Certified Reliability Engineer (CRE) Course

  • November 17, 2025 - November 21, 2025
  • 10:00 AM to 05:00 PM PST (Pakistan Time)
  • Total Seats: 5 Reserved Seats: 4
  • In-person ( Face to Face )
  • +92 337 777 1309
  • jahanzeb.burki@velosiaims.ae
  • The Certified Reliability Engineer (CRE) training program is designed to equip professionals with the knowledge and skills required to ensure product and process reliability throughout the lifecycle. The course prepares participants to apply engineering principles, statistical methods, and risk management tools to enhance performance, reduce failures, and optimize maintenance strategies.

  • By the end of this training, participants will be able to:

    • Understand the principles and practices of reliability engineering.
    • Apply statistical analysis and probability models to predict and improve product reliability.
    • Identify and mitigate potential failure modes through structured methodologies.
    • Implement reliability testing, life data analysis, and accelerated testing techniques.
    • Integrate reliability planning, risk assessment, and maintenance strategies for sustainable performance.
    • Prepare for the ASQ Certified Reliability Engineer (CRE) certification exam.
  • Training will be conducted Face to Face.

  • 5 days from 10:00 AM to 05:00 PM (Pakistan Time)

    • Presentation Slides
    • Study References
  • Certificate will be issued upon successful completion of training.

  • This training program is designed for:

    • Reliability, quality, and maintenance engineers
    • Design and process engineers
    • Production managers and supervisors
    • Professionals preparing for ASQ CRE certification
  • Group Discount (same company only)

    • 15% Discount for group of 5 or more.
    • 10% Discount for group of 3-4.

how can we help you?

Contact us at the Velosi office nearest to you or submit a business inquiry online.

Course Outline

  • Reliability Fundamentals

    • Leadership Foundations
      • Benefits of reliability engineering
      • Interrelationship of safety, quality, and reliability
      • Reliability engineer leadership responsibilities
      • Reliability engineer role and responsibilities in the product lifecycle
      • Project management in reliability engineering
      • Function of reliability in engineering
      • Ethics in reliability engineering
      • Supplier reliability assessments
      • Performance monitoring
    • Reliability Foundations
      • Basic reliability terminology
      • Drivers of reliability requirements and targets
      • Corrective and preventive action (CAPA)
      • Root cause analysis
      • Product lifecycle engineering stages
      • Economics of product maintainability and availability
      • Cost of poor reliability
      • Quality triangle
      • Six sigma methodologies
      • Systems engineering and integration
  • Risk Management

    • Identification
      • Risk management techniques
      • Risk assessment
      • Types of risk
    • Analysis
      • Fault tree analysis (FTA)
      • Failure mode and effects analysis (FMEA)
      • Common mode failure analysis
      • Hazard analysis
      • Risk matrix
      • System safety
    • Mitigation
  • Probability and Statistics for Reliability

    • Basic Concepts
      • Basic statistics
      • Basic probability concepts
      • Probability distributions
      • Probability functions
      • Sampling plans for statistics and reliability testing
      • Statistical process control (SPC) and capability studies (Cp, Cpk, P, and Ppk)
      • Confidence and tolerance intervals
    • Data Management
      • Sources and uses of reliability data
      • Types of data
      • Data collection methods
      • Data summary and reporting
      • Failure analysis methods
      • Failure reporting, analysis, and corrective action system (FRACAS)
  • Reliability Planning, Testing, and Modeling

    • Planning
      • Reliability test strategies
      • Environmental factors and use conditions
      • Failure consequence
      • Failure criteria
      • Test environment
    • Testing
      • Accelerated life tests
      • Stress screening
      • Qualification / demonstration testing
      • Degradation (wear-to-failure) testing
      • Software / firmware reliability
      • Software testing
    • Modeling
      • Reliability block diagrams and models
      • Physics of failure and failure mechanisms
      • Failure models
      • Reliability prediction methods
      • Design prototyping
  • Lifecycle Reliability

    • Reliability Design Techniques
      • Design evaluation techniques (validation and verification)
      • Stress-strength analysis
      • Design of experiments (DOE)
      • Reliability optimization
      • Human factors
      • Design for X (DFX)
      • Design for Reliability (DfR)
    • Parts and Systems Development
      • Materials, components, equipment, and software selection techniques
      • Parts standardization and system simplification
    • Maintainability
      • Maintenance strategies
      • Preventive maintenance (PM) analysis
      • Corrective maintenance analysis