Reliability of Organic Compounds in Microelectronics and Optoelectronics (eBook, PDF)
From Physics-of-Failure to Physics-of-Degradation
96,29 €
inkl. MwSt.
Sofort per Download lieferbar
Reliability of Organic Compounds in Microelectronics and Optoelectronics (eBook, PDF)
From Physics-of-Failure to Physics-of-Degradation
- Format: PDF
- Merkliste
- Auf die Merkliste
- Bewerten Bewerten
- Teilen
- Produkt teilen
- Produkterinnerung
- Produkterinnerung
Bitte loggen Sie sich zunächst in Ihr Kundenkonto ein oder registrieren Sie sich bei
bücher.de, um das eBook-Abo tolino select nutzen zu können.
Hier können Sie sich einloggen
Hier können Sie sich einloggen
Sie sind bereits eingeloggt. Klicken Sie auf 2. tolino select Abo, um fortzufahren.
Bitte loggen Sie sich zunächst in Ihr Kundenkonto ein oder registrieren Sie sich bei bücher.de, um das eBook-Abo tolino select nutzen zu können.
This book aims to provide a comprehensive reference into the critical subject of failure and degradation in organic materials, used in optoelectronics and microelectronics systems and devices. Readers in different industrial sectors, including microelectronics, automotive, lighting, oil/gas, and petrochemical will benefit from this book. Several case studies and examples are discussed, which readers will find useful to assess and mitigate similar failure cases. More importantly, this book presents methodologies and useful approaches in analyzing a failure and in relating a failure to the reliability of materials and systems.…mehr
- Geräte: PC
- ohne Kopierschutz
- eBook Hilfe
- Größe: 27.17MB
- Upload möglich
Andere Kunden interessierten sich auch für
- Proceedings of SIE 2022 (eBook, PDF)287,83 €
- Recent Advances in Microelectronics Reliability (eBook, PDF)160,49 €
- More-than-Moore Devices and Integration for Semiconductors (eBook, PDF)90,94 €
- Peter RenzIntegrated Hybrid Resonant DCDC Converters (eBook, PDF)90,94 €
- Advanced Materials for Radiation Detection (eBook, PDF)69,54 €
- Erkan YucePassive and Active Circuits by Example (eBook, PDF)106,99 €
- Recent Advances in PMOS Negative Bias Temperature Instability (eBook, PDF)149,79 €
-
-
-
This book aims to provide a comprehensive reference into the critical subject of failure and degradation in organic materials, used in optoelectronics and microelectronics systems and devices. Readers in different industrial sectors, including microelectronics, automotive, lighting, oil/gas, and petrochemical will benefit from this book. Several case studies and examples are discussed, which readers will find useful to assess and mitigate similar failure cases. More importantly, this book presents methodologies and useful approaches in analyzing a failure and in relating a failure to the reliability of materials and systems.
Produktdetails
- Produktdetails
- Verlag: Springer International Publishing
- Erscheinungstermin: 31. Januar 2022
- Englisch
- ISBN-13: 9783030815769
- Artikelnr.: 63378088
- Verlag: Springer International Publishing
- Erscheinungstermin: 31. Januar 2022
- Englisch
- ISBN-13: 9783030815769
- Artikelnr.: 63378088
Willem Dirk van Driel has a >20-year track record in the reliability domain. Application areas range from healthcare, gas and oil explorations, semiconductors and my current position in Philips Lighting where he is responsible for Solid State Lighting reliability. Besides that, he holds a professor position at the University of Delft, The Netherlands. His scientific interests are solid state lighting, microelectronics and microsystems technologies, virtual prototyping, virtual reliability qualification and designing for reliability of microelectronics and microsystems. He acts as the chair for the organizing committee of the IEEE conference EuroSimE and has authored and co-authored more than 300 scientific publications, including journal and conference papers, book or book chapters and invited keynote lectures. He holds 20 patents. He is a certified DFSS Black Belt.
In her PhD and Post-Doc projects Dr. Yazdan Mehr has extensively worked on different aspectsof LED-based products, i.e. materials, design, reliability, and degradation. She developed a deep understanding of correlation between design, materials, and degradation mechanism relationships in LEDs. As well, she has a solid background in Materials Engineering as Dr Yazdan Mehr performed her Master at Materials Engineering Department of TUDelft.
In her PhD and Post-Doc projects Dr. Yazdan Mehr has extensively worked on different aspectsof LED-based products, i.e. materials, design, reliability, and degradation. She developed a deep understanding of correlation between design, materials, and degradation mechanism relationships in LEDs. As well, she has a solid background in Materials Engineering as Dr Yazdan Mehr performed her Master at Materials Engineering Department of TUDelft.
Introduction to reliability.- Introduction to failure analysis methodologies.- An overview of remaining life assessment methodologies in engineering materials.- Reliability and failure of microelectronic materials and components in harsh working conditions.- Reliability and failure of solar cell materials and systems in harsh working conditions.- Electromigration-induced failures in microelectronic components.- Corrosion and degradation of metals.- Creep failures in high temperature alloys.- An overview of failures in boilers and heat exchangers in power plants.- Fatigue-related failures.- Degradation and failure of polymers.- Virtual prototyping techniques for prediction material degradation.- Health monitoring, machine learning and digital twin.-Discussions and concluding remarks.- Index.
Introduction to reliability.- Introduction to failure analysis methodologies.- An overview of remaining life assessment methodologies in engineering materials.- Reliability and failure of microelectronic materials and components in harsh working conditions.- Reliability and failure of solar cell materials and systems in harsh working conditions.- Electromigration-induced failures in microelectronic components.- Corrosion and degradation of metals.- Creep failures in high temperature alloys.- An overview of failures in boilers and heat exchangers in power plants.- Fatigue-related failures.- Degradation and failure of polymers.- Virtual prototyping techniques for prediction material degradation.- Health monitoring, machine learning and digital twin.-Discussions and concluding remarks.- Index.
Introduction to reliability.- Introduction to failure analysis methodologies.- An overview of remaining life assessment methodologies in engineering materials.- Reliability and failure of microelectronic materials and components in harsh working conditions.- Reliability and failure of solar cell materials and systems in harsh working conditions.- Electromigration-induced failures in microelectronic components.- Corrosion and degradation of metals.- Creep failures in high temperature alloys.- An overview of failures in boilers and heat exchangers in power plants.- Fatigue-related failures.- Degradation and failure of polymers.- Virtual prototyping techniques for prediction material degradation.- Health monitoring, machine learning and digital twin.-Discussions and concluding remarks.- Index.
Introduction to reliability.- Introduction to failure analysis methodologies.- An overview of remaining life assessment methodologies in engineering materials.- Reliability and failure of microelectronic materials and components in harsh working conditions.- Reliability and failure of solar cell materials and systems in harsh working conditions.- Electromigration-induced failures in microelectronic components.- Corrosion and degradation of metals.- Creep failures in high temperature alloys.- An overview of failures in boilers and heat exchangers in power plants.- Fatigue-related failures.- Degradation and failure of polymers.- Virtual prototyping techniques for prediction material degradation.- Health monitoring, machine learning and digital twin.-Discussions and concluding remarks.- Index.