Temperature-Nonthermal (TNT)-Weibull Model: Difference between revisions
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*The η parameter in the Weibull distribution at temperature of 30°C (303.15 K) and switching rate of 5 cycles/minute is estimated as <math>\,\!4.172\times 10^{6}</math> . | *The η parameter in the Weibull distribution at temperature of 30°C (303.15 K) and switching rate of 5 cycles/minute is estimated as <math>\,\!4.172\times 10^{6}</math> . | ||
[[image:Two Stress GLL Weibull_Eta.png|center]] | [[image:Two Stress GLL Weibull_Eta.png|center]] | ||
*The estimated reliability at 200,000 cycles and temperature of 30°C (303.15 F) and switching rate of 5 cycles/minute is 0.996. Its one-sided lower 90% confidence bound is 0.992. | *The estimated reliability at 200,000 cycles and temperature of 30°C (303.15 F) and switching rate of 5 cycles/minute is 0.996. Its one-sided lower 90% confidence bound is 0.992. | ||
[[image:Two Stress GLL Weibull_QPC Reliability.png|center]] | [[image:Two Stress GLL Weibull_QPC Reliability.png|center]] | ||
*The two-sided 90% confidence interval for parameter <math>\,\!\alpha _{2}</math> is [-0.751, -0.160]. | *The two-sided 90% confidence interval for parameter <math>\,\!\alpha _{2}</math> is [-0.751, -0.160]. | ||
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If the temperature-Nonthermal relationship is used directly, the same results will be obtained. The following is the estimated model parameters for the temperature-nonthermal model in ALTA. By doing the right transformations for the stresses, a general log linear model can become a temperature-nonthermal model. | If the temperature-Nonthermal relationship is used directly, the same results will be obtained. The following is the estimated model parameters for the temperature-nonthermal model in ALTA. By doing the right transformations for the stresses, a general log linear model can become a temperature-nonthermal model. | ||
[[image:Two Stress GLL Weibull_Analysis Summary TNT.png|center]] | [[image:Two Stress GLL Weibull_Analysis Summary TNT.png|center]] |
Revision as of 21:02, 10 June 2014
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