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01
Introduction
Introduction
02
Objectives
Objectives
03
Who Should Attend?
Who Should Attend?
04
Training Method
Training Method
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Course Outline
Course Outline
In today’s globally competitive and highly regulated manufacturing and service environments, quality is not just a department—it is a strategic imperative. Advanced Quality Control (AQC) transcends traditional inspection-based methods, evolving into a sophisticated, data-driven discipline focused on predictive analysis, continuous improvement, and enterprise-wide risk mitigation. This masterclass is designed for quality professionals who are ready to leverage statistical rigor, cutting-edge tools, and strategic methodologies to not only identify defects but to prevent them, optimize processes, and drive significant organizational value.
This course provides a deep dive into the quantitative and qualitative techniques that form the backbone of modern quality systems. Participants will move beyond basic SPC to master advanced problem-solving frameworks, design robust processes, and implement sophisticated measurement systems. Through a combination of theoretical knowledge, hands-on workshops with real data sets, and case studies from leading industries, this program equips you to become a strategic leader in quality, capable of ensuring excellence, reducing costs, and enhancing customer satisfaction.
Upon successful completion of this course, participants will be able to:
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Apply advanced statistical process control (SPC) techniques, including capability analysis for non-normal data and multivariate control charts.
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Utilize powerful root cause analysis (RCA) methodologies, such as 8D and 5-Why, to solve complex quality problems permanently.
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Design and analyze experiments (DOE) to optimize processes and robustly design products against noise factors.
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Assess and improve measurement system analysis (MSA) for complex and automated systems, including Gage R&R for destructive testing.
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Integrate advanced quality planning (AQP) methodologies, including Failure Mode and Effects Analysis (FMEA), into the product development lifecycle.
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Lead the implementation of a data-driven quality culture and effectively communicate quality metrics to executive leadership.
This advanced course is designed for experienced quality professionals and engineers:
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Quality Managers, Directors, and Engineers
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Process Engineers and Manufacturing Engineers
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Continuous Improvement Managers and Lean Six Sigma Black Belts
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Production and Operations Managers with quality responsibilities
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Supplier Quality Engineers and Auditors
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R&D Engineers involved in product design and validation
Prerequisite: A foundational understanding of basic quality principles and statistics (e.g., mean, standard deviation, basic control charts) is highly recommended.
• Pre-assessment
• Live group instruction
• Use of real-world examples, case studies and exercises
• Interactive participation and discussion
• Power point presentation, LCD and flip chart
• Group activities and tests
• Each participant receives a binder containing a copy of the presentation
• slides and handouts
• Post-assessment
Day 1: Foundations of Advanced Statistical Process Control (SPC)
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Morning Session: Beyond Basic Control Charts
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Review of Fundamental SPC Concepts: Variation, stability, and capability.
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Advanced Control Charts: CUSUM and EWMA charts for detecting small shifts.
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Handling Autocorrelated Processes.
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Afternoon Session: Process Capability Deep Dive
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Capability Analysis for Non-Normal Data: Transformations and non-normal distributions (Weibull, Gamma).
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Introduction to Multivariate Process Control.
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Hands-On Workshop: Use statistical software (Minitab/JMP) to perform a capability analysis on a non-normal data set and interpret the results.
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Day 2: Root Cause Analysis & Problem-Solving Frameworks
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Morning Session: Structured Problem-Solving
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Comparative Analysis of RCA Methods: 8D, A3, and DMAIC.
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The 8D Process: A step-by-step application for containing and correcting major quality issues.
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Afternoon Session: Advanced Analytical Tools
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Fault Tree Analysis (FTA) and Is/Is Not Analysis.
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Practical Exercise: Work through a complex, real-world quality failure using the 8D methodology, culminating in a presentation of findings.
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Day 3: Design of Experiments (DOE) for Process Optimization
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Morning Session: Introduction to DOE
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Terminology: Factors, levels, responses, and interactions.
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Full Factorial vs. Fractional Factorial Designs: Understanding aliasing and resolution.
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Afternoon Session: Analyzing and Interpreting Experiments
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Using Statistical Software to create designs and analyze results.
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Introduction to Response Surface Methodology (RSM) and Robust Design (Taguchi).
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Workshop: Design, run (via provided data), and analyze a factorial experiment to optimize a key process parameter.
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Day 4: Advanced Measurement Systems & Risk Mitigation
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Morning Session: Measurement System Analysis (MSA) Advanced
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Gage R&R for Non-Destructive and Destructive Testing.
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Attribute MSA: Agreement analysis for pass/fail data.
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Calibration Systems and Metrology Fundamentals.
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Afternoon Session: Proactive Risk Management
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Advanced Failure Mode and Effects Analysis (FMEA): Process and Design FMEA.
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Calculating and Prioritizing Risk Priority Numbers (RPN).
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Case Study: Conduct a Process FMEA for a new product introduction.
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Day 5: Integration, Leadership, and Capstone
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Morning Session: Quality Leadership and Strategy
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Creating a Data-Driven Quality Culture.
*- Auditing Advanced Quality Systems: Ensuring compliance and effectiveness. -
Communicating the Cost of Quality (COQ) to Senior Management.
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Afternoon Session: Capstone Project
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Final Application: Participants are given a comprehensive case study with a messy data set and a quality problem. They must:
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Perform a capability analysis.
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Conduct a root cause analysis.
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Propose an experimental design to find a solution.
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Present their strategic quality improvement plan.
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Course Recap: Key Takeaways and Implementation Roadmap.
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Final Q&A and Certification.
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- Course Details
- Address
Damascus
- Location
- Phone
+963 112226969
- Fees
300 $
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