Six Sigma Black Belt

Mastering The Six Sigma Methodology

ABOUT THE PROGRAM

Six Sigma is set of rules that are useful in improving processes and providing a better quality of products and services in a given time frame.It collects and augments data from various businesses and finally removes any defects that exist in it. Six Sigma professionals create better products by implementing the techniques, methods and tools of Six Sigma. in a particular sequence.

When Motorola came up with the concept of Six Sigma in the 1980's, its main aim was to improve the time-cycle and reduce production errors. As per the rules of Six Sigma, only 3.4 errors can be allowed in a million processes. The Six Sigma methodology aims at fulfilling customer requirements, satisfying the customers to improve the relations with them which helps in keeping the customers/clients loyal to the organisation in times of difficulty even.

  • Uproot defects from any business processes

  • Understand the 5 Phase concept of DMAIC

  • Work as Team Leaders and Team Members in Six Sigma teams

  • Get Certified from Global Training Provider

  • Learn the Six Sigma methodology from Certified and experienced trainers

WHAT'S INCLUDED ?

Find out what's included in the training programme.

Includes

Courseware

Courseware will also be provided to the delegates so that they can revise the course after the training.

Includes

Certificate

Delegates will get certification of completion at the end of the course.

Includes

Exam(s) included

Exams are provided, as part of the course. Obtaining certification is dependant on passing these exams

Includes

Pre Course Material

It provides some basic knowledge about the course before training.

Includes

Tutor Support

A dedicated tutor will be at your disposal throughout the training to guide you through any issues.

Includes

Key Learning Points

Clear and concise objectives to guide delegates through the course.

PREREQUISITES

In order to certify the delegates must hold a completed projected with Six Sigma and and also an experience using the Six Sigma technology for three years.

TARGET AUDIENCE

The following category of professionals are included in the course list who can get benefit from taking the course:

  • Companies and their managements for implementing Six Sigma.
  • Project Managers to complete projects of extreme importance.
  • Quality Assurance Engineers who discover and develop various methods of increasing quality.
  • Audit managers to manage reviews of various companies.
  • Security professionals to implement policies judicially.
  • Management students for learning the benefits of using various methodologies.
  • Team leaders for supervising the teams correctly.
    • Software Professionals to develop high-quality software after applying techniques to manage variability.

WHAT WILL YOU LEARN?

  • How to finish off the projects and handing them over to process owners
  • Implement the various concepts of Lean
  • Present these projects to different levels of professionals
  • Work at various levels of leadership
  • Measuring various problems to remove barriers and achieve project success
  • Know the advanced statistical analyses that exist to evaluate the the relationship among the key inputs and process outputs
  • Know how to manage team aspects successfully and at a faster pace

Enquire Program

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PROGRAM OVERVIEW

The Six Sigma methodology focuses on improvising the time-cycle process and making sure there are least defects in any business processes. According to Six Sigma in order to get success over qualitative meters, qualitative scopes must take a precedence. This results in the credibility of the employees going up. Six Sigma applies to all the industries and can be practised by almost all professionals who belong to different industries. It can be used by people who use statistics, financial analysis and project management to achieve better business purposes. According to Six Sigma, any process that does not fulfil customer satisfaction is termed as an error.

Six Sigma practitioners go on upgrading themselves as they progress from White Belt to Black Belt professionals. According to Six Sigma, all business processes can be gauged and streamlined.

 EXAMINATION

Type: Multiple Choice Questions

Questions: 100

Pass Percentile: 70%

Language of Exam: English


PROGRAM CONTENT

  • PHASE I - DEFINE
    • An Overview of Six Sigma
      • Six Sigma – An Understanding
      • History of Six Sigma
      • Y = f(x) Approach
      • Methodology of Six Sigma
      • Roles & Responsibilities
    • Fundamentals of Six Sigma
      • Defining Process
      • VOC & CTQ’s
      • QFD
      • Cost of Poor Quality
      • Pareto (80:20 rule)
    • Projects of Lean Six Sigma
      • Six Sigma Metrics
      • Business Case & Charter
      • Project Team Selection
      • Project Risk Management
      • Project Planning
    • Lean Fundamentals
      • Lean & Six Sigma
      • History of Lean
      • The Seven Deadly Muda
      • Five-S (5S)
    • Phase II-MEASURING
      • Process Definition
        • Cause & Effect Diagrams
        • Cause & Effects Matrix
        • Process Mapping
        • FMEA
        • Theory of Constraints
      • Six Sigma Statistics
        • Basic Statistics
        • Descriptive Statistics
        • Distributions & Normality
        • Graphical Analysis
      • MSA
        • Precision & Accuracy
        • Bias, Linearity & Stability
        • Gage R&R
        • Variable & Attribute MSA
      • Process Capability
        • Capability Analysis
        • Stability Concept
        • Attribute Capability
        • Discrete Capability
        • Monitoring Techniques
      • Phase III - ANALYZING
        • Variation Patterns
          • Multi-Variable Analysis
          • Classes of Distributions
        • Inferential Statistics
          • Understanding Inference
          • Sampling
          • Sample Size
          • Central Limit Theorem
        • Hypothesis Testing
          • Hypothesis Testing Goals
          • Statistical Significance
          • Risk; Alpha & Beta
          • Types of Hypothesis Test
        • Hyp-Tests: Normal Data
          • One and Two Sample t-tests
          • One Sample Variance
          • One Way ANOVA
        • Hyp-Tests: Non-Normal Data
          • Mann-Whitney & Mood’s Median
          • Kruskal-Wallis
          • Moods Median
          • Friedman
          • 1 Sample Sign
          • 1 Sample Wilcoxon
          • 1 and 2 Proportion
          • Chi-Squared
          • Test of Equal Variances
        • Phase IV - IMPROVING
          • Simple Linear Regression
            • Correlation
            • X-Y Diagram
            • Regression Equations
            • Residuals Analysis
          • Multiple Regression
            • Non-Linear Regression
            • Multiple Linear Regression
            • Confidence Intervals
            • Residuals Analysis
            • Box-Cox Transformation
            • Stepwise Regression
            • Logistic Regression
          • Designed Experiments
            • Experiment Objectives
            • Experimental Methods
            • DOE Considerations
          • Full Factorial Experiments
            • 2k Full Factorial Designs
            • Linear & Quadratic Models
            • Orthogonal Designs
            • Model & Center Points
          • Fractional Factorials
            • Designs
            • Confounding Effects
            • Experimental Resolution
          • Phase V - CONTROLLING
            • Lean Controls
              • Control Methods for 5
              • kanban
              • Poka-Yoke
            • SPC
              • Data Collection for SPC
              • I-MR Chart
              • Xbar-R Chart
              • U Chart
              • P Chart
              • NP Chart
              • X-S chart
              • CumSum Chart
              • EWMA Chart
              • Control Methods
              • Control Chart Anatomy
              • Variation & Sampling
              • Control Limits
            • Planning for Six Sigma Control
              • Cost-Benefit Analysis
              • Control Plan Elements
              • Response Plan

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ABOUT Darlington

Darlington is a large and historic market town and county in North East England with a population of around 92,363 according to 2011 census. It is located on the Skerne River, known as the tributary of the Tees River. The town lies on the south Durham which is close to the Tees River, also serves as a border between the Yorkshire and Durham. The two main rivers pass through the town: Skerne River and Tees River. The neighbouring towns surround the town are Stockton, Newton Aycliffe and Bishop Auckland.

The local historical Christian group and Religious Society of Friends Quaker families played the crucial role in the development of the town in the Georgian and Victorian period. The World’s first steam locomotive passenger railway ‘Stockton and Darlington Railway’ was introduced by Quaker. The town is also known as Darlo. The town is surrounded by several suburbs include Harrowgate Village, Firthmoor and Skerne Park, Faverdale and the West Park. The twin towns of the Darlington are Amiens in France and Mulheim an der Ruhr in Germany. 

History

The early settlement of the town traced its root back to the Anglo-Saxon period. It has been suggested that the town derived its name from the Saxon Dearthington meaning the settlement of the people of the Deornoth. The name of the town replaced by new name Derlinton during the Norman era. It is also known as Darnton in 17th and 18th century. The most important English church ‘St Cuthbert Church’ is built in the city in 1183 and listed as Grade I building, while the oldest church St Andrew was established in 1125 around the Haughton area of Darlington.

Darlington continued to grow as a small market town by the early 19th century. The Backhouse and Pease families, the strong Quaker families were significant employers of the town. The industrialist Joseph Pease constructed the clock tower, the famous landmark of the town in 1864. The face of the clock and tower bells were produced by T. Cooke and Sons and John Warner and Sons respectively. The tower bells of the clock tower are considered as sister bells placed inside the Elizabeth Tower at the Houses of Parliament, also known as Big Ben in London.

The town is also recognised for its corporation with the modern railway and this event is celebrated at Railway Centre and Museum of the Darlington. The town became the significant centre for manufacturing of railways in the 18th century. In 1825, Locomotion No 1 engine of George Stephenson was designed for passengers and goods and travelled between Stockton-On-Tees and Shildon via Darlington. The Hopetown Carriage Works was established in the town for supplying locomotives to the Darlington Railway. The three major works were developed in the town including Darlington Works, Faverdale Wagon Works and Robert Stephenson & Company.

The bridge building and engineering also played a significant role in the growth of the town. The headquarter of the large engineering firm Cleveland Bridge and Engineering Company is also located in the town and built Sydney Harbour Bridge, Tyne Bridge and the Humber Bridge.  The town is home to the leading engine building firms and industrial headquarters of AMEC.

Economy

The town is home to the largest private sector employer EE (Everything Everywhere) British mobile network operator and provided job to more than 2500 people. Other major employer of the town are Student Loans Company hired more than 100 people. Large engineering firms are based in the town such as Cleveland Bridge, Cummins, AMEC and Argos. Many modern and developing industries are also growing in the town including information technology. Recently, the town is also ranked one of the economically important places in England by BT Group and to accomplish superfast broadband rollout project, BT group have installed underground fibre-optic cables.

Six Sigma and Its Techniques

Six Sigma is a set...