Title :
Reliability prediction of substitute parts based on component temperature rating and limited accelerated test data
Author :
Kleyner, Andre ; Boyle, Joseph
Author_Institution :
Delphi Delco Electron. Syst., Kokomo, IN, USA
Abstract :
This paper presents a practical method of estimating failure rates of substitute electronic component with temperature characteristics different from that of an original part. For a number of reasons electronics designers occasionally substitute electronic components with comparable parts having different power-temperature rating. The proposed method describes how the accelerated test data pertaining to the original part can be applied to the substitute component while accounting for the difference in temperature ratings. Also due to climatic differences between the regions of operation the authors suggest the use of equivalent failure rate by incorporating the temperature distribution function into the process of warranty prediction. The proposed combined technique offers the reliability engineer a practical procedure to achieve considerable savings in terms of time and cost of product validation by eliminating redundant testing and improving the accuracy of reliability prediction.
Keywords :
electronic equipment testing; life testing; temperature distribution; thermal analysis; accelerated test; accelerated test data; climatic differences; derating; equivalent failure rate; failure rates estimation; operating temperature; power-temperature rating; product validation cost; redundant testing elimination; reliability prediction; substitute electronic component; temperature distribution function; warranty data; warranty prediction; Costs; Electronic components; Electronic equipment testing; Life estimation; Life testing; Process design; Reliability engineering; Temperature distribution; Vehicles; Warranties;
Conference_Titel :
Reliability and Maintainability Symposium, 2003. Annual
Print_ISBN :
0-7803-7717-6
DOI :
10.1109/RAMS.2003.1182042