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Books > Science & Mathematics > Physics > States of matter > Condensed matter physics (liquids & solids)

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Factors Governing Tin Whisker Growth (Hardcover, 2013 ed.) Loot Price: R3,507
Discovery Miles 35 070
You Save: R582 (14%)
Factors Governing Tin Whisker Growth (Hardcover, 2013 ed.): Erika R Crandall

Factors Governing Tin Whisker Growth (Hardcover, 2013 ed.)

Erika R Crandall

Series: Springer Theses

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List price R4,089 Loot Price R3,507 Discovery Miles 35 070 | Repayment Terms: R329 pm x 12* You Save R582 (14%)

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Tin (Sn) whiskers are electrically conductive, single crystal eruptions that grow from Sn film surfaces. Their high aspect ratio presents reliability problems for the electronics industry due to bridging and metal arcing, leading to malfunctions and catastrophic failures in many electronic systems (including satellite and defense sectors). Due to legislation in the EU, Japan, and the U.S., mandating a gradual shift from lead (Pb)-based to lead-free solders and board finishes, there has been a reemergence of Sn whiskers. Continuing reports of Sn whisker induced failures coupled with the lack of an industry-accepted understanding of whisker growth and/or test methods to identify whisker prone products has made pure/high Sn substitutes a risky proposition in high reliability systems. This thesis is designed to clarify and control the fundamental mechanisms that govern whisker formation. The research focuses on reproducible "laboratory" created whiskers under a variety of rigorously controlled environmental factors such as film thickness, film stress, substrate material, gas environment, and humidity exposure, which are known to play a significant role in whisker production. The ultimate question of how to impede and/or prevent whisker growth is also addressed and shows that whisker prevention is possible via hard metal capping films, which are impenetrable by whiskers.

General

Imprint: Springer International Publishing AG
Country of origin: Switzerland
Series: Springer Theses
Release date: September 2013
First published: 2013
Authors: Erika R Crandall
Dimensions: 235 x 155 x 13mm (L x W x T)
Format: Hardcover
Pages: 136
Edition: 2013 ed.
ISBN-13: 978-3-319-00469-3
Categories: Books > Professional & Technical > Industrial chemistry & manufacturing technologies > Metals technology / metallurgy
Books > Science & Mathematics > Physics > States of matter > Condensed matter physics (liquids & solids)
Books > Professional & Technical > Mechanical engineering & materials > Materials science > General
Books > Professional & Technical > Electronics & communications engineering > Electronics engineering > Circuits & components
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LSN: 3-319-00469-7
Barcode: 9783319004693

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