Microelectronics Packaging Handbook

Microelectronics Packaging Handbook
Author: R.R. Tummala
Publisher: Springer Science & Business Media
Total Pages: 1060
Release: 2013-11-27
Genre: Computers
ISBN: 1461560373

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Electronics has become the largest industry, surpassing agriculture, auto, and heavy metal industries. It has become the industry of choice for a country to prosper, already having given rise to the phenomenal prosperity of Japan, Korea, Singapore, Hong Kong, and Ireland among others. At the current growth rate, total worldwide semiconductor sales will reach $300B by the year 2000. The key electronic technologies responsible for the growth of the industry include semiconductors, the packaging of semiconductors for systems use in auto, telecom, computer, consumer, aerospace, and medical industries, displays, magnetic, and optical storage as well as software and system technologies. There has been a paradigm shift, however, in these technologies, from mainframe and supercomputer applications at any cost, to consumer applications at approximately one-tenth the cost and size. Personal computers are a good example, going from $500IMIP when products were first introduced in 1981, to a projected $IIMIP within 10 years. Thin, light portable, user friendly and very low-cost are, therefore, the attributes of tomorrow's computing and communications systems. Electronic packaging is defined as interconnection, powering, cool ing, and protecting semiconductor chips for reliable systems. It is a key enabling technology achieving the requirements for reducing the size and cost at the system and product level.

Microelectronics Packaging Handbook

Microelectronics Packaging Handbook
Author: Rao Tummala
Publisher: Springer Science & Business Media
Total Pages: 662
Release: 1997-01-31
Genre: Computers
ISBN: 9780412084515

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This thoroughly revised and updated three volume set continues to be the standard reference in the field, providing the latest in microelectronics design methods, modeling tools, simulation techniques, and manufacturing procedures. Unlike reference books that focus only on a few aspects of microelectronics packaging, these outstanding volumes discuss state-of-the-art packages that meet the power, cooling, protection, and interconnection requirements of increasingly dense and fast microcircuitry. Providing an excellent balance of theory and practical applications, this dynamic compilation features step-by-step examples and vital technical data, simplifying each phase of package design and production. In addition, the volumes contain over 2000 references, 900 figures, and 250 tables. Part I: Technology Drivers covers the driving force of microelectronics packaging - electrical, thermal, and reliability. It introduces the technology developer to aspects of manufacturing that must be considered during product development. Part II: Semiconductor Packaging discusses the interconnection of the IC chip to the first level of packaging and all first level packages. Electrical test, sealing, and encapsulation technologies are also covered in detail. Part III: Subsystem Packaging explores board level packaging as well as connectors, cables, and optical packaging.

Microelectronics Packaging Handbook

Microelectronics Packaging Handbook
Author: R.R. Tummala
Publisher: Springer Science & Business Media
Total Pages: 742
Release: 2012-12-06
Genre: Technology & Engineering
ISBN: 1461540860

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Electronics has become the largest industry, surpassing agriCUlture, auto. and heavy metal industries. It has become the industry of choice for a country to prosper, already having given rise to the phenomenal prosperity of Japan. Korea. Singapore. Hong Kong. and Ireland among others. At the current growth rate, total worldwide semiconductor sales will reach $300B by the year 2000. The key electronic technologies responsible for the growth of the industry include semiconductors. the packaging of semiconductors for systems use in auto, telecom, computer, consumer, aerospace, and medical industries. displays. magnetic, and optical storage as well as software and system technologies. There has been a paradigm shift, however, in these technologies. from mainframe and supercomputer applications at any cost. to consumer applications at approximately one-tenth the cost and size. Personal computers are a good example. going from $500IMIP when products were first introduced in 1981, to a projected $lIMIP within 10 years. Thin. light portable. user friendly and very low-cost are. therefore. the attributes of tomorrow's computing and communications systems. Electronic packaging is defined as interconnection. powering, cool ing, and protecting semiconductor chips for reliable systems. It is a key enabling technology achieving the requirements for reducing the size and cost at the system and product level.

Microelectronics Packaging Handbook

Microelectronics Packaging Handbook
Author: TUMMALA RAO R.
Publisher: Springer
Total Pages:
Release: 1996-12-15
Genre: Science
ISBN: 9780442019938

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Electronic Packaging and Interconnection Handbook

Electronic Packaging and Interconnection Handbook
Author: Charles A. Harper
Publisher: McGraw-Hill Companies
Total Pages: 1020
Release: 1997
Genre: Technology & Engineering
ISBN:

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Charles A. Harper's 2nd edition on designing and manufacturing all the major types of electronic systems is now double the size of the 1st edition. It draws upon the expertise of a dozen experts to make sense of this highly interdisciplinary field

Microelectronics Packaging Handbook

Microelectronics Packaging Handbook
Author: R.R. Tummala
Publisher: Springer
Total Pages: 0
Release: 1989-01-14
Genre: Technology & Engineering
ISBN: 9781461310693

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RALPH E. GOMORY IBM SENIOR VICE-PRESIDENT, SCIENCE AND TECHNOLOGY Far from being passive containers for microelectronic devices, the so-called "packages" in today's advanced computers pose at least as many engineering challenges as the chips that they interconnect, power, and cool. New pack aging concepts often lead their developers into uncharted areas of science. Ultimately, progress in packaging is likely to set the limits on how far computers can evolve. And yet, this technology has never captured the public imagination in the way that chips have. Worse, it has been largely overlooked by universities as a prime subject for teaching and research. In part, this academic oversight stems from packaging's multidiscipli nary nature. Packaging involves the solution of electrical, mechanical, and thermal problems; it requires understanding at the molecular level not only of silicon but of metals, ceramics, polymers, glass, and composites. In short, iii iv FOREWORD it is poorly matched to the traditional separation of university disciplines. Another roadblock has been the lack of a comprehensive book dealing ade quately with state of the art packaging design and modern industry require ments.

Microelectronics Packaging Handbook, 3-part set

Microelectronics Packaging Handbook, 3-part set
Author: Rao Tummala
Publisher: Springer
Total Pages: 3000
Release: 1997-01-31
Genre: Computers
ISBN: 9780412084614

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This thoroughly revised and updated three volume set continues to be the standard reference in the field, providing the latest in microelectronics design methods, modeling tools, simulation techniques, and manufacturing procedures. Unlike reference books that focus only on a few aspects of microelectronics packaging, these outstanding volumes discuss state-of-the-art packages that meet the power, cooling, protection, and interconnection requirements of increasingly dense and fast microcircuitry. Providing an excellent balance of theory and practical applications, this dynamic compilation features step-by-step examples and vital technical data, simplifying each phase of package design and production. In addition, the volumes contain over 2000 references, 900 figures, and 250 tables. Part I: Technology Drivers covers the driving force of microelectronics packaging - electrical, thermal, and reliability. It introduces the technology developer to aspects of manufacturing that must be considered during product development. Part II: Semiconductor Packaging discusses the interconnection of the IC chip to the first level of packaging and all first level packages. Electrical test, sealing, and encapsulation technologies are also covered in detail. Part III: Subsystem Packaging explores board level packaging as well as connectors, cables, and optical packaging.

Fundamentals of Microsystems Packaging

Fundamentals of Microsystems Packaging
Author: Rao Tummala
Publisher: McGraw Hill Professional
Total Pages: 979
Release: 2001-05-08
Genre: Technology & Engineering
ISBN: 0071500596

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LEARN ABOUT MICROSYSTEMS PACKAGING FROM THE GROUND UP Written by Rao Tummala, the field’s leading author, Fundamentals of Microsystems Packaging is the only book to cover the field from wafer to systems, including every major contributing technology. This rigorous and thorough introduction to electronic packaging technologies gives you a solid grounding in microelectronics, photonics, RF, packaging design, assembly, reliability, testing, and manufacturing and its relevance to both semiconductors and systems. You’ll find: *Full coverage of electrical, mechanical, chemical, and materials aspects of each technology *Easy-to-read schematics and block diagrams *Fundamental approaches to all system issues *Examples of all common configurations and technologies—wafer level packaging, single chip, multichip, RF, opto-electronic, microvia boards, thermal and others *Details on chip-to-board connections, sealing and encapsulation, and manufacturing processes *Basics of electrical and reliability testing

3D Microelectronic Packaging

3D Microelectronic Packaging
Author: Yan Li
Publisher: Springer Nature
Total Pages: 629
Release: 2020-11-23
Genre: Technology & Engineering
ISBN: 9811570906

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This book offers a comprehensive reference guide for graduate students and professionals in both academia and industry, covering the fundamentals, architecture, processing details, and applications of 3D microelectronic packaging. It provides readers an in-depth understanding of the latest research and development findings regarding this key industry trend, including TSV, die processing, micro-bumps for LMI and MMI, direct bonding and advanced materials, as well as quality, reliability, fault isolation, and failure analysis for 3D microelectronic packages. Images, tables, and didactic schematics are used to illustrate and elaborate on the concepts discussed. Readers will gain a general grasp of 3D packaging, quality and reliability concerns, and common causes of failure, and will be introduced to developing areas and remaining gaps in 3D packaging that can help inspire future research and development.