25-0037 Control systems engineer apprentice
E.ON UK PLC
Sheffield, S9 1HF
Closes on Sunday 9 March
Posted on 10 December 2024
Contents
Summary
The candidate will play a vital role in designing, developing, and maintaining innovative systems that support critical operations across industries. This structured apprenticeship will equip you with the skills to create smarter, safer, and more efficient system.
- Annual wage
- £19,350 a year
- Training course
- Control systems engineer (degree) (level 6)
- Hours
-
You will work Monday to Friday. Your start and finish times including your shift pattern will be determined by the employing company.
37 hours a week
- Possible start date
-
Monday 8 September
- Duration
-
4 years 4 months
- Positions available
-
1
Work
As an apprentice, you’ll work at a company and get hands-on experience. You’ll gain new skills and work alongside experienced staff.
What you’ll do at work
Throughout this apprenticeship, the candidate will gain hands-on experience in designing and implementing advanced control systems under the guidance of experienced engineers. Over the course of the programme, the candidate will:
- Collaborate with a team to design, program, and test mission-critical solutions for industry-leading projects
- Contribute to solving hardware and software challenges with innovative approaches
- Support the configuration of secure infrastructure and communication protocols for system integration
- Assist in the installation and commissioning of solutions at customer sites
Where you’ll work
Alsing Road
Sheffield
S9 1HF
Training
An apprenticeship includes regular training with a college or other training organisation. At least 20% of your working hours will be spent training or studying.
College or training organisation
THE UNIVERSITY OF SHEFFIELD
Your training course
Control systems engineer (degree) (level 6)
Equal to degree
Course contents
- Translate conceptual designs or technical specifications into operational process control systems.
- Select, use and apply approved problem-solving methods to solve complex problems and determine appropriate solutions such as Define, Measure, Analyse, Improve, and Control (DMAIC), Failure Mode Effects Analysis (FMEA), Plan-Do-Check-Act (PDCA) and fishbone diagrams.
- Select the best method for collating and conveying complex information using a range of data sources and supporting documentation.
- Interpret and produce technical documentation such as schematic diagrams, project plans, fault reports or data analytics using company documentation systems and guidelines.
- Observe, record and draw accurate and auditable conclusions from data and or developmental or test evidence.
- Manage assigned projects or programmes of work, taking into account factors such as safety, quality, cost and performance criteria. Apply techniques and processes for project or programme management including escalation, audit or risk management and risk mitigation.
- Comply with statutory and organisational safety standards and requirements including supporting safety risk assessments and mitigating any risks identified within the control systems environment.
- Identify resources required to complete control system projects, project tasks or programmes of work, with consideration to factors such as cost, quality, safety, security, environmental impact as applicable to the activity.
- Create a project or work programme plan and develop activities in a logical process embedding mechanisms for adapting to changing circumstances or requirements.
- Demonstrate leadership when undertaking control system engineering activities such as system design, integration, operational simulation, installation, testing, pre commissioning, commissioning and maintenance of control systems.
- Ensure that all instrumentation has been correctly configured and calibrated before use.
- Identify areas for improvement and lead continuous improvement activities such as improving safety, quality, technology solutions, operational processes, training and development, equipment performance or cost key performance indicators (KPIs).
- Perform checks on control systems documentation to ensure it meets organisational compliance and traceability requirements. Report any non-conformances using the appropriate processes and procedures.
- Interpret key performance indicators and utilise improvement techniques or processes to improve efficiency and effectiveness such as lean or six sigma.
- Translate conceptual designs or technical specifications into operational process control systems.
- Select, use and apply approved problem-solving methods to solve complex problems and determine appropriate solutions such as Define, Measure, Analyse, Improve, and Control (DMAIC), Failure Mode Effects Analysis (FMEA), Plan-Do-Check-Act (PDCA) and fishbone diagrams.
- Select the best method for collating and conveying complex information using a range of data sources and supporting documentation.
- Interpret and produce technical documentation such as schematic diagrams, project plans, fault reports or data analytics using company documentation systems and guidelines.
- Observe, record and draw accurate and auditable conclusions from data and or developmental or test evidence.
- Manage assigned projects or programmes of work, taking into account factors such as safety, quality, cost and performance criteria. Apply techniques and processes for project or programme management including escalation, audit or risk management and risk mitigation.
- Comply with statutory and organisational safety standards and requirements including supporting safety risk assessments and mitigating any risks identified within the control systems environment.
- Identify resources required to complete control system projects, project tasks or programmes of work, with consideration to factors such as cost, quality, safety, security, environmental impact as applicable to the activity.
- Create a project or work programme plan and develop activities in a logical process embedding mechanisms for adapting to changing circumstances or requirements.
- Demonstrate leadership when undertaking control system engineering activities such as system design, integration, operational simulation, installation, testing, pre commissioning, commissioning and maintenance of control systems.
- Ensure that all instrumentation has been correctly configured and calibrated before use.
- Identify areas for improvement and lead continuous improvement activities such as improving safety, quality, technology solutions, operational processes, training and development, equipment performance or cost key performance indicators (KPIs).
- Perform checks on control systems documentation to ensure it meets organisational compliance and traceability requirements. Report any non-conformances using the appropriate processes and procedures.
- Interpret key performance indicators and utilise improvement techniques or processes to improve efficiency and effectiveness such as lean or six sigma.
Your training plan
You will study on a Level 6 Control Systems Engineer degree apprenticeship on a Maintenance Engineering pathway. On completion of this, you will gain a qualification in Engineering at Degree Level 6 standard.
During the first year of the apprenticeship, your learning will take place at the University of Sheffield’s AMRC Training Centre based at Catcliffe, Rotherham, for an initial block of study on a full-time basis. After this, you will attend the Training Centre for one day a week for knowledge study.
Requirements
Essential qualifications
GCSE in:
- English Language (grade 4)
- Mathematics (grade 4)
Let the company know about other relevant qualifications and industry experience you have. They can adjust the apprenticeship to reflect what you already know.
Skills
- Communication skills
- Attention to detail
- Organisation skills
- Problem solving skills
- Analytical skills
Other requirements
You will need ONE of the following: A minimum of two A-Levels at grade B or above, including a mathematical-based subject and a science, technology, engineering or an additional mathematics-related subject / An Engineering BTEC Level 3 with at least 120 credits at DM (Distinction Merit) level or above / EAL Diploma in an engineering-based subject at distinction level / Equivalent qualifications such as Technical Levels (T-Levels) at DM or above
About this company
At E.ON, we’re at the forefront of energy innovation, delivering sustainable solutions across industries. With significant investment in advanced technologies, we are committed to future-proofing our business while developing the next generation of engineering talent. We believe in empowering talent. With access to our team’s extensive expertise and a structured training programme, you’ll gain skills that form the foundation of a fulfilling engineering career. Together, we’re not just maintaining systems—we’re building a sustainable energy future. Start your journey with us and become part of an innovative team that makes a real difference.
After this apprenticeship
Completion of the University of Sheffield’s AMRC Training Centre apprenticeships are nationally recognised qualifications which are acknowledged and respected by employers across the world. These can open the door to many more opportunities, such as Engineering Management and Project Engineering positions across a range of sectors worldwide.
Ask a question
The contact for this apprenticeship is:
THE UNIVERSITY OF SHEFFIELD
AMRC Training Centre Recruitment Team
recruitment@amrctraining.co.uk
The reference code for this apprenticeship is VAC1000291263.
Apply now
Closes on Sunday 9 March
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Company’s application instructions
Please follow the link to apply on the University of Sheffield’s AMRC Training Centre website and complete an application form. Once this has been received, it will be reviewed, and you will receive an email response with the next steps of the application process. Please note the AMRC Training Centre reserves the right to close company vacancies, should they get filled, ahead of the published closing date.