Apprentice FDME Engineer
TH Clements & Son Ltd
Boston (PE22 0EJ)
Closes in 20 days (Wednesday 10 June 2026 at 11:59pm)
Posted on 20 May 2026
Contents
Summary
looking for a motivated & enthusiastic Engineer to join our team and begin an exciting career within the engineering industry. This is an excellent opportunity for someone who is eager to learn, develop practical skills, and gain hands-on experience while working alongside experienced engineers in a supportive environment
- Wage
-
£14,560 to £23,132.20, depending on your age
National Minimum Wage
- Training course
- Food and drink maintenance engineer (level 3)
- Hours
-
Monday - Friday
35 - 40 hours per week.
35 hours a week
- Start date
-
Tuesday 14 July 2026
- Duration
-
3 years 6 months
- Positions available
-
2
Work
Most of your apprenticeship is spent working. You’ll learn on the job by getting hands-on experience.
What you'll do at work
- A structured apprenticeship programme with full training and support
- Hands-on experience working with skilled engineering professionals
- Opportunities to gain recognised qualifications
- Competitive apprentice salary
- career progression opportunities upon successful completion of the apprenticeship
- friendly and supportive team environment
- The chance to develop practical skills and industry knowledge from day one
Where you'll work
West End Road
Benington
Boston
PE22 0EJ
Training
Apprenticeships include time away from working for specialist training. You’ll study to gain professional knowledge and skills.
Training provider
BOSTON COLLEGE
Training course
Food and drink maintenance engineer (level 3)
Understanding apprenticeship levels (opens in new tab)
What you'll learn
Course contents
- Read and interpret task related information and data. For example, work instructions, SOPs, quality control documentation, Service Level Agreements, specifications, engineering representations, drawings, and graphical information, work instructions, and operation manuals.
- Plan work. Identify and organise resources to complete tasks.
- Identify hazards and control measures to mitigate risks.
- Comply with food safety regulations and procedures.
- Comply with health and safety regulations and procedures.
- Comply with environment and sustainability regulations and procedures: safe disposal of waste, re-cycling or re-use of materials and efficient use of resources.
- Select, check the condition, and safely use maintenance tools and equipment. Store tools and equipment. Complete or arrange maintenance of tools and equipment including calibration where required.
- Follow standard operating procedures and quality procedures.
- Follow site isolation and lock off procedures (lockout, tagout) and re-instatement of equipment with system checks and handover.
- Apply mechanical and fluid power system maintenance practices and techniques. For example, check levels, parts wear, pressure, and sensors, grease and lubricate parts, replace, fit components, and calibrate equipment.
- Apply electrical and control maintenance practices and techniques including use of electrical testing equipment and instruments. For example, panel risk assessment, fixed wire installation testing, fault finding, thermographic surveys, and checking protection settings.
- Apply reliability engineering techniques to prevent or reduce the likelihood or frequency of failures. For example, condition monitoring, oil sampling, thermography, vibration analysis, and ultrasound.
- Install and configure instrumentation or process control systems.
- Install and configure electrical systems. For example, add distribution boards to circuits, single and three phase motors (AC and DC).
- Assemble, position and fix equipment or components. Complete commissioning checks.
- Disconnect and remove equipment or components. Complete storage measures to prevent deterioration.
- Read and interpret equipment performance data.
- Fabricate, drill, and join to produce basic parts, spares or components to measurement and tolerance specification.
- Apply down-hand (flat) TIG welding techniques: butt and tee.
- Apply mathematical techniques to solve engineering problems.
- Produce and amend electrical and mechanical engineering representations, drawings, and graphical information. For example, for new component parts or change in circuit diagram or panel.
- Apply fault-finding and problem-solving techniques for example, using PLC data to diagnose issues and locate faults on industrial network.
- Apply continuous improvement techniques to understand current performance; collect and record data. Devise suggestions for improvement.
- Restore the work area on completion of activity.
- Resolve or escalate issues.
- Use information technology. For example, for document creation, communication, and information management. Comply with GDPR. Comply with cyber security.
- Record work activity. For example, asset management records, work sheets, checklists, waste environmental records, and any business or legal reporting requirements.
- Communicate verbal and written. For example, with colleagues and stakeholders. Use engineering terminology where appropriate.
- Produce reports for example, equipment performance reports.
- Provide guidance or training to colleagues or stakeholders.
- Read and interpret task related information and data. For example, work instructions, SOPs, quality control documentation, Service Level Agreements, specifications, engineering representations, drawings, and graphical information, work instructions, and operation manuals.
- Plan work. Identify and organise resources to complete tasks.
- Identify hazards and control measures to mitigate risks.
- Comply with food safety regulations and procedures.
- Comply with health and safety regulations and procedures.
- Comply with environment and sustainability regulations and procedures: safe disposal of waste, re-cycling or re-use of materials and efficient use of resources.
- Select, check the condition, and safely use maintenance tools and equipment. Store tools and equipment. Complete or arrange maintenance of tools and equipment including calibration where required.
- Follow standard operating procedures and quality procedures.
- Follow site isolation and lock off procedures (lockout, tagout) and re-instatement of equipment with system checks and handover.
- Apply mechanical and fluid power system maintenance practices and techniques. For example, check levels, parts wear, pressure, and sensors, grease and lubricate parts, replace, fit components, and calibrate equipment.
- Apply electrical and control maintenance practices and techniques including use of electrical testing equipment and instruments. For example, panel risk assessment, fixed wire installation testing, fault finding, thermographic surveys, and checking protection settings.
- Apply reliability engineering techniques to prevent or reduce the likelihood or frequency of failures. For example, condition monitoring, oil sampling, thermography, vibration analysis, and ultrasound.
- Install and configure instrumentation or process control systems.
- Install and configure electrical systems. For example, add distribution boards to circuits, single and three phase motors (AC and DC).
- Assemble, position and fix equipment or components. Complete commissioning checks.
- Disconnect and remove equipment or components. Complete storage measures to prevent deterioration.
- Read and interpret equipment performance data.
- Fabricate, drill, and join to produce basic parts, spares or components to measurement and tolerance specification.
- Apply down-hand (flat) TIG welding techniques: butt and tee.
- Apply mathematical techniques to solve engineering problems.
- Produce and amend electrical and mechanical engineering representations, drawings, and graphical information. For example, for new component parts or change in circuit diagram or panel.
- Apply fault-finding and problem-solving techniques for example, using PLC data to diagnose issues and locate faults on industrial network.
- Apply continuous improvement techniques to understand current performance; collect and record data. Devise suggestions for improvement.
- Restore the work area on completion of activity.
- Resolve or escalate issues.
- Use information technology. For example, for document creation, communication, and information management. Comply with GDPR. Comply with cyber security.
- Record work activity. For example, asset management records, work sheets, checklists, waste environmental records, and any business or legal reporting requirements.
- Communicate verbal and written. For example, with colleagues and stakeholders. Use engineering terminology where appropriate.
- Produce reports for example, equipment performance reports.
- Provide guidance or training to colleagues or stakeholders.
Training schedule
Boston College 1 day per week.
Requirements
Essential qualifications
GCSE in:
- English (grade 4)
- Maths (grade 4)
Share if you have other relevant qualifications and industry experience. The apprenticeship can be adjusted to reflect what you already know.
Skills
- Communication skills
- IT skills
- Attention to detail
- Organisation skills
- Problem solving skills
- Logical
- Team working
- Initiative
About this employer
TH Clements is a leading name in the fresh produce industry, committed to quality, innovation, and sustainability. Employing over 500 people, we are one of the largest brassica suppliers in the UK.
After this apprenticeship
Progressing towards a full-time position working as a fully qualified Multi-Skilled Engineering.
Ask a question
The contact for this apprenticeship is:
BOSTON COLLEGE
The reference code for this apprenticeship is VAC2000032697.
Apply now
Closes in 20 days (Wednesday 10 June 2026 at 11:59pm)