The MSc Electronic Engineering at Middlesex University equips students with advanced knowledge in embedded real-time systems, digital signal processing, telecommunications, digital twin technologies, AI/ML, and robotics. It is designed for engineers who want to pursue careers in advanced electronics, industrial innovation, or research-driven technology development.
Curriculum Structure
Foundation Phase: Students study modules such as Digital Signal Processing and Communications, Embedded Real-Time Systems, and Machine Learning for Engineers. They gain skills in digital filters, communications theory, real-time computing, and AI algorithms applied to electronic systems.
Advanced Phase: Students progress to modules like Digital Twin Engineering and Robot Manipulation. They learn to create and use digital twin models with IoT data, and to program, simulate, and control robotic systems.
Final Phase: Students complete an Individual Project, defining a complex engineering problem, conducting research or development, and delivering a prototype or analytical report, consolidating technical, research, and problem-solving skills.
Focus Areas
Embedded real-time systems, DSP and communications, digital twin engineering, robotics, AI/ML in engineered systems, sustainable electronics.
Learning Outcomes
Graduates will be able to design, simulate, implement, and analyse modern electronic systems, build digital twins, apply machine learning to engineering problems, and carry out a substantial independent project.
Professional Alignment (Accreditation)
The programme aligns with industry needs in telecommunications, robotics, embedded systems, and digital systems, preparing graduates for technical, R&D, and leadership roles.
Reputation (Employability / Rankings)
Middlesex University is known for practical, hands-on engineering education and strong industry engagement, particularly in London, providing excellent preparation for employment in high-tech and engineering sectors.
The MSc in Electronic Engineering at Middlesex University London focuses on hands-on learning alongside advanced theory. Students apply concepts in specialist laboratories, working on robotics, embedded systems, digital communications, and control systems. Group and individual projects simulate real industrial engineering challenges, providing professional-level experience. Optional industry placements give students direct exposure to professional environments, enhancing employability.
Students gain practical skills through:
Lab-based work in electronics, robotics, and mechatronics, including embedded systems and sensor integration.
Individual projects, where students design, build, and implement complete electronic systems.
Group project work, mirroring real-world engineering team dynamics.
Optional industrial placement, allowing students to apply their skills in professional engineering settings.
Use of software simulation tools for digital signal processing, control, and embedded system design.
Workshops and practical exercises that enhance problem-solving, project management, and teamwork skills.
Key Modules
Digital Signal Processing & Communications – Digital filters, modulation techniques, and communication systems.
Embedded Real-Time Systems – Designing real-time systems with hardware and software integration.
Digital Twin Engineering – Modeling and simulation of physical systems for engineering applications.
Robot Manipulation – Simulation and programming of robotic systems, including kinematics and motion control.
Machine Learning for Engineers – Applying AI and machine learning to electronics, robotics, and embedded systems.
Engineering Sustainability – Understanding environmental, ethical, and material impacts in engineering design.
Individual Project – A major self-directed project demonstrating research, design, and implementation skills.
Graduates of this program are well-positioned for roles in electronic systems, communications, and technology development:
University services supporting employment: Middlesex University’s Careers and Employability Centre provides personalised career guidance, networking events, CV workshops, and links to industry recruiters.
Employment stats and salary figures: Early career roles typically offer salaries between £28,000 and £45,000, with progression into senior engineering or specialist roles leading to higher earnings.
University–industry partnerships: Strong connections with electronics, telecommunications, and automation companies provide opportunities for placements, project collaborations, and exposure to current industry practices.
Long-term accreditation value: The program aligns with professional engineering standards, supporting progression toward Chartered Engineer (CEng) status for eligible graduates.
Graduation outcomes: Alumni often secure positions such as Electronics Engineer, Embedded Systems Engineer, Communication Systems Engineer, or Control and Automation Engineer.
Further Academic Progression:
Graduates may pursue research degrees such as a PhD in Electronic Engineering, Telecommunications, or Embedded Systems, or further specialise with postgraduate certifications in fields like IoT, robotics, or advanced communications technologies.



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