Best SolidWorks & CATIA Course in Phagwara
SolidWorks and CATIA are powerful computer-aided design (CAD) applications developed by Dassault Systèmes. They are widely used in mechanical engineering, product design, automotive engineering, aerospace, manufacturing, and industrial design. SolidWorks is known for its parametric 3D modeling and mechanical design tools, while CATIA offers advanced capabilities for complex surfaces, large assemblies, and sophisticated engineering projects.
At Digitech Institute, Phagwara, our SolidWorks & CATIA course helps students, engineering graduates, aspiring designers, and professionals develop practical 3D CAD modeling and design skills. Students learn to create mechanical components, build assemblies, prepare technical drawings, and understand the design workflows used in engineering and manufacturing.
Whether you want to pursue a career in mechanical design, product development, automotive design, or industrial engineering, this course provides a foundation in two widely used engineering design applications.
Introduction to the SolidWorks & CATIA Course
SolidWorks and CATIA support different aspects of computer-aided design and engineering. SolidWorks is commonly used to design mechanical parts, assemblies, sheet metal components, and detailed engineering drawings. CATIA is particularly valuable for complex product development, advanced surface modeling, large assemblies, and engineering workflows across industries such as aerospace and automotive manufacturing.
The SolidWorks & CATIA course at Digitech Institute, Phagwara, introduces students to essential design concepts and software tools through structured learning and practical exercises. Students develop an understanding of 3D part modeling, assembly design, technical documentation, and advanced modeling techniques while building the foundation needed to work on engineering design projects.
What Will You Learn in a SolidWorks & CATIA Course?
Introduction to CAD and 3D Modeling: Understand computer-aided design concepts, the software interface, coordinate systems, and the basic principles of creating digital engineering models.
SolidWorks Interface and Sketching: Learn to navigate the SolidWorks workspace and create 2D sketches using geometric shapes, dimensions, constraints, and sketch-editing tools.
3D Part Modeling: Understand how to transform sketches into three-dimensional components using features such as Extrude, Revolve, Sweep, Loft, Fillet, and Chamfer.
Parametric Modeling: Learn how design parameters, dimensions, constraints, and feature relationships help you modify models efficiently while maintaining design intent.
Assembly Design: Explore how to combine multiple components into assemblies, apply mates and relationships, and understand how individual parts fit together in a mechanical product.
Engineering Drawings and Detailing: Learn to generate 2D drawings from 3D models, create orthographic and isometric views, add dimensions and annotations, and prepare technical documentation.
Sheet Metal Design: Understand the fundamentals of sheet metal modeling, bends, flanges, and flat patterns used in manufacturing-oriented design workflows.
Introduction to SolidWorks Simulation: Explore the basic concepts of engineering simulation and structural analysis, where supported by the software tools and course scope.
CATIA Interface and Part Design: Learn to navigate CATIA and understand the fundamentals of creating and modifying three-dimensional engineering components.
CATIA Assembly Design: Understand how to organize parts into assemblies, define component relationships, and work with complex product structures.
Advanced Surface Modeling: Explore CATIA surface design concepts and tools for developing complex curves, surfaces, and freeform geometries used in product and industrial design.
Generative Shape Design: Learn the fundamentals of creating and manipulating complex shapes and surfaces for advanced design applications.
Motion and Kinematics Basics: Understand how mechanical components move in relation to one another and explore basic mechanism analysis concepts where supported by the available modules.
Manufacturing and Design Workflows: Develop an understanding of how CAD models and engineering drawings support product development, manufacturing preparation, and communication between design and production teams.
Practical Design Projects: Apply your learning through part modeling, assembly exercises, and technical drawing tasks to strengthen accuracy, design thinking, and confidence with CAD software.






