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HERO ID
2184767
Reference Type
Journal Article
Title
Effect of Temperature and Relative Humidity on the Impedance Degradation of Dust-Contaminated Electronics
Author(s)
Song, Bo; Azarian, MH; Pecht, MG
Year
2013
Is Peer Reviewed?
1
Journal
Journal of Electrochemical Society
ISSN:
0013-4651
EISSN:
1945-7111
Volume
160
Issue
3
Page Numbers
C97-C105
DOI
10.1149/2.024303jes
Web of Science Id
WOS:000315307500022
Abstract
One of the critical failure modes caused by dust contamination in electronics is surface insulation resistance degradation, or impedance degradation. Impedance degradation can lead to intermittent or permanent failure of PCB assemblies. In this study, two outdoor natural dust samples were collected from the field. We experimentally demonstrated that natural dust can cause impedance degradation under controlled temperature (20 degrees C to 60 degrees C) and relative humidity (50% to 95%) conditions. Critical transition ranges of relative humidity for the two dust samples were determined. Below the starting point of the transition range, the impedance was constant. Above the starting point of the range, the impedance degraded by orders of magnitude. The value of the critical transition range decreased with an increase in dust deposition density. Significant impedance degradation was observed as the temperature was raised from 20 degrees C to 50 degrees C. For each 10 degrees C increase of temperature, the impedance dropped by approximately one order of magnitude. The failure mechanisms behind the impedance degradation processes associated with dust are discussed. Critical relative humidity of mixed salts, percentage of deliquescent substance, deposition density, and moisture sorption capacity were found to be key factors of dust that determine the effect of dust on impedance degradation. (C) 2013 The Electrochemical Society. [DOI: 10.1149/2.024303jes] All rights reserved.
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