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VDA FMEA training
More than 2 million students worldwide

VDA FMEA training

Master the VDA FMEA methodology and apply it confidently across design, process, and system analyses. This training covers all seven steps, from planning and scope definition to risk evaluation and action closure. Build the technical skills and documentation practices that automotive quality professionals rely on to meet customer and audit requirements.

Dedika for Business

What you will learn:

You will learn how to plan and execute FMEA projects using the VDA seven-step process, from defining scope and assembling cross-functional teams to constructing failure chains and assigning Action Priority ratings. The course covers severity, occurrence, and detection rating scales with automotive-specific criteria, so you can make defensible risk decisions. You will also develop optimization actions, verify their effectiveness, and produce complete FMEA documentation ready for internal reviews and customer audits. Advanced topics include Process FMEA integration with control plans, functional safety alignment, and FMEA software configuration for VDA compliance.

How you study in practice VDA FMEA training

How you practise VDA FMEA training

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Course Content

8 Chapters • 40 LessonsDuration between 4 and 360 hours (you decide)

Chapter 1See details

Foundations of FMEA and VDA Framework

  • Lesson 1 • Key Terminology and Definitions

    Introduces standardized VDA vocabulary including failure, effect, cause, and control. Consistent terminology prevents misinterpretation across teams.

  • Lesson 2 • VDA FMEA Scope and Applicability

    Defines which products, processes, and project phases require FMEA under VDA guidelines. Clarifies boundaries between Design, Process, and System FMEA types.

  • Lesson 3 • History and Purpose of FMEA

    Traces FMEA's origins from aerospace to automotive and introduces its core risk-prevention logic. Provides context for why VDA standardized the method.

  • Lesson 4 • FMEA Team Structure and Roles

    Defines the cross-functional team composition required for effective FMEA execution. Establishes accountability for each role within the VDA process.

  • Lesson 5 • Regulatory and Customer Requirements

    Maps FMEA obligations to automotive quality management standards and customer-specific requirements. Learners understand compliance drivers behind FMEA practice.

Chapter 2See details

VDA FMEA Seven-Step Methodology Overview

  • Lesson 1 • Steps 2 and 3: Structure and Function Analysis

    Explains how to build structural and functional models that form the analytical foundation. These models drive all subsequent failure identification.

  • Lesson 2 • Steps 6 and 7: Optimization and Results

    Covers action planning, responsibility assignment, and final FMEA documentation. Learners understand how to close the loop from risk to verified improvement.

  • Lesson 3 • Introduction to the Seven-Step Process

    Presents the seven steps as an integrated workflow rather than isolated tasks. Learners map each step to a specific risk management objective.

  • Lesson 4 • Steps 4 and 5: Failure and Risk Analysis

    Introduces failure mode identification and risk evaluation using AP (Action Priority) ratings. Learners connect failures to effects and causes systematically.

  • Lesson 5 • Step 1: Planning and Preparation

    Covers scope definition, timeline, and resource allocation before analysis begins. Proper planning prevents scope creep and ensures complete coverage.

Chapter 3See details

Planning and Preparation in Depth

  • Lesson 1 • Scope Definition Techniques

    Teaches boundary-setting methods including black-box and interface analysis. Clear scope prevents gaps and redundant analysis across related FMEAs.

  • Lesson 2 • Selecting the Right FMEA Type

    Guides selection between Design, Process, and System FMEA based on project context. Choosing the correct type ensures relevant failure modes are captured.

  • Lesson 3 • FMEA Scheduling and Milestones

    Aligns FMEA activities with product development gate reviews and launch timelines. Learners create realistic schedules that integrate with project management.

  • Lesson 4 • Kickoff Meeting Best Practices

    Structures the FMEA kickoff to align team members on scope, roles, and expectations. A well-run kickoff reduces rework and accelerates early analysis steps.

  • Lesson 5 • Baseline and Reference Documents

    Identifies inputs such as prior FMEAs, lessons learned, and engineering specifications. Using baselines accelerates analysis and improves completeness.

Chapter 4See details

Structure and Function Analysis

  • Lesson 1 • Practical Modeling Exercises

    Applies structure and function analysis to realistic automotive case studies. Hands-on practice builds confidence before learners tackle their own projects.

  • Lesson 2 • Function Identification and Allocation

    Defines functions at each structural level using verb-noun format for precision. Proper function statements enable unambiguous failure mode derivation.

  • Lesson 3 • System Structure Decomposition

    Teaches hierarchical breakdown of systems into subsystems, components, and interfaces. Correct decomposition ensures no failure-relevant element is overlooked.

  • Lesson 4 • Validating Structural and Functional Models

    Applies review techniques to confirm model completeness and accuracy before failure analysis. Validation prevents downstream errors in risk evaluation.

  • Lesson 5 • Building Function Nets

    Connects functions across structural levels to show cause-effect relationships. Function nets reveal how a failure at one level propagates to others.

Chapter 5See details

Failure Analysis and Failure Chains

  • Lesson 1 • Failure Mode Identification Methods

    Presents systematic techniques for deriving failure modes from function statements. Comprehensive identification prevents gaps that lead to undetected risks.

  • Lesson 2 • Root Cause Identification

    Guides learners to identify physical, design, and process root causes for each failure mode. Accurate causes enable targeted and effective corrective actions.

  • Lesson 3 • Failure Effects at System Level

    Defines how local failure modes propagate upward to affect the customer and end user. Understanding effects drives accurate severity rating in later steps.

  • Lesson 4 • Failure Analysis Workshop

    Applies failure chain construction to a multi-component automotive system case study. Learners practice identifying and documenting failures under time constraints.

  • Lesson 5 • Constructing the Failure Chain

    Builds the cause-failure mode-effect chain as the core analytical structure of VDA FMEA. Learners link all three elements consistently across the entire analysis.

Chapter 6See details

Risk Evaluation and Action Priority

  • Lesson 1 • Severity Rating Scale and Criteria

    Explains the VDA 10-point severity scale with automotive-specific criteria for each level. Accurate severity ratings reflect true customer and safety impact.

  • Lesson 2 • Detection Rating Scale and Criteria

    Defines detection ratings based on control type, timing, and effectiveness. Learners distinguish between prevention and detection controls for accurate scoring.

  • Lesson 3 • Rating Calibration and Consistency

    Addresses common rating inconsistencies and calibration techniques for cross-team alignment. Consistent ratings ensure FMEA results are comparable and auditable.

  • Lesson 4 • Action Priority Determination

    Introduces the VDA Action Priority (AP) system as the replacement for traditional RPN. Learners apply AP tables to prioritize risk reduction actions correctly.

  • Lesson 5 • Occurrence Rating Scale and Criteria

    Covers occurrence rating based on failure cause frequency and process capability data. Learners use statistical and historical data to assign defensible ratings.

Chapter 7See details

Optimization and Action Management

  • Lesson 1 • Verifying Action Effectiveness

    Defines methods for confirming that completed actions achieve the intended risk reduction. Learners update ratings only after verified evidence of improvement.

  • Lesson 2 • Developing Optimization Actions

    Guides learners to write specific, measurable actions tied to identified causes and failure modes. Vague actions are identified and rewritten for clarity and accountability.

  • Lesson 3 • Assigning Responsibility and Deadlines

    Covers ownership assignment, deadline setting, and escalation protocols for open actions. Clear accountability prevents actions from stalling before completion.

  • Lesson 4 • Principles of Effective Risk Reduction

    Establishes the hierarchy of risk reduction: eliminate cause, reduce occurrence, improve detection. Learners prioritize action types based on VDA guidance.

  • Lesson 5 • Managing Residual Risk

    Addresses situations where risk cannot be fully eliminated and formal acceptance is required. Learners apply VDA guidance on residual risk documentation and approval.

Chapter 8See details

FMEA Documentation, Review, and Audit

  • Lesson 1 • Customer and Third-Party Audits

    Prepares learners to present and defend FMEA results during customer and certification audits. Covers common audit questions and effective response strategies.

  • Lesson 2 • FMEA Report and Summary Documentation

    Covers the creation of FMEA summary reports for management and customer submission. Summaries communicate key risks and actions without exposing full detail.

  • Lesson 3 • FMEA Revision and Change Management

    Defines triggers for FMEA revision and the process for updating documents after design changes. Learners maintain living FMEAs that reflect current product and process status.

  • Lesson 4 • Internal FMEA Review Process

    Structures formal internal reviews at project milestones to validate FMEA quality. Learners apply review checklists to identify gaps before external submission.

  • Lesson 5 • FMEA Form Structure and Content

    Details every field in the VDA FMEA form and the data required for each. Complete and accurate forms are the primary deliverable for audits and reviews.

Certification

Your valid completion certificate

This course is for you:

  • Automotive quality engineers stepping into formal FMEA responsibilities for the first time.

  • Manufacturing engineers who need to align process risk work with VDA standards.

  • Supplier quality managers facing stricter customer FMEA submission requirements soon.

  • Product development engineers integrating risk analysis into early design phase work.

  • Quality auditors who review FMEA outputs and want deeper methodological understanding.

  • Recent engineering graduates entering automotive roles requiring structured risk analysis skills.

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