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Three Dimensional System Integration

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Release : 2010-12-07
Genre : Architecture
Kind : eBook
Book Rating : 621/5 ( reviews)

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Book Synopsis Three Dimensional System Integration by : Antonis Papanikolaou

Download or read book Three Dimensional System Integration written by Antonis Papanikolaou. This book was released on 2010-12-07. Available in PDF, EPUB and Kindle. Book excerpt: Three-dimensional (3D) integrated circuit (IC) stacking is the next big step in electronic system integration. It enables packing more functionality, as well as integration of heterogeneous materials, devices, and signals, in the same space (volume). This results in consumer electronics (e.g., mobile, handheld devices) which can run more powerful applications, such as full-length movies and 3D games, with longer battery life. This technology is so promising that it is expected to be a mainstream technology a few years from now, less than 10-15 years from its original conception. To achieve this type of end product, changes in the entire manufacturing and design process of electronic systems are taking place. This book provides readers with an accessible tutorial on a broad range of topics essential to the non-expert in 3D System Integration. It is an invaluable resource for anybody in need of an overview of the 3D manufacturing and design chain.

3D Integration for VLSI Systems

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Release : 2016-04-19
Genre : Science
Kind : eBook
Book Rating : 828/5 ( reviews)

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Book Synopsis 3D Integration for VLSI Systems by : Chuan Seng Tan

Download or read book 3D Integration for VLSI Systems written by Chuan Seng Tan. This book was released on 2016-04-19. Available in PDF, EPUB and Kindle. Book excerpt: Three-dimensional (3D) integration is identified as a possible avenue for continuous performance growth in integrated circuits (IC) as the conventional scaling approach is faced with unprecedented challenges in fundamental and economic limits. Wafer level 3D IC can take several forms, and they usually include a stack of several thinned IC layers th

3D Integration in VLSI Circuits

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Release : 2018-04-17
Genre : Technology & Engineering
Kind : eBook
Book Rating : 826/5 ( reviews)

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Book Synopsis 3D Integration in VLSI Circuits by : Katsuyuki Sakuma

Download or read book 3D Integration in VLSI Circuits written by Katsuyuki Sakuma. This book was released on 2018-04-17. Available in PDF, EPUB and Kindle. Book excerpt: Currently, the term 3D integration includes a wide variety of different integration methods, such as 2.5-dimensional (2.5D) interposer-based integration, 3D integrated circuits (3D ICs), 3D systems-in-package (SiP), 3D heterogeneous integration, and monolithic 3D ICs. The goal of this book is to provide readers with an understanding of the latest challenges and issues in 3D integration. TSVs are not the only technology element needed for 3D integration. There are numerous other key enabling technologies required for 3D integration, and the speed of the development in this emerging field is very rapid. To provide readers with state-of-the-art information on 3D integration research and technology developments, each chapter has been contributed by some of the world’s leading scientists and experts from academia, research institutes, and industry from around the globe. Covers chip/wafer level 3D integration technology, memory stacking, reconfigurable 3D, and monolithic 3D IC. Discusses the use of silicon interposer and organic interposer. Presents architecture, design, and technology implementations for 3D FPGA integration. Describes oxide bonding, Cu/SiO2 hybrid bonding, adhesive bonding, and solder bonding. Addresses the issue of thermal dissipation in 3D integration.

Three-Dimensional Integrated Circuit Design

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Release : 2009-12-02
Genre : Technology & Engineering
Kind : eBook
Book Rating : 84X/5 ( reviews)

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Book Synopsis Three-Dimensional Integrated Circuit Design by : Yuan Xie

Download or read book Three-Dimensional Integrated Circuit Design written by Yuan Xie. This book was released on 2009-12-02. Available in PDF, EPUB and Kindle. Book excerpt: We live in a time of great change. In the electronics world, the last several decades have seen unprecedented growth and advancement, described by Moore’s law. This observation stated that transistor density in integrated circuits doubles every 1. 5–2 years. This came with the simultaneous improvement of individual device perf- mance as well as the reduction of device power such that the total power of the resulting ICs remained under control. No trend remains constant forever, and this is unfortunately the case with Moore’s law. The trouble began a number of years ago when CMOS devices were no longer able to proceed along the classical scaling trends. Key device parameters such as gate oxide thickness were simply no longer able to scale. As a result, device o- state currents began to creep up at an alarming rate. These continuing problems with classical scaling have led to a leveling off of IC clock speeds to the range of several GHz. Of course, chips can be clocked higher but the thermal issues become unmanageable. This has led to the recent trend toward microprocessors with mul- ple cores, each running at a few GHz at the most. The goal is to continue improving performance via parallelism by adding more and more cores instead of increasing speed. The challenge here is to ensure that general purpose codes can be ef?ciently parallelized. There is another potential solution to the problem of how to improve CMOS technology performance: three-dimensional integrated circuits (3D ICs).

Handbook of 3D Integration, Volume 3

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Release : 2014-07-21
Genre : Technology & Engineering
Kind : eBook
Book Rating : 661/5 ( reviews)

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Book Synopsis Handbook of 3D Integration, Volume 3 by : Philip Garrou

Download or read book Handbook of 3D Integration, Volume 3 written by Philip Garrou. This book was released on 2014-07-21. Available in PDF, EPUB and Kindle. Book excerpt: Edited by key figures in 3D integration and written by top authors from high-tech companies and renowned research institutions, this book covers the intricate details of 3D process technology. As such, the main focus is on silicon via formation, bonding and debonding, thinning, via reveal and backside processing, both from a technological and a materials science perspective. The last part of the book is concerned with assessing and enhancing the reliability of the 3D integrated devices, which is a prerequisite for the large-scale implementation of this emerging technology. Invaluable reading for materials scientists, semiconductor physicists, and those working in the semiconductor industry, as well as IT and electrical engineers.

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