Apprentice Crane Engineer

WH SCOTT LIFTING LTD

Wickwar Gloucestershire (GL12 8JB)

Closes on Monday 24 August 2026

Posted on 21 July 2026


Summary

Kick-start your engineering career with a Crane Engineering Apprenticeship at WH Scott. Gain industry qualifications, hands-on experience with lifting equipment, and learn from expert engineers while earning a wage. Build mechanical and electrical skills for a rewarding long-term career.

Wage

£16,640 for your first year, then could increase depending on your age

National Minimum Wage rate for apprentices

Minimum wage rates (opens in new tab)

Training course
Engineering maintenance technician - dual discipline (level 3)
Hours
Monday - Friday, 08:00 - 16:30

40 hours a week

Start date

Tuesday 1 September 2026

Duration

4 years

Positions available

1

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

  • The Apprentice Crane Engineer will work towards a level 3 in an appropriate electro-mechanical discipline whilst working alongside the company's engineering team within the projects and servicing fields to develop an understanding of electro-mechanical engineering within the areas of crane and lifting equipment
  • This will include developing the knowledge and skills, undertake trouble shooting, maintenance and repairs on cranes and associated lifting equipment which will enhance and support the development of their skills and knowledge within this field of work whilst enhancing the overall skills base of the company

Where you'll work

Head Office
Arnolds Field Estate
Wickwar Gloucestershire
GL12 8JB

Training

Apprenticeships include time away from working for specialist training. You’ll study to gain professional knowledge and skills.

Training provider

CITY OF BRISTOL COLLEGE

Training course

Engineering maintenance technician - dual discipline (level 3)

Understanding apprenticeship levels (opens in new tab)

What you'll learn

Course contents
  • Review and use information. For example, work instructions, drawings, design specifications, and plant configurations.
  • Use planning, prioritising, organising, and time management techniques to plan tasks.
  • Identify and organise resources to complete tasks. For example, consumables.
  • Respond and adapt to work demands. For example, adapt working methods to reflect changes in working environment, re-prioritise workloads to react to breakdowns and fault scenarios.
  • Identify equipment to work on. Check plant configuration is as defined.
  • Prepare the work area for maintenance tasks.
  • Identify environmental and health and safety hazards and risks and apply control measures.
  • Apply health, safety, and environmental procedures in compliance with regulations, standards, and guidance. For example, signage and barriers, working at height, confined spaces, and COSHH.
  • Follow security procedures. For example, site access, document classification, and securing assets.
  • Follow emergency incident and response procedures.
  • Apply sustainability principles. For example, minimising waste.
  • Segregate items for reuse, recycling, and waste.
  • Use mathematical principles and formulae to support engineering maintenance.
  • Apply engineering maintenance standards and procedures.
  • Apply foreign material exclusion procedures.
  • Follow maintenance tools and equipment control procedures. For example, handling and storage.
  • Reinstate the work area.
  • Apply team working principles.
  • Communicate with others to give and receive information. For example, colleagues, customers, and stakeholders.
  • Escalate issues outside limits of responsibility.
  • Record information.
  • Produce or amend documents. For example, handover notes and reports.
  • Identify and highlight issues (red pen), with technical drawings.
  • Use digital and information technology. For example, databases, data sharing platforms, email, management information systems, and word processing. Follow cyber security and GDPR requirements.
  • Apply continuous improvement techniques to identify improvement suggestions.
  • Carry out and record planned and unplanned learning and development activities.
  • Electrical and control and instrumentation. Confirm safe electrical isolation lockout tagout method has been applied and test for dead.
  • Electrical and control and instrumentation. Select, check, and use electrical maintenance tools, measurement, and test equipment. Select, check, and use control and instrumentation maintenance tools, measurement, and test equipment.
  • Electrical and control and instrumentation. Use electrical diagnostic equipment and apply fault finding and rectification techniques. Use control and instrumentation diagnostic equipment and apply fault finding and rectification techniques.
  • Electrical and control and instrumentation. Apply problem solving and critical reasoning techniques.
  • Electrical and control and instrumentation. Inspect and test electrical aspects of plant. For example, visual checks, insulation and continuity checks, thermographic surveys, and voltage levels.
  • Electrical and control and instrumentation. Remove and replace electrical parts.
  • Electrical and control and instrumentation. Prepare and terminate electrical cables.
  • Electrical and control and instrumentation. Set up and adjust electrical aspects of plant.
  • Electrical and control and instrumentation. Clean parts. For example, removal of dust and debris.
  • Electrical and control and instrumentation. Conduct and confirm electrical and connected services isolation and deisolation.
  • Electrical and control and instrumentation. Conduct functional testing.
  • Electrical and control and instrumentation. Inspect and test control and instrumentation systems.
  • Electrical and control and instrumentation. Check calibration and make adjustments.
  • Electrical and control and instrumentation. Check loop function.
  • Electrical and control and instrumentation. Set up and adjust control and instrumentation systems.
  • Electrical and control and instrumentation. Remove and replace instruments and sensors.
  • Electrical and control and instrumentation. Re-connect instrumentation power supply, cables, pipework, and services.
  • Electrical and mechanical. Confirm safe electrical isolation lockout tagout method has been applied and test for dead.
  • Electrical and mechanical. Conduct and confirm electrical and connected services isolation and deisolation.
  • Electrical and mechanical. Select, check, and use electrical and mechanical maintenance tools, measurement, and test equipment.
  • Electrical and mechanical. Use electrical and mechanical diagnostic equipment and apply fault finding and rectification techniques.
  • Electrical and mechanical. Apply problem solving and critical reasoning techniques.
  • Electrical and mechanical. Inspect and test electrical aspects of plant. For example, visual checks, insulation and continuity checks, thermographic surveys, and voltage levels.
  • Electrical and mechanical. Remove and replace electrical parts.
  • Electrical and mechanical. Prepare and terminate electrical cables.
  • Electrical and mechanical. Set up, align, and adjust electrical aspects of plant.
  • Electrical and mechanical. Clean parts. For example, removal of dust and debris.
  • Electrical and mechanical. Conduct functional testing.
  • Electrical and mechanical. Check condition and operation of mechanical aspects of plant and equipment. For example, pumps.
  • Electrical and mechanical. Remove and replace mechanical parts.
  • Electrical and mechanical. Examine mechanical parts for defects. For example, pump seals.
  • Electrical and mechanical. Set up, align, and adjust mechanical aspects of plant.
  • Electrical and mechanical. Lubricate mechanical assemblies.
  • Electrical and mechanical. Apply bench fitting techniques.
  • Review and use information. For example, work instructions, drawings, design specifications, and plant configurations.
  • Use planning, prioritising, organising, and time management techniques to plan tasks.
  • Identify and organise resources to complete tasks. For example, consumables.
  • Respond and adapt to work demands. For example, adapt working methods to reflect changes in working environment, re-prioritise workloads to react to breakdowns and fault scenarios.
  • Identify equipment to work on. Check plant configuration is as defined.
  • Prepare the work area for maintenance tasks.
  • Identify environmental and health and safety hazards and risks and apply control measures.
  • Apply health, safety, and environmental procedures in compliance with regulations, standards, and guidance. For example, signage and barriers, working at height, confined spaces, and COSHH.
  • Follow security procedures. For example, site access, document classification, and securing assets.
  • Follow emergency incident and response procedures.
  • Apply sustainability principles. For example, minimising waste.
  • Segregate items for reuse, recycling, and waste.
  • Use mathematical principles and formulae to support engineering maintenance.
  • Apply engineering maintenance standards and procedures.
  • Apply foreign material exclusion procedures.
  • Follow maintenance tools and equipment control procedures. For example, handling and storage.
  • Reinstate the work area.
  • Apply team working principles.
  • Communicate with others to give and receive information. For example, colleagues, customers, and stakeholders.
  • Escalate issues outside limits of responsibility.
  • Record information.
  • Produce or amend documents. For example, handover notes and reports.
  • Identify and highlight issues (red pen), with technical drawings.
  • Use digital and information technology. For example, databases, data sharing platforms, email, management information systems, and word processing. Follow cyber security and GDPR requirements.
  • Apply continuous improvement techniques to identify improvement suggestions.
  • Carry out and record planned and unplanned learning and development activities.

Training schedule

What training will the apprentice take and what qualification will the apprentice get at the end?

  • Engineering Maintenance Technician - Dual Discipline
  • Engineering maintenance technicians work in a range of industries that use plant - machinery, apparatus and fixtures - and equipment. This includes energy, leisure entertainment, manufacturing, processing, and utilities companies. The working environments vary across the industries.
  • City of Bristol College (Advanced Engineering Centre)
  • Day Release

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
  • Attention to detail
  • Problem solving skills
  • Analytical skills
  • Logical
  • Team working
  • Initiative

About this employer

W H Scott Group is a trusted provider of lifting, engineering, inspection and safety-critical services across the UK and Ireland. Bringing together a network of specialist companies, we deliver expert solutions in lifting equipment, material handling, testing, inspection, maintenance and compliance. With over a century of engineering heritage, we help businesses across a wide range of industries operate safely, efficiently and in line with the latest industry standards through reliable, high-quality services tailored to their needs.

After this apprenticeship

Your earnings can increase over time with an apprenticeship. Find out about potential future pay (opens in new tab).

  • Engineering Maintenance Technician

Ask a question

The contact for this apprenticeship is:

CITY OF BRISTOL COLLEGE

Business Partnership Onboarding Team

apprentice@cityofbristol.ac.uk

01173125250

The reference code for this apprenticeship is VAC2000042479.

Apply now

Closes on Monday 24 August 2026