
Diploma of Aeroskills (Mechanical) / Fixed Wing (Gas Turbine) Stream
Diploma-level aeroskills training and assessment in the selected stream, aligned to the Aeroskills training package qualification requirements. For engineers seeking a formal diploma qualification.
Important: This course delivers the Diploma of Aeroskills qualification only.
A Diploma does not automatically meet CASA licensing requirements. CASA licences are issued based on completion of specific MEA units and exams, not the qualification itself.
If you want a CASA Part 66 licence outcome, consider the full licence training pathway which includes exams and licence submission. You can explore these here >
Choose how you want to complete this course
Select a pathway below. Pricing, duration, entry requirements and application details update immediately to match your selection.
Course information
Diploma of Aeroskills (Mechanical)
Fixed Wing (Gas Turbine) Stream
Delivered via
RPL and Gap Assessment Pathway Self-Directed for Experienced Engineers
This pathway is designed for experienced, self-motivated aircraft maintenance engineers.
Knowledge is assessed through an individualised combination of Recognition of Prior Learning (RPL) and targeted knowledge gap assessments, and Practical competency (performance evidence) is assessed via RPL using acceptable practical evidence, as approved and authorised by CASA, and documented in SAC's approved Maintenance Training Organisation Exposition (MTOE).
Equivalence of Standard
The RPL and Gap Training pathway does not reduce the competency standard required for the award of the qualification. All learners, regardless of delivery mode, must meet the full requirements of each unit of competency, including performance evidence, knowledge evidence and assessment conditions.
No unit of competency is granted solely on the basis of employment history or documentation without structured assessment and verification.
Delivered via
QLD Career Boost Workplace Training Pathway Queensland-Only Subsidised On-The-Job Delivery for Eligible Apprentices and Trainees (AQF 4 and Above)
This is the employment-based apprenticeship or traineeship pathway under the Queensland Government's Career Boost Program 2025–28. It is available only to an eligible person employed under a registered Queensland training contract in an approved AQF Certificate IV, Diploma or higher-level qualification that the Department has approved Sigma Aerospace College to deliver.
Career Boost supports higher-level skills development to help eligible Queenslanders advance their careers, move into more skilled roles or progress to further education. The Queensland Government pays a training subsidy directly to Sigma for an eligible learner. A published student co-contribution normally applies unless an approved partial or full exemption is established.
Delivery is blended and workplace-based: structured online theory, scheduled trainer contact, supervised on-the-job learning, workplace assessment and planned face-to-face visits. Enrolment is conditional on Sigma confirming program entitlement, eligibility, suitability, the training contract, the approved delivery location and the employer's capacity to support the Training Plan.
Delivered via
Workplace Training Pathway Fee-for-service, On-The-Job Delivery for Apprentices and Trainees
This pathway is designed for workplace delivery and applies to apprentices and trainees undertaking training while employed in an approved aircraft maintenance environment.
Training is delivered in accordance with a structured training plan and includes face-to-face contact, workplace-based assessment, and defined progression milestones aligned to competency outcomes.
tuition Fees
$500 on application, balance less credit on commencement
Payment Plan: 50% upfront
with the remaining 50% payable upon completion or within 6 months of the first payment, whichever comes first.
Concession: $1,818
Conditions apply
$500 on application, $6,200 on Commencement + $990 per quarter
Payment Plan: $537 per month*
Payment plans incur an admin fee of $20 per month
The tuition fee displayed is the maximum total tuition fee for this pathway and assumes that no Credit Transfer is granted. It includes the $500 application payment. After Sigma verifies your prior qualifications and applies any valid Credit Transfer, the remaining balance is confirmed on your final enrolment invoice.
In practice, the vast majority of experienced engineers entering this pathway receive Credit Transfer and therefore pay less than the published maximum. As an indicative example, a holder of the relevant Certificate IV in Aeroskills progressing to a Part 66 licence pathway will typically have the published tuition fee reduced by around one-third, subject to the units accepted for Credit Transfer. The exact reduction depends on the units accepted and cannot be confirmed until Sigma completes its assessment.
Additional charges may apply only where expressly listed in Sigma's current Fees and Refunds Procedure.
Payment: $500 on application. The final balance, after approved Credit Transfer, is payable 50% upfront, with the remaining 50% payable on completion or within 6 months of the first payment, whichever comes first.
Career Boost Co-Contribution Fee Conditions
The Queensland Government subsidises this training for eligible students. The displayed co-contribution is the learner's total mandatory student fee for standard delivery, unless an approved concession or full exemption applies.
- Fees are charged progressively at unit level, with no more than 30% requested upfront.
- View complete fee, eligibility, exemption, payment and refund conditions.
Full tuition fees paid as $500 on application, with balance (less due following assessment of applicable credit;
Where students do not complete in the assigned duration, a $990 quarterly workplace support fee applies until completion; compassionate enrolment suspension is available, please read policies page for details prior to commencement. A prorated fee reduction will apply for any approved credit transfer.
Course Duration
Study Load: 8 hours per week
4 weeks break
Study Load: 21 hours per week
20 weeks break
Study Load: 21 hours per week
20 weeks break
- The RPL & Gap training pathway has a reduced volume of learning versus full-time delivery due to the recognition of experience. Duration is only a guide – students may complete in a shorter or longer timeframe.
- Duration will be shorter if any Credit Transfer is granted.
- The displayed duration is the 48-month nominal training-contract term for the listed Certificate IV and Diploma pathways under QTIS. The registered training contract and signed Training Plan govern the actual schedule and unit sequencing.
- Progress and completion timing may be affected by workplace task access, supervision, participation, credit transfer, RPL or changes to employment or the training contract. Completion is confirmed only after all requirements are met; no earlier completion date, licensing outcome or employment outcome is guaranteed.
- View full duration and delivery conditions.
- Students may complete in a shorter duration than specified as long as they are deemed competent in each unit – this is a guide. If a student requires more time than specified, a $990 / per quarter workplace support fee applies.
- Duration will be shorter if any Credit Transfer is granted.
Before you Apply
- This course is designed for working aircraft maintenance engineers
- This delivery mode requires a minimum of two (2) years of aircraft maintenance experience
- Learners must be currently employed in an aircraft maintenance environment working on operating aircraft
- Learners must be able to provide acceptable evidence for the practical tasks specified in each Unit of Competency
- Do not submit an application until Sigma has completed a consultation and issued the delivery password.
- Career Boost apprenticeship and traineeship funding applies only to an approved AQF Certificate IV or above qualification.
- You must be employed as a Queensland apprentice or trainee under a registered training contract for the approved qualification and must not be a school student.
- You must not have completed a Certificate IV or higher qualification, including a tertiary qualification, within the previous 10 years. Qualifications completed as a school student and foundation skills qualifications do not count for this rule.
- Before enrolment, Sigma must complete and retain a Pre-Enrolment Assessment interview covering suitability, likely employment outcomes, learning support, reasonable adjustment, concessional or PPG status and any Queensland Subsidised Training List restrictions or exemptions.
- Sigma must complete an AISS search within 90 days before enrolment and directly confirm all previous and current qualifications, units and enrolments. You must disclose all current and previous names and all completed, partially completed or current Australian training.
- Sigma must verify your identity, age, work rights and required eligibility evidence and determine your program entitlement before enrolment.
- The employer, learner and Sigma must participate in an Employer Resource Assessment and development of the Training Plan. Enrolment cannot proceed where the workplace cannot provide the required facilities, range of work, qualified supervision and on-the-job training.
- Read the Queensland SAS Fees page, Student Handbook, Sigma Policies and course information before accepting enrolment.
- This structured course is suitable for both non-experienced and experienced engineers undertaking training in the workplace under an approved training plan
- Learners must be employed in an aircraft maintenance environment working on operating aircraft
- A formal training agreement with the employer is required, including nomination of an approved workplace supervisor
Study Units
What you will learn:
Build competence to locate, interpret and use maintenance manuals and specifications in line and base maintenance settings, meeting enterprise procedures and regulatory expectations for safe outcomes. Hands-on work covers amend industry manuals to reflect current/approved amendment status in line and the accessed information from drawings and diagrams in aircraft maintenance, using the right tools and controlled isolation practices. Theory and application link statutory regulations and/or organisational procedures relating to amending, illustrated parts catalogues, and techniques for obtaining and applying data contained to real maintenance decisions and troubleshooting logic. Focus remains on removing ambiguity—cross‑checking sources, escalating uncertainty, and documenting the data trail.
- Use document control practices to ensure the correct references are used before work starts.
- Extract procedural steps, limits and tolerances to build a correct work plan and inspection/test approach.
- Identify when engineering support or higher authority is needed due to unclear, conflicting or missing data.
- Document the references used and assumptions made, and communicate constraints and requirements to the team.
What you will learn:
Develop the capability to plan, coordinate and supervise maintenance work across hangar, workshop, and flight-line tasks, aligned to approved data and controlled risk management. Practical activities include demonstration of literacy and oral expression skills required for clear, plus it is essential that airworthiness compliance requirements are interpreted, with attention to access, protection, and damage prevention. Knowledge areas include maintenance organisations requirements under CASR Part 42 Subpart, Maintenance Training Organisations under CASR Part 147, and design organisations under CASR Part 21 Subpart J to support faultfinding and defensible serviceability decisions. Focus remains on controlling interfaces and non‑routine work so airworthiness risks are identified early and managed.
- Plan maintenance tasks: scope, sequence, access, tooling, parts, and resource requirements.
- Manage tooling, parts and facility availability to avoid schedule-driven errors.
- Review progress against schedule and quality targets, and adjust plans based on emerging information.
- Document plans and outcomes to support certification, handover, and continuing airworthiness.
What you will learn:
Build competence to schedule and control maintenance tasks and resources in line and base maintenance settings, meeting enterprise procedures and regulatory expectations for safe outcomes. Practical activities include cost control during maintenance, plus financial and inventory management as an element of task planning, with attention to access, protection, damage prevention and traceable close‑out. Knowledge areas include basic function, feedback from maintenance personnel and aircrew via Technical, and basic project planning techniques to support faultfinding, risk control and defensible serviceability decisions. Emphasis is on predictable delivery—right resources, right sequence, and clear handover—without compromising safety or quality.
- Plan maintenance tasks: scope, sequence, access, tooling, parts, and resource requirements.
- Manage tooling, parts and facility availability to avoid schedule-driven errors.
- Monitor progress and resolve issues, including escalation of non‑routine findings and airworthiness impacts.
- Maintain traceable planning and execution records, and provide clear task status and handover information.
What you will learn:
Develop the capability to plan, coordinate and supervise maintenance work across hangar, workshop, and flight-line tasks, with disciplined control of hazards, tooling, and configuration. Key tasks span it is essential that maintenance requirements are fully identified and using and compiling the Log of Industrial Experience and Achievement, with disciplined sequencing and verification of each step. Technical coverage spans task performance levels, team characteristics; performance exceeds sum of individual performances, and features of the task which limit efficiency, with emphasis on how these factors drive maintenance outcomes. Focus remains on controlling interfaces and non‑routine work so airworthiness risks are identified early and managed.
- Plan maintenance tasks: scope, sequence, access, tooling, parts, and resource requirements.
- Manage tooling, parts and facility availability to avoid schedule-driven errors.
- Review progress against schedule and quality targets, and adjust plans based on emerging information.
- Capture deviations and non‑routine work in a controlled way to protect airworthiness outcomes.
What you will learn:
Build competence to identify hazards and implement effective controls in workshop and on-aircraft environments, aligned to approved data and controlled risk management. Hands-on work covers analyse relevant workplace data and demonstrate writing skills to accurately and legibly complete and maintain, using the right tools and controlled isolation practices. Technical coverage spans workers compensation and rehabilitation records, requirements for the maintenance and confidentiality of records, and reports and concerns put forward by employees, with emphasis on how these factors drive maintenance outcomes. Emphasis is on preventing harm and protecting the aircraft through disciplined risk control and clear reporting of hazards and incidents.
- Plan tasks with WHS in mind, including job safety analysis, tool control, and environmental protections.
- Coordinate safe work methods and manage interfaces between teams and activities.
- Monitor the work area for changing hazards and adjust controls to keep risk at an acceptable level.
- Maintain WHS documentation and compliance with organisational procedures and relevant legislation/regulation.
What you will learn:
Develop the capability to apply professional self‑management in maintenance workplaces across hangar, workshop, and flight-line tasks, using approved data and safe systems of work. Key tasks span interact effectively with others in the performance of maintenance and provide guidance to other team members, with disciplined sequencing and verification of each step. Knowledge areas include key components of organisational policies, effect of human factors relating to fatigue, and problem solving and change management principles to support faultfinding and defensible serviceability decisions. Emphasis is on professional discipline—clear communication, reliable handovers, and decisions that protect safety and quality.
- Manage priorities and workload to maintain quality under time pressure and changing operational demands.
- Use disciplined work habits (checklists, self‑checks, interruption control) to prevent slips and lapses.
- Support a reporting culture by raising hazards and near misses with clear, factual information.
- Record work status, decisions and follow‑up actions so others can pick up tasks safely and efficiently.
What you will learn:
Build competence to manage self, priorities and professional conduct in line and base maintenance settings, aligned to approved data and controlled risk management. Practical activities include demonstrate numeracy skills sufficient to provide quotes relating to work, plus apply principles of equity and diversity requirements set out, with attention to access, protection, damage prevention and traceable close‑out. Theory and application link applicable overseas regulations, duty statements, and equal employment opportunity legislation and guidelines to real decisions, troubleshooting logic and error‑tolerant practice. Focus remains on taking responsibility for outcomes: plan, verify, report issues early, and keep skills current.
- Recognise limitations and escalate appropriately when authority, competence or resources are insufficient.
- Work effectively within teams, using structured handover and confirmation practices to reduce errors.
- Identify and manage stress and fatigue factors that affect performance, and apply appropriate countermeasures.
- Contribute to continuous improvement by providing constructive feedback and participating in corrective actions.
What you will learn:
Build competence in the maths and physics that underpin aircraft maintenance decisions under operational maintenance conditions, aligned to approved data and controlled risk management. Practical activities include performing arithmetical calculations typically required in aviation maintenance that apply, plus apply mathematics and physics in aviation maintenance, with attention to access, protection, and damage prevention. Theory and application link wave motion – mechanical waves, rotational motion – uniform circular motion – centrifugal, and laws of reflection and refraction – reflection at to real maintenance decisions and troubleshooting logic. Emphasis is on accuracy, unit discipline and traceability so calculations can be trusted and reproduced by another engineer.
- Use unit conversion and formula rearrangement to produce defensible calculations and tolerance checks.
- Apply dimensional analysis and cross‑checks to verify results and identify unit/assumption errors early.
- Apply maths/physics to interpret system behaviour and the impact of changes in load, pressure, temperature or current.
- Document calculations and assumptions clearly so results can support engineering decisions and maintenance records.
What you will learn:
Build competence to identify hazards and implement effective controls across hangar, workshop, and flight-line tasks, meeting enterprise procedures and regulatory expectations for safe outcomes. Key tasks span correct interpretation of enterprise and regulatory emergency procedures and correctly interpreting WHS regulations, with disciplined sequencing and verification of each step. Theory and application link methods of risk assessment and control, correct selection and use of workplace emergency, and applicable sources of WHS requirements and procedures to real maintenance decisions and troubleshooting logic. Emphasis is on preventing harm and protecting the aircraft through disciplined risk control and clear reporting of hazards and incidents.
- Apply WHS legislation, organisational policies and site rules to the task and work area.
- Apply isolation and lock‑out/tag‑out practices where required, and verify safe conditions prior to work.
- Respond to incidents and emergencies through reporting, initial actions, and follow‑up investigations.
- Use reporting systems to support learning and prevention, not just compliance.
What you will learn:
Build competence to schedule and control maintenance tasks and resources in line and base maintenance settings, aligned to approved data and controlled risk management. Practical activities include apply human factors in planning maintenance activity, plus ensure safe and appropriate sequencing of tasks, with attention to access, protection, and damage prevention. Knowledge areas include key industry standards and organisational requirements and procedures, relationship between broader planning and organising requirements, and nature and impact of human factors affecting the to support faultfinding and defensible serviceability decisions. Focus remains on controlling interfaces and non‑routine work so airworthiness risks are identified early and managed.
- Interpret work packages and approved data, then translate requirements into a practical job plan.
- Manage tooling, parts and facility availability to avoid schedule-driven errors.
- Review progress against schedule and quality targets, and adjust plans based on emerging information.
- Maintain traceable planning and execution records, and provide clear task status and handover information.
What you will learn:
Develop the capability to apply quality standards and assurance processes within an aircraft maintenance organisation, with disciplined control of hazards, tooling, and configuration. Hands-on work covers differentiate the elements that constitute the quality system and and ISO 9000 compliant documentation and specifications relating to quality, using the right tools and controlled isolation practices. Knowledge areas include relationship between the quality system and work health, reporting maintenance-related incidents and errors, and typical quality systems applied in aviation maintenance contexts to support faultfinding and defensible serviceability decisions. Focus remains on preventing defects from escaping: right first time, evidence‑based acceptance, and continuous improvement.
- Identify quality requirements and acceptance criteria for the task, and confirm the correct reference standards apply.
- Collect objective evidence (measurements, inspections, test results) to demonstrate conformity to requirements.
- Identify non‑conformances and apply corrective actions or escalation pathways as required.
- Support audits and continuous improvement activities with accurate data and reporting.
What you will learn:
Build competence to produce and control aviation maintenance documentation and records across hangar, workshop, and flight-line tasks, with disciplined control of hazards, tooling, and configuration. Practical activities include organisational and regulatory procedures, plus demonstrate required levels of literacy and numeracy, with attention to access, protection, and damage prevention. Knowledge areas include quality manuals, organisational and regulatory procedures required to complete, and Defence regulations and instructions applicable to the maintenance to support faultfinding and defensible serviceability decisions. Focus remains on traceability and configuration control so records reflect what was done, by whom, and to which standard.
- Apply controlled document practices (version control, amendments, approvals) across maintenance records and releases.
- Structure entries so a third party can reconstruct what was done, when, and to which standard.
- Verify records are complete and consistent with work performed and acceptance criteria before sign‑off or handover.
- Communicate documentation status and constraints during shift handover or task close‑out.
What you will learn:
Develop the capability to perform foundational workshop and on‑aircraft hand skills in line and base maintenance settings, aligned to approved data and controlled risk management. Practical activities include install aircraft hardware using tightening, plus use and store general and purpose-specific hand tools found, with attention to access, protection, and damage prevention. Theory and application link laying out simple items for manufacture using basic, work health and safety requirements and standard workshop, and types of standard aircraft hardware and methods to real maintenance decisions and troubleshooting logic. Focus remains on safe tool use, accurate measurement, and clean work that does not introduce defects or contamination.
- Prepare workpieces and surfaces for hand operations using correct PPE, guarding and safe handling.
- Carry out basic workshop operations (marking out, drilling, deburring, fastening, torqueing) without introducing damage.
- Identify rework requirements early and correct defects without creating secondary damage.
- Control tools and loose articles to prevent FOD, and maintain a clean work area.
What you will learn:
Strengthen the ability to remove and install miscellaneous aircraft electrical hardware/components under operational maintenance conditions, aligned to approved data and controlled risk management. Practical activities include inspection of electrical looms and harness pre and post-removal, plus the correct interpretation of aircraft wire markings, with attention to access, protection, and damage prevention. Knowledge areas include electrical fundamentals, application of relevant WHS practices, and use of approved maintenance documentation and aircraft to support faultfinding and defensible serviceability decisions. Work is expected to align with approved data and organisational procedures, with clear reporting of defects and rectification actions.
- Interpret procedures and specifications for miscellaneous aircraft electrical hardware/components; confirm applicability, revision status, and any required precautions before work starts.
- Select tooling and support equipment, then complete practical work on miscellaneous aircraft electrical hardware/components without introducing damage or FOD.
- Assess defects and performance on miscellaneous aircraft electrical hardware/components using appropriate test methods, then confirm correct operation before release.
- Produce clear maintenance records and reports, including non-routine findings and any follow-up actions required.
What you will learn:
Strengthen the ability to remove and install advanced aircraft electrical system components within an aircraft maintenance organisation, using approved data and safe systems of work. Key tasks span flight control servo actuating devices and electrical components of aircraft systems, with disciplined sequencing and verification of each step. Theory and application link AC and DC motors, precautions for the care and storage of permanent, and transformer rectifier units to real maintenance decisions and troubleshooting logic. Competence is demonstrated through safe work practices, correct configuration control, and records that stand up to audit.
- Apply relevant manuals and enterprise procedures to advanced aircraft electrical system components, ensuring correct set-up, isolation, and compliance with local requirements.
- Execute maintenance actions on advanced aircraft electrical system components with disciplined sequencing, correct technique, and control of hazards.
- Assess defects and performance on advanced aircraft electrical system components using appropriate test methods, then confirm correct operation before release.
- Document work performed and test outcomes, and provide a clean technical handover for continuing airworthiness.
What you will learn:
Build competence to remove and install aircraft pressurisation control system components under operational maintenance conditions, aligned to approved data and controlled risk management. Practical activities include applying relevant WHS practices, plus it is essential that cleanliness requirements and safety precautions applicable, with attention to access, protection, and damage prevention. Technical coverage spans relevant regulatory requirements and standard procedures, relevant maintenance manuals, and layout and operation to block diagram level, with emphasis on how these factors drive maintenance outcomes. Emphasis is on defensible maintenance decisions—confirming serviceability, managing risk, and leaving a traceable maintenance trail.
- Interpret procedures and specifications for aircraft pressurisation control system components; confirm applicability, revision status, and any required precautions before work starts.
- Prepare the work area and carry out hands-on tasks on aircraft pressurisation control system components, using correct tools, test equipment, and contamination control.
- Inspect and function-test aircraft pressurisation control system components; troubleshoot faults using relevant regulatory requirements and standard procedures, relevant maintenance manuals and confirm post-maintenance serviceability.
- Document work performed and test outcomes, and provide a clean technical handover for continuing airworthiness.
What you will learn:
Gain practical skills to remove and install aircraft oxygen system components across hangar, workshop, and flight-line tasks, aligned to approved data and controlled risk management. Practical activities include it is essential that oxygen system cleanliness requirements and safety, plus demonstrating the procedure to replenish a dry breathing oxygen system, with attention to access, protection, and damage prevention. Technical coverage spans methods used to locate, component attachment methods, and methods by which gaseous dry breathing oxygen, with emphasis on how these factors drive maintenance outcomes. Emphasis is on defensible maintenance decisions—confirming serviceability, managing risk, and leaving a traceable maintenance trail.
- Interpret procedures and specifications for aircraft oxygen system components; confirm applicability, revision status, and any required precautions before work starts.
- Execute maintenance actions on aircraft oxygen system components with disciplined sequencing, correct technique, and control of hazards.
- Inspect and function-test aircraft oxygen system components; troubleshoot faults using methods used to locate, component attachment methods and confirm post-maintenance serviceability against acceptance criteria.
- Document work performed and test outcomes, and provide a clean technical handover for continuing airworthiness.
What you will learn:
Learn to inspect, test, and troubleshoot aircraft pressurisation control systems and components within an aircraft maintenance organisation, using approved data and safe systems of work. Key tasks span assisting with the performance of pressurisation system testing to isolate and applying relevant WHS practices, with disciplined sequencing and verification of each step. Theory and application link cabin rate of climb indicators, pressure controllers, and safety switches to real maintenance decisions and troubleshooting logic. Focus remains on minimising error: verify before release, communicate clearly, and document what was done and why.
- Apply relevant manuals and enterprise procedures to aircraft pressurisation control systems and components, ensuring correct set-up, isolation, and compliance with local requirements.
- Prepare the work area and carry out hands-on tasks on aircraft pressurisation control systems and components, using correct tools, test equipment, and contamination control.
- Verify outcomes on aircraft pressurisation control systems and components through inspection, test, and logic-based faultfinding, including checks after rectification.
- Produce clear maintenance records and reports, including non-routine findings and any follow-up actions required.
What you will learn:
Build competence to inspect, test, and troubleshoot aircraft oxygen systems and components within an aircraft maintenance organisation, using approved data and safe systems of work. Key tasks span interpreting oxygen system instruments and employing correct techniques when purging oxygen storage cylinders or systems, with disciplined sequencing and verification of each step. Theory and application link altitude sensing barometers, layout of low and high-pressure dry breathing oxygen, and defining terms and units of measurement relating to real maintenance decisions and troubleshooting logic. Outcomes must be repeatable: correct technical results, clean handovers, and documentation suitable for certification and continuing airworthiness.
- Use approved maintenance data (manuals, drawings, standards) for aircraft oxygen systems and components, and confirm configuration, limits, and safety controls.
- Select tooling and support equipment, then complete practical work on aircraft oxygen systems and components without introducing damage or FOD.
- Assess defects and performance on aircraft oxygen systems and components using appropriate test methods, then confirm correct operation before release.
- Record results, defects, and rectification actions, and communicate status to support certification-ready handover.
What you will learn:
Learn to inspect aircraft electrical systems and components under operational maintenance conditions, aligned to approved data and controlled risk management. Key tasks span applying relevant WHS practices and it is essential that inspection procedures, with disciplined sequencing and verification of each step. Knowledge areas include auxiliary systems, explaining the basic layout and operation, and anti-skid braking systems to support faultfinding and defensible serviceability decisions. Outcomes must be repeatable: correct technical results, clean handovers, and documentation suitable for certification and continuing airworthiness.
- Apply relevant manuals and enterprise procedures to aircraft electrical systems and components, ensuring correct set-up, isolation, and compliance with local requirements.
- Select tooling and support equipment, then complete practical work on aircraft electrical systems and components without introducing damage or FOD.
- Verify outcomes on aircraft electrical systems and components through inspection, test, and logic-based faultfinding, including checks after rectification.
- Record results, defects, and rectification actions, and communicate status to support certification-ready handover.
What you will learn:
Develop the capability to test and troubleshoot aircraft electrical systems and components within an aircraft maintenance organisation, aligned to approved data and controlled risk management. Key tasks span recognition of system and electrical component defects/external damage and master caution and warning systems, with disciplined sequencing and verification of each step. Theory and application link anti-skid braking systems, master caution and warning systems, and equipment cooling and ventilation systems to real maintenance decisions and troubleshooting logic. Work is expected to align with approved data and organisational procedures, with clear reporting of defects and rectification actions.
- Apply relevant manuals and enterprise procedures to and troubleshoot aircraft electrical systems and components, ensuring correct set-up, isolation, and compliance with local requirements.
- Select tooling and support equipment, then complete practical work on and troubleshoot aircraft electrical systems and components without introducing damage or FOD.
- Assess defects and performance on and troubleshoot aircraft electrical systems and components using appropriate test methods, then confirm correct operation before release.
- Produce clear maintenance records and reports, including non-routine findings and any follow-up actions required.
What you will learn:
Gain practical skills to fabricate and repair aircraft electrical hardware or parts within an aircraft maintenance organisation, using approved data and safe systems of work. Practical activities include using approved repair/fabrication procedures and processes relating to electrical cables, plus recognising the integrity/security of electrical component crimps, with attention to access, protection, and damage prevention. Knowledge areas include electrical plugs and connectors, fabrication methods for the above wiring and cables, and how to obtain relevant MSDS to support faultfinding and defensible serviceability decisions. Competence is demonstrated through safe work practices, correct configuration control, and records that stand up to audit.
- Interpret procedures and specifications for aircraft electrical hardware or parts; confirm applicability, revision status, and any required precautions before work starts.
- Select tooling and support equipment, then complete practical work on aircraft electrical hardware or parts without introducing damage or FOD.
- Verify outcomes on aircraft electrical hardware or parts through inspection, test, and logic-based faultfinding, including checks after rectification.
- Document work performed and test outcomes, and provide a clean technical handover for continuing airworthiness.
What you will learn:
Strengthen the ability to use electrical test equipment in aviation maintenance activities in line and base maintenance settings, using approved data and safe systems of work. Key tasks span connect test equipment to components or circuits and determine polarity and applicable connection points for measurement or testing, with disciplined sequencing and verification of each step. Theory and application link bonding, phase angle, and procedures for fitting leads to real maintenance decisions and troubleshooting logic. Work is expected to align with approved data and organisational procedures, with clear reporting of defects and rectification actions.
- Interpret procedures and specifications for electrical test equipment in aviation maintenance activities; confirm applicability, revision status, and any required precautions before work starts.
- Execute maintenance actions on electrical test equipment in aviation maintenance activities with disciplined sequencing, correct technique, and control of hazards.
- Inspect and function-test electrical test equipment in aviation maintenance activities; troubleshoot faults using bonding, phase angle and confirm post-maintenance serviceability against acceptance criteria.
- Record results, defects, and rectification actions, and communicate status to support certification-ready handover.
What you will learn:
Learn to perform aircraft flight servicing in workshop and on-aircraft environments, aligned to approved data and controlled risk management. Practical activities include checking and replenishing fluid level using the correct fluids, plus replacing role equipment requiring pre-flight replacement, with attention to access, protection, and damage prevention. Theory and application link operation and typical external signs of faults, how to obtain MSDS, and aircraft structure to the extent required to real maintenance decisions and troubleshooting logic. Focus remains on minimising error: verify before release, communicate clearly, and document what was done and why.
- Apply relevant manuals and enterprise procedures to aircraft flight servicing, ensuring correct set-up, isolation, and compliance with local requirements.
- Execute maintenance actions on aircraft flight servicing with disciplined sequencing, correct technique, and control of hazards.
- Assess defects and performance on aircraft flight servicing using appropriate test methods, then confirm correct operation before release.
- Document work performed and test outcomes, and provide a clean technical handover for continuing airworthiness.
What you will learn:
Strengthen the ability to remove and install aircraft pneumatic system components across hangar, workshop, and flight-line tasks, with disciplined control of hazards, tooling, and configuration. Key tasks span observing regulations governing the handling and custody of fire-extinguishers containing and locate and correctly remove and install components in air cycle, with disciplined sequencing and verification of each step. Knowledge areas include standard trade practices relating to tool usage, relevant regulatory requirements and standard procedures, and connection hardware and couplings to support faultfinding and defensible serviceability decisions. Competence is demonstrated through safe work practices, correct configuration control, and records that stand up to audit.
- Interpret procedures and specifications for aircraft pneumatic system components; confirm applicability, revision status, and any required precautions before work starts.
- Execute maintenance actions on aircraft pneumatic system components with disciplined sequencing, correct technique, and control of hazards.
- Inspect and function-test aircraft pneumatic system components; troubleshoot faults using standard trade practices relating to tool usage, relevant regulatory requirements and standard procedures.
- Record results, defects, and rectification actions, and communicate status to support certification-ready handover.
What you will learn:
Build competence to remove and install aircraft fixed wing flight control system components in workshop and on-aircraft environments, meeting enterprise procedures and regulatory expectations for safe outcomes. Practical activities include remove flight control surfaces, plus it is essential that safety precautions applicable to the fixed, with attention to access, protection, and damage prevention. Technical coverage spans connection hardware and couplings, requirements for independent inspection of work performed, and requirements for balancing of control surfaces, with emphasis on how these factors drive maintenance outcomes. Outcomes must be repeatable: correct technical results, clean handovers, and documentation suitable for certification and continuing airworthiness.
- Apply relevant manuals and enterprise procedures to aircraft fixed wing flight control system components, ensuring correct set-up, isolation, and compliance with local requirements.
- Select tooling and support equipment, then complete practical work on aircraft fixed wing flight control system components without introducing damage or FOD.
- Verify outcomes on aircraft fixed wing flight control system components through inspection, test, and logic-based faultfinding, including checks after rectification.
- Record results, defects, and rectification actions, and communicate status to support certification-ready handover.
What you will learn:
Gain practical skills to remove and install engines and engine system components in workshop and on-aircraft environments, meeting enterprise procedures and regulatory expectations for safe outcomes. Key tasks span prepare removed engines for transportation and/or storage and identifying the requirement for adjustment and rigging of systems, with disciplined sequencing and verification of each step. Knowledge areas include engine control system component removal and installation, engine inhibiting and de-inhibiting procedures, and super and turbo charging systems to support faultfinding and defensible serviceability decisions. Outcomes must be repeatable: correct technical results, clean handovers, and documentation suitable for certification and continuing airworthiness.
- Interpret procedures and specifications for engines and engine system components; confirm applicability, revision status, and any required precautions before work starts.
- Prepare the work area and carry out hands-on tasks on engines and engine system components, using correct tools, test equipment, and contamination control.
- Verify outcomes on engines and engine system components through inspection, test, and logic-based faultfinding, including checks after rectification.
- Document work performed and test outcomes, and provide a clean technical handover for continuing airworthiness.
What you will learn:
Strengthen the ability to remove and install propeller systems and components within an aircraft maintenance organisation, aligned to approved data and controlled risk management. Key tasks span using MSDS and PPE and locate and correctly remove and install propeller de-icing system components, with disciplined sequencing and verification of each step. Knowledge areas include governors, controls and control linkages, and beta control systems to support faultfinding and defensible serviceability decisions. Emphasis is on defensible maintenance decisions—confirming serviceability, managing risk, and leaving a traceable maintenance trail.
- Apply relevant manuals and enterprise procedures to propeller systems and components, ensuring correct set-up, isolation, and compliance with local requirements.
- Prepare the work area and carry out hands-on tasks on propeller systems and components, using correct tools, test equipment, and contamination control.
- Verify outcomes on propeller systems and components through inspection, test, and logic-based faultfinding, including checks after rectification.
- Record results, defects, and rectification actions, and communicate status to support certification-ready handover.
What you will learn:
Build competence to inspect, test, and troubleshoot propeller systems and components in line and base maintenance settings, using approved data and safe systems of work. Key tasks span applying relevant WHS practices and rig and adjust propeller controls and systems, with disciplined sequencing and verification of each step. Knowledge areas include forces acting on a propeller, de-coupling, and pitch changing mechanisms to support faultfinding and defensible serviceability decisions. Competence is demonstrated through safe work practices, correct configuration control, and records that stand up to audit.
- Use approved maintenance data (manuals, drawings, standards) for propeller systems and components, and confirm configuration, limits, and safety controls.
- Execute maintenance actions on propeller systems and components with disciplined sequencing, correct technique, and control of hazards.
- Assess defects and performance on propeller systems and components using appropriate test methods, then confirm correct operation before release.
- Document work performed and test outcomes, and provide a clean technical handover for continuing airworthiness.
What you will learn:
Develop the capability to remove and install pressurised aircraft structural and non-structural components across hangar, workshop, and flight-line tasks, with disciplined control of hazards, tooling, and configuration. Key tasks span using relevant maintenance documentation and aircraft manuals and applying relevant WHS practices, with disciplined sequencing and verification of each step. Theory and application link crew and/or passenger seat restraints, faying surface treatment and fuel tank and pressure, and passenger escape systems to real maintenance decisions and troubleshooting logic. Emphasis is on defensible maintenance decisions—confirming serviceability, managing risk, and leaving a traceable maintenance trail.
- Interpret procedures and specifications for pressurised aircraft structural and non-structural components; confirm applicability, revision status, and any required precautions before work starts.
- Prepare the work area and carry out hands-on tasks on pressurised aircraft structural and non-structural components, using correct tools, test equipment, and contamination control.
- Assess defects and performance on pressurised aircraft structural and non-structural components using appropriate test methods, then confirm correct operation before release.
- Document work performed and test outcomes, and provide a clean technical handover for continuing airworthiness.
What you will learn:
Build competence to inspect aircraft hydro-mechanical, mechanical, gaseous and landing gear systems and components under operational maintenance conditions, aligned to approved data and controlled risk management. Practical activities include jacking of the aircraft, plus using hand skills and tools in the inspection of hydraulic, with attention to access, protection, and damage prevention. Theory and application link inspection and testing requirements for gears, how to obtain MSDS, and relevant maintenance manuals to real maintenance decisions and troubleshooting logic. Emphasis is on defensible maintenance decisions—confirming serviceability, managing risk, and leaving a traceable maintenance trail.
- Apply relevant manuals and enterprise procedures to aircraft hydro-mechanical, mechanical, gaseous and landing gear systems and components, ensuring correct set-up, isolation, and compliance.
- Select tooling and support equipment, then complete practical work on aircraft hydro-mechanical, mechanical, gaseous and landing gear systems and components without introducing damage.
- Assess defects and performance on aircraft hydro-mechanical, mechanical, gaseous and landing gear systems and components using appropriate test methods, then confirm correct operation before.
- Produce clear maintenance records and reports, including non-routine findings and any follow-up actions required.
What you will learn:
Develop the capability to inspect gas turbine engine systems and components across hangar, workshop, and flight-line tasks, using approved data and safe systems of work. Hands-on work covers applying relevant WHS procedures and recognise through visual/physical inspection external and internal signs of defects/damage, using the right tools and controlled isolation practices. Knowledge areas include engine spin/run procedures, power augmentation, and compressors to support faultfinding and defensible serviceability decisions. Competence is demonstrated through safe work practices, correct configuration control, and records that stand up to audit.
- Apply relevant manuals and enterprise procedures to gas turbine engine systems and components, ensuring correct set-up, isolation, and compliance with local requirements.
- Select tooling and support equipment, then complete practical work on gas turbine engine systems and components without introducing damage or FOD.
- Verify outcomes on gas turbine engine systems and components through inspection, test, and logic-based faultfinding, including checks after rectification.
- Produce clear maintenance records and reports, including non-routine findings and any follow-up actions required.
What you will learn:
Build competence to test and troubleshoot aircraft hydro-mechanical, gaseous and landing gear systems and components under operational maintenance conditions, with disciplined control of hazards, tooling, and configuration. Practical activities include jacking of the aircraft, plus ability to interpret system performance specifications and apply them, with attention to access, protection, and damage prevention. Technical coverage spans landing gear retraction systems, struts/oleos, and relevant WHS practices relating to hydraulic, with emphasis on how these factors drive maintenance outcomes. Competence is demonstrated through safe work practices, correct configuration control, and records that stand up to audit.
- Apply relevant manuals and enterprise procedures to and troubleshoot aircraft hydro-mechanical, gaseous and landing gear systems and components, ensuring correct set-up, isolation, and compliance.
- Execute maintenance actions on and troubleshoot aircraft hydro-mechanical, gaseous and landing gear systems and components with disciplined sequencing, correct technique, and control of hazards.
- Verify outcomes on and troubleshoot aircraft hydro-mechanical, gaseous and landing gear systems and components through inspection, test, and logic-based faultfinding, including checks after rectification.
- Document work performed and test outcomes, and provide a clean technical handover for continuing airworthiness.
What you will learn:
Strengthen the ability to test and troubleshoot aircraft fixed wing flight control systems and components in line and base maintenance settings, meeting enterprise procedures and regulatory expectations for safe outcomes. Hands-on work covers functionally test the operation of fixed wing flight control systems and rig fixed wing flight control systems, using the right tools and controlled isolation practices. Knowledge areas include flight control balancing and flutter, pulleys and fairleads, and push/pull rods to support faultfinding and defensible serviceability decisions. Work is expected to align with approved data and organisational procedures, with clear reporting of defects and rectification actions.
- Use approved maintenance data (manuals, drawings, standards) for and troubleshoot aircraft fixed wing flight control systems and components, and confirm configuration, limits, and safety.
- Select tooling and support equipment, then complete practical work on and troubleshoot aircraft fixed wing flight control systems and components without introducing damage.
- Assess defects and performance on and troubleshoot aircraft fixed wing flight control systems and components using appropriate test methods, then confirm correct operation before.
- Produce clear maintenance records and reports, including non-routine findings and any follow-up actions required.
What you will learn:
Develop the capability to test and troubleshoot gas turbine engine systems and components across hangar, workshop, and flight-line tasks, with disciplined control of hazards, tooling, and configuration. Practical activities include compile engine condition monitoring records, plus assist with testing of gas turbine engine and engine system, with attention to access, protection, and damage prevention. Technical coverage spans gas path, combustion chambers, and presentation and interpretation of electronic displays, with emphasis on how these factors drive maintenance outcomes. Competence is demonstrated through safe work practices, correct configuration control, and records that stand up to audit.
- Interpret procedures and specifications for and troubleshoot gas turbine engine systems and components; confirm applicability, revision status, and any required precautions before work starts.
- Execute maintenance actions on and troubleshoot gas turbine engine systems and components with disciplined sequencing, correct technique, and control of hazards.
- Verify outcomes on and troubleshoot gas turbine engine systems and components through inspection, test, and logic-based faultfinding, including checks after rectification.
- Document work performed and test outcomes, and provide a clean technical handover for continuing airworthiness.
What you will learn:
Gain practical skills to perform advanced troubleshooting in aircraft mechanical maintenance under operational maintenance conditions, using approved data and safe systems of work. Practical activities include diagnosing faults that are beyond the coverage of maintenance manual, plus applying relevant WHS procedures, with attention to access, protection, and damage prevention. Knowledge areas include component construction and theory of operation to a, For systems and components relevant to the scope, and advanced fault diagnostic techniques to support faultfinding and defensible serviceability decisions. Competence is demonstrated through safe work practices, correct configuration control, and records that stand up to audit.
- Apply relevant manuals and enterprise procedures to advanced troubleshooting in aircraft mechanical maintenance, ensuring correct set-up, isolation, and compliance with local requirements.
- Prepare the work area and carry out hands-on tasks on advanced troubleshooting in aircraft mechanical maintenance, using correct tools, test equipment, and contamination control.
- Verify outcomes on advanced troubleshooting in aircraft mechanical maintenance through inspection, test, and logic-based faultfinding, including checks after rectification.
- Produce clear maintenance records and reports, including non-routine findings and any follow-up actions required.
What you will learn:
Build competence to weigh aircraft and perform aircraft weight and balance calculations as a result of modifications in line and base maintenance settings, with disciplined control of hazards, tooling, and configuration. Key tasks span using weighing results to calculate centre of gravity and applying relevant WHS procedures, with disciplined sequencing and verification of each step. Technical coverage spans importance of correctly configuring aircraft for weighing, electronic platform scales, and mathematical formulae used to calculate centre of gravity, with emphasis on how these factors drive maintenance outcomes. Focus remains on minimising error: verify before release, communicate clearly, and document what was done and why.
- Apply relevant manuals and enterprise procedures to aircraft and perform aircraft weight and balance calculations as a result of modifications, ensuring correct set-up, isolation,.
- Select tooling and support equipment, then complete practical work on aircraft and perform aircraft weight and balance calculations as a result of modifications without.
- Verify outcomes on aircraft and perform aircraft weight and balance calculations as a result of modifications through inspection, test, and logic-based faultfinding, including checks.
- Produce clear maintenance records and reports, including non-routine findings and any follow-up actions required.
What you will learn:
Learn to maintain and/or repair aircraft mechanical components or parts across hangar, workshop, and flight-line tasks, using approved data and safe systems of work. Practical activities include test and/or adjust components, plus seal and package completed components, with attention to access, protection, and damage prevention. Knowledge areas include how to obtain MSDS, from unpressurised aircraft, and emergency equipment and stowages to support faultfinding and defensible serviceability decisions. Work is expected to align with approved data and organisational procedures, with clear reporting of defects and rectification actions.
- Use approved maintenance data (manuals, drawings, standards) for and/or repair aircraft mechanical components or parts, and confirm configuration, limits, and safety controls.
- Prepare the work area and carry out hands-on tasks on and/or repair aircraft mechanical components or parts, using correct tools, test equipment, and contamination.
- Assess defects and performance on and/or repair aircraft mechanical components or parts using appropriate test methods, then confirm correct operation before release.
- Document work performed and test outcomes, and provide a clean technical handover for continuing airworthiness.
What you will learn:
Learn to inspect, repair and maintain aircraft structures under operational maintenance conditions, aligned to approved data and controlled risk management. Hands-on work covers ability to interpret inspection and repair procedures and specifications and a range of rivets using hand, using the right tools and controlled isolation practices. Knowledge areas include construction methods, basic constructional features, and procedures for the fabrication and fitment of metal to support faultfinding and defensible serviceability decisions. Emphasis is on defensible maintenance decisions—confirming serviceability, managing risk, and leaving a traceable maintenance trail.
- Use approved maintenance data (manuals, drawings, standards) for repair and maintain aircraft structures, and confirm configuration, limits, and safety controls.
- Prepare the work area and carry out hands-on tasks on repair and maintain aircraft structures, using correct tools, test equipment, and contamination control.
- Assess defects and performance on repair and maintain aircraft structures using appropriate test methods, then confirm correct operation before release.
- Record results, defects, and rectification actions, and communicate status to support certification-ready handover.
What you will learn:
Gain practical skills to remove and install avionic system components in line and base maintenance settings, using approved data and safe systems of work. Practical activities include determining that component and system serviceability can be confirmed, plus locating and identifying avionic components that are part of instrument, with attention to access, protection, and damage prevention. Knowledge areas include digital techniques relating to electronic instrument systems, Integrated Modular Avionics and the interface with hydraulic, and on-board maintenance systems to support faultfinding and defensible serviceability decisions. Focus remains on minimising error: verify before release, communicate clearly, and document what was done and why.
- Apply relevant manuals and enterprise procedures to avionic system components, ensuring correct set-up, isolation, and compliance with local requirements.
- Execute maintenance actions on avionic system components with disciplined sequencing, correct technique, and control of hazards.
- Inspect and function-test avionic system components; troubleshoot faults using digital techniques relating to electronic instrument systems, Integrated Modular Avionics and the interface with hydraulic.
- Produce clear maintenance records and reports, including non-routine findings and any follow-up actions required.
What you will learn:
Develop the capability to assess structural repair/modification requirements and evaluate structural repairs and modifications under operational maintenance conditions, aligned to approved data and controlled risk management. Hands-on work covers evaluating completed repairs and modifications for compliance with the applicable and interpreting all requirements of modification drawings and assessing work against, using the right tools and controlled isolation practices. Knowledge areas include assessment of the extent of damage and an, types of emulsifiers and developers, and assessment of new equipment or component mounting requirements to support faultfinding and defensible serviceability decisions. Focus remains on minimising error: verify before release, communicate clearly, and document what was done and why.
- Apply relevant manuals and enterprise procedures to structural repair/modification requirements and evaluate structural repairs and modifications, ensuring correct set-up, isolation, and compliance.
- Select tooling and support equipment, then complete practical work on structural repair/modification requirements and evaluate structural repairs and modifications without introducing damage.
- Verify outcomes on structural repair/modification requirements and evaluate structural repairs and modifications through inspection, test, and logic-based faultfinding, including checks after rectification.
- Document work performed and test outcomes, and provide a clean technical handover for continuing airworthiness.
What you will learn:
Learn to remove and install aircraft hydro-mechanical and landing gear system components within an aircraft maintenance organisation, using approved data and safe systems of work. Key tasks span observe all required work health and safety procedures and each of the following landing gear components, with disciplined sequencing and verification of each step. Theory and application link rendering systems safe, and packaging removed components, and fuel seal types and applications to real maintenance decisions and troubleshooting logic. Work is expected to align with approved data and organisational procedures, with clear reporting of defects and rectification actions.
- Interpret procedures and specifications for aircraft hydro-mechanical and landing gear system components; confirm applicability, revision status, and any required precautions before work starts.
- Select tooling and support equipment, then complete practical work on aircraft hydro-mechanical and landing gear system components without introducing damage or FOD.
- Verify outcomes on aircraft hydro-mechanical and landing gear system components through inspection, test, and logic-based faultfinding, including checks after rectification.
- Record results, defects, and rectification actions, and communicate status to support certification-ready handover.
What you will learn:
Strengthen the ability to implement and monitor environmentally sustainable work practices within an aircraft maintenance organisation, with disciplined control of hazards, tooling, and configuration. Key tasks span evaluate improvement alternatives and set targets and monitor the performance of improvements, with disciplined sequencing and verification of each step. Technical coverage spans issues relevant to licencing conditions, relevant environmental and resource efficiency issues, and regulated environmental issues, with emphasis on how these factors drive maintenance outcomes. Work is expected to align with approved data and organisational procedures, with clear reporting of defects and rectification actions.
- Use approved maintenance data (manuals, drawings, standards) for and monitor environmentally sustainable work practices, and confirm configuration, limits, and safety controls.
- Select tooling and support equipment, then complete practical work on and monitor environmentally sustainable work practices without introducing damage or FOD.
- Assess defects and performance on and monitor environmentally sustainable work practices using appropriate test methods, then confirm correct operation before release.
- Document work performed and test outcomes, and provide a clean technical handover for continuing airworthiness.
How We Train
How We Undertake Training (RPL & Gap)
Training for students in the RPL and Gap pathway is self-directed online for theory only.
Theory Training
Training for students taking the RPL & Gap training pathway is self-directed online, but supported with engaging learner resources, regular webinars and Q&A sessions, 1:1 tutoring on request, and support from our training team when required.
The following training and resources are provided for each Unit of Competency:
- Audio lecture (available as a podcast feed)^
- Sigma Digital Learner Guide / PDF Learning Materials
- Toolbox 60 webinars (students can attend fortnightly online)
- Live Q&A sessions (students can attend fortnightly online)
- Quarterly check-in
- Tutoring sessions (on request)
Note: Practical training is not offered for this delivery mode. This pathway is designed for engineers with existing experience and supporting aviation industry-standard documentation (e.g. Journal of Industrial Experience, task cards). Students are expected to provide evidence of practical competency, which is assessed via RPL in line with SAC’s Acceptable Practical Evidence Guidelines.
Where practical training is requested, this may be arranged on a fee-for-service basis for groups, either onsite at SAC facilities or offsite at an approved AMO/MRO facility.
^Audiobook rollout in-progress - not all units will include an audiobook at time of enrolment
How We Undertake Training (Career Boost Workplace Delivery)
This is a blended workplace pathway for eligible Queensland apprentices and trainees undertaking an approved AQF Certificate IV or above qualification. Training is structured through the apprentice or trainee's registered training contract and an individual Training Plan developed by Sigma Aerospace College with the learner and employer.
Training Plan, Workplace and Progress Reviews
Before the Training Plan is signed, Sigma completes an Employer Resource Assessment to confirm that the workplace can provide the facilities, equipment, range of work, qualified supervision and on-the-job training required for the qualification.
The Training Plan:
- identifies the units, sequence, delivery arrangements, responsibilities and planned timeframes
- is developed and signed by the apprentice or trainee, employer and Sigma
- is updated where agreed arrangements change
- is supported by a Training Record provided to the learner within 14 days of the Training Plan being signed
Progress through the Training Plan and Training Record is formally reviewed with the learner and employer at least every three months for the term of the training contract.
Theory Training
Theory training is delivered through Sigma's online learning environment and scheduled trainer contact. For each Unit of Competency, learners may receive:
- Sigma Digital Learner Guide / PDF learning materials
- Unit-specific audio lecture or audiobook primer where available
- Practice quizzes and guided learning activities
- Knowledge training aligned to the complete unit requirements
- Fortnightly Toolbox 60 webinars and live Q&A sessions
- Monthly one-to-one online progress check-ins
- Additional tutoring or learning support where identified through the Pre-Enrolment Assessment or subsequent reviews
Workplace Skills Development
Practical skills are developed through real aircraft maintenance work under the direction of qualified workplace personnel identified through the Employer Resource Assessment.
Employers and supervisors are supported with:
- Unit-specific workplace task guidance
- Training Record requirements
- Practical and on-the-job verification checklists
- Direct access to Sigma trainers and assessors
- Guidance on sequencing work exposure against the Training Plan
Sigma conducts face-to-face workplace visits at least every 26 weeks, and more frequently where required by the Training Plan, learner needs, workplace risk or progress. Visits may include learner and employer support, practical training, evidence review, direct observation and assessment.
Training participation is recorded at unit level, including the date, duration and location of training and learner and trainer identification. The predominant delivery mode reported to the Queensland Government is based on the training hours actually delivered.
How We Undertake Training (Workplace Delivery, Including Apprenticeships & Traineeships)
Training for students in the workplace delivery pathway is undertaken in two parts: theory and practical.
Theory Training
Theory training is conducted online and supported by structured learning resources.
For each Unit of Competency, learners:
1. Listen to an audio lecture (podcast format) to gain foundational understanding of the unit
2. Complete recommended readings, including the learner guide / supplementary materials
Fortnightly webinars are delivered covering topics common to Aeroskills outcomes, concluding with a live Q&A tutoring session.
Students are required to attend monthly one-on-one online check-ins with their instructor to discuss progress and address any learning challenges. Additional one-on-one sessions may be booked where required.
The following training and resources are provided for each Unit of Competency:
- Audio lecture (available as a podcast feed)^
- Sigma Digital Learner Guide / PDF Learning Materials
- Toolbox 60 webinars (fortnightly online, mandatory attendance at least every 8 weeks)
- Live Q&A sessions (fortnightly online)
- Monthly check-in
- Tutoring sessions (on request)
Practical Training
Practical training is conducted in the workplace by approved supervisors.
Supervisors are supported with:
- Instructor guidance
- Per-unit practical guidelines
- Competency checklists
Sigma Aerospace College also conducts workplace visits at a minimum of every 26 weeks to:
- Provide learner and employer support
- Assess and sign off Aeroskills journals/logbooks
- Conduct workplace observations where required
^Audiobook rollout in-progress - not all units will include an audiobook at time of enrolment
How We Assess
How We Undertake Assessment (RPL & Gap)
Sigma Aerospace College operates a four-stage RPL & Gap assessment process following successful application and onboarding.
Assessment Phase 1 – Gap Analysis
Once the onboarding process is complete and initial documentation has been provided, SAC undertakes an assessment of prior learning, applicable credit transfer, and any identified knowledge gaps.
At this stage, an invoice is issued for tuition fees (the course fee listed on the website, less any approved credit transfer). Once payment is received:
- The customised learning environment is unlocked
- An initial RPL report (as required by CASA) is issued
This invoice covers all tuition fees, training materials, and any applicable CASA exams.
Assessment Phase 2 – Gap Assessment (Theory) and RPL Evidence Collection (Practical)
Once the customised learning environment is unlocked in the learning management system (aXcelerate), students are presented with:
- Knowledge gap assessments for Units of Competency not granted in full during Phase 1 via RPL or credit transfer
- Practical evidence upload assessments for outstanding Units of Competency
Submitted practical evidence is assessed via RPL against Unit of Competency performance evidence requirements.
Assessment Phase 3 – Competency Conversation
Following completion of gap assessments and submission of sufficient practical evidence (as defined in the Acceptable Practical Evidence Guide), students undertake a clustered competency conversation with an instructor.
- Format: one-on-one discussion
- Duration: approximately 30–60 minutes
- Purpose: final verification of competency
Assessment Phase 4 – CASA Exams
For training products with a CASA outcome, the final stage involves preparation for and completion of invigilated CASA examinations. An administrator will contact the student at the conclusion of Phase 3 to arrange suitable exam times.
Note: Students may apply for recognition of prior learning for any existing practical experience at any time, as long as at the time of Sigma's assessment of that evidence as prior learning (i.e. when uploaded to the relevant capture in the LMS) the evidence meets the terms in the acceptable practical evidence guide, is authentic, sufficient, and meets unit requirements.
How We Undertake Assessment (Career Boost Workplace Delivery)
Sigma Aerospace College assesses each Unit of Competency against the full requirements of the national training product. Competency is not awarded on a percentage pass basis: the learner must provide sufficient, valid, authentic and current evidence covering all applicable unit requirements.
Knowledge Assessment
Knowledge may be assessed through:
- Written or online knowledge assessments
- Short-answer, multiple-choice and applied technical questions
- Structured competency conversations
- Oral questioning where appropriate
- Workplace-based scenarios used to test knowledge and decision-making
Knowledge scenarios do not replace assessment of practical skills.
Practical Assessment
Practical performance is assessed using one or more of the following:
- Direct workplace observation by a Sigma assessor
- Approved live or recorded remote observation where direct attendance is not reasonably possible and the reason and controls are documented
- Detailed practical observation checklists recording the task, conditions, equipment, date, time, performance and assessor judgement
- Workplace products and maintenance documentation assessed against a marking guide
- On-the-job verification completed for each applicable unit by the learner, a qualified person listed in the Employer Resource Assessment, and the Sigma assessor
- Work history sheets, Training Record entries and other supplementary industry evidence
Supervisor verification supports workplace evidence but does not replace Sigma's assessment. Photos alone are not accepted as observable evidence. Video or supplementary evidence must be accompanied by an assessor's documented judgement.
Each assessment instrument records the learner, unit, task instructions, assessment conditions, submission or observation date, assessor decision and required signatures. Where more than one observation is required, each observation date and time is recorded.
Credit Transfer and Recognition of Prior Learning
Learners are offered credit transfer for authenticated equivalent units and may apply for Recognition of Prior Learning where they have relevant current evidence. Credit transfer and RPL are assessed at unit level. Funding and fee treatment depend on the applicable Queensland Government rules, and a qualification achieved entirely through RPL or a combination of RPL and credit transfer may not be eligible for funded delivery.
How We Undertake Assessment (Workplace Delivery, Including Apprenticeships & Traineeships)
Sigma Aerospace College undertakes assessment across theory and practical components. Students are deemed competent only when evidence demonstrates 100% coverage of each Unit of Competency.
Theory Assessment
Theory is assessed using the following methods:
- Knowledge assessments (multiple choice, short answer, matching exercises)
- Competency conversations
Practical Assessment
Practical assessment is conducted using the following methods:
- Supervisor observation checklist (covering all unit criteria), signed off by Sigma Trainer & Assessor
- Task evidence established via records in the student’s work history sheets (as contained in their Journal) or, where appropriate, equivalent Industry Evidence
- Workplace observation (where appropriate)
Note: Students may apply for recognition of prior learning for any existing practical experience at any time, as long as at the time of Sigma's assessment of that evidence as prior learning (i.e. when uploaded to the relevant capture in the LMS) the evidence meets the terms in the acceptable practical evidence guide, is authentic, sufficient, and meets unit requirements.
Entry Requirements
Age
- Minimum age 18 years at commencement of course
Education
- Australian High School Year 11 completion with a pass in English and maths; or
- Completion of a formal Language literacy and numeracy (LLN) assessment tool at ACSF Level 3
Employment and Evidence
- Candidate must be working in an aircraft maintenance environment on operating aircraft AND
- Candidate must be able to present valid evidence (as specified in the Acceptable Practical Evidence Guide) of completion of practical tasks undertaken by the candidate prior to our assessment of that evidence (see the Unit of Competency table for links to full requirements of each unit of competency >). Once provided by the candidate and authenticated as valid by SAC, the college will use this evidence as part of a portfolio of evidence to build a case for competence via Recognition of Prior Learning (RPL)) and Gap Training.
Experience
- Two years of aircraft maintenance experience OR
- Two years of aircraft maintenance training at a regulator-approved Maintenance training organisation
Computing
- Desktop or Laptop computer with webcam and speaker, and modern web browser, PDF viewer, and standards-compatible office suite software
- Reliable broadband internet connection
- An active email address
- Intermediate computing skills, including knowledge of how to use internet to access information.
Residency
- Students must not be on an Australian 500 class student visa, and subject to its terms.
Age
- Minimum entry age is 13 years for the approved Queensland apprenticeship or traineeship, unless a higher minimum or other restriction applies under QTIS, the registered training contract, workplace requirements or law
- For a learner under 18, parent or guardian involvement is required where applicable
Education and Schooling
- QTIS lists no formal minimum education standard for the approved Certificate IV and Diploma qualifications
- The learner must no longer be at school for this Career Boost pathway
- School-based apprenticeships or traineeships are considered under the separate VET in Schools / School-Based Apprenticeships and Traineeships pathway
- Applicants for a Diploma qualification are generally expected to be working in a supervisory role or to have significant relevant occupational experience
- Sigma will assess language, literacy, numeracy and digital capability through the Pre-Enrolment Assessment and document any required support or reasonable adjustment
Employment and Evidence
- For MEA40618, MEA40718 or MEA41322, the candidate must be employed as a Queensland apprentice under an active registered training contract for the approved Certificate IV qualification
- For MEA50118 or MEA50219, the candidate must be employed as a Queensland trainee under an active registered training contract for the approved Diploma qualification
- Candidate must be working in an aircraft maintenance environment relevant to the qualification and on operating aircraft or applicable aeronautical products
- Candidate must have employer approval for Sigma Aerospace College to act as the Supervising Registered Training Organisation
- The employer must provide adequate facilities, equipment, range of work, supervision and on-the-job training
- Candidate must have a nominated qualified workplace supervisor accepted through the Employer Resource Assessment for the duration of study
- Candidate must complete Sigma's Pre-Enrolment Assessment and provide the required identity, age, training history, concession and eligibility evidence
- Sigma must complete the required AISS searches, SRTO checks, Employer Resource Assessment and Training Plan process before funded enrolment is confirmed
Program Eligibility
- The learner must not be currently enrolled in another Training Product, including one on hold or deferred, whether funded or unfunded, other than an eligible foundation skills qualification
- The learner must not have completed a Certificate IV or higher qualification, including a tertiary qualification, within the previous 10 years; qualifications completed as a school student and foundation skills qualifications do not count
- The learner must not have completed two Department-funded apprenticeships or traineeships within the previous 10 years
- If one apprenticeship or traineeship has previously been funded within the last 10 years, only one further funded place may be available and the previous funded place cannot have been under Career Boost
- Only one funded apprenticeship or traineeship can be accessed at a time
- Any additional eligibility requirement, entry restriction or exemption on the current Queensland Subsidised Training List must be satisfied
Computing
- Desktop or laptop computer with webcam and speaker, modern web browser, PDF viewer and standards-compatible office suite software
- Reliable broadband internet connection
- An active email address
- Sufficient digital skills to use Sigma's learning system and submit assessment evidence
Residency and Work Rights
- The learner must meet the current Queensland Government citizenship, residency, visa and work-right requirements applicable to the apprenticeship or traineeship
- A learner from overseas must hold a visa permitting work in Australia and participation in the apprenticeship or traineeship
Age
- Minimum age 18 years at commencement of course
Education
- Australian High School Year 11 completion with a pass in English and maths; or
- Completion of a formal Language literacy and numeracy (LLN) assessment tool at ACSF Level 3
Employment and Evidence
- Candidate must be working in an aircraft maintenance environment on operating aircraft AND
- Candidate must have evidence of approval and support from their employer AND
- Candidate must have a nominated supervisor in that workplace for the duration of their study
Computing
- Desktop or Laptop computer with webcam and speaker, and modern web browser, PDF viewer, and standards-compatible office suite software
- Reliable broadband internet connection
- An active email address
- Intermediate computing skills, including knowledge of how to use internet to access information.
Residency
- Students must not be on an Australian 500 class student visa, and subject to its terms.

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