MEng Mechatronic Engineering with Industrial Experience
Entry requirements
A level: A*AA including A* in Mathematics and A in either Physics, Electronics, Further Mathematics, Chemistry or Computer Science
About this course
MEng in Robotics Engineering, combining electrical principles with intelligent systems. Core topics include Programming, Systems Design, Circuit Design, Embedded Systems, Signal Processing, and Control Systems. The five-year undergraduate curriculum includes a substantial individual project.
Modules
- Principles of Electrical and Electronic Engineering
- Digital Electronics
- Electrical and Electronic Engineering in Practice
- Programming and Software Engineering
- Electronic Materials and Devices
- Mathematics for EEE 1E1
- Mathematics for EEE 1E2
- Microcontroller Engineering
- Engineering Management
- Electromagnetic Fields
- Signals and Systems
- Machines, Drives & Power Electronics
- Electronic Circuit Design
- Control Systems I
- Applied Mechanics & Industrial Robotics
- Embedded Systems Project
- Mobile Robots and Autonomous Systems
- Power Electronics
- Mechatronic Analysis & Design
- Control Systems II
- Sensors & Instrumentation
- Individual Project
- Commercial Technology Development
- Numerical Analysis
- Data Networking
- Concurrent Systems
- High Speed Digital and Mixed Signal Design
- Digital Signal Processing
- Transmission Lines & Optical Fibres
- Computer Systems Architecture
- Electrical Drive Systems
- Independent Study and Technical Explanations
- Leadership in Action Online Unit
- Understanding Mental Health
- AI: robot overlord, replacement, or colleague?
- Trust and Security in a Digital World: From Fake News to Cyber Criminals
- Creating a Sustainable World: 21st Century Challenges and the Sustainable Development Goals
- Digital Society: Your Place in a Networked World
- Team Project
- Advanced Technology Enterprise for EEE
- Antennas and RF Systems
- Applied Optimal Control and Estimation
- Machine Learning & Optimisation Techniques
- Digital Image Processing
- Microwave Circuit Principles and Design
- Linear Systems Theory
- System Identification and Artificial Intelligence
- Digital Control and Model Predictive Control
- Nonlinear and Adaptive Control
- Robust Control and Convex Optimisation
- Electrical Machines and Power Electronic Modelling
- Nanoelectronic Devices and Nanomaterials
- Solar Energy Technologies
- Networks and Internet of Things
- Robotic Manipulators
- Software for Robotics
- Multi-Sensor Signal Processing & Imaging