If working on and helping design the latest smartphones, electric cars, and satellites sounds like the role for you, then read on to find out how the Level 6 Embedded electronic systems design and development engineer apprenticeship could help you kick-start your career with an electronics qualification.
Jobs and entry criteria for the level 6 Embedded electronic systems design and development engineer (degree) Apprenticeship
An embedded electronic systems design and development engineer usually works within a variety of industrial sectors such as; Aerospace, Automotive, Automation and Instrumentation, Robotics, Telecommunications, Information and Computer Technology, Defence, Energy (including renewables), Transport, and Consumer Electronics. The electronic circuits or devices the engineer designs;
- Provide a useful function.
- Are capable of being manufactured at a competitive cost.
- Are reliable and safe in use.
Being able to do this effectively requires the engineer to have in-depth knowledge of electronics and electronic principles coupled with knowledge on how the end result works and is to be used.
Individual employers will set their own entry requirements in terms of prior academic qualifications and experience. Typically candidates will have attained A-Level standard or equivalent, in Maths and at least one further STEM based subject such as Physics, ICT, Computing or Electronics and will have English Language at GCSE (grade C or above).
Key responsibilities of an embedded electronic systems design and development engineer apprentice
The primary role and key responsibilities of an embedded electronic systems design and development engineer is to design electronic circuits or devices for a variety of purposes within various industrial sectors.
Embedded electronic systems design and development engineers are experts in both electronics and electronic principles, they must apply their vast knowledge and understanding of CAD technology in order to design electronics with understandings of all the factors that come into play, creating the desired circuit or device.
Level 6 – Embedded electronic systems design and development engineer (degree) Core Competencies
As a part of this electronic engineering apprenticeship, apprentices will learn the fundamental scientific and mathematical principles that equip them with the understanding required in order to successfully fill their role to a high level within their chosen sector. The apprentice will also be supported with additional vocational training to develop specific competencies for a particular role.
Successfully completing the level 6 – Embedded electronic systems design and development engineer (degree) apprenticeship will award you with an Honours Degree in Electronics or Electrical & Electronic Engineering which has been accredited by one of the Professional Engineering Institutions licensed by the UK Engineering Council.
Embedded electronic systems design and development engineer assessment
The embedded electronic systems design and development engineer (degree) apprenticeship will typically take 3 years (36 months) to complete. In order to demonstrate the knowledge you’ve gained, you will be required to complete an assessment. The assessment of this apprenticeship will include both on-programme assessment and a synoptic, end-point assessment.
Upon successful completion of this apprenticeship, the individual will have achieved an electronics qualification degree recognised by the relevant Professional Engineering Institutions.
Conclusion
As you can see, the level 6 embedded electronic systems design and development engineer (degree) apprenticeship is an in-depth and complex apprenticeship that covers a wide range of electronic specialisms and can be very rewarding to those passionate about electronics. The skills and knowledge gained from this electronic engineering apprenticeship will supply the apprentice with a recognised degree in their field, helping them to kick-start the career in a wide range of industrial sectors, helping design some of the most important and widely used electronic technologies used in the modern world. Electronics are always moving forward meaning that this career path has huge potential for leaps and bounds of development in the future.
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