MEng Electronic Engineering with Nanotechnology

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Course Overview

This 4-year integrated Master's in Electronic Engineering with Nanotechnology equips you to design and test the microscopic electronic devices that power the next generation of technology. You will master core electronic engineering principles before specializing in cutting-edge nanotech, learning from leading researchers in world-class facilities. The course culminates in significant individual and group projects, preparing you for a chartered engineering career across the electronics industry.

Key Program Highlights

  • Specialize in nanotech with access to advanced nanofabrication facilities and high-spec labs
  • Undertake an individual research project and a real-world industry group design project
  • Study the latest advances in quantum technology, photonics, and electronic systems design
  • Option to study abroad for a semester and develop enterprise skills with startup support
  • Accredited by the Institution of Engineering and Technology (IET)

Requirements

The requirements may vary based on your selected study options.





















Modules

  • Circuits
  • Digital Systems
  • ELEC Part One Laboratory Programme
  • Electronic Systems and Devices
  • Engineering Mathematics
  • Fields, Forces and Materials
  • Introduction to Signals, Control and Communications
  • Mathematics
  • Programming
  • Applied Electromagnetism
  • Communications
  • Control and Systems Engineering
  • Design
  • Electronic and Computer Systems
  • Electronic and Photonic Devices
  • Programming and Simulation of Electronic Systems
  • Signal Processing
  • Nanoelectronic Devices
  • Part III Individual Project Phase 1
  • Part III Individual Project Phase 2
  • 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
  • From Data to Dynamical Model: System Identification
  • Green Electronics
  • Guidance, Navigation and Control
  • Integral Transform Methods
  • Nanoelectronic Devices
  • Operational Research
  • Optimisation
  • Photonics II
  • Real-Time Computing and Embedded Systems
  • Robotic Systems
  • Security of Cyber Physical Systems
  • Signal and Image Processing
  • Wireless and Optical Communications
  • Group Design Project
  • Industrial Studies
  • Advanced Wireless Communications Networks and Systems
  • Analogue and Mixed Signal CMOS Design
  • Applied Control Systems
  • Computer Vision (MSc)
  • Cryptography
  • Digital Systems Synthesis
  • Embedded Processors
  • Evolution of Complexity
  • Future Wireless Techniques
  • Image Processing
  • Individual Research Project
  • Intelligent Mobile Robotics
  • 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 and Waveguides
  • Quantum Devices and Technology
  • Secure Hardware and Embedded Devices
  • Silicon Photonics
  • VLSI Design Project
  • VLSI Systems Design
  • Wireless Networks
  • Wireless Transceiver Design and Implementation
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Tuition fee
Apply by
Start date
Duration
Campus
Mode of study
Fees and deadlines depend on the selected options. Fees and currency conversion are approximate.
Offer response
4 - 6 weeks after your application is submitted