Accendo Reliability

Your Reliability Engineering Professional Development Site

  • Home
  • About
    • Contributors
    • About Us
    • Colophon
    • Survey
  • Reliability.fm
  • Articles
    • CRE Preparation Notes
    • NoMTBF
    • on Leadership & Career
      • Advanced Engineering Culture
      • ASQR&R
      • Engineering Leadership
      • Managing in the 2000s
      • Product Development and Process Improvement
    • on Maintenance Reliability
      • Aasan Asset Management
      • AI & Predictive Maintenance
      • Asset Management in the Mining Industry
      • CMMS and Maintenance Management
      • CMMS and Reliability
      • Conscious Asset
      • EAM & CMMS
      • Everyday RCM
      • History of Maintenance Management
      • Life Cycle Asset Management
      • Maintenance and Reliability
      • Maintenance Management
      • Plant Maintenance
      • Process Plant Reliability Engineering
      • RCM Blitz®
      • ReliabilityXperience
      • Rob’s Reliability Project
      • The Intelligent Transformer Blog
      • The People Side of Maintenance
      • The Reliability Mindset
    • on Product Reliability
      • Accelerated Reliability
      • Achieving the Benefits of Reliability
      • Apex Ridge
      • Field Reliability Data Analysis
      • Metals Engineering and Product Reliability
      • Musings on Reliability and Maintenance Topics
      • Product Validation
      • Reliability by Design
      • Reliability Competence
      • Reliability Engineering Insights
      • Reliability in Emerging Technology
      • Reliability Knowledge
    • on Risk & Safety
      • CERM® Risk Insights
      • Equipment Risk and Reliability in Downhole Applications
      • Operational Risk Process Safety
    • on Systems Thinking
      • Communicating with FINESSE
      • The RCA
    • on Tools & Techniques
      • Big Data & Analytics
      • Experimental Design for NPD
      • Innovative Thinking in Reliability and Durability
      • Inside and Beyond HALT
      • Inside FMEA
      • Institute of Quality & Reliability
      • Integral Concepts
      • Learning from Failures
      • Progress in Field Reliability?
      • R for Engineering
      • Reliability Engineering Using Python
      • Reliability Reflections
      • Statistical Methods for Failure-Time Data
      • Testing 1 2 3
      • The Manufacturing Academy
  • eBooks
  • Resources
    • Accendo Authors
    • FMEA Resources
    • Glossary
    • Feed Forward Publications
    • Openings
    • Books
    • Webinar Sources
    • Podcasts
  • Courses
    • Your Courses
    • Live Courses
      • Introduction to Reliability Engineering & Accelerated Testings Course Landing Page
      • Advanced Accelerated Testing Course Landing Page
    • Integral Concepts Courses
      • Reliability Analysis Methods Course Landing Page
      • Applied Reliability Analysis Course Landing Page
      • Statistics, Hypothesis Testing, & Regression Modeling Course Landing Page
      • Measurement System Assessment Course Landing Page
      • SPC & Process Capability Course Landing Page
      • Design of Experiments Course Landing Page
    • The Manufacturing Academy Courses
      • An Introduction to Reliability Engineering
      • Reliability Engineering Statistics
      • An Introduction to Quality Engineering
      • Quality Engineering Statistics
      • FMEA in Practice
      • Process Capability Analysis course
      • Root Cause Analysis and the 8D Corrective Action Process course
      • Return on Investment online course
    • Industrial Metallurgist Courses
    • FMEA courses Powered by The Luminous Group
    • Foundations of RCM online course
    • Reliability Engineering for Heavy Industry
    • How to be an Online Student
    • Quondam Courses
  • Calendar
    • Call for Papers Listing
    • Upcoming Webinars
    • Webinar Calendar
  • Login
    • Member Home
  • Barringer Process Reliability Introduction Course Landing Page
  • Upcoming Live Events
You are here: Home / Articles / What is Design for Six Sigma?

by Robert Allen Leave a Comment

What is Design for Six Sigma?

What is Design for Six Sigma?

For the majority of organizations, long-term success is tied directly to the new product development process. Tomorrow’s revenue and growth are tightly bound to how successful you are at launching new products.

Offering genuinely valuable, high quality products is, more than ever, the best way to capture market share.  Also, more investment up-front minimizes overall expense.

…fewer design iterations to achieve the same goals (reduced time to market), more efficient production and delivery processes (reduced operating costs), fewer defects & warranty costs during the entire product life cycle (increased customer satisfaction).

Recall our overarching goal for product development and process improvement:  to maximize customer value and minimize cost.  Design for Six Sigma can help achieve this goal as follows:

Understand Customer Needs

  • Determine customer critical to quality characteristics (CTQ’s) that define product success
  • Establish requirements for CTQs (specification limits, mean and variability targets, failure rate and life targets
  • Establish part/process sigma goals for the manufacturing/assembly/test process

Define Initial Design Concept 

  • Formulate design concept and develop models relating key design variables to CTQ’s
  • Allocate mean and variability targets and failure rate and life targets to appropriate level

Model Design Performance

  • Obtain process capability data or estimates
  • Assess nominal design performance and impact of variability
  • Calculate probability of satisfying each CTQ

Optimize Design for Value

  • Identify any gaps between design and capability
  • Define a value function to prioritize CTQs
  • Close gaps and maximize value: re-allocate, improve capability, negotiate requirements

Validate Design and Models

  • Validate model accuracy for mean and variability
  • Verify failure rate and reliability targets
  • Verify part and process sigma models

Control

  • Monitor and control key x’s that influence customer CTQ’s
  • Implement statistical process control (SPC) to maintain part/process sigma
  • Refine process capability models and database for use in future projects

Filed Under: Articles, on Leadership & Career, Product Development and Process Improvement Tagged With: Design for Six Sigma (DFSS)

About Robert Allen

Robert Allen has over 25 years of professional experience in the areas of product development, process improvement and project management. Rob was a key contributor to numerous deployments of lean sigma and project management organizations, most notably with Honeywell and TE Connectivity. Included in Rob’s experience are multiple certifications and over 25 years of practice in the development, teaching, execution, and leadership of product lifecycle, lean product development, DFSS, lean six sigma, project management, systems engineering and supply chain.

« Small Satellites, Emerging Technology and Big Opportunities (part three of seven) – No, we really mean ‘Mission Assurance’
Is Your Wet Scrubbing Tower Working? »

Leave a Reply Cancel reply

Your email address will not be published. Required fields are marked *

Articles by Rob Allen
in the Product Development and Process Improvement series

Join Accendo

Receive information and updates about articles and many other resources offered by Accendo Reliability by becoming a member.

It’s free and only takes a minute.

Join Today

Join PD&PI

[display_form id=369] Your email is safe and the opt-in here provides your permission to send messages concerning the PD&PI article list plus special announcements. Privacy Policy

Recent Posts

  • Gremlins today
  • The Power of Vision in Leadership and Organizational Success
  • 3 Types of MTBF Stories
  • ALT: An in Depth Description
  • Project Email Economics

© 2025 FMS Reliability · Privacy Policy · Terms of Service · Cookies Policy