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Die-Attach Materials for High Temperature Applications in Microelectronics Packaging: Materials, Processes, Equipment, and Reliability

ISBN-13: 9783319992556 / Angielski / Twarda / 2019 / 279 str.

Kim S. Siow
Die-Attach Materials for High Temperature Applications in Microelectronics Packaging: Materials, Processes, Equipment, and Reliability Siow, Kim S. 9783319992556 Springer - książkaWidoczna okładka, to zdjęcie poglądowe, a rzeczywista szata graficzna może różnić się od prezentowanej.

Die-Attach Materials for High Temperature Applications in Microelectronics Packaging: Materials, Processes, Equipment, and Reliability

ISBN-13: 9783319992556 / Angielski / Twarda / 2019 / 279 str.

Kim S. Siow
cena 726,29
(netto: 691,70 VAT:  5%)

Najniższa cena z 30 dni: 655,41
Termin realizacji zamówienia:
ok. 22 dni roboczych
Dostawa w 2026 r.

Darmowa dostawa!
Kategorie:
Technologie
Kategorie BISAC:
Technology & Engineering > Materials Science - Electronic Materials
Technology & Engineering > Electronics - General
Technology & Engineering > Quality Control
Wydawca:
Springer
Język:
Angielski
ISBN-13:
9783319992556
Rok wydania:
2019
Wydanie:
2019
Ilość stron:
279
Waga:
0.60 kg
Wymiary:
23.39 x 15.6 x 1.75
Oprawa:
Twarda
Wolumenów:
01
Dodatkowe informacje:
Wydanie ilustrowane

INemi High Temperature Pb-Free Attach Material.- Historical Context & Processing of Sintered Ag.- Ag Sintering and Solder Solidification.- Sintered Silver for LED Applications.- Equipment and Automation of Sintering Silver En-Masse.- Development and Process Control of Sintered Ag in Production.- Thermal Mechanical Modeling for Sintered Silver and Solder Alloy.- Reliability and Failure Mechanism of Sintered Ag in Power Modules.- The compatibility and selectivity of Ag sintering die attach with various surface metallization.- Morphological changes in sintered silver due to atomic migration.- Electrical properties of sintered Ag and its relationship to microstructural evolution.- High Temperature Solder alloy for die attach.- Transient liquid phase bonding.- Sintered copper.

Kim S. Siow is a Research Fellow at the Institute of Microengineering and Nanoelectronics, Universiti Kebangsaan Malaysia. Before joining IMEN, he has worked as a materials engineer at multinational companies and the National University of Singapore. His research interests are related to joining technologies using sintered silver for power electronics applications and surface modification using plasma technologies for biomaterials, adhesion and microfluidic applications.  His recent review papers on sintered silver are among the top-ranked worldwide. He is a regular reviewer of journal papers for more than 20 international journals. A strong believer in giving back to community, he has served in various capacities organizing conferences such as 36-38th IEMT, ICSE (2014-2016), the 15th-20th EPTC (Singapore), as well as outreach programs at the University of Yangon. He completed his Ph.D. in Engineering (Minerals and Materials) at Ian Wark Research Institute under University of South Australia Presidential Scholarship as well as the Master of Applied Science and Bachelor of Applied Science (Materials Engineering) with Hons. degrees from Nanyang  Technological University in 2007, 2000 and 1997 respectively. He is also a certified Project Management Professional, PMP®, since 2009.

This book presents the scientific principles, processing conditions, probable failure mechanisms, and a description of reliability performance and equipment required for implementing high-temperature and lead-free die attach materials. In particular, it addresses the use of solder alloys, silver and copper sintering, and transient liquid-phase sintering. While different solder alloys have been used widely in the microelectronics industry, the implementation of sintering silver and transient liquid-phase sintering remains limited to a handful of companies. Hence, the book devotes many chapters to sintering technologies, while simultaneously providing only a cursory coverage of the more widespread techniques employing solder alloys.

  • Addresses the differences between sintering and soldering (the current die-attach technologies), thereby comprehensively addressing principles, methods, and performance of these high-temperature die-attach materials;
  • Emphasizes the industrial perspective, with chapters written by engineers who have hands-on experience using these technologies; Baker Hughes, Bosch and ON Semiconductor, are represented as well as materials suppliers such as Indium;
  • Simultaneously provides the detailed science underlying these technologies by leading academic researchers in the field.



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