DocumentCode
1253713
Title
The world of thermal characterization according to DELPHI-Part I: Background to DELPHI
Author
Rosten, Harvey I. ; Lasance, Clemens J M ; Parry, John D.
Author_Institution
Flomerics, Surrey, UK
Volume
20
Issue
4
fYear
1997
fDate
12/1/1997 12:00:00 AM
Firstpage
384
Lastpage
391
Abstract
The accurate prediction of the temperatures of critical electronic parts at the package, board and system level is seriously hampered by the lack of reliable, standardized input data that characterize the thermal behaviour of these parts. The recently completed collaborative European project DELPHI has been concerned with the creation and experimental validation of thermal models (both detailed and compact) of a range of electronic parts, including mono-chip packages, heat sinks, electrolytic capacitors, transformers, and interfacing materials. The ultimate goal of the DELPHI project was to get component manufacturers to supply validated thermal models of their parts to end users by adopting the experimental techniques used to validate the detailed thermal conduction models of the parts, and the methods to generate compact models. Part II of this paper contains technical information on both experimental and numerical methods. In order to reduce design-cycle time and physical prototyping, equipment manufacturers need to ascertain the thermal performance of new systems at the earliest possible stage of the design process. Accurate, validated thermal models of the critical parts used in the design are needed to provide the thermal precision necessary to design out the functional and reliability failures that result from component overheating
Keywords
heat conduction; packaging; DELPHI; board level; collaborative European project; compact model; component overheating; critical electronic part; design-cycle time; detailed model; electrolytic capacitor; functional failure; heat sink; interfacing material; mono-chip package; package level; prototyping; reliability failure; system level; thermal conduction model; thermal performance; transformer; Capacitors; Collaboration; Conducting materials; Electronic packaging thermal management; Heat sinks; Prototypes; Temperature; Thermal conductivity; Transformers; Virtual manufacturing;
fLanguage
English
Journal_Title
Components, Packaging, and Manufacturing Technology, Part A, IEEE Transactions on
Publisher
ieee
ISSN
1070-9886
Type
jour
DOI
10.1109/95.650927
Filename
650927
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