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Functional Safety Syllabus

This 4-day training course provides an introduction to functional safety and covers key topics such as hazard and risk analysis techniques, safety requirements specification, hardware and software design for safety systems, reliability modeling, and operation/maintenance of safety systems. Each day focuses on a different aspect of functional safety including management systems, analysis methods, planning safety systems, hardware design requirements, reliability calculations, software design lifecycles, and safety validation.

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0% found this document useful (0 votes)
280 views4 pages

Functional Safety Syllabus

This 4-day training course provides an introduction to functional safety and covers key topics such as hazard and risk analysis techniques, safety requirements specification, hardware and software design for safety systems, reliability modeling, and operation/maintenance of safety systems. Each day focuses on a different aspect of functional safety including management systems, analysis methods, planning safety systems, hardware design requirements, reliability calculations, software design lifecycles, and safety validation.

Uploaded by

ramkrishna
Copyright
© © All Rights Reserved
We take content rights seriously. If you suspect this is your content, claim it here.
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Download as XLSX, PDF, TXT or read online on Scribd
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Day - 1

§  Introduction to functional safety
§  Accidents
§  IEC 61508
§  IEC 61511
§  Random, common cause and systematic failures
§  Functional safety management:
§  Life cycle concept
§  Competency
§  Verification
§  Validation
§  Assessment
§  Audit
§  Documentation
§  modifications
Day - 2
§  Hazard & Risk Analysis:
§  Hazard identification
§  Hazard and risk analysis
§  Risk reduction
§  FMEA, FTA, HAZOP, ETA, LOPA, Risk Graph, Risk Matrix
§  Safety function definition SLATS
§  Safety requirements specification
§  Planning the safety system
§  Planning for end users, integrators, and realization of safety systems
§  Safety plan,
§  Verification plan,
§  Validation plan,
§  Assessment plan
§  Audit plan
§  Safety requirement specification
Day - 3
§  Hardware design
§  Hardware lifecycle
§  Energize vs de-energize
§  Low demand, high demand, continuous mode
§  Target failure measure (PFDavg, PFH)
§  Redundancy
§  Diversity
§  Voting
§  Hardware fault tolerance
§  Type A, Type B
§  Diagnostic tests
§  Proof tests
§  Safe failure fraction
§  Architectural constraints according to IEC 61508 (route 1h, 2h)
§  Architectural constraints according to IEC 61511
Day - 4
§  Hardware reliability
§  Reliability modeling
§  FMEDA
§  Block diagrams
§  Simplified equations
§  FTA
§  Markov
§  Failure data
§  PFD calculation
§  Software design
§  Software lifecycle
§  Embedded software
§  Application software
§  Utility software
§  Fixed programming languages (FPL)
§  Limited variability languages (LVL)
§  Full variability languages (FVL)
§  Software architecture
§  V-model
§  Measures to avoid failures
§  Operation and maintenance
§  Installation and commissioning
§  Safety validation
§  Operation, maintenance and repair
§  Modification and retrofit
§  Maintenance override

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