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MEng Electronic Engineering

University of York

Institution
University of York
Level
undergraduate
Subject
Electronic Engineering
Duration
4 years
UCAS code
H609
Typical offer
A-level ABB, IB 36

Entry requirements

A level: AAA including Maths. IB: 36 points overall with grade 5 in Higher Level Mathematics - Applications and Interpretation or 5 in Higher Level or Standard Level Mathematics - Analysis and Approaches. BTEC: We consider a range of BTEC qualifications equivalent to 3 A Levels, or in combination with A Levels or other qualifications. For example: DDD in the BTEC National Extended Diploma plus A level Maths grade A DD in the BTEC National Diploma in any subject plus A level Maths grade A D in the BTEC National Extended Certificate plus AA at A level including Mathematics We consider BTEC Level 3 National Diploma/ Extended Diploma with Unit 7- Calculus to Solve Engineering Problems and Unit 8- Further Engineering Mathematics in place of A Level Mathematics.

About this course

The MEng (Hons) Electronic Engineering, an electrical and electronic engineering degree focused on hardware, software, and systems development. Core topics include Programming, Circuit Design, Signal Processing, Data Analysis, Project Management, Critical & Analytical Thinking, and Artificial Intelligence & Machine Learning. Students complete a substantial individual final project in the fourth year and benefit from professional accreditation by the IET meeting Chartered Engineer requirements. The first year establishes core foundations through Introduction to Engineering, Programming and Digital Interfacing, Mathematics, and Electronic Engineering Project. The second year progresses with Mathematics, Signals and Systems, Electronic Engineering Project 2, Circuit Design, Control, Sensors and Instrumentation, and Software Design, with optional modules such as Data Analysis and Numerical Methods. The third year incorporates Electronics Group Project Part A, Communications, Systems and Digital Communications, and Electronics Group Project Part B, alongside options spanning renewable power, robotics, and biomedical engineering. The final year centres on the Individual Final Project alongside advanced optional modules covering machine learning, electric vehicle technologies, and engineering management.

Modules

  • Introduction to Engineering
  • Programming and Digital Interfacing
  • Mathematics
  • Electronic Engineering Project
  • Digital Electronics
  • Analogue Electronics
  • Mathematics, Signals and Systems
  • Electronic Engineering Project 2
  • Circuit Design
  • Control, Sensors and Instrumentation
  • Software Design
  • Data Analysis and Numerical Methods
  • Electrical Circuits and Systems
  • Electromagnetism
  • Electronics Group Project Part A
  • Communications, Systems and Digital Communications
  • Electronics Group Project Part B
  • Cloud and Distributed Computing
  • Renewable Power Generation
  • Biomedical Engineering
  • Robotics Design and Construction
  • Product Design, Development and Commercialization
  • Medical Physics
  • Advanced Sensors and Instrumentation
  • Digital Signal Processing
  • Electric Powertrain Design
  • Photovoltaics and Solar Thermal Energy
  • Individual Final Project
  • Modelling and Analysing Sound and Music Signals
  • Machine Vision and Human Machine Interaction
  • Circular Economy and Sustainability in Engineering Management
  • Future Healthcare and Computer Aided Diagnosis
  • Medical Imaging and Physics
  • Power Electronics
  • Electric Vehicle Technologies
  • Smart Grid
  • Practical Skills in Virtual Anatomy and Morphology
  • Scientific Supercomputing
  • Immersive and Interactive Audio
  • Critical Evaluation of Intelligent Robots
  • Fuel Cell and Battery Technologies
  • Leadership in Engineering Businesses
  • Machine Learning
  • Robot Kinematics and Dynamics
  • Sound Interactions in the Metaverse
  • Advanced Project Management- Agile, Scrum and Lean Six Sigma
  • Sustainable Energy Technologies