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National Certificate in Biomedical Engineering

This course develops your ability to support the safe use and maintenance of medical equipment through engineering principles and quality assurance.

14 subjectsLast updated 13 September 2026

About the course

This course develops your ability to support the safe use and maintenance of medical equipment through engineering principles and quality assurance. Learning combines technical study with practical tasks relevant to Southern African organisations and communities.

What you'll learn

Explain the engineering and biological principles relevant to medical equipment.

Carry out supervised inspection and diagnostic tasks using documented procedures.

Evaluate equipment records and report defects within an authorised technical role.

Requirements

Review your English, numerical skills and introductory knowledge of the subject. Prepare to follow technical instructions, record results and complete supervised practical work. Check the provider's published admission requirements for this certificate before enrolment.

Course content

The programme combines supporting studies, specialist subjects and practical integration. Each subject below includes its learning focus, outcomes, practice and assessment.

3 learning stages 14 subjects

Subjects in this programme

The programme combines supporting studies, specialist subjects and practical integration. Each subject below includes its learning focus, outcomes, practice and assessment.

14 subjects are listed below with a short description of each. The Subject descriptions tab contains the learning outcomes, topics, practical tasks and assessments.

Specialist subjects

  1. C.A,D., Simulation, And Simple Modelling. Study the communication of technical information through drawings and models. Practice centres on a checked drawing or model portfolio, drawing on drawing conventions, scale and dimensions and views, sections and projection. You will record findings, justify decisions and check dimensional consistency, completeness and usability by another person.
  2. Human Anatomy And Physiology. Study the structure and function of living systems relevant to technical or care work. Practice centres on a labelled system explanation and technical application case, drawing on cells, tissues and organisational levels and major body systems and their relationships. You will record findings, justify decisions and check anatomical accuracy, correct terminology and appropriate interpretation.
  3. Electrical Engineering Technologies. Study the behaviour and interconnection of electrical and electronic circuits. Practice centres on a circuit-analysis and low-voltage testing portfolio, drawing on electrical quantities and circuit relationships and components, symbols and device behaviour. You will record findings, justify decisions and check measurement technique, circuit assumptions and repeatability.
  4. Electrical & Electronic Principles. Study the behaviour and interconnection of electrical and electronic circuits. Practice centres on a circuit-analysis and low-voltage testing portfolio, drawing on electrical quantities and circuit relationships and components, symbols and device behaviour. You will record findings, justify decisions and check measurement technique, circuit assumptions and repeatability.
  5. Medical Instrumentation And Control. Study the measurement and control of a system through sensors, processing and actuators. Practice centres on a measurement or control-loop investigation, drawing on measured variables and sensor characteristics and signal conditioning and data acquisition. You will record findings, justify decisions and check calibration evidence, response behaviour and stated operating limits.
  6. Biomaterials. Study the structure and function of living systems relevant to technical or care work. Practice centres on a labelled system explanation and technical application case, drawing on cells, tissues and organisational levels and major body systems and their relationships. You will record findings, justify decisions and check anatomical accuracy, correct terminology and appropriate interpretation.

Foundations and shared practice

  1. Safety, Health Environment Quality Management. Study the prevention of harm and the control of quality during vocational work. Practice centres on a task risk assessment, inspection record and improvement plan, drawing on hazard identification and exposure routes and risk assessment and control hierarchy. You will record findings, justify decisions and check whether controls address the identified hazard rather than relying on labels alone.
  2. Engineering Mathematics. Study mathematical reasoning for interpreting measurements and solving vocational problems. Practice centres on a worked problem portfolio using occupational data, drawing on units, ratios and numerical accuracy and algebraic relationships and equations. You will record findings, justify decisions and check units, numerical accuracy and the reasonableness of the result.
  3. Communication And Computer Applications (With C Programming). Study the use of digital tools to organise information and produce reliable work records. Practice centres on a linked set of documents, calculations and presentation files, drawing on files, folders, naming and version control and word-processing layouts and structured documents. You will record findings, justify decisions and check formula accuracy, consistency, readability and recoverability.
  4. National Studies. Study the relationship between citizenship, public institutions and working life. Practice centres on a local public-service case review, drawing on constitutional principles and public institutions and citizenship and civic responsibilities. You will record findings, justify decisions and check the distinction between fact, opinion and unsupported claims.
  5. Entrepreneurial Skills Development. Study the development of a viable small enterprise from a defined customer need. Practice centres on a small-enterprise plan and test record, drawing on customer problems and enterprise opportunities and products, services and value propositions. You will record findings, justify decisions and check whether the financial assumptions and customer evidence support the proposal.

Practical integration

  1. Project. Bring together the programme's technical learning in a focused project. Choose a manageable problem involving c.a,d., simulation, and simple modelling, human anatomy and physiology. Define the required output, gather evidence and develop a justified response. Present the completed work with its method, results and limitations, then explain the improvements made following feedback.
  2. On The Job Education And Training. Apply your learning through agreed duties in a supervised workplace. You will connect c.a,d., simulation, and simple modelling, human anatomy and physiology with routine service or production responsibilities. Keep evidence of preparation, work completed and feedback. Review your progress with the supervisor and explain how your decisions affect quality, safety and other people.
  3. Skills Proficiency. Demonstrate the practical skills developed across the programme. Tasks integrate c.a,d., simulation, and simple modelling, human anatomy and physiology within an agreed work brief. You will prepare resources, carry out the authorised task and check the result. Your evidence should show consistent performance, accurate records and an explanation of decisions within your learner role.

Assessment and practical learning

  • Suggested learning checks: applied questions, calculations or short cases linked to the learning areas.
  • Suggested practical assessment: demonstrate a procedure and submit a portfolio showing your method, results and quality checks.
  • Explain your decisions to the assessor and use feedback to improve the completed work.

Practical application

Develop a biomedical equipment portfolio with inspection procedures, supervised measurements and a maintenance record. Use training equipment and approved clinical placements.

Subject descriptions

Select a subject to read its learning outcomes, main topics, practical task and assessment.

Specialist subjects

C.A,D., Simulation, And Simple Modelling

Study the communication of technical information through drawings and models. Practice centres on a checked drawing or model portfolio, drawing on drawing conventions, scale and dimensions and views, sections and projection. You will record findings, justify decisions and check dimensional consistency, completeness and usability by another person.

Learning outcomes

  • Interpret a drawing using scale, dimensions and conventions.
  • Produce coordinated technical views for a stated purpose.
  • Check and revise a drawing set using recorded feedback.

Main topics

  • Drawing conventions, scale and dimensions
  • Views, sections and projection
  • Interpreting a technical brief
  • Manual and computer-aided drawing tools
  • Detail coordination and revision control
  • Checking drawings against measurements and specifications

Practical task

For C.A,D., Simulation, And Simple Modelling, prepare a checked drawing or model portfolio in a biomedical engineering setting. Use supplied records, a realistic simulation or authorised supervised practice. Include your working and checks of dimensional consistency, completeness and usability by another person.

Assessment

Applied questions, a worked case and an individual explanation supported by calculations, diagrams or records.

Human Anatomy And Physiology

Study the structure and function of living systems relevant to technical or care work. Practice centres on a labelled system explanation and technical application case, drawing on cells, tissues and organisational levels and major body systems and their relationships. You will record findings, justify decisions and check anatomical accuracy, correct terminology and appropriate interpretation.

Learning outcomes

  • Describe a body structure and explain its normal function.
  • Relate a measurement or device purpose to the relevant system.
  • Communicate observations accurately using appropriate terminology.

Main topics

  • Cells, tissues and organisational levels
  • Major body systems and their relationships
  • Normal function and physiological regulation
  • Structure-function links in technical applications
  • Variation, measurement and interpretation
  • Terminology, communication and scope of practice

Practical task

For Human Anatomy And Physiology, prepare a labelled system explanation and technical application case in a biomedical engineering setting. Use supplied records, a realistic simulation or authorised supervised practice. Include your working and checks of anatomical accuracy, correct terminology and appropriate interpretation.

Assessment

Applied questions, a worked case and an individual explanation supported by calculations, diagrams or records.

Electrical Engineering Technologies

Study the behaviour and interconnection of electrical and electronic circuits. Practice centres on a circuit-analysis and low-voltage testing portfolio, drawing on electrical quantities and circuit relationships and components, symbols and device behaviour. You will record findings, justify decisions and check measurement technique, circuit assumptions and repeatability.

Learning outcomes

  • Explain circuit behaviour using a diagram and relevant quantities.
  • Measure a supervised training circuit and compare results with predictions.
  • Locate a fault using a documented sequence of checks.

Main topics

  • Electrical quantities and circuit relationships
  • Components, symbols and device behaviour
  • Analogue and digital signal concepts
  • Circuit construction and measurement
  • Fault isolation and interpretation
  • Documentation, reliability and safe testing

Practical task

For Electrical Engineering Technologies, prepare a circuit-analysis and low-voltage testing portfolio in a biomedical engineering setting. Use supplied records, a realistic simulation or authorised supervised practice. Include your working and checks of measurement technique, circuit assumptions and repeatability.

Assessment

Applied questions, a worked case and an individual explanation supported by calculations, diagrams or records.

Electrical & Electronic Principles

Study the behaviour and interconnection of electrical and electronic circuits. Practice centres on a circuit-analysis and low-voltage testing portfolio, drawing on electrical quantities and circuit relationships and components, symbols and device behaviour. You will record findings, justify decisions and check measurement technique, circuit assumptions and repeatability.

Learning outcomes

  • Explain circuit behaviour using a diagram and relevant quantities.
  • Measure a supervised training circuit and compare results with predictions.
  • Locate a fault using a documented sequence of checks.

Main topics

  • Electrical quantities and circuit relationships
  • Components, symbols and device behaviour
  • Analogue and digital signal concepts
  • Circuit construction and measurement
  • Fault isolation and interpretation
  • Documentation, reliability and safe testing

Practical task

For Electrical & Electronic Principles, prepare a circuit-analysis and low-voltage testing portfolio in a biomedical engineering setting. Use supplied records, a realistic simulation or authorised supervised practice. Include your working and checks of measurement technique, circuit assumptions and repeatability.

Assessment

Applied questions, a worked case and an individual explanation supported by calculations, diagrams or records.

Medical Instrumentation And Control

Study the measurement and control of a system through sensors, processing and actuators. Practice centres on a measurement or control-loop investigation, drawing on measured variables and sensor characteristics and signal conditioning and data acquisition. You will record findings, justify decisions and check calibration evidence, response behaviour and stated operating limits.

Learning outcomes

  • Select a measurement or control approach for a defined variable.
  • Configure or analyse a supervised training loop.
  • Evaluate response and document a justified adjustment.

Main topics

  • Measured variables and sensor characteristics
  • Signal conditioning and data acquisition
  • Calibration, uncertainty and records
  • Feedback, set points and response
  • Controllers, interfaces and communication
  • Testing, faults and operating limits

Practical task

For Medical Instrumentation And Control, prepare a measurement or control-loop investigation in a biomedical engineering setting. Use supplied records, a realistic simulation or authorised supervised practice. Include your working and checks of calibration evidence, response behaviour and stated operating limits.

Assessment

Applied questions, a worked case and an individual explanation supported by calculations, diagrams or records.

Biomaterials

Study the structure and function of living systems relevant to technical or care work. Practice centres on a labelled system explanation and technical application case, drawing on cells, tissues and organisational levels and major body systems and their relationships. You will record findings, justify decisions and check anatomical accuracy, correct terminology and appropriate interpretation.

Learning outcomes

  • Describe a body structure and explain its normal function.
  • Relate a measurement or device purpose to the relevant system.
  • Communicate observations accurately using appropriate terminology.

Main topics

  • Cells, tissues and organisational levels
  • Major body systems and their relationships
  • Normal function and physiological regulation
  • Structure-function links in technical applications
  • Variation, measurement and interpretation
  • Terminology, communication and scope of practice

Practical task

For Biomaterials, prepare a labelled system explanation and technical application case in a biomedical engineering setting. Use supplied records, a realistic simulation or authorised supervised practice. Include your working and checks of anatomical accuracy, correct terminology and appropriate interpretation.

Assessment

Applied questions, a worked case and an individual explanation supported by calculations, diagrams or records.

Foundations and shared practice

Safety, Health Environment Quality Management

Study the prevention of harm and the control of quality during vocational work. Practice centres on a task risk assessment, inspection record and improvement plan, drawing on hazard identification and exposure routes and risk assessment and control hierarchy. You will record findings, justify decisions and check whether controls address the identified hazard rather than relying on labels alone.

Learning outcomes

  • Identify hazards and select controls appropriate to the task.
  • Follow an agreed safe-work and quality-check procedure.
  • Record an incident or defect and recommend corrective action.

Main topics

  • Hazard identification and exposure routes
  • Risk assessment and control hierarchy
  • Safe work preparation and protective equipment
  • Environmental impacts and waste handling
  • Incident reporting and emergency communication
  • Inspection records and corrective action

Practical task

For Safety, Health Environment Quality Management, prepare a task risk assessment, inspection record and improvement plan in a biomedical engineering setting. Use supplied records, a realistic simulation or authorised supervised practice. Include your working and checks of whether controls address the identified hazard rather than relying on labels alone.

Assessment

Applied questions, a worked case and an individual explanation supported by calculations, diagrams or records.

Engineering Mathematics

Study mathematical reasoning for interpreting measurements and solving vocational problems. Practice centres on a worked problem portfolio using occupational data, drawing on units, ratios and numerical accuracy and algebraic relationships and equations. You will record findings, justify decisions and check units, numerical accuracy and the reasonableness of the result.

Learning outcomes

  • Select a mathematical method suited to a stated problem.
  • Show calculations with consistent units and clear assumptions.
  • Check the result against an independent estimate or known constraint.

Main topics

  • Units, ratios and numerical accuracy
  • Algebraic relationships and equations
  • Graphs, tables and interpretation
  • Geometry and measurement applications
  • Descriptive statistics and variation
  • Model assumptions, checking and technical reporting

Practical task

For Engineering Mathematics, prepare a worked problem portfolio using occupational data in a biomedical engineering setting. Use supplied records, a realistic simulation or authorised supervised practice. Include your working and checks of units, numerical accuracy and the reasonableness of the result.

Assessment

Applied questions, a worked case and an individual explanation supported by calculations, diagrams or records.

Communication And Computer Applications (With C Programming)

Study the use of digital tools to organise information and produce reliable work records. Practice centres on a linked set of documents, calculations and presentation files, drawing on files, folders, naming and version control and word-processing layouts and structured documents. You will record findings, justify decisions and check formula accuracy, consistency, readability and recoverability.

Learning outcomes

  • Create and organise files for a defined work task.
  • Use a spreadsheet or document tool to process information accurately.
  • Check outputs and protect the underlying information.

Main topics

  • Files, folders, naming and version control
  • Word-processing layouts and structured documents
  • Spreadsheet calculations and charts
  • Presentation of findings and supporting evidence
  • Data entry, validation and checking
  • Access controls, backup and responsible information use

Practical task

For Communication And Computer Applications (With C Programming), prepare a linked set of documents, calculations and presentation files in a biomedical engineering setting. Use supplied records, a realistic simulation or authorised supervised practice. Include your working and checks of formula accuracy, consistency, readability and recoverability.

Assessment

Applied questions, a worked case and an individual explanation supported by calculations, diagrams or records.

National Studies

Study the relationship between citizenship, public institutions and working life. Practice centres on a local public-service case review, drawing on constitutional principles and public institutions and citizenship and civic responsibilities. You will record findings, justify decisions and check the distinction between fact, opinion and unsupported claims.

Learning outcomes

  • Explain the role of public institutions in a community issue.
  • Compare perspectives using identifiable evidence.
  • Prepare a reasoned civic or workplace contribution.

Main topics

  • Constitutional principles and public institutions
  • Citizenship and civic responsibilities
  • Zimbabwean history and national development
  • Cultural diversity and community participation
  • Work, enterprise and public services
  • Evidence, public debate and responsible participation

Practical task

For National Studies, prepare a local public-service case review in a biomedical engineering setting. Use supplied records, a realistic simulation or authorised supervised practice. Include your working and checks of the distinction between fact, opinion and unsupported claims.

Assessment

Applied questions, a worked case and an individual explanation supported by calculations, diagrams or records.

Entrepreneurial Skills Development

Study the development of a viable small enterprise from a defined customer need. Practice centres on a small-enterprise plan and test record, drawing on customer problems and enterprise opportunities and products, services and value propositions. You will record findings, justify decisions and check whether the financial assumptions and customer evidence support the proposal.

Learning outcomes

  • Define a customer need and a practical enterprise response.
  • Estimate resources, costs and cash requirements.
  • Revise a business proposal using evidence from a small market test.

Main topics

  • Customer problems and enterprise opportunities
  • Products, services and value propositions
  • Startup resources and operating costs
  • Pricing, cash flow and basic records
  • Market testing and customer feedback
  • Business risks, responsibilities and growth choices

Practical task

For Entrepreneurial Skills Development, prepare a small-enterprise plan and test record in a biomedical engineering setting. Use supplied records, a realistic simulation or authorised supervised practice. Include your working and checks of whether the financial assumptions and customer evidence support the proposal.

Assessment

Applied questions, a worked case and an individual explanation supported by calculations, diagrams or records.

Practical integration

Project

Bring together the programme's technical learning in a focused project. Choose a manageable problem involving c.a,d., simulation, and simple modelling, human anatomy and physiology. Define the required output, gather evidence and develop a justified response. Present the completed work with its method, results and limitations, then explain the improvements made following feedback.

Learning outcomes

  • Define a feasible project with clear success criteria.
  • Develop and evaluate a response using technical evidence.
  • Present the completed project and defend its conclusions.

Main topics

  • Project problem, purpose and scope
  • Review of relevant technical evidence
  • Plan, resources and milestones
  • Implementation or structured investigation
  • Testing, interpretation and limitations
  • Final report, demonstration and reflection

Practical task

Develop a biomedical equipment portfolio with inspection procedures, supervised measurements and a maintenance record. Use training equipment and approved clinical placements.

Assessment

An approved brief, progress evidence, the final output and an individual presentation are assessed against the stated project criteria.

On The Job Education And Training

Apply your learning through agreed duties in a supervised workplace. You will connect c.a,d., simulation, and simple modelling, human anatomy and physiology with routine service or production responsibilities. Keep evidence of preparation, work completed and feedback. Review your progress with the supervisor and explain how your decisions affect quality, safety and other people.

Learning outcomes

  • Complete agreed duties within the supervised role.
  • Maintain a traceable record of work and feedback.
  • Evaluate progress and identify specific development needs.

Main topics

  • Workplace induction and agreed duties
  • Applying technical knowledge to real work
  • Work records and evidence of contribution
  • Team communication and professional conduct
  • Supervisor feedback and skills development
  • Reflective review and future learning priorities

Practical task

Complete supervised duties linked to National Certificate in Biomedical Engineering. Keep a logbook, samples of permitted work and supervisor feedback.

Assessment

Assessment uses the agreed work plan, supervisor observation, work evidence and an individual reflective discussion.

Skills Proficiency

Demonstrate the practical skills developed across the programme. Tasks integrate c.a,d., simulation, and simple modelling, human anatomy and physiology within an agreed work brief. You will prepare resources, carry out the authorised task and check the result. Your evidence should show consistent performance, accurate records and an explanation of decisions within your learner role.

Learning outcomes

  • Plan and complete an integrated task to agreed criteria.
  • Demonstrate safe and consistent practical performance.
  • Explain the result and correct identified weaknesses.

Main topics

  • Interpreting an integrated work brief
  • Preparing tools, information and resources
  • Demonstrating the required technical skills
  • Checking output against agreed criteria
  • Responding to faults and assessor feedback
  • Presenting evidence and explaining decisions

Practical task

Develop a biomedical equipment portfolio with inspection procedures, supervised measurements and a maintenance record. Use training equipment and approved clinical placements.

Assessment

Direct observation, the completed output, a quality-check record and oral questions provide the evidence for this subject.

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