DocumentCode
1455609
Title
Emerging optocoupler issues with energetic particle-induced transients and permanent radiation degradation
Author
Reed, R.A. ; Marshall, P.W. ; Johnston, A.H. ; Barth, J.L. ; Marshall, C.J. ; LaBel, K.A. ; D´Ordine, M. ; Kim, H.S. ; Carts, M.A.
Author_Institution
NASA Goddard Space Flight Center, Greenbelt, MD, USA
Volume
45
Issue
6
fYear
1998
fDate
12/1/1998 12:00:00 AM
Firstpage
2833
Lastpage
2841
Abstract
Radiation-induced permanent degradation and single event transient effects for optocouplers are discussed in this paper. These two effects are independent to the first order and will be addressed separately. Displacement damage-induced degradation of optocoupler current transfer ratio is reviewed. New data are presented that show the importance of application specific testing and that generalized quantification of optocoupler CTR degradation can lead to incorrect predictions of actual circuit performance in a radiation environment. Data are given for various circuit loading and drive current parameters. Previous work that introduces the idea that two mechanisms exist for inducing transients on the optocoupler output is discussed. New data are presented that extends the evidence of this dual mechanism hypothesis. In this work measurements show that single event transient cross sections and transient propagation varies with circuit filtering. Finally, we discuss utilization of the optocouplers in the space environment. New data are applied to two examples: one on permanent degradation and the other on single event transient rates in high bandwidth applications
Keywords
optical isolators; radiation effects; transients; application specific testing; circuit filtering; circuit loading; current transfer ratio; displacement damage; drive current; energetic particle induced transient; optocoupler; permanent radiation degradation; single event transient cross section; space environment; transient propagation; Aircraft manufacture; Bandwidth; Circuit testing; Degradation; Light emitting diodes; Manufacturing; Photodetectors; Photodiodes; Phototransistors; Protons;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/23.736536
Filename
736536
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