University of Sussex
UCAS Code: H6F3 | Master of Engineering (with Honours) - MEng (Hon)
Entry requirements
A level
A-levels must include Mathematics. You should have a broad range of GCSEs grade 9-4 (A*-C), including good grades in relevant subjects.
Pass Diploma with at least 39 level 3 credits at Merit or above including 27 credits at Distinction. You will normally need A-level Mathematics, grade B, in addition to the Access to HE Diploma. All Access applicants will be assessed on a case by case basis.
We take the EPQ into account when considering your application and it can be useful in the summer when your results are released if you have narrowly missed the conditions of your offer. We do not routinely include the EPQ in the conditions of your offer but we sometimes offer alternative conditions that include the EPQ. If you wish to discuss this further please contact Admissions at [email protected]
International Baccalaureate Diploma Programme
This score should be from the full IB Diploma. Higher Levels must include Mathematics, with a grade of 5. For entry, either Mathematics: Analysis and Approaches or Mathematics: Applications and Interpretation at Higher Level will be accepted.
Pearson BTEC Level 3 National Extended Diploma (first teaching from September 2016)
The BTEC Level 3 National Extended Diploma should be in Engineering and must include a Distinction in Calculus to Solve Engineering Problems or if taking the BTEC Level 3 Extended Diploma in Engineering you must gain a Distinction in the Further Mathematics for Engineering Technicians. GCSE (or equivalent) Mathematics with at least grade 5 is essential (or grade B). You should also have a broad range of GCSEs 9-4 (A*-C), including good grades in relevant subjects.
Scottish Higher
Highers must include Mathematics, grade A. We would normally expect you to have an Advanced Higher in Mathematics (grade B).
UCAS Tariff
We've calculated how many Ucas points you'll need for this course.
About this course
**87.9% of our research outputs in Engineering were assessed to be world leading or internationally excellent (REF 2021)**
**About the course**
Begin your journey towards becoming a skilled engineer in robotics and mechatronics – our emphasis on engineering practices sets you up for success. You’ll engage in exciting topics including mechatronics, autonomous vehicles, embedded systems, robotics and control engineering.
During your studies, you’ll:
- cover theoretical aspects needed to solve problems in the field of robotics and mechatronics
- develop hands-on experience in laboratories on industrial-grade equipment such as a mechatronics platform, mobile robots, industrial robotic manipulators and 3D printers
- gain autonomy, and apply the knowledge you’ve gained through individual and interdisciplinary group projects
- have the chance to apply for a placement to get work experience in industry, while still being supported at Sussex.
You’ll work on cutting-edge technologies and real-world challenges, honing your problem-solving skills. This hands-on approach not only empowers you but also equips you with the essential skills for your future career. When you graduate, you’ll be well prepared for a career in robotics and automation engineering with a wide diversity of application sectors including:
- space technologies
- manufacturing
- automotive engineering
- transport
- IoT (Internet of Things)
- communications
- aerospace.
This Master of Engineering (MEng) degree lets you specialise your degree with a range of options and provides you with the educational requirements needed to become a Chartered Engineer. In your final year, you’ll have the opportunity to choose and explore advanced topics at the forefront of mechatronics and robotics. This includes advanced electronic systems, cybernetics, neural networks and image processing. By practising marketing analysis and financial strategic planning, you’ll not only develop your technical knowledge but also sharpen your entrepreneurship skills.
To help you gain experience and increase your employability, you can apply for an optional placement as part of your course. This can be a fantastic opportunity to gain real-life insight into industry as well as skills valued by employers. You’ll be responsible for applying for and securing your placement. Our dedicated careers team can help you:
- find an employer
- draft an application
- prepare for interviews.
Don’t worry if you’re not successful, you’ll simply transfer to a non-placement version of your course.
**Accreditation**
Start your career ahead of the competition with our respected industry accreditation.
**MEng or BEng?**
We also offer this course as a four-year MEng without the industrial placement year, as a three-year BEng, or as a four-year BEng with an industrial placement year.
**Location**
Study on our beautiful, green campus on the edge of the South Downs National Park and just minutes from the vibrant seaside city of Brighton & Hove. We’re near to Gatwick airport and just over an hour from London.
**About the University of Sussex**
Our courses, research, culture and campus aim to stimulate, excite and challenge. From scientific discovery to global policy, from student welfare to career development, Sussex innovates and takes a lead. And today, in every part of society and across the world, you'll find someone from Sussex making an original and valuable contribution.
Modules
See the modules you will study by year by going to the ‘visit our course page’ link at the bottom of the page.
Tuition fees
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The Uni
University of Sussex
Engineering and Design
What students say
We've crunched the numbers to see if the overall teaching satisfaction score here is high, medium or low compared to students studying this subject(s) at other universities.
How do students rate their degree experience?
The stats below relate to the general subject area/s at this university, not this specific course. We show this where there isn’t enough data about the course, or where this is the most detailed info available to us.
Electrical and electronic engineering
Teaching and learning
Assessment and feedback
Resources and organisation
Student voice
Who studies this subject and how do they get on?
Most popular A-Levels studied (and grade achieved)
Production and manufacturing engineering
Teaching and learning
Assessment and feedback
Resources and organisation
Student voice
Who studies this subject and how do they get on?
Most popular A-Levels studied (and grade achieved)
After graduation
The stats in this section relate to the general subject area/s at this university – not this specific course. We show this where there isn't enough data about the course, or where this is the most detailed info available to us.
Electrical and electronic engineering
What are graduates doing after six months?
This is what graduates told us they were doing (and earning), shortly after completing their course. We've crunched the numbers to show you if these immediate prospects are high, medium or low, compared to those studying this subject/s at other universities.
Top job areas of graduates
This is one of the more popular areas to study engineering and there is not quite such a serious shortage of electrical engineers as there is of other engineering subjects - but there's still plenty of demand. The most common jobs are in telecommunications, electrical and electronic engineering, but there is some crossover with the computing industry, so many graduates start work in IT and computing jobs. At the moment, there's a particular demand for electrical engineers in the electronics, and the car and aerospace industries, and also in defence, and salaries can vary across the country depending on the industry you start in. Bear in mind that a lot of courses are four years long, and lead to an MEng qualification — this is necessary if you want to become a Chartered Engineer.
Production and manufacturing engineering
What are graduates doing after six months?
This is what graduates told us they were doing (and earning), shortly after completing their course. We've crunched the numbers to show you if these immediate prospects are high, medium or low, compared to those studying this subject/s at other universities.
Top job areas of graduates
Graduates are in significant demand, so unemployment rates are well below the national graduate average and starting salaries are well above average. Much the most common industries for these graduates are now vehicle manufacture - there are not enough people with these degrees to go round and so the big employers tend to take the lion's share at the moment. But pretty much anywhere there is manufacturing, there are production engineers. Bear in mind that a lot of courses are four years long, and lead to an MEng qualification — this is necessary if you want to become a Chartered Engineer.
What about your long term prospects?
Looking further ahead, below is a rough guide for what graduates went on to earn.
Electrical and electronic engineering
The graph shows median earnings of graduates who achieved a degree in this subject area one, three and five years after graduating from here.
£24k
£32k
£38k
Note: this data only looks at employees (and not those who are self-employed or also studying) and covers a broad sample of graduates and the various paths they've taken, which might not always be a direct result of their degree.
Production and manufacturing engineering
The graph shows median earnings of graduates who achieved a degree in this subject area one, three and five years after graduating from here.
£24k
£32k
£38k
Note: this data only looks at employees (and not those who are self-employed or also studying) and covers a broad sample of graduates and the various paths they've taken, which might not always be a direct result of their degree.
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Teaching Excellence Framework (TEF):
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This information comes from the National Student Survey, an annual student survey of final-year students. You can use this to see how satisfied students studying this subject area at this university, are (not the individual course).
This is the percentage of final-year students at this university who were "definitely" or "mostly" satisfied with their course. We've analysed this figure against other universities so you can see whether this is high, medium or low.
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This information is from the Higher Education Statistics Agency (HESA), for undergraduate students only.
You can use this to get an idea of who you might share a lecture with and how they progressed in this subject, here. It's also worth comparing typical A-level subjects and grades students achieved with the current course entry requirements; similarities or differences here could indicate how flexible (or not) a university might be.
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Post-six month graduation stats:
This is from the Destinations of Leavers from Higher Education Survey, based on responses from graduates who studied the same subject area here.
It offers a snapshot of what grads went on to do six months later, what they were earning on average, and whether they felt their degree helped them obtain a 'graduate role'. We calculate a mean rating to indicate if this is high, medium or low compared to other universities.
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Graduate field commentary:
The Higher Education Careers Services Unit have provided some further context for all graduates in this subject area, including details that numbers alone might not show
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The Longitudinal Educational Outcomes dataset combines HRMC earnings data with student records from the Higher Education Statistics Agency.
While there are lots of factors at play when it comes to your future earnings, use this as a rough timeline of what graduates in this subject area were earning on average one, three and five years later. Can you see a steady increase in salary, or did grads need some experience under their belt before seeing a nice bump up in their pay packet?
Have a question about this info? Learn more here