Engineering Design & CAD · PPL

Creo Parametric Certification

A specialist program designed to develop practical Creo Parametric skills in sketching, parametric modelling, assemblies, sheet metal, engineering drawings, and mechanical product design.

  • 3 DaysDuration
  • PPLAccredited
  • 3 LanguagesArabic · English · Hindi
  • ₹10,999.00 Per delegate

This course is accredited by PPL

This is for all ppl accredited courses
2M+ Delegates trained worldwide
15,000+ Corporate clients
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4.8 ★ Average learner rating
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— The journey

Course Outline

What the programme covers, module by module.

Module 1: Introduction to Creo Parametric

  • Creo Parametric overview
  • CAD fundamentals
  • Parametric modelling
  • Product development
  • Creo applications
  • Design workflow

Module 2: Creo Interface & Navigation

  • User interface
  • Ribbon
  • Model Tree
  • Graphics window
  • Navigation controls
  • Working environment

Module 3: Sketcher Fundamentals

  • Sketch environment
  • Sketch planes
  • Lines
  • Circles
  • Arcs
  • Rectangles

Module 4: Sketch Constraints & Dimensions

  • Geometric constraints
  • Dimensional constraints
  • References
  • Relations
  • Fully constrained sketches
  • Sketch modification

Module 5: Part Modelling Fundamentals

  • Part creation
  • Datum features
  • Feature-based modelling
  • Design intent
  • Parent-child relationships
  • Model Tree management

Module 6: Extrude Features

  • Solid extrusions
  • Material addition
  • Material removal
  • Depth options
  • Symmetric extrusions
  • Feature editing

Module 7: Revolve & Sweep Features

  • Revolve
  • Revolved cuts
  • Sweep
  • Sweep trajectories
  • Profile control
  • Feature modification

Module 8: Advanced Feature Creation

  • Blend
  • Swept blend
  • Variable section sweep
  • Helical sweep
  • Rib features
  • Complex geometry

Module 9: Engineering Features

  • Holes
  • Rounds
  • Chamfers
  • Shells
  • Draft
  • Feature modification

Module 10: Pattern & Transformation Tools

  • Linear patterns
  • Circular patterns
  • Mirror
  • Geometry patterns
  • Pattern tables
  • Feature duplication

Module 11: Datum Features & References

  • Datum planes
  • Datum axes
  • Datum points
  • Coordinate systems
  • Reference geometry
  • Datum management

Module 12: Parameters, Relations & Design Intent

  • Model parameters
  • Relations
  • Design variables
  • Feature dependencies
  • Parametric changes
  • Design intent management

Module 13: Assembly Design Fundamentals

  • Assembly environment
  • Component placement
  • Assembly structure
  • Subassemblies
  • Component references
  • Assembly workflow

Module 14: Assembly Constraints

  • Mate constraints
  • Align constraints
  • Insert constraints
  • Distance constraints
  • Angle constraints
  • Component positioning

Module 15: Advanced Assembly Management

  • Component replacement
  • Assembly modifications
  • Exploded views
  • Interference checking
  • Assembly analysis
  • Large assembly concepts

Module 16: Surface Modelling

  • Surface concepts
  • Extruded surfaces
  • Revolved surfaces
  • Boundary surfaces
  • Surface trimming
  • Surface merging

Module 17: Advanced Surface Design

  • Complex surfaces
  • Surface extensions
  • Surface intersections
  • Quilts
  • Solidification
  • Surface continuity

Module 18: Sheet Metal Design

  • Sheet metal environment
  • Walls
  • Bends
  • Flanges
  • Cuts
  • Flat patterns

Module 19: Engineering Drawings

  • Drawing creation
  • General views
  • Projection views
  • Section views
  • Detail views
  • Drawing sheets

Module 20: Dimensions, Tolerances & Annotations

  • Drawing dimensions
  • Geometric tolerances
  • Surface finish symbols
  • Notes
  • Symbols
  • Engineering annotations

Module 21: Model Analysis & Validation

  • Measurement tools
  • Mass properties
  • Section analysis
  • Interference analysis
  • Geometry inspection
  • Design validation

Module 22: Integrated Creo Parametric Project

  • Sketch preparation
  • Parametric part modelling
  • Assembly development
  • Sheet metal or surface modelling
  • Engineering drawing
  • Design validation
— 01.2 · Is it right for you?

Who it's for & what's included

Pick a delivery method to see exactly who it suits and everything you receive.

Who it's for

Classroom

Best for learners who want face-to-face tuition and to network with peers in person.

What's included

Everything you get

  • Live instructor on-site
  • Printed workbook & materials
  • Group exercises & case studies
Who it's for

Online Instructor-Led

Best for learners who want a live instructor and a fixed schedule, without the travel.

What's included

Everything you get

  • Live instructor via video call
  • Digital workbook & resources
  • Session recordings
Who it's for

Self-Paced

Best for self-motivated learners who need maximum flexibility around work and life.

What's included

Everything you get

  • On-demand video lessons
  • Interactive quizzes
  • 24/7 access on any device
— What you will master

Course Objectives

01

Understand Creo Parametric and feature-based mechanical design principles.

02

Create accurate and fully constrained engineering sketches.

03

Develop parametric 3D components using advanced modelling features.

04

Apply design intent, parameters, relations, and reference geometry effectively.

05

Create and manage mechanical assemblies and component relationships.

06

Develop surface and sheet metal models using Creo tools.

07

Produce engineering drawings with dimensions, tolerances, and annotations.

08

Analyse and validate models for professional mechanical product development.

— Questions answered

Frequently Asked Questions

What is Creo Parametric?
Creo Parametric is a 3D CAD application used for parametric mechanical design, product modelling, assemblies, engineering documentation, surface development, and sheet metal design.
Who should attend this course?
The course is suitable for job seekers, engineering graduates, mechanical engineering students, CAD designers, product designers, and aspiring mechanical design engineers.
Do I need previous Creo experience?
No advanced Creo experience is required. Basic knowledge of engineering drawing and mechanical design concepts can help learners understand the modelling workflows.
Which Creo topics are covered?
The course covers sketching, part modelling, advanced features, assemblies, parameters, surface modelling, sheet metal, engineering drawings, tolerances, and model analysis.
What practical skills will I develop?
You will develop skills in parametric part creation, assembly design, surface and sheet metal modelling, engineering documentation, model analysis, and mechanical product development.
— Trusted by learners

What our delegates say

★★★★★

"The structure, the practice exams, the instructor — all top tier. Passed first try."

AS
Aarti SharmaSenior Project Manager · TCS
★★★★★

"Best training I have attended. The content is exactly what modern projects need."

JD
James DonovanProgramme Director · Capgemini
★★★★★

"24/7 support actually means 24/7 — got help on my mock exam at 2am. Worth every dollar."

MO
Maya OkaforPMO Lead · Standard Bank

★ 4.8 / 5 from 12,000+ verified learner reviews on Trustpilot & Google.

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