4 Years On Campus Bachelors Program
The Bachelor in Industrial Electronics and Automation Engineering at University Carlos III de Madrid (UC3M) gives you hands-on training in industrial electronics, automation, robotics, renewable energy, electric vehicles, and smart systems like domotics—perfect if you're excited about designing the tech that powers modern factories and sustainable industries. You'll build skills to thrive in dynamic roles like system integration or robot programming, blending creativity with real-world problem-solving in a program that's bilingual (Spanish/English) and focused on what employers need today.
Curriculum Structure
Year 1 and 2 lay a strong foundation in core engineering principles, diving into basics like circuits, programming, math, and physics to get you comfortable with electronics and systems thinking—think subjects like Calculus, Physics, and Introduction to Programming that set you up for advanced automation work. You'll start experimenting early with labs and projects, building confidence in handling signals, components, and basic controls that are essential for everything from energy systems to robotics.
Year 3 ramps up with practical powerhouses like Industrial Automation I, where you'll learn to program and control machines and processes; Control Engineering I, mastering feedback systems for precise operations; and Digital Electronics, designing circuits for smart devices. Add in Electrical Machines and Installations for powering industrial setups and Analog Electronics for real-world signal processing, and you're creating automated systems that feel straight out of the future—perfect prep for internships or capstone projects. It's here that the program shines, turning theory into tools you can apply immediately.
Year 4 (final year) sharpens your expertise through advanced electives and a major project, focusing on robotics, advanced control, and integration—often including external internships for that pro-level experience companies love. You'll tackle real challenges like decision-support systems or inspection automation, synthesizing everything from earlier years into portfolio-worthy work.
Focus Areas
Automation of machines, processes, and systems; implementation of industrial computerized systems; robotics and robotized systems; renewable energy and electric transportation; electronic energy management and instrumentation.
Learning Outcomes
CE7: Model and simulate systems; CE8: Apply automatic control techniques to industrial automation; CE9: Understand robotic systems principles; CE10: Use industrial IT and communications; CE11: Design control and automation systems.
Professional Alignment (Accreditation)
This degree qualifies you directly for roles like automation engineer, control room technician, or system integrator, with skills matching official standards for designing, implementing, and maintaining industrial electronic systems—plus pathways to Master's programs for full Industrial Engineer status.
Reputation (Employability Rankings)
UC3M's engineering programs, including this one, boast top employability: QS World University Rankings places UC3M in the global top 50 for Engineering & Technology (graduate employability), with 90%+ alumni employed within 12 months per official stats—strong demand in Spain's booming automation sector.
At Universidad Carlos III de Madrid (UC3M), the Bachelor in Industrial Electronics and Automation Engineering dives right into hands-on learning, where you'll build real-world skills like designing, simulating, implementing, and tuning industrial electronic systems and automated processes. You'll work directly with cutting-edge tools in specialized labs tied to the Electronic Technology Department and Systems Engineering and Automation Department, gaining expertise in everything from robotized systems to computerized industrial setups—preparing you for roles like control room technician or automation specialist. This practical focus, backed by departments like Mechanical Engineering and Materials Science, ensures you're not just studying theory but creating solutions for industry right from year one.
Here's how our program makes experiential learning come alive through dedicated facilities and opportunities:
- State-of-the-art laboratories in the Electronic Technology Department for specification, simulation, design, and testing of industrial electronics, automation systems, and instrumentation—perfect for hands-on projects in robot programming and automated inspection.
- Advanced automation and systems labs supported by the Systems Engineering and Automation Department, where you'll tackle group projects on machine automation, process control, and decision-support systems for production.
- Electronic instrumentation facilities for designing, calibrating, and operating measurement systems, including practical work in electrical machines and regulation techniques.
- Interdisciplinary research spaces linked to PhD programs in Electrical Engineering, Electronics, and Automation, with faculty expertise in areas like robotics and innovative systems development.
- Group projects and simulations across core courses, emphasizing teamwork in implementing and maintaining automated industrial equipment, often using department-specific tools for real industry scenarios.
At the University Carlos III de Madrid (UC3M), the Bachelor in Industrial Electronics and Automation Engineering dives deep into hands-on learning right from the start, equipping you with practical skills in designing, simulating, implementing, and tuning industrial electronic systems and automated processes. You'll work directly with top-tier tools and facilities tied to the Electronic Technology Department, Systems Engineering and Automation Department, and others like Mechanical Engineering and Materials Science, building real-world expertise in electronics, robotics, control systems, and instrumentation. This bilingual program (Spanish/English) on the Leganés Campus emphasizes applied projects that mirror industry needs, from robotized systems to computerized industrial management.
Here's a closer look at the key experiential opportunities specific to this program::
- Specialized laboratories: Access labs in the Electronic Technology Department for hands-on work in electronic instrumentation, automated systems design, and robot programming, supporting coursework in specification, simulation, and implementation of industrial equipment.
- Departmental facilities for research and projects: Collaborate across departments like Systems Engineering and Automation for group projects on automation of machines, processes, and control systems, including modeling, simulation, and optimization using department-specific tools.
- Software and digital tools: Use industry-standard software for systems simulation, design, and tuning in electronics and automation, integrated into courses on electronic equipment and computerized industrial systems.
- Group projects and practical training: Engage in team-based design, installation, and maintenance of automated systems, inspection tools, and production decision support systems, fostering skills in robotized environments and measurement calibration.



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