems......Page 688
20 Hardware/software cosimulation from interface perspective......Page 718
21 System-level validation using formal techniques......Page 744
PART VIII – Manufacturing test......Page 778
22 Efficient modular testing and test resource partitioning for core-based SoCs......Page 780
23 On-chip test infrastructure design for optimal multi-site testing......Page 820
24 High-resolution flash time-to-digital conversion and calibration for system-on-chip testing......Page 850
25 Yield and reliability prediction forDSM circuits......Page 886
Index......Page 920