Design of 3D Integrated Circuits and Systems

Forfatter: info mangler
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  • Bog, paperback
  • Engelsk

Beskrivelse

Three-dimensional (3D) integration of microsystems and subsystems has become essential to the future of semiconductor technology development. 3D integration requires a greater understanding of several interconnected systems stacked over each other. While this vertical growth profoundly increases the system functionality, it also exponentially increases the design complexity.

Design of 3D Integrated Circuits and Systems tackles all aspects of 3D integration, including 3D circuit and system design, new processes and simulation techniques, alternative communication schemes for 3D circuits and systems, application of novel materials for 3D systems, and the thermal challenges to restrict power dissipation and improve performance of 3D systems. Containing contributions from experts in industry as well as academia, this authoritative text:



Illustrates different 3D integration approaches, such as die-to-die, die-to-wafer, and wafer-to-wafer

Discusses the use of interposer technology and the role of Through-Silicon Vias (TSVs)

Presents the latest improvements in three major fields of thermal management for multiprocessor systems-on-chip (MPSoCs)

Explores ThruChip Interface (TCI), NAND flash memory stacking, and emerging applications

Describes large-scale integration testing and state-of-the-art low-power testing solutions

Complete with experimental results of chip-level 3D integration schemes tested at IBM and case studies on advanced complementary metal–oxide–semiconductor (CMOS) integration for 3D integrated circuits (ICs), Design of 3D Integrated Circuits and Systems is a practical reference that not only covers a wealth of design issues encountered in 3D integration but also demonstrates their impact on the efficiency of 3D systems.

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Detaljer
  • SprogEngelsk
  • Sidetal324
  • Udgivelsesdato30-09-2020
  • ISBN139780367655921
  • Forlag Crc Press
  • FormatPaperback
Størrelse og vægt
  • Vægt453 g
  • coffee cup img
    10 cm
    book img
    15,6 cm
    23,4 cm

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    Integration Integrated circuit Inductive coupling IC Thermal management Digital CMOS Network on Chip Interface Through-Silicon Vias Microprocessor Three-dimensional 3D Integration Power consumption Cycle Time 3D Network 3D Circuit 3D Integrated Circuit 3D CMOS Integration 3D IC 3D Network-on-Chip 3D System 3D Integration Technology 3D Device ATPG Tool Ballapuram Chinnakrishnan Copper Nanotube Through-Silicon Carbon Nanotube Through-Silicon Clock Gaters Delay Fault Equivalent Electrical Model Chip Stack Die Stack CMOS Integration Cpu Core GPU Core Inductive-Coupling ThruChip Interface Deepak C. Sekar IMC Bonding Graphics Processing Core Integration Interconnect Technology Electrothermal Simulation Jianchen Hu Kiyoung Choi Kinetic Inductance NAND Flash memory Francesco Zanini NoC Architecture Multidrop Bus Paul D. Franzon Graphics Processing Core Sharma Rohit Scan Chains Lin Xijiang Sung Kyu Lim Si CMOS Through-Silicon Katsuyuki Sakuma TSV Bonding Test Vectors Integration Technology Three-Dimensional Circuit Three-Dimensional Device Vertical Interconnects Transition Delay Fault Three-Dimensional IC Microprocessor Integration TSVs Jian-Qiang Lu Krzysztof Iniewski Michael B. Steer Shivam Priyadarshi Three-Dimensional Complementary Metal–Oxide–Semiconductor Integration Three-Dimensional Network Three-Dimensional Network-on-Chip Underfill Material Voltage Droop W. Rhett Davis Ronald J. Gutmann SEM Image Thermal Reliability three-dimensional integration Three-Dimensional System ThruChip Wen Xiaoqing Xiang Dong

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