1. Introduction to CAM and Mastercam (Week 1)
- •Basics of CNC and CAM
- •Overview of Mastercam software
- •Manufacturing process flow
- •CAD vs CAM concepts
- •Interface and workspace navigation
Learn Mastercam online with a syllabus built around CNC machining, 2D and 3D toolpaths, G-code generation, and post processing. You’ll work through Mastercam, CAD software integration with AutoCAD or SolidWorks, and the simulation workflow used before a part reaches the machine.
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Learning Mastercam is only half the equation. The other half is showing employers that you can handle toolpaths, verification, G-code output, and the basic language of CNC production without needing constant supervision. Inventateq supports that transition with placement-focused guidance built around the roles this course is meant for.
As you move through the course, the placement support keeps pace with your progress: first the core manufacturing concepts, then project work, then resume preparation and interview practice. By the time you finish, you have course-backed talking points for CNC Programmer, CAM Engineer, and Manufacturing Engineer conversations.
Mastercam-related roles are hired across manufacturing units, machine shops, tooling teams, and production engineering functions in and around Singapore. Pay usually grows with the complexity of parts handled, the amount of machine-side responsibility, and how well you can work from CAD input to verified CNC output.
Mastercam Average Salary by Experience
Mastercam-related roles are hired across manufacturing units, machine shops, tooling teams, and production engineering functions in and around Singapore. Pay usually grows with the complexity of parts handled, the amount of machine-side responsibility, and how well you can work from CAD input to verified CNC output.
Mastercam Average Salary by Experience
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Inventateq has built its training reputation by teaching practical software and engineering skills in a structured classroom format that learners can follow without guesswork. For Mastercam online training, that matters: students need a trainer who can move cleanly from CAD import to toolpath creation, simulation, and project work without skipping the production logic behind it.
We stand apart through our commitment to:

Attend live, instructor-led classes from anywhere with the same hands-on structure as our classroom batches. Follow along step-by-step, get real-time doubt support, and revisit recordings whenever you need to.
Useful for learners who want a structured start in CNC programming and CAM.
Helps build practical software and machining knowledge for entry-level roles.
Good fit if you already know the shop floor and want to move into programming.
Works for people who already use CAD and want to turn drawings into toolpaths.
Suitable for those moving toward production, machining, or manufacturing engineering work.
A clear path for anyone shifting into CNC and CAM from a different technical field.
11 modules: The syllabus moves through basics, toolpaths, simulation, post processing, and projects.
Live training: Sessions are trainer-led and follow the course flow in order.
Project work included: Real-time projects are built into the final module.
Career prep: Resume building and interview preparation are part of the course end stage.
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Manufacturing teams want people who can move from a part drawing to a verified CNC program with fewer errors and less trial time. Mastercam training stays relevant because production work depends on toolpaths, simulation, post processing, and machine-ready output that can be checked before a job reaches the floor.
This course turns software practice into usable production skills. Learners finish with a clearer understanding of machining logic, program output, and the steps needed to prepare a part for CNC execution.
You will be able to take imported CAD geometry and turn it into workable toolpaths inside Mastercam. That includes handling sketches, chains, contours, and coordinate systems for different parts.
You will know how to build facing, pocketing, contour, and drilling sequences for common shop-floor work. This helps you think like a CNC programmer instead of just a software user.
You will be able to work with roughing and finishing strategies for surfaces and molds. The course shows how parallel, scallop, and Z-level toolpaths are used in practice.
You will learn the basics of lathe programming, including roughing, threading, grooving, and parting. That gives you a wider machining base than a milling-only course.
You will be able to simulate tool motion, check for collisions, and review G-code output before a job is sent to the machine. That reduces avoidable errors and improves production readiness.
You will finish with project examples and resume preparation that help you explain what you did, why you chose it, and how it connects to CNC production roles.
The syllabus starts with CNC, CAM, and workspace basics before moving into toolpaths and advanced modules. That makes it workable for learners who are new to the software as long as they are willing to follow the sequence and practice the exercises.
Yes. The curriculum includes 2D milling, 3D mold machining, lathe programming, simulation, verification, and final projects. Those parts are there so learners do more than watch a demo.
The course includes placement-focused support such as resume help, interview preparation, and project-based guidance. The support is tied to the roles that fit this syllabus, especially CNC Programmer, CAM Engineer, and Manufacturing Engineer.
You can, if you are prepared to start with the fundamentals and keep up with the software practice. The early modules explain CNC, CAM, and interface navigation before the course moves into more technical machining work.
The online batch is described as live and trainer-led. That means you can ask questions during the session and follow the same syllabus structure as the classroom version.
The syllabus is arranged into 11 modules, so the course is paced across a full learning sequence rather than a short crash program. The exact schedule depends on the batch format, but the structure is built for steady progression through the software and project work.
This course includes both. You will see G-code generation, post processor basics, machine compatibility, toolpath verification, error checking, and collision detection, which are all part of the later modules.
Inventateq offers classroom training across multiple locations. Explore the branch nearest to you and check available batch timings.
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