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Micro- and Opto-Electronic Materials and Structures: Physics, Mechanics, Design, Reliability, Packaging

Micro- and Opto-Electronic Materials and Structures: Physics, Mechanics, Design, Reliability, Packaging PDF Author: Ephraim Suhir
Publisher: Springer Science & Business Media
ISBN: 0387329897
Category : Technology & Engineering
Languages : en
Pages : 1471

Book Description
This handbook provides the most comprehensive, up-to-date and easy-to-apply information on the physics, mechanics, reliability and packaging of micro- and opto-electronic materials. It details their assemblies, structures and systems, and each chapter contains a summary of the state-of-the-art in a particular field. The book provides practical recommendations on how to apply current knowledge and technology to design and manufacture. It further describes how to operate a viable, reliable and cost-effective electronic component or photonic device, and how to make such a device into a successful commercial product.

Micro- and Opto-Electronic Materials and Structures: Physics, Mechanics, Design, Reliability, Packaging

Micro- and Opto-Electronic Materials and Structures: Physics, Mechanics, Design, Reliability, Packaging PDF Author: Ephraim Suhir
Publisher: Springer Science & Business Media
ISBN: 0387329897
Category : Technology & Engineering
Languages : en
Pages : 1471

Book Description
This handbook provides the most comprehensive, up-to-date and easy-to-apply information on the physics, mechanics, reliability and packaging of micro- and opto-electronic materials. It details their assemblies, structures and systems, and each chapter contains a summary of the state-of-the-art in a particular field. The book provides practical recommendations on how to apply current knowledge and technology to design and manufacture. It further describes how to operate a viable, reliable and cost-effective electronic component or photonic device, and how to make such a device into a successful commercial product.

Micro- and Opto-electronic Materials and Structures: Materials physics

Micro- and Opto-electronic Materials and Structures: Materials physics PDF Author: Ephraim Suhir
Publisher:
ISBN:
Category : Microelectronics
Languages : en
Pages :

Book Description


Micro- and Opto-electronic Materials and Structures

Micro- and Opto-electronic Materials and Structures PDF Author: Ephraim Suhir
Publisher:
ISBN:
Category :
Languages : en
Pages : 725

Book Description


Micro- and Opto-electronic Materials and Structures: Physical design

Micro- and Opto-electronic Materials and Structures: Physical design PDF Author: Ephraim Suhir
Publisher:
ISBN:
Category : Microelectronics
Languages : en
Pages :

Book Description


Materials Physics - Materials Mechanics

Materials Physics - Materials Mechanics PDF Author: Yung-Chang Lee
Publisher:
ISBN:
Category :
Languages : en
Pages : 725

Book Description


Micro- and Opto-electronic Materials and Structures

Micro- and Opto-electronic Materials and Structures PDF Author: Ephraim Suhir
Publisher:
ISBN:
Category :
Languages : en
Pages : 735

Book Description


Physics Design - Reliability and Packaging

Physics Design - Reliability and Packaging PDF Author: Yung-Chang Lee
Publisher:
ISBN:
Category :
Languages : en
Pages : 735

Book Description


Handbook of Organic Materials for Optical and (Opto)Electronic Devices

Handbook of Organic Materials for Optical and (Opto)Electronic Devices PDF Author: Oksana Ostroverkhova
Publisher: Elsevier
ISBN: 0857098764
Category : Technology & Engineering
Languages : en
Pages : 832

Book Description
Small molecules and conjugated polymers, the two main types of organic materials used for optoelectronic and photonic devices, can be used in a number of applications including organic light-emitting diodes, photovoltaic devices, photorefractive devices and waveguides. Organic materials are attractive due to their low cost, the possibility of their deposition from solution onto large-area substrates, and the ability to tailor their properties. The Handbook of organic materials for optical and (opto)electronic devices provides an overview of the properties of organic optoelectronic and nonlinear optical materials, and explains how these materials can be used across a range of applications.Parts one and two explore the materials used for organic optoelectronics and nonlinear optics, their properties, and methods of their characterization illustrated by physical studies. Part three moves on to discuss the applications of optoelectronic and nonlinear optical organic materials in devices and includes chapters on organic solar cells, electronic memory devices, and electronic chemical sensors, electro-optic devices.The Handbook of organic materials for optical and (opto)electronic devices is a technical resource for physicists, chemists, electrical engineers and materials scientists involved in research and development of organic semiconductor and nonlinear optical materials and devices. Comprehensively examines the properties of organic optoelectronic and nonlinear optical materials Discusses their applications in different devices including solar cells, LEDs and electronic memory devices An essential technical resource for physicists, chemists, electrical engineers and materials scientists

Electronic Materials Science

Electronic Materials Science PDF Author: Eugene A. Irene
Publisher: John Wiley & Sons
ISBN: 9780471711636
Category : Science
Languages : en
Pages : 400

Book Description
A thorough introduction to fundamental principles andapplications From its beginnings in metallurgy and ceramics, materials sciencenow encompasses such high- tech fields as microelectronics,polymers, biomaterials, and nanotechnology. Electronic MaterialsScience presents the fundamentals of the subject in a detailedfashion for a multidisciplinary audience. Offering a higher-leveltreatment than an undergraduate textbook provides, this textbenefits students and practitioners not only in electronics andoptical materials science, but also in additional cutting-edgefields like polymers and biomaterials. Readers with a basic understanding of physical chemistry or physicswill appreciate the text's sophisticated presentation of today'smaterials science. Instructive derivations of important formulae,usually omitted in an introductory text, are included here. Thisfeature offers a useful glimpse into the foundations of how thediscipline understands such topics as defects, phase equilibria,and mechanical properties. Additionally, concepts such asreciprocal space, electron energy band theory, and thermodynamicsenter the discussion earlier and in a more robust fashion than inother texts. Electronic Materials Science also features: * An orientation towards industry and academia drawn from theauthor's experience in both arenas * Information on applications in semiconductors, optoelectronics,photocells, and nanoelectronics * Problem sets and important references throughout * Flexibility for various pedagogical needs Treating the subject with more depth than any other introductorytext, Electronic Materials Science prepares graduate andupper-level undergraduate students for advanced topics in thediscipline and gives scientists in associated disciplines a clearreview of the field and its leading technologies.

Electronic Materials

Electronic Materials PDF Author: H.L. Kwok
Publisher: Trans Tech Publications Ltd
ISBN: 3038134430
Category : Technology & Engineering
Languages : en
Pages : 486

Book Description
Volume is indexed by Thomson Reuters BCI (WoS). The electronic properties of solids have become of increasing importance in the age of information technology. The study of solids and materials, while having originated from the disciplines of physics and chemistry, has evolved independently over the past few decades. The classical treatment of solid-state physics, which emphasized classifications, theories and fundamental physical principles, is no longer able to bridge the gap between materials advances and applications. In particular, the more recent developments in device physics and technology have not necessarily been driven by new concepts in physics or new materials, but rather by the ability of engineers to control crystal structures and properties better via advances in crystal growth and patterning techniques. In many cases, new applications simply arise from the adaption of conventional ideas to interdisciplinary areas. One example is that of recent advances which rely heavily upon the availability of the sub-micron technology developed by the semiconductor industry. Another example is the emergence of nanotechnology.