Author: | Vasilis F. Pavlidis, Ioannis Savidis, Eby G. Friedman | ISBN: | 9780124104846 |
Publisher: | Elsevier Science | Publication: | July 4, 2017 |
Imprint: | Morgan Kaufmann | Language: | English |
Author: | Vasilis F. Pavlidis, Ioannis Savidis, Eby G. Friedman |
ISBN: | 9780124104846 |
Publisher: | Elsevier Science |
Publication: | July 4, 2017 |
Imprint: | Morgan Kaufmann |
Language: | English |
Three-Dimensional Integrated Circuit Design, Second Eition, expands the original with more than twice as much new content, adding the latest developments in circuit models, temperature considerations, power management, memory issues, and heterogeneous integration. 3-D IC experts Pavlidis, Savidis, and Friedman cover the full product development cycle throughout the book, emphasizing not only physical design, but also algorithms and system-level considerations to increase speed while conserving energy. A handy, comprehensive reference or a practical design guide, this book provides effective solutions to specific challenging problems concerning the design of three-dimensional integrated circuits.
Expanded with new chapters and updates throughout based on the latest research in 3-D integration:
Manufacturing techniques for 3-D ICs with TSVs
Electrical modeling and closed-form expressions of through silicon vias
Substrate noise coupling in heterogeneous 3-D ICs
Design of 3-D ICs with inductive links
Synchronization in 3-D ICs
Variation effects on 3-D ICs
Correlation of WID variations for intra-tier buffers and wires
Offers practical guidance on designing 3-D heterogeneous systems
Provides power delivery of 3-D ICs
Demonstrates the use of 3-D ICs within heterogeneous systems that include a variety of materials, devices, processors, GPU-CPU integration, and more
Provides experimental case studies in power delivery, synchronization, and thermal characterization
Three-Dimensional Integrated Circuit Design, Second Eition, expands the original with more than twice as much new content, adding the latest developments in circuit models, temperature considerations, power management, memory issues, and heterogeneous integration. 3-D IC experts Pavlidis, Savidis, and Friedman cover the full product development cycle throughout the book, emphasizing not only physical design, but also algorithms and system-level considerations to increase speed while conserving energy. A handy, comprehensive reference or a practical design guide, this book provides effective solutions to specific challenging problems concerning the design of three-dimensional integrated circuits.
Expanded with new chapters and updates throughout based on the latest research in 3-D integration:
Manufacturing techniques for 3-D ICs with TSVs
Electrical modeling and closed-form expressions of through silicon vias
Substrate noise coupling in heterogeneous 3-D ICs
Design of 3-D ICs with inductive links
Synchronization in 3-D ICs
Variation effects on 3-D ICs
Correlation of WID variations for intra-tier buffers and wires
Offers practical guidance on designing 3-D heterogeneous systems
Provides power delivery of 3-D ICs
Demonstrates the use of 3-D ICs within heterogeneous systems that include a variety of materials, devices, processors, GPU-CPU integration, and more
Provides experimental case studies in power delivery, synchronization, and thermal characterization