Mechatronic System Section
Combine mechanical, electrical, sensing, control, and software elements into working machines.

Discover how mechanical, electrical, and computer systems work together — building smart machines and automation for Industry 4.0.
Explore the study path ↓What this focus develops
Connect classroom fundamentals with practical investigation, modern tools, teamwork, and evidence-based engineering decisions.
Combine mechanical, electrical, sensing, control, and software elements into working machines.
Develop control logic and tune automated systems for reliable performance.
Lab Equipment
Learning, research, prototyping, testing, and engineering services.
01Combine robotics, machine vision, sensing, and control for Industry 4.0 learning activities.
02Practice integrated sequencing, sensing, handling, control, and troubleshooting across four automated stations.
03Explore robotic material handling, storage, retrieval, coordination, and warehouse automation.
04Build and diagnose industrial electronic circuits used in machines, automation, and control systems.
05Program, simulate, commission, and troubleshoot PLC-based industrial control sequences.
06PLC with HMI Learning Kit inside a box case.
07Lifting mechanism of the elevator and control system of an elevator system.
08Sensor and Transducers Used in Industrial Applications
09Combine servo motor and control system
10Magnetic Contactor Panel
11Pneumatic System Learning Kits
12Hydraulic System Learning Kit
Supporting curriculum
Foundation subjects lead to specialist work, integrated projects, industry experience, and the final capstone.
The course mapping is a program overview and can be updated in the CMS when the official study plan changes.
How students learn
Activities combine technical knowledge with communication, iteration, safety, and reflection.
Build a closed-loop system that senses its environment and responds predictably.
Configure a vision-assisted robot task and improve its accuracy through testing.
Create, document, and troubleshoot an industrial sequence using safe automation practice.
Investigate electric mobility subsystems, control behavior, and system integration.
Career pathways
Graduates can move across technical and leadership roles as their experience grows.
Create integrated electromechanical products and intelligent machines.
Design, program, commission, and improve automated systems.
Develop reliable control strategies for machines, vehicles, and processes.
Coordinate complex technical requirements, interfaces, verification, and delivery.
Research & Innovation
Explore current projects in Research & Innovation for full project details and related focus areas.
Upcoming event
Explore. Experience. Engineer.
What you will experience
Free admission · Advance registration required