10-Day Industry-Oriented GD&T Workshop
Practical Geometric Dimensioning & Tolerancing Workshop for Mechanical Design
10 Days | 90 Minutes per Day | 15 Hours | Instructor-Led | Practical Training
Learn how to read, interpret and apply Geometric Dimensioning & Tolerancing (GD&T) through engineering drawings, practical exercises, case studies and a final capstone project.
About the Workshop
This 10-Day Industry-Oriented GD&T Workshop is designed to develop practical skills in interpreting and applying Geometric Dimensioning & Tolerancing (GD&T) in mechanical design and product development.
The workshop focuses on understanding how GD&T controls the form, orientation, location and relationship of features and how these controls are applied to real engineering drawings.
Participants will progress from fundamental GD&T concepts to datum reference frames, feature control frames, position, profile, orientation controls, material conditions, functional requirements and drawing interpretation.
The emphasis is on practical application rather than memorizing symbols.
WORKSHOP OBJECTIVES
By the end of the workshop, participants will be able to:
- Understand the purpose and principles of GD&T
- Read and interpret GD&T symbols and feature control frames
- Understand basic dimensions and toleranced dimensions
- Understand datum features and datum reference frames
- Identify degrees of freedom and datum constraints
- Interpret form controls
- Interpret orientation controls
- Interpret location controls
- Interpret profile controls
- Understand position tolerance
- Apply MMC, LMC and RFS concepts
- Understand bonus tolerance
- Understand virtual condition
- Interpret feature patterns
- Analyze holes, pins, slots and surfaces using GD&T
- Understand datum shift
- Interpret composite feature controls
- Identify functional requirements on engineering drawings
- Apply GD&T during mechanical design and product development
- Interpret GD&T during drawing reviews and design reviews
10-Day Workshop Plan
| Day | Module | Key Focus |
|---|---|---|
| Day 1 | GD&T Fundamentals | Drawing Interpretation |
| Day 2 | Form Controls | Form Variation |
| Day 3 | Datums & DRF | Functional Reference |
| Day 4 | Orientation Controls | Angular Relationships |
| Day 5 | Position Tolerance | Feature Location |
| Day 6 | MMC / LMC / RFS | Material Conditions |
| Day 7 | Profile Controls | Complex Geometry |
| Day 8 | Advanced GD&T | Patterns & Advanced Controls |
| Day 9 | Functional GD&T | Engineering Drawing Review |
| Day 10 | Capstone Project | Complete GD&T Analysis |
DAY 1 — GD&T Fundamentals & Drawing Interpretation
Key Topics
- Introduction to GD&T
- Why GD&T is used in industry
- Limitations of conventional ± dimensioning
- Basic GD&T terminology
- GD&T symbols
- Feature
- Feature of size
- Datum feature
- Basic dimension
- Feature Control Frame
- Tolerance zone
- Engineering drawing interpretation
Hands-On Activity
Identify and interpret GD&T information from a mechanical engineering drawing.
DAY 2 — Form Controls
Key Topics
- Form tolerances
- Straightness
- Flatness
- Circularity
- Cylindricity
- Form tolerance zones
- Surface vs derived median line/axis concepts where applicable
- Relationship between size and form
- Functional applications of form controls
Hands-On Activity
Interpret form-control requirements on shafts, holes and machined surfaces.
DAY 3 — Datums & Datum Reference Frame
Key Topics
- Introduction to datums
- Datum features
- Datum simulators
- Primary datum
- Secondary datum
- Tertiary datum
- Datum Reference Frame
- Degrees of freedom
- 3-2-1 constraint concept
- Datum sequence
- Functional datum selection
- Datum identification on drawings
Hands-On Activity
Establish a Datum Reference Frame for a mechanical component and determine how the part is constrained.
DAY 4 — Orientation Controls
Key Topics
- Orientation tolerances
- Parallelism
- Perpendicularity
- Angularity
- Orientation tolerance zones
- Surface vs axis/derived feature applications
- Datum references
- Functional applications
- Difference between orientation and form control
Hands-On Activity
Interpret and evaluate orientation requirements for surfaces, holes and shafts.
DAY 5 — Position Tolerance
Key Topics
- Introduction to position tolerance
- True position concept
- Basic dimensions
- Position tolerance zones
- Position of holes
- Position of pins
- Cylindrical tolerance zones
- Diameter symbol
- Datum references
- Pattern location
- Hole-to-hole relationships
- Position vs coordinate tolerancing
Hands-On Activity
Interpret a hole-pattern drawing and determine the allowable positional variation.
DAY 6 — Material Condition Modifiers

Key Topics
- RFS
- MMC
- LMC
- Material condition modifiers
- Bonus tolerance
- Virtual condition
- Resultant condition
- Size and geometric tolerance relationship
- Functional gaging concepts
- Applications to holes and pins
Hands-On Activity
Calculate available bonus tolerance and determine virtual condition for a hole/pin feature.
DAY 7 — Profile & Advanced Feature Controls
Key Topics
- Profile of a line
- Profile of a surface
- Profile tolerance zones
- Profile with and without datum references
- Composite profile concepts
- Controlling complex surfaces
- Relationship between profile and size/location
- Practical applications in castings, sheet metal and machined components
Hands-On Activity
Interpret profile requirements on a complex mechanical component and determine what characteristics are controlled.
DAY 8 — Advanced GD&T & Feature Patterns
Key Topics
- Feature patterns
- Pattern location
- Pattern orientation
- Composite feature control frames
- Position patterns
- Datum shift
- Multiple datum references
- Simultaneous requirements
- Pattern relationships
- Coaxiality-related functional applications
- Symmetry-related functional applications
- Runout concepts
- Circular runout
- Total runout
Hands-On Activity
Analyze a complex feature pattern and interpret the complete GD&T requirement from the drawing.
DAY 9 — Functional GD&T & Engineering Drawing Review
Key Topics
- Functional application of GD&T
- Selecting appropriate GD&T controls
- Dimensioning strategy
- Datum selection
- Functional requirements
- Assembly requirements
- Clearance and interference considerations
- Inspection considerations
- Manufacturing considerations
- Design for Manufacturing
- Common GD&T drawing mistakes
- GD&T drawing review process
Hands-On Activity
Review a realistic engineering drawing and identify incorrect, incomplete or potentially ambiguous GD&T applications.
DAY 10 — FINAL INDUSTRY CAPSTONE WORKSHOP
Complete GD&T Drawing Analysis
Participants will work on a realistic mechanical component/assembly drawing and apply the concepts learned throughout the workshop.
Project Workflow
Understand Functional Requirement
↓
Identify Features
↓
Identify Feature Sizes
↓
Establish Datum Features
↓
Build Datum Reference Frame
↓
Interpret Feature Control Frames
↓
Analyze Form Controls
↓
Analyze Orientation Controls
↓
Analyze Position Controls
↓
Analyze Profile Controls
↓
Apply MMC / LMC / RFS
↓
Evaluate Bonus Tolerance
↓
Interpret Feature Patterns
↓
Review Functional Relationships
↓
Complete GD&T Drawing Review
↓
Present Engineering Recommendations
Hands-On Learning
Throughout the workshop, participants will work with engineering examples involving:
- Shafts
- Holes
- Pins
- Slots
- Plates
- Brackets
- Flanges
- Housings
- Machined components
- Feature patterns
- Mating components
- Mechanical assemblies
Skills You Will Develop
By completing this workshop, you will be able to:
- Read GD&T on engineering drawings
- Interpret Feature Control Frames
- Identify datum features
- Establish Datum Reference Frames
- Understand degrees of freedom
- Interpret form controls
- Interpret orientation controls
- Interpret position controls
- Interpret profile controls
- Understand runout controls
- Apply MMC, LMC and RFS
- Calculate bonus tolerance
- Understand virtual condition
- Analyze hole and pin patterns
- Interpret composite controls
- Understand datum shift
- Evaluate functional relationships
- Participate effectively in drawing reviews
- Apply GD&T principles to mechanical design problems
WORKSHOP STRUCTURE
| Day | Module | Primary Skill |
| 01 | GD&T Fundamentals | Read and interpret GD&T |
| 02 | Form Controls | Control form variation |
| 03 | Datums & DRF | Establish functional reference |
| 04 | Orientation Controls | Control angular relationships |
| 05 | Position Tolerance | Control feature location |
| 06 | MMC / LMC / RFS | Analyze material conditions |
| 07 | Profile Controls | Control complex geometry |
| 08 | Advanced GD&T | Analyze patterns and advanced controls |
| 09 | Functional GD&T | Apply GD&T to engineering drawings |
| 10 | Capstone Project | Complete drawing-level GD&T analysis |
FINAL WORKSHOP OUTCOME
At the end of the workshop, participants will have completed a complete GD&T drawing analysis covering:
Engineering Drawing

→ Functional Requirement
→ Feature Identification
→ Datum Selection
→ Datum Reference Frame
→ Feature Control Frame
→ Form Controls
→ Orientation Controls
→ Position Controls
→ Profile Controls
→ Material Conditions
→ Feature Patterns
→ Functional Interpretation
→ Engineering Drawing Review
Who Should Attend?
This workshop is suitable for:
Mechanical Engineering Students | Mechanical Design Engineers | CAD Engineers | Product Development Engineers | NPD Engineers | Manufacturing Engineers | Quality Engineers | Engineering Professionals
Prerequisites
Basic understanding of:
- Engineering drawing
- Mechanical dimensions
- Basic manufacturing concepts
No prior professional GD&T experience is required.
Workshop Format
10 Days × 90 Minutes
15 Hours of Industry-Oriented Learning
Theory + Worked Examples + Engineering Drawings + Hands-On Exercises + Case Studies + Final Capstone Project
Focus Areas
Practical | Drawing-Oriented | Industry-Relevant | Mechanical Design & Product Development
Ready to Build Your GD&T Skills?
Develop practical GD&T knowledge and apply it to real engineering drawing scenarios.
