VCSE Engineering
VCSE Engineering is a hands-on workshop qualification whose digital content sits mainly in Unit 2, where CAD and CAM, CNC machining, laser cutting and 3D printing, with their slicing and machine settings, are listed among the processes learners can use to produce components, and where planning, risk assessment and inspection evidence suit spreadsheets. Both NEA units must be submitted digitally and Unit 2 evidence can include annotated photographs, tables and charts, while Unit 1 involves research into the engineering sector in Wales and the Unit 3 written test is on paper only. The single biggest thing KS3 should build is confident use of CAD and CAM, from an accurately dimensioned drawing to a laser cut or 3D printed part made with sensible machine settings and checked against the drawing.
- Awarding body
- WJEC
- Level
- Level 1 and Level 2
- First taught
- September 2027
- Amount of digital work
- Medium
- Specification
- Open the specification
- Step before
- Foundation Engineering, Entry Level and Level 1
How this qualification is assessed
- Unit 1: Introduction to the Engineering Sector: Non-examination assessment 8 hours, 20%, 40 marks, set and marked by WJEC, available via Portal
- Unit 2: Applying Engineering Processes: Non-examination assessment 26 hours, 60%, 145 marks, set by WJEC, marked by the centre and moderated by WJEC
- Unit 3: Engineering Principles: Written test 1 hour, 20%, 60 marks, set and marked by WJEC, paper format only
Skills that use Creating digital content
-
Producing components with CAD and CAM (laser cutter, 3D printer, CNC)
In Unit 2 learners produce components using machine tool operations and other engineering processes, and CAD and CAM, CNC turning, milling and routing, laser cutting and 3D printing are listed among those processes. Centres must have at least one item such as a laser cutter, 3D printer, CNC machine or CAD/CAM software and hardware, but these sit alongside non-digital options such as brazing, welding and sheet metal work.
DCF: Creating digital content, Sourcing, searching and planning digital content, Problem-solving and modelling
Getting pupils ready
- Year 7
- Pupils draw a 2D keyring in the department's CAD package using shapes, text and exact dimensions in millimetres, then laser cut it.
- Year 8
- Pupils model a simple bracket in Tinkercad with a hole of a stated diameter, 3D print it and measure the printed hole with digital callipers to compare it with the CAD size.
- Year 9
- Pupils draw a component in CAD from a dimensioned orthographic drawing, including a chamfer and holes, choose laser cutting or 3D printing for it, and check the finished part against the drawing.
Show the specification wording and the DCF statements
Where it is in the specification: Unit 2, Section 2.3.4, pages 23 and 24; Unit 2, Section 2.2.2, page 21; Unit 2, Resources required for assessment, page 17
“Computer Aided Design (CAD) and Computer Aided Manufacturing (CAM)”
Progression step 3
I can use a range of software to select, produce and edit a range of multimedia components for a purpose, such as:
- text and images, e.g. format text (bold, underline, italics, highlight); insert and edit text boxes; columns; use refine tools (spellchecker, find and replace); word wrap; crop; alter size and shape; alter images; add effects; trim and split sound and video clips; transitions; onion skin
- presentation, e.g. page orientation; animations; transitions; remove and alter images; use background; use action buttons to create hyperlink; embed objects.
I can independently create and plan work before beginning a digital task.
Progression step 4
I can select and use a variety of appropriate software, tools and techniques to create, modify and combine multimedia components for a range of audiences and purposes, such as:
- text and images, e.g. explore and use effectively image manipulation techniques; explore and use appropriately the many aspects of document layout; use animation, video and audio effects such as echo, tempo, envelope, layering, frame rate, key frames
- presentation, e.g. use design tools; adapt themes and colours to suit the purpose; create master templates.
I can create a simple model or self-contained algorithm.
Progression step 5
I can use a variety of software, tools and techniques to create a professional, individual or collaborative project outcome incorporating a range of multimedia components.
I can independently create and design models, and explain how they represent real-world problems, e.g. selecting and correctly using an appropriate method for illustrating a problem, such as a flowchart or spreadsheet.
-
Building a scored risk assessment
Learners produce a risk assessment for every key engineering process in Unit 2, with a ranked or scored method for the likelihood of harm, control measures and a revised risk level after the controls. Unit 3 also examines risk assessments under the Health and Safety at Work Act. The specification does not name spreadsheets, but a scored risk table is a simple spreadsheet model.
DCF: Data and information literacy, Problem-solving and modelling, Creating digital content
Getting pupils ready
- Year 7
- Pupils complete a simple risk table in a Word template for using a coping saw: hazard, who could be hurt and how to control it.
- Year 8
- Pupils build a risk matrix in Excel for the pillar drill where likelihood times severity gives a score, with red, amber and green conditional formatting.
- Year 9
- Pupils produce an Excel risk assessment for every process in their project, scoring each risk before and after control measures, with a formula that flags any risk still rated high.
Show the specification wording and the DCF statements
Where it is in the specification: Unit 2, Section 2.2.3, page 21; Unit 3, Section 3.1.4, page 30
“a ranked or scored method to show the likelihood of potential harm”
Progression step 3
I can use a range of spreadsheet formulae, e.g. + - / x, sum, average, max, min.
I can create and refine algorithms and flowcharts to solve problems, making use of features such as loops, Boolean values and formulae.
Progression step 4
I can create a simple model or self-contained algorithm.
I can create a data capture form, capture data, search data and create a database and spreadsheet with appropriate data input method.
Progression step 5
I can independently create and design models, and explain how they represent real-world problems, e.g. selecting and correctly using an appropriate method for illustrating a problem, such as a flowchart or spreadsheet.
I can create formal text documents for a professional audience, incorporating the use of collaborative review tools into activities.
-
Recording practical work with annotated photographs
Unit 2 evidence for moderation may include reports, tables, charts, teacher observations and annotated photographic evidence. Learners need to photograph set-up, making and finished components clearly and annotate them to show the processes and features they produced.
DCF: Creating digital content, Evaluating and improving digital content
Getting pupils ready
- Year 7
- Pupils photograph each stage of making on an iPad and add the three clearest photos to a PowerPoint making diary with a one line label each.
- Year 8
- Pupils photograph their finished part next to a steel rule and annotate features such as a chamfer, a drilled hole and a filed edge with arrows and labels.
- Year 9
- Pupils build a photo log of set-up, making and inspection, annotating each photo with the tool, setting and safety measure used and adding close-ups that show accuracy.
Show the specification wording and the DCF statements
Where it is in the specification: Section 3.2, Unit 2, page 38
“This may include reports, tables, charts, teacher observations and annotated photographic evidence.”
Progression step 3
I can use a range of software to select, produce and edit a range of multimedia components for a purpose, such as:
- text and images, e.g. format text (bold, underline, italics, highlight); insert and edit text boxes; columns; use refine tools (spellchecker, find and replace); word wrap; crop; alter size and shape; alter images; add effects; trim and split sound and video clips; transitions; onion skin
- presentation, e.g. page orientation; animations; transitions; remove and alter images; use background; use action buttons to create hyperlink; embed objects.
I can explain reasons for layout and content of my own work and the work of others.
Progression step 4
I can select and use a variety of appropriate software, tools and techniques to create, modify and combine multimedia components for a range of audiences and purposes, such as:
- text and images, e.g. explore and use effectively image manipulation techniques; explore and use appropriately the many aspects of document layout; use animation, video and audio effects such as echo, tempo, envelope, layering, frame rate, key frames
- presentation, e.g. use design tools; adapt themes and colours to suit the purpose; create master templates.
I can justify the reasons for choices and explain the advantages and disadvantages of the different digital outputs I create.
Progression step 5
I can use a variety of software, tools and techniques to create a professional, individual or collaborative project outcome incorporating a range of multimedia components.
I can justify reasoning to critical audiences in terms of layout and content of my digital work.
Good to know
- CAD and CAM are not compulsory. Centres need "At least one of the following pieces of equipment for other engineering processes" (Unit 2, page 17), and that list puts a brazing hearth and welding equipment alongside a laser cutter, 3D printer, CNC machines and "CAD/CAM Software and Hardware." No software package is named.
- Both NEA units are submitted digitally: "The non-examination assessment must be submitted digitally, either as scanned handwritten responses or completed digitally." (Unit 1, page 38), and Unit 2 evidence "must be submitted digitally" (page 38).
- The Unit 1 tasks are released online: "The assessment will be available via Portal." (Summary of assessment, page 5).
- The Unit 3 test is not on screen: "Unit 3 is a written test, available in paper format only." (page 5).
- AI rules apply to all NEA, which must follow "the JCQ Artificial Intelligence (AI) Use in Assessments" guidance (Section 3.3, page 39), and during supervised tasks teachers "must not provide feedback on the evidence being produced." (page 39).
- Appendix A (pages 46 and 47) maps Digital Competence Citizenship, Interacting and Collaborating and Producing to Unit 1 only, and Data and Computational Thinking to all three units, including planning (2.2.1), risk assessment (2.2.3), other engineering processes (2.3.4), machine settings (2.3.6) and the technical drawing sections of Unit 3.
Links with other qualifications
CAD, laser cutting, 3D printing and risk assessment overlap closely with GCSE Design and Technology, and the spreadsheet inspection and risk tables build the same data skills as Mathematics and Numeracy. Researching a sector in Wales and digital NEA submission are shared with the other VCSEs, such as Built Environment.
Source: WJEC Level 1/Level 2 VCSE Engineering specification, approved by Qualifications Wales, teaching from September 2027, for award from 2029 (© WJEC CBAC Ltd 2026).