Length: 2 Days
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ISO 26262 Functional Safety Training by Tonex

Fundamentals of Manufacturing Processes in the Automotive Industry Training by Tonex

The ISO 26262 Functional Safety training by Tonex is designed to provide participants with a comprehensive understanding of functional safety standards in the automotive industry. This course covers the principles and processes required to ensure the safety of electrical and electronic systems in road vehicles, aligning with the ISO 26262 standard.

Learning Objectives:

  • Understand the fundamentals of ISO 26262 and its significance in automotive safety.
  • Gain knowledge of the lifecycle phases of ISO 26262, including concept, system, hardware, and software development.
  • Learn risk assessment and hazard analysis techniques.
  • Master the application of safety measures and ASIL (Automotive Safety Integrity Level) requirements.
  • Develop skills for conducting safety analyses and verification methods.
  • Familiarize with the tools and techniques used in functional safety assessments.

Audience:

  • Automotive Engineers
  • Safety Managers
  • Quality Assurance Professionals
  • System Designers
  • Compliance Officers
  • Project Managers

Program Modules:

  1. Introduction to ISO 26262
    • Overview of Functional Safety
    • Scope and Applicability
    • Terminology and Definitions
    • Regulatory and Compliance Requirements
    • ISO 26262 Framework
    • Key Concepts and Principles
  2. Risk Assessment and Hazard Analysis
    • Hazard Identification Techniques
    • Risk Assessment Methods
    • Automotive Safety Integrity Levels (ASIL)
    • Safety Goals and Functional Safety Requirements
    • Preliminary Hazard Analysis (PHA)
    • Failure Modes and Effects Analysis (FMEA)
  3. System-Level Development
    • System Design Principles
    • Safety Mechanisms and Measures
    • System Architecture and Decomposition
    • Interface and Integration Considerations
    • System Validation and Verification
    • Safety Case Development
  4. Hardware Development
    • Hardware Safety Requirements
    • Hardware Design and Analysis Techniques
    • Fault Tree Analysis (FTA)
    • Diagnostic Coverage and Metrics
    • Hardware Verification and Validation
    • Reliability Prediction Methods
  5. Software Development
    • Software Safety Requirements
    • Software Architecture and Design
    • Coding Standards and Guidelines
    • Software Verification and Testing
    • Tool Qualification and Management
    • Software Integration and Validation
  6. Safety Analysis and Verification
    • Functional Safety Assessment
    • Safety Verification Methods
    • Audit and Assessment Techniques
    • Safety Documentation and Reporting
    • Continuous Improvement Processes
    • Case Studies and Practical Applications

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