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ICTQual Level 6 Diploma in Electrical Engineering

Advanced three-year, 360-credit diploma developing electrical engineering knowledge, practical skills, and professional competence across circuits, power systems, automation, electronics, renewable...

Awarding Body: ICTQual AB|Course Level: Level 6

Course features

This internationally recognised Level 6 diploma is a three-year, 360-credit qualification comprising 36 mandatory units that blend theoretical study with practical application across core and advanced electrical engineering disciplines.

  • Three-year programme with 360 credits

  • 36 mandatory units across three stages

  • Foundational, intermediate, and advanced study structure

  • Covers power systems, electronics, automation, and smart grids

  • Emphasises practical skills and real-world engineering applications

  • Supports classroom, workshop, and project-based learning

About course

The ICTQual Level 6 Diploma in Electrical Engineering is designed to provide learners with a comprehensive and internationally recognised qualification in electrical engineering. Over three years, the programme develops advanced technical knowledge, practical competence, and problem-solving ability across electrical circuits, power systems, automation, electronics, and sustainable engineering.

  • Internationally recognised Level 6 electrical engineering qualification

  • Structured across foundational, intermediate, and advanced stages

  • Strong focus on practical application and technical competence

  • Covers both traditional and emerging engineering technologies

  • Builds analytical, project management, and innovation skills

  • Supports career growth, higher study, and professional development

What you will learn

This diploma develops knowledge and applied skills across the published unit outcomes, enabling learners to analyse, design, implement, and evaluate electrical engineering systems in academic and industry contexts.

  • Apply mathematical methods to solve electrical and electronic engineering problems

  • Analyse and design electrical circuits, electronics, and control systems

  • Evaluate power generation, transmission, distribution, and energy systems

  • Develop embedded, automated, and instrumentation-based engineering solutions

  • Design solutions for renewable energy, smart grid, and energy storage applications

  • Demonstrate project, research, professional, and ethical engineering practice

Course content

Who should attend

This course is intended for learners seeking a structured route into electrical engineering, as well as technicians, engineers, and career changers aiming to upgrade their qualifications and broaden professional opportunities.

  • Individuals looking to start a career in electrical engineering

  • Recent school or college graduates seeking a structured pathway

  • Technicians or junior engineers upgrading to a Level 6 qualification

  • Professionals moving into power systems, automation, or industrial electronics

  • Career changers from related technical backgrounds

  • Learners planning higher education or professional engineering certifications

Course requirements

Applicants should meet the awarding body's entry expectations for age, prior study, and readiness for technical learning. Previous engineering knowledge is recommended, and English proficiency may be required where applicable.

  • Learners must be at least 16 years old and normally hold a relevant Level 5 qualification, A-levels, or an equivalent qualification in Mathematics, Physics, electrical engineering, electronics, or applied sciences

  • Previous foundational engineering knowledge is recommended, and non-native English speakers may be required to provide evidence of English language proficiency

Assessments

Assessment is based on the awarding body's published requirement for mandatory assessment across the programme. Learners are evaluated on understanding, technical application, and practical performance through structured tasks aligned to the course outcomes.

  • 36 mandatory assessments across the qualification

  • Assignments based on the course learning outcomes

  • Project-based assessment to evaluate applied engineering skills

  • Practical and structured assessment of real-world problem solving

Progression

Successful completion can support progression into employment, further study, professional recognition, and specialist pathways within the electrical engineering sector in local and international markets.

  • Employment in roles such as Electrical Engineer, Power Systems Engineer, Control Systems Engineer, Electronics Engineer, Project Manager, or Renewable Energy Specialist

  • Progression toward professional certifications such as Chartered Engineer, CCST, or project management credentials

  • Progression to higher academic study, including postgraduate engineering qualifications

  • Opportunities in consultancy, entrepreneurship, innovation, and international engineering projects

Apply for this course

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