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Instrumentation and Control Engineering (with Foundation Year and Optional Year in Industry)

Entry requirements


UCAS Tariff

32-88

About this course


This course has alternative study modes. Contact the university to find out how the information below might vary.

Course option

4years

Full-time including foundation year | 2024

Other options

5 years | Sandwich including foundation year | 2024

Subjects

Electronic engineering

Control systems

**Optional year in industry**: The year in industry option will help you gain valuable work experience which will help you enhance your graduate employability prospects. During your placement you develop transferable skills such as communication, negotiation, teamwork, leadership, organisation, problem-solving, being able to work under pressure, self-reliance and commercial awareness. At the end of your work placement you return to complete your degree and prepare to enter employment with improved confidence.

Our work placement officer and the University’s careers service are available to help you find and apply for your work placement. Advice is also available on job hunting and networking.

**Course overview**: This course includes a foundation year - ideal if you need additional preparation or if you don't have sufficient grades to join Year 1. Instrumentation and control engineers are responsible for the efficient and safe control of large-scale processes, from nuclear power stations, oil refineries and chemical plants to smaller operations such as manufacturing centres, breweries and food production facilities.

You develop the skills to design and maintain advanced measurement and control systems, and learn how these are applied to multimillion-pound chemical and manufacturing plants. The North East is a major centre for the process industries – we have close working relationships with employers in this sector, giving you significant opportunities to gain practical experience and work on industry-focused projects.

Top reasons to study this course

1. Financial awards: you may be eligible for a number of scholarships and awards.
2. Prepare for your studies: develop your understanding in maths with our free online Mathematics for University course.
3. Earn while you learn: join our optional AdEDA scheme and while undertaking a degree you can look for employment with the potential to switch to a degree apprenticeship in the future.

After the course: Instrumentation and control engineers contribute to almost every area of modern manufacturing, service and financial industries. Our graduates are working across the world for a range of industrial and contracting companies including ABB, BASF, BNFL, Honeywell, Tioxide, Petrofac, Sabic and INEOS.

Modules

Access course information through Teesside University’s website using the course page link provided (or visit www.tees.ac.uk).

Assessment methods

Access assessment information through Teesside University’s website using the course page link provided (or visit www.tees.ac.uk).

Tuition fees

Select where you currently live to see what you'll pay:

England
£9,250
per year
EU
£17,000
per year
International
£17,000
per year
Northern Ireland
£9,250
per year
Republic of Ireland
£9,250
per year
Scotland
£9,250
per year
Wales
£9,250
per year

The Uni


Course location:

Teesside University

Department:

Engineering

Read full university profile

What students say


We've crunched the numbers to see if overall student satisfaction here is high, medium or low compared to students studying this subject(s) at other universities.

83%
Electronic engineering
83%
Control systems

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

79%
Staff make the subject interesting
92%
Staff are good at explaining things
63%
Ideas and concepts are explored in-depth
69%
Opportunities to apply what I've learned

Assessment and feedback

Feedback on work has been timely
Feedback on work has been helpful
Staff are contactable when needed
Good advice available when making study choices

Resources and organisation

83%
Library resources
88%
IT resources
85%
Course specific equipment and facilities
73%
Course is well organised and has run smoothly

Student voice

Staff value students' opinions
Feel part of a community on my course

Who studies this subject and how do they get on?

99%
UK students
1%
International students
94%
Male students
6%
Female students
81%
2:1 or above
17%
First year drop out rate

Most popular A-Levels studied (and grade achieved)

A
C
C

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.

£16,835
low
Average annual salary
87%
low
Employed or in further education
70%
low
Employed in a role where degree was essential or beneficial

Top job areas of graduates

35%
Engineering professionals
17%
Artistic, literary and media occupations
9%
Other elementary services occupations

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.

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.

£27k

£27k

£30k

£30k

£31k

£31k

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.

Explore these similar courses...

Higher entry requirements
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UCAS Points: 112-120
Lower entry requirements
University of the Highlands and Islands (UHI) | Inverness
Electrical and Mechanical Engineering
BEng (Hon) 4 Years Full-time including foundation year 2024
UCAS Points: 21-24
Nearby University
Middlesbrough College | Middlesbrough
Engineering (Operations Engineering) (Top-up)
BEng (Hon) 1 Years Full-time including foundation year 2024
UCAS Points: -

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Course location and department:

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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