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Engineering Progression Routes, Advanced Pre-Apprenticeship & Pathway to University

Engineering Degrees, HNCs & HNDs

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  • Electrical and Electronic Engineering HNC
  • Mechanical Engineering HND
  • Electrical and Electronic Engineering HNC Full Time
  • Mechanical Engineering HNC
  • Mechanical Engineering HNC Full Time
  • Electrical and Electronic Engineering HND
  • Engineering BEng (Hons)
  • Mechanical Engineering HND Full Time

Engineering Apprenticeships

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The UK is once again one of the global leads for Engineering and Manufacture. Our innovation and high quality, together with efficient timescales of delivery make us stand out. The East of England is a powerhouse for the UK economy much of which comes from the outstanding engineering companies in the region.

At West Suffolk College we offer organisations and learners the chance to learn and develop the skills required to ensure engineering remains prominent in the local area. We offer Level 2 to Level 6 and work with employers across many different pathways such as Mechanical, Electrical, Electronic, Maintenance, Welding, Tool Making, Design, Installation etc. Our excellent facilities allow for learning to be conducted in a very supportive environment and our work based team helps to embed that classroom knowledge fully in the workplace.

Engineering Courses for School Leavers

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Engineering at West Suffolk College provides a practical and theoretical introduction to mechanical and electronic engineering, computer aided drawing and microprocessing. You’ll get the skills to help solve the problems of tomorrow – from how aircraft work to the electronics in your mobile phone.

The Level 3 course could earn you enough UCAS points to study engineering at any UK university or take an advanced apprenticeship, working with an engineering firm and career off to an early start.

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Not sure? No problem

Choosing what to study can be challenging. Speak to one of our advisors to find out what your options are.

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UCAS Code: N004
Institution Code: W46

Introduction

This is a University of East Anglia validated programme, delivered by West Suffolk College in our dedicated STEM Innovation Campus. Engineering council accreditation will be sought as soon as possible.

 

Engineers are involved in virtually all aspects of the modern world and is made up of many distinct pathways and specialisations. Our degree allows a student to get a thorough grounding in fundamental engineering principles and skills before specialising in a particular engineering discipline. 
Design engineers are the basis for many industries, their abilities to innovate are vital to gaining competitive advantage over competitors. The use of integrated design tools help ensure products are manufacturable and functional before production, is a valuable tool in the designers' skillset.
The regular engineering topics are covered in year 1, additionally workshop practices and a research project are used to develop skills utilised in the future. In year two, students choose their preferred pathway, from a choice of manufacturing, design, management and mechatronics (subject to minimum numbers per pathway). The year continues to build the foundation topics, whilst beginning specialist study. Year 3 gives the option of a supervised work placement, obtained by the student, giving valuable experience of the engineering world. The final year includes a large engineering project, counting as two modules, with additional specialist units.

Course modules

Modules are subject to variation prior to validation of degree.

 

Year 1

Computer Aided Design
Core skills are developed. The use of assemblies, user defined attributes, orthographic projections, tolerances, materials, kinematics and video output is investigated.
Electrical and Electronic Principles
The principles behind electrical and electronic devices, including power transmission, Kirchhoff and ohms laws, functions of components and design of circuits are investigated.
Engineering Mathematics
A grounding in the numerical and algebraic techniques used in the engineering world. Techniques are applied, experimentation will be used to prove theories.
Engineering Science & Materials
The application of physics and chemistry to the engineering world, the module provides core knowledge for structural analysis and links to material utilisation.
Workshop Practices
Students undertake hand fitting techniques, manual and computer numeric controlled machining. Assemblies are created using a variety of fixing methods.
Mechanical Principles
Static, dynamic and oscillating engineering systems are studied, Correlation to computer analysis is investigated.


Year 2

Engineering Design
This is the process of design, it looks at methods of design solution generation, creating specifications, solution selection, use of cad models and drawings for investigation and manufacturing.
Manufacturing Principles
An introduction to manufacturing for all classes of materials. Methodologies for high and low volume manufacturing are explored.
Quality Systems
Quality is a prerequisite for manufacturing worldwide. This module gives students the knowledge to ensure quality is assured and controlled in engineering.
Engineering Management Principles
Techniques and principles of management aligned to an engineering environment are studied. The structure, functioning and performance of organisations will be investigated
Cad Based Analysis
CAD Analysis is a cost-effective way of prototyping engineering solutions. New designs can be loaded far in excess of service conditions safely, fluid flow can be analysed, heat movement can be assessed.
Application of Materials
This is using material properties and applying them to design solutions. Material selection requires justification, the effect of processing as well and material constraints are accounted for.

 

Year 3

Engineering Project
This module is the culmination of the degree course, giving students the opportunity to explore areas related to the rest of the course.
Lean Manufacturing
Minimising waste in both energy and materials is at the heart of lean manufacturing. It is a basic function of engineering.
Quality Management
Quality systems require an understanding of different philosophies, as well as where and how they can be applied.
Additive Manufacturing
The use of general purpose manufacturing machines has made the creation of both metal and plastic parts more available without the need for dedicated tools and equipment. 
Digital Analysis
The study of complex systems is undertaken. Fluid, heat and animated systems are studied looking. Iterative design and testing will be undertaken. 
Optional Work Placement Module
The work placement module provides students with skills and experience employers seek. The placement should be over 32 weeks and sits between year 2 and 3. The module does not contribute to the degree classification but will be graded pass/ fail. Termly meetings in the workplace will take place. This is available to all students on all pathways.
 

 

Career opportunities

Students have progressed into many careers such as, additional higher study at the MEng and/or PhD level, employment within regional and national organisations at an Engineer level, undertaking a wide array of engineering roles. Some have now progressed into supervisory and management roles.

Fees and finance

£8,500 per year (full-time)

Additional costs

Students are encouraged to join one of the engineering institutions. Fees vary depending on institution selected, approximately £20. 

Entry requirements

UCAS tariff: 80 UCAS points

 

A Levels: Maths + at least 1 STEM subject to UCAS tariff requirement

 

Level 3 Diploma: STEM based subject to UCAS tariff requirement – should include Further Maths

 

Access to HE Diploma: STEM based to UCAS tariff requirement – should include Maths to Further Maths standard

 

Scottish Higher: Maths + 1 STEM subject to UCAS tariff requirement

 

Other: students not meeting exact requirements can be assessed on a case by case basis, industrial engineering experience can be considered.

Days & times

Date(s) to be confirmed


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