Electropropulsion Technology
Design, manufacture, assemble and maintain electric vehicles. Progress from basic systems and components to advanced prototype development.
Focus: EV systems · batteries · motors · mechanical integration
Four applied technology pathways designed to take students from fundamentals to real-world projects.
Design, manufacture, assemble and maintain electric vehicles. Progress from basic systems and components to advanced prototype development.
Focus: EV systems · batteries · motors · mechanical integration
Understand renewable resources and design systems that maximize performance, efficiency and reliability.
Focus: PV · thermal systems · cooling · energy efficiency
Explore the intersection of mechanics, electronics and intelligent systems through practical automation and robot projects.
Focus: mobility · detection · recognition · control
Develop ideas into accurate, functional products using planning, dimensioning, modeling, prototyping and presentation.
Focus: CAD · product development · tolerances · prototyping
Many courses connect directly to the institute's project-based approach, so knowledge is tested through making rather than memorization alone.
Engineering English, communication, graphics, office tools, mathematics and physics support the technical disciplines.
Develop practical capability in areas such as welding, composite technology, metal structures, electronics and propulsion systems.
Work in teams on ambitious projects that combine design decisions, manufacturing constraints and installation requirements.
Tell us what you want to build. We can help you understand the best route through MiTEC.