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Master of Engineering in Electrical and Electronic Engineering

Master of Engineering in Electrical and Electronic Engineering (2+2)

Electrical and Electronic Engineering influences many aspects of modern life ranging from energy, healthcare, entertainment and commerce, to communications, manufacturing and the environment. Electrical and Electronic Engineering is a challenging and evolving subject that is relevant to a wide range of industries, including the power sector and the electronics industry.

At Southampton, you will gain a broad spectrum of knowledge and skills required to work in the technology sector, but also the wider range of competencies needed by today’s professional engineer. 

This breadth of knowledge is developed using a systematic approach to most subjects – blending the core technical syllabus with ongoing design exercises that run throughout the programme. You will use some of the most advanced teaching facilities in the world, you will put the theory you have learned in lectures into practice and deliver real results.

Course Code

Course Code

JPT (R2/0712/6/0119)
05/28 MQA/FA 3103

Intake

Intake

September

Duration

Duration

4 Years

Delivery Model

Delivery Model

2 years in Malaysia,
2 years in the UK

Electrical and Electronic Engineering

What You Will Study

The Master of Engineering in Electrical and Electronic Engineering (2+2) develops knowledge across circuits, programming, digital systems, communications, control, power electronics, and advanced electronic engineering. Progression to Computer Systems degree pathways may also be possible in Years Three and Four.

Year One

  • Mathematics
  • Circuits
  • Programming
  • Digital Systems
  • Engineering Mathematics
  • Fields, Forces and Materials
  • Electronic Systems and Materials
  • Introduction to Signals, Control and Communications
  • First Year Lab

Year Two

  • Design
  • Programming and Simulation of Electronic Systems
  • Signal Processing
  • Applied Electromagnetism
  • Control and Systems Modelling
  • Communications

Optional Modules

  • Electronic and Photonic Devices
  • Electronic and Computer Systems
  • Electrical Machines and Drives

Year Three

  • Part III Individual Project Phase 1
  • Part III Individual Project Phase 2
  • Power Electronics

Optional Modules

  • Advanced Computer Architecture
  • Advanced Partial Differential Equations
  • Analogue and Mixed Signal Electronics
  • Computational Biology
  • Control System Design
  • Digital Coding and Transmission
  • Digital Control System Design
  • Digital IC and Systems Design
  • Embedded Networked Systems
  • Foundations of Machine Learning
  • Green Electronics
  • Guidance, Navigation and Control
  • High Voltage Engineering
  • Integral Transform Methods
  • Machine Learning Technologies
  • Nanoelectronic Devices
  • Operational Research
  • Optimisation
  • Photonics II
  • Power Systems Engineering
  • Power Systems Technology
  • Real-Time Computing and Embedded Systems
  • Robotic Systems
  • Security of Cyber Physical Systems
  • Signal and Image Processing
  • Wireless and Optical Communications

Year Four

  • Group Design Project

Optional Modules

  • Advanced Wireless Communications Networks and Systems
  • Analogue and Mixed Signal CMOS Design
  • Applied Control Systems
  • Bio/Micro/Nano Systems
  • Biologically Inspired Robotics
  • Cryptography
  • Digital Systems Synthesis
  • Embedded Processors
  • Evolution of Complexity
  • High Voltage Insulation Systems
  • Image Processing
  • Individual Research Project
  • Machine Learning for Wireless Communications
  • Medical Electrical and Electronic Technologies
  • Microfabrication
  • Microfluidics and Lab-on-a-Chip
  • Microsensor Technologies
  • Modelling with Differential Equations
  • Nanofabrication and Microscopy
  • Nonlinear Control of Aerospace Systems
  • Numerical Methods
  • Optical Fibres
  • Power Distribution: Design, Operation and Protection
  • Power Electronics for DC Transmission
  • Power Generation: Technology and Impact on Society
  • Power System Dynamics, Stability and Control
  • Power Systems Operation and Economics
  • Quantum Devices and Technology
  • Secure Hardware and Embedded Devices
  • Silicon Photonics
  • VLSI Design Project
  • VLSI Systems Design
  • Wireless Networks
  • Wireless Transceiver Design and Implementation

Optional modules are subject to availability, depending on the fulfilment of the minimum enrolment requirement for the module and other relevant conditions. Progression to Computer Systems degree pathways in Years Three and Four may be subject to academic requirements and availability.

Electrical and Electronic Engineering

Why Choose the University of Southampton Malaysia

Graduate Employability & Career Opportunities

University of Southampton degrees are highly valued by employers and studying at both our Malaysian and UK Campuses will equip you with the skills to operate globally.

Our MEng EEE degree open up a wide range of exciting career opportunities. 

  • Electronic Engineer
  • Electrical Engineer
  • Microeletronics Engineer
  • Embedded Systems Engineer
  • Instrumentation Engineer
  • Control Engineer
  • Altera
  • Apple
  • ARM
  • Audi
  • BBC
  • Bloomberg
  • BAE Systems
  • BP
  • Cisco
  • Google
  • Goldman Sachs
  • IBM
  • Imagination Technologies
  • Intel
  • Jaguar Land Rover
  • JP Morgan
  • Keysights
  • McLaren
  • Mercedes
  • Meta
  • Microsoft
  • Motorola
  • Samsung
  • Sony

Professional Recognition and Global Industry Alignment

The Master of Engineering in Electrical and Electronic Engineering is accredited by a leading professional engineering body.

Institution of Engineering and Technology (IET)

The programme fully meets the academic requirements for registration as a Chartered Engineer, supporting graduates who wish to pursue professional recognition and careers across electrical engineering, electronics, power systems, telecommunications, robotics, and related technology sectors.

Fee and Scholarships

Attractive scholarships are available. Chat with our counsellors to understand your options.

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Entry Requirements

These are our typical offers. We are able to exercise some discretion if you do not meet these requirements. Please contact us for an assessment of your predicted and/or confirmed grades.

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Study Areas and Pathways

Explore Specialist Areas in Electrical and Electronic Engineering

Students can explore a range of specialist study areas to support their academic interests and future career pathways:

Biologically Inspired Robotics
Cryptography
Embedded Processors
High Voltage Engineering
Machine Learning Technologies
Microsensor Technologies
Nanoelectronic Devices
Nanofabrication and Microscopy
Power Electronics for DC Transmission
Power Systems Engineering
Quantum Devices and Technology
Robotic Systems

*An optional Industrial Placement Year (IPY) in the UK may be available. Students may also be able to transfer in Years Three and Four to Electronic Engineering with Artificial Intelligence, Electronic Engineering with Nanotechnology, Electronic Engineering with Photonics, Electronic Engineering with Mobile and Secure Systems, or Electronic Engineering with Computer Systems, subject to applicable requirements and availability.

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Apply now!

Attractive scholarships and education grants are available. Terms & Conditions apply.