Packaging, Reliability and Manufacturing Issues Associated with Electronic and Photonic Products
Author: Charles Ume
Publisher:
Published: 2001
Total Pages: 322
ISBN-13:
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Author: Charles Ume
Publisher:
Published: 2001
Total Pages: 322
ISBN-13:
DOWNLOAD EBOOKAuthor: Ephraim Suhir
Publisher: John Wiley & Sons
Published: 2011-04-04
Total Pages: 610
ISBN-13: 047088679X
DOWNLOAD EBOOKThe proposed book will offer comprehensive and versatile methodologies and recommendations on how to determine dynamic characteristics of typical micro- and opto-electronic structural elements (printed circuit boards, solder joints, heavy devices, etc.) and how to design a viable and reliable structure that would be able to withstand high-level dynamic loading. Particular attention will be given to portable devices and systems designed for operation in harsh environments (such as automotive, aerospace, military, etc.) In-depth discussion from a mechanical engineer's viewpoint will be conducted to the key components’ level as well as the whole device level. Both theoretical (analytical and computer-aided) and experimental methods of analysis will be addressed. The authors will identify how the failure control parameters (e.g. displacement, strain and stress) of the vulnerable components may be affected by the external vibration or shock loading, as well as by the internal parameters of the infrastructure of the device. Guidelines for material selection, effective protection and test methods will be developed for engineering practice.
Author: Ephraim Suhir
Publisher: Springer Science & Business Media
Published: 2007-05-26
Total Pages: 1471
ISBN-13: 0387329897
DOWNLOAD EBOOKThis 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.
Author:
Publisher:
Published: 2002
Total Pages: 594
ISBN-13:
DOWNLOAD EBOOKAuthor: John Lau
Publisher: McGraw Hill Professional
Published: 2002-08-23
Total Pages: 710
ISBN-13: 9780071386241
DOWNLOAD EBOOKAn engineer's guidebook demonstrating non-toxic electronics manufacturing processes
Author: ASM International
Publisher: ASM International
Published: 2001-01-01
Total Pages: 456
ISBN-13: 1615030859
DOWNLOAD EBOOKAuthor: C. P.(Ching-Ping) Wong
Publisher: Springer Nature
Published: 2021-03-17
Total Pages: 582
ISBN-13: 303049991X
DOWNLOAD EBOOKThis book shows how nanofabrication techniques and nanomaterials can be used to customize packaging for nano devices with applications to electronics, photonics, biological and biomedical research and products. It covers topics such as bio sensing electronics, bio device packaging, MEMS for bio devices and much more, including: Offers a comprehensive overview of nano and bio packaging and their materials based on their chemical and physical sciences and mechanical, electrical and material engineering perspectives; Discusses nano materials as power energy sources, computational analyses of nano materials including molecular dynamic (MD) simulations and DFT calculations; Analyzes nanotubes, superhydrophobic self-clean Lotus surfaces; Covers nano chemistry for bio sensor/bio material device packaging. This second edition includes new chapters on soft materials-enabled packaging for stretchable and wearable electronics, state of the art miniaturization for active implantable medical devices, recent LED packaging and progress, nanomaterials for recent energy storage devices such as lithium ion batteries and supercapacitors and their packaging. Nano- Bio- Electronic, Photonic and MEMS Packaging is the ideal book for all biomedical engineers, industrial electronics packaging engineers, and those engaged in bio nanotechnology applications research.
Author: Titu I. Băjenescu
Publisher: Artech House
Published: 2010
Total Pages: 706
ISBN-13: 1596934360
DOWNLOAD EBOOKThe main reason for the premature breakdown of today's electronic products (computers, cars, tools, appliances, etc.) is the failure of the components used to build these products. Today professionals are looking for effective ways to minimize the degradation of electronic components to help ensure longer-lasting, more technically sound products and systems. This practical book offers engineers specific guidance on how to design more reliable components and build more reliable electronic systems. Professionals learn how to optimize a virtual component prototype, accurately monitor product reliability during the entire production process, and add the burn-in and selection procedures that are the most appropriate for the intended applications. Moreover, the book helps system designers ensure that all components are correctly applied, margins are adequate, wear-out failure modes are prevented during the expected duration of life, and system interfaces cannot lead to failure.
Author: W.D. van Driel
Publisher: Springer Science & Business Media
Published: 2012-09-06
Total Pages: 619
ISBN-13: 1461430674
DOWNLOAD EBOOKSolid State Lighting Reliability: Components to Systems begins with an explanation of the major benefits of solid state lighting (SSL) when compared to conventional lighting systems including but not limited to long useful lifetimes of 50,000 (or more) hours and high efficacy. When designing effective devices that take advantage of SSL capabilities the reliability of internal components (optics, drive electronics, controls, thermal design) take on critical importance. As such a detailed discussion of reliability from performance at the device level to sub components is included as well as the integrated systems of SSL modules, lamps and luminaires including various failure modes, reliability testing and reliability performance. A follow-up, Solid State Lighting Reliability Part 2, was published in 2017.