REG NASA-LLIS-0794-2000 Lessons Learned Thermal Analysis of Electronic Assemblies to the Piece Part Level.pdf
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1、Best Practices Entry: Best Practice Info:a71 Committee Approval Date: 2000-04-17a71 Center Point of Contact: JPLa71 Submitted by: Wil HarkinsSubject: Thermal Analysis of Electronic Assemblies to the Piece Part Level Practice: Perform a piece part thermal analysis that includes all piece parts in sup
2、port of the part stress analysis. Also include fatigue sensitive elements of the assembly such as interconnects (solder joints, bondlines, wirebonds, etc.).Abstract: Preferred Practice for Design & Test. If a Piece Part thermal Analysis (PPTA) is not performed, more than 75 percent of the overstress
3、ed piece parts could go undetected. If a PPTA is performed, but only on significant power dissipators, then approximately 70 percent of the thermally overstressed piece parts could go undetected. Quantification of the thermal fatigue design life requirements and performance evaluation of thermal fat
4、igue sensitive elements (solder joints, bondlines, etc.) can only be accomplished by incorporating results of a PPTA. Perform a piece part thermal analysis that includes all piece parts in support of the part stress analysis. Also include fatigue sensitive elements of the assembly such as interconne
5、cts (solder joints, bondlines, wirebonds, etc.).Programs that Certify Usage: This practice has been used on the Magellan program.Center to Contact for Information: JPLImplementation Method: Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-This Lesson
6、Learned is based on Reliability Practice number PD-AP-1306, from NASA Technical Memorandum 4322A, Reliability Preferred Practices for Design and Test.Benefit:Allows the thermally overstressed parts to be identified and assessed for risk (instead of just the electrically overstressed parts). Allows t
7、he design life requirements of the thermal fatigue sensitive elements (solder joints, bondlines, wirebonds, etc.) to be quantified.Implementation Method:On Class A and B programs, piece part thermal analysis (PPTA) is performed on all electronic assembly designs, including all engineering change req
8、uests in support of the part stress analysis (PSA). A policy is established mandating that the required design life of all thermal fatigue sensitive elements be quantified via a PPTA and a life cycle analysis. Moreover, it should be the policy of the contracting agency that this analysis be a delive
9、rable and be independently reviewed by the contracting agency.Technical Rationale:Reliability engineering is the discipline of identifying, risk rating, and eliminating the “tall poles“ or “weak links“ in a design. Two of the most significant reliability concerns for spaceflight hardware are reducti
10、ons in the mission life of the electronic designs due to excessive junction temperatures or thermal fatigue. A proper PPTA can be used to verify that the temperature derating requirements specified in the PSA have been satisfied. The PPTA is also one of the key tools for quantifying the required des
11、ign life of fatigue sensitive elements.Several reliability practices case studies were performed on the Magellan (MGN) synthetic aperture radar (SAR). The results and conclusions of these studies are summarized below:Case Study Background:The MGN SAR consists of 9 prime and 9 redundant units totalin
12、g 40 slices. In all, there are more than 15,000 piece parts in this payload. The MGN SAR was chosen for a series of reliability practice case studies because its design was typical of industry for an electronic payload. More specifically, the electrical design, mechanical packaging, and “black box“
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