The MSc Electronic and Electrical Engineering at Swansea University offers advanced training in the design, development, and application of modern electronic and electrical systems. It’s ideal for graduates of electrical, electronic, or related engineering disciplines who want to strengthen their technical expertise and prepare for high-impact roles in industries such as power systems, renewable energy, telecommunications, and advanced electronics.
Curriculum structure
Year 1 (Taught modules + Project)
During your first year, you’ll explore the principles that drive innovation in today’s engineering world. Modules like Power Semiconductor Devices and Power Electronics introduce you to the technologies enabling efficient energy conversion and control. You’ll study Communication Systems and Digital Signal Processing to understand how modern communication networks and embedded systems operate. In Analogue and Digital Circuit Design, you’ll apply circuit modelling and simulation to design integrated systems. The year culminates in a substantial Engineering Project, where you apply your learning to a real-world or research-led problem—developing practical, analytical, and project management skills essential for professional engineering practice.
Year 2 (Industry Placement or Extended Project – Optional)
If you choose the two-year route, your second year focuses on practical experience through an Industry Placement or an extended research project. This allows you to apply your classroom learning within a professional environment, gain hands-on exposure to cutting-edge engineering challenges, and develop industry connections that enhance your employability upon graduation.
Focus areas
Power electronics and renewable energy systems; communication and signal processing; embedded and control systems; electronic materials and nanotechnology; circuit design and integration; applied research and professional practice.
Learning outcomes
Graduates will be equipped to design, analyse, and optimise complex electrical and electronic systems using advanced tools and methodologies. You’ll learn to solve technical problems creatively, manage large-scale engineering projects, and apply sustainable and innovative approaches to emerging challenges in the energy and electronics industries.
Professional alignment (accreditation)
The programme is accredited by the Institution of Engineering and Technology (IET) on behalf of the Engineering Council, fulfilling the academic requirements for further learning toward Chartered Engineer (CEng) status when combined with a suitable accredited undergraduate degree.
Reputation (employability rankings)
Swansea University is internationally recognised for excellence in engineering education and research, with its engineering research rated 100% world-leading or internationally excellent in the UK’s Research Excellence Framework. The Electronic and Electrical Engineering subject area ranks among the global top tier, supported by strong industry collaborations and outstanding laboratory facilities. Graduates benefit from high employability and are well-prepared for leadership roles in energy, electronics, and technology sectors.
The MSc in Electronic and Electrical Engineering at Swansea University focuses on practical application just as much as academic excellence. From the very beginning, you’ll engage with industry-grade equipment, simulation tools, and design software while working alongside research-active academics in advanced laboratory environments. The program is structured to help you understand not only how electronic and electrical systems work but also how to design, test, and implement them in real-world scenarios.
Here’s how Swansea ensures you gain genuine hands-on experience throughout your studies:
Specialist laboratories: You’ll work in advanced electrical and electronics labs equipped with high-end instruments, including scanning tunnelling microscopes for nanoscale measurements, parameter analysers for power electronics testing, and prototyping equipment for component development.
Simulation and design tools: Students use professional-grade modelling and analysis software to design and evaluate electrical circuits, embedded systems, and energy systems.
Research-integrated learning: Teaching is guided by active researchers in power electronics, semiconductor devices, and telecommunications, ensuring that the experiments and design tasks you perform are directly connected to current industry developments.
Group and design projects: Many modules include team-based design challenges, where you collaborate to build and test electronic systems under realistic constraints—mirroring how professional engineering teams operate.
Optional Year in Industry pathway: The two-year variant of this MSc offers a full year of industrial placement or an applied research project, giving you substantial experience within a professional engineering environment.
Practical workshops and demonstrations: You’ll take part in workshops that blend theory and practice, using test benches and digital analysis tools to validate designs.
Postgraduate and research facilities: You’ll have 24-hour access to modern laboratories, dedicated postgraduate study spaces, and library resources that support independent experimentation and collaboration.
Digital and blended learning support: Lectures are complemented by seminars, workshops, and online learning tools, helping you apply theory to hands-on technical challenges and research activities.
By the time you graduate, you’ll not only understand advanced electrical and electronic principles but also have the technical experience, teamwork, and problem-solving skills that prepare you for high-level roles across renewable energy, power systems, embedded design, and advanced manufacturing industries.
The MSc Electronic and Electrical Engineering at Swansea University is an excellent pathway for those who want to shape the future of modern technology. The course equips you with the technical expertise and innovation skills needed for roles such as Electrical Engineer, Control and Instrumentation Engineer, Systems Analyst, and Network or Telecommunications Engineer.
Progression & Future Opportunities:
University Services to support your employability:
The Careers and Employability Team provides tailored guidance, career coaching, employer networking events, and access to internships or industrial placements.
You’ll train in state-of-the-art laboratories for power electronics, control systems, and digital design—ensuring you graduate with practical, industry-ready experience.
The optional Year in Industry (available in the two-year version) gives students the opportunity to gain real work experience or collaborate with industrial partners on live projects.
Employment stats & salary figures:
Swansea University engineering graduates consistently achieve high employability rates, with the majority securing skilled roles within 6–12 months of graduation.
Typical starting salaries for graduates in electrical and electronic engineering roles range from £25,000 to £35,000, depending on experience and sector.
Swansea’s strong reputation in engineering and research excellence ensures its graduates are sought after by employers worldwide.
University–industry partnerships:
The program benefits from Swansea’s close collaborations with major engineering and technology companies across the UK and Europe.
Students work on research projects linked to real industrial challenges in renewable energy, semiconductors, power systems, and advanced electronics.
These partnerships not only enhance your learning but also open pathways to internships, research assistantships, and job opportunities.
Long-term accreditation value:
The MSc is accredited by the Institution of Engineering and Technology (IET) on behalf of the Engineering Council, fulfilling the “Further Learning” requirement for Chartered Engineer (CEng) registration (for those with an accredited undergraduate degree).
This professional accreditation gives your qualification global recognition and long-term credibility in the engineering sector.
Graduation outcomes:
You’ll graduate with a robust understanding of electrical systems, electronics design, instrumentation, and communication technologies.
The program develops highly transferable skills in problem-solving, data analysis, design thinking, teamwork, and project management, enabling success in both engineering and leadership roles.
Further Academic Progression:
After completing this MSc, you can pursue a PhD or MPhil in Electronic and Electrical Engineering, Renewable Energy Systems, or Advanced Semiconductor Research. You may also work toward Chartered Engineer (CEng) status through the IET or pursue executive and specialist qualifications in areas such as Smart Power Systems, IoT Design, or Sustainable Energy Engineering to advance into senior or research-focused positions.



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