Curious about studying Electronic and Electrical Engineering - BEng (Hons)at Leeds Beckett University? We've gathered all the key details—entry requirements, modules, fees, and more. Hear from real students by checking out reviews, or take the next step by booking an open day to explore it for yourself.
Bachelor of Engineering (with Honours) - BEng (Hon)
Headingley Campus
Full Time
Sep 2027
4 Year
Do things differently
The world needs a new kind of engineer – one who thinks bigger, listens harder, and designs smarter to make a real impact. On this accredited BEng (Hons) Electronic & Electrical Engineering degree, you’ll learn how to create intelligent, sustainable solutions for a connected global future. You'll design, test, and refine the technologies that power modern life – working with the electronics and systems behind everything from energy networks to smart infrastructure. The course challenges you to question how things work, explore new ideas, and apply your creativity to solve real-world problems. As part of this course, you’ll: - Work on practical engineering challenges using specialist facilities, building the technical confidence to turn ideas into working solutions - Design and build sustainable solutions using electronic, embedded, and control systems - Collaborate across disciplines, working with engineers in computing, robotics, AI, data analysis, civil, and building services engineering - Complete a major project each year, solving real problems through hands-on design, testing, and development - Apply your learning in the workplace through an optional placement year, building industry experience and professional networks You’ll graduate as part of the next generation of engineers – confident, adaptable, and ready to tackle the challenges shaping society.
Find out moreProfessional recognition
This course is accredited by the Institution of Engineering and Technology (IET) on behalf of the Engineering Council. It fully meets the academic requirements for registration as an Incorporated Engineer, giving your degree professional recognition from the outset.
Placement year optionYou'll have the option to complete a placement year and apply your skills in practice. A year working in industry will enable you to begin building your career and professional network as you study.
Choose your directionYour final-year major project puts you in control of your own future. You could deepen your specialism or investigate new areas – from automation and manufacturing, to computing, electronics, and smart systems. With expert guidance throughout your studies and beyond, you’ll develop the practical expertise and confidence to move into a wide range of engineering careers. Your skills will underpin almost every sector of the economy and could sit behind the next wave of innovative technologies.
Engineering linksLeeds is a thriving engineering city and an ideal place to start building your career. You'll attend networking events, hear from industry professionals and alumni at guest lectures, and benefit from our active links with employers, ensuring your learning stays relevant and career focused.
Why study the BEng Electronic and Electrical Engineering course at Leeds Beckett University?-
100% of students were positive about the teachingon BEng (Hons) Electronic & Electrical Engineering (National Student Survey 2025) -
Practice-first learning, with hands-on engineering in every module, and specialist facilities including embedded systems, control, and robotics labs -
Solve industry-related problemsthrough major projects every year as you apply creativity and technical skills -
Dedicated maths and theory supporttaught by engineering experts -
Learn from industry practitionerswith experience across multiple engineering sectors
Discover how computer-based tools can help engineers solve problems, improve processes, and keep systems operating reliably. You'll develop your understanding of manufacturing and production engineering alongside the software and digital tools used across the profession. You'll strengthen your problem-solving and technical skills, applying your knowledge to computer-based solutions for the operation, maintenance, and reliability of engineering systems. Optional modules may also be available for this course.
Build your understanding of the fundamentals behind electrical and electronic circuits. You'll learn to analyse and develop simple analogue circuits, exploring the behaviour of voltage and current sources, resistors, capacitors and inductors in DC circuits. You'll then apply network analysis techniques to investigate and solve more complex DC circuits, building a strong foundation for your future studies in electrical and electronic engineering. Optional modules may also be available for this course.
Turn ideas into working engineering solutions as you explore the fundamentals of the engineering design process. Through a combination of lectures and practical workshops, you'll use electronics and robotics kits to develop your ideas from concept to prototype. You'll design, build, and test a working system with a range of functionalities, gaining hands-on experience of solving engineering problems and refining your designs. Optional modules may also be available for this course.
Explore how engineering systems work together, from individual components to complete systems. You'll use a top-down approach to analyse a range of engineering systems and sub-systems, developing your understanding of key engineering principles, terminology, and literature. You'll investigate the technologies behind these systems and explore the design of sensors, and other components, developing an appreciation of the ingenuity behind the technologies we rely on every day. Optional modules may also be available for this course.
Discover how digital electronics systems are built, controlled, and tested. You'll develop the skills and knowledge to design and test digital circuits, identifying the key building blocks within complex digital systems and analysing how they operate. You'll explore timing in synchronous and asynchronous circuits and compare semiconductor fabrication technologies, considering factors such as speed, power-consumption, gate density, and cost. Putting your knowledge into practice, you'll simulate, construct, test, and evaluate simple digital electronics systems. Optional modules may also be available for this course.
Build the mathematical skills you’ll need to understand and solve engineering problems. You'll explore the principles, tools, and methods of mathematics used in electrical and electronics engineering, developing your understanding of the scientific principles behind current technologies and their evolution. You'll also explore statistical methods and apply mathematical techniques to real engineering problems, giving you the confidence to use mathematics as a practical engineering tool. Optional modules may also be available for this course.
Build the essential skills you’ll need to succeed in your first year of engineering study. You'll develop the mathematical knowledge through topics including matrix algebra, vectors, vector analysis, and the fundamentals of calculus, alongside core engineering concepts such as semiconductors and digital electronics. Additionally, you'll strengthen your academic and professional skills, from report writing, referencing, and data sourcing, to time management and planning, giving you the tools to approach your studies with confidence. Optional modules may also be available for this course.
Explore how analogue devices and circuits are used to process and shape electrical signals. You'll develop your understanding of analogue systems and use theoretical principles, practical techniques, and computer-aided engineering tools to design analogue circuits. You'll then build and validate systems for analogue signal conditioning, while exploring the principles behind the design of active filters and amplifiers. Through practical design work, you'll develop the skills to create and evaluate analogue solutions for electrical and electronic systems. Optional modules may also be available for this course.
Discover how control systems are designed, modelled, and applied to solve engineering problems. You'll investigate the theory and properties of control systems while developing your understanding of the mathematical techniques that underpin their operation. Using computer-based tools, you'll apply these techniques to real engineering problems and explore how mathematical models can be used in system design. You'll also develop your understanding of the scientific, mathematical, and statistical principles that help engineers analyse and optimise control systems. Optional modules may also be available for this course.
Explore how modern communication systems connect people and technology, from satellite communications to wireless networks. You'll investigate the principles and applications behind these systems, using real-world case studies to develop your scientific, engineering, and mathematical knowledge. You'll examine the key principles that underpin communication system design, developing your understanding of how engineers create reliable ways to transmit information across different environments and technologies. Optional modules may also be available for this course.
Discover the technology hidden inside the devices and systems we use every day. You'll explore the design and implementation of embedded systems through a series of practical laboratory sessions. You'll analyse the range of embedded systems and investigate the architectures that enable hardware and software to work together. Through practical laboratory sessions, you'll analyse hardware instructions, firmware image memory maps, flash blocks, and integrated peripheral devices, developing the knowledge to understand how embedded systems are built and operate. Optional modules may also be available for this course.
Take your engineering ideas further as you design, build, and test a working prototype. Building on your previous experience of the engineering design process, you'll enhance standard hardware or software components with your own designs to create advanced functionality for your project. You'll work within real-world engineering constraints, considering factors such as cost, ethics, health and safety, and potential risks, while developing practical experience of taking an engineering solution from concept to protype. Optional modules may also be available for this course.
Take your understanding of electrical and electronic circuits to the next level. Building on your first-year knowledge, you'll develop your ability to analyse and design more complex systems, using complex numbers to investigate series, parallel, and series-parallel AC circuits. You'll apply network analysis techniques to complex AC circuits and use simulation software to model and explore more advanced networks, strengthening your ability to analyse electrical and electronic systems. Optional modules may also be available for this course.
Turn real-world problems into practical digital signal processing solutions. You'll explore the key considerations involved in designing and implementing DSP solutions, from defining a problem through to coding, simulation, prototyping, and validation. You'll compare different approaches to solution design, considering the constraints that influence performance and implementation. You'll also evaluate DSP silicon options and the platforms used to develop and test DSP designs, building the skills to make informed decisions about real-world DSP applications. Optional modules may also be available for this course.
Gain an understanding of management accounting and information systems theory and techniques. You'll focus specifically on the context of the redesign and remanufacture of sustainable engineering solutions. During your study, you'll examine the support systems of information management, the accountant's contribution in providing relevant information for decision-making and corporate control. You'll also investigate the wider social, legal, ethical and sustainability landscape in which engineering decisions are taken.
Explore how power electronics controls and converts electrical energy for real-world applications. You'll develop a strong understanding of solid-state electronics and how power semiconductor devices are used to manage electrical power and drive electrical machines. You'll analyse a range of power electronic systems and investigate how they control the flow of voltage and current to meet the demands of different loads. Putting your knowledge into practice, you'll design and evaluate advanced power electronic convertors, including AC to DC, DC to DC, and DC to AC systems. Optional modules may also be available for this course.
Bring your engineering knowledge together to create a product from concept to completion. Ideally working with an external client, you'll research a real-world need, generate ideas, and take your chosen concept through design, development, implementation, and evaluation. You'll plan, build, and test a significant product to a professional standard, while reflecting on your approach and performance throughout the project. By the end, you'll have the experience of managing a substantial engineering project and delivering a working product. Optional modules may also be available for this course.
Placement Year
This course offers the opportunity to take a ‘placement’ year – a year of paid employment in industry which will build your skills and experience. This is usually taken between the second and third year of your degree and will extend the length of your course by an additional year. Students who choose the placement route find it helps with both their studies and getting a job after graduation. It can build your confidence, contacts, and of course your CV. Leeds Beckett advertise lots of placement opportunities and provide support in helping you find the right placement for you.
120 Grades/points required
Not currently available, please Contact University for up to date information.
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