We will introduce features that are helpful when using FaultTree+ for functional safety compliance, as well as the creation of models using FaultTree+ in a video.
【Overview of the Seminar】 1. System FTA and FTA for quantitative evaluation 2. Expression methods for safety mechanisms (SM) 3. Expression methods for common cause failures 4. Cut set analysis and how to interpret that information 5. Collaboration with failure rate DB (Prediction), reuse and integration of models utilizing library functions 6. Automation of initial value creation for FT diagrams
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basic information
FaultTree+ is a major product of the British company Isograph, which began development in 1986 and is now implemented in 12,000 sites worldwide. 【Basic Components of FaultTree+】 1. Fault Tree Analysis 2. Event Tree Analysis 3. Markov Analysis 4. Weibull Analysis 【Main Features of FaultTree+】 1. Cut Set Analysis 2. Representation of Common Cause Failures (CCF) 3. Support for β models 4. Management of multiple FT diagrams on a single screen, with the ability to merge freely. 5. Library function that allows data sharing and reuse.
Price range
P5
Delivery Time
P3
Applications/Examples of results
- ISO 26262 automotive functional safety compliance - Railway RAMS compliance - SAE ARP 4761 compliance FaultTree+ is used in various fields such as aerospace, defense, automotive, nuclear, rail, chemical processing plants, oil, gas, and medical industries. In relation to ISO 26262, it is widely used by major domestic automotive OEMs, Tier 1, and Tier 2 suppliers.
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Our company develops and sells a "Maintenance Management System" for managing and operating various plants, factories, and other facilities and assets. Currently, this system is undergoing significant evolution into one that incorporates IoT technologies, such as sensor information and input from tablet devices, as well as AI technologies like machine learning, featuring functions for failure prediction and automatic scheduling. Additionally, as part of the recent trend towards digital transformation (DX), there is a growing movement to digitize and automate manufacturing processes and research and development sites in factories to enhance operational efficiency. In line with this trend, our company provides a solution aimed at improving efficiency in research and development environments, known as the Laboratory Information Management System (LIMS), which includes features such as workflow management, data tracking, data management, data analysis, and integration of electronic lab notebooks.