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Electronic Product Reliability Design and Analysis System [Copy link]

      Nowadays, the reliability requirements of products are getting higher and higher, and more and more reliability work projects need to be carried out. Reliability is often a topic that we cannot avoid in the process of designing electronic products. For example, customers need us to provide relevant reliability prediction reports, customers need our products to provide corresponding reliability test reports, or the company needs to control the quality of products, and formulates a series of reliability work requirements. It is necessary to carry out various reliability design and analysis work in accordance with the formulated reliability work requirements. In fact, the implementation of these reliability design and analysis work is ultimately aimed at solving product reliability engineering problems and strictly controlling and reducing product quality risks. Since there are many reliability design and analysis tasks, and for designers, these tasks will increase the corresponding workload, how to effectively combine product design with reliability design and analysis work is a problem that designers are very concerned about. Many people may think that I just use an EXCEL to calculate it. Although EXCEL can help solve some calculation problems, it is not professional after all. Therefore, sharpening a knife requires a good whetstone to achieve twice the result with half the effort and reflect the professionalism of our design. There are several reliability design analysis software tools at home and abroad. One of the tools I want to share with you here is the reliability design analysis system PosVim. Compared with other tools, this system is refreshing and feels quite handy after the trial. Basically, all the reliability design analysis functions we usually use are included, and you can download it for free. This system is divided into four subsystems: design analysis, simulation, test, and data application. The functions include reliability prediction (prediction), reliability modeling, FMEA, FTA (fault tree analysis), tolerance analysis (including worst-case simulation analysis, SPICE model), derating design analysis (compatible with ECSS standards and GJB35), reliability allocation, fatigue life analysis (with stress life analysis, tensile life analysis, welding structure fatigue analysis, crack growth life analysis, corrosion fatigue life analysis), failure physics simulation analysis (thermal, mechanical, electrical stress board, component failure analysis, life analysis), fault diagnosis and life prediction analysis, accelerated life test design and data analysis, accelerated degradation test design analysis, Weibull analysis and more than 30 functional modules. There is a download link on the homepage of their official website, Guangzhou Baoshun Information Technology Co., Ltd., which is relatively easy to find. If you don’t understand, you can @ me.
This post is from PCB Design
 

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