AURETA001Analyse and evaluate electrical and electronic faults in electronic over hydraulic systems

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What an assessment for AURETA001 must cover

40 assessable components: 5 elements (21 performance criteria), 2 performance evidence and 11 knowledge evidence requirements, plus 6 foundation skills. An audit-defensible tool maps every question and task back to these — that mapping is the coverage matrix Auditori generates alongside the assessment.

Elements & performance criteria

1 Identify and confirm the work requirement

  • 1.1Objective of the analysis and evaluation is determined from workplace instructions
  • 1.2Specifications for electronic over hydraulic system are sourced and interpreted
  • 1.3System faults, deficiencies or discrepancies are identified and confirmed
  • 1.4Hazards associated with the work are identified and risks are managed according to workplace procedures and safety and environmental requirements

2 Prepare for analysis and evaluation

  • 2.1Evaluation criteria are developed or adopted to meet the objective of the analysis and evaluation
  • 2.2Analytical and evaluative methodology is developed or identified from technical information
  • 2.3Testing equipment is prepared according to manufacturer specifications and workplace procedures
  • 2.4Tools and materials required to support the diagnostic procedure are identified, selected and prepared for use
  • 2.5Electronic over hydraulic system and components are prepared for the diagnostic process

3 Carry out failure analysis

  • 3.1Selected analytical and evaluative methodology is followed according to manufacturer specifications and workplace procedures
  • 3.2Tests are carried out according to manufacturer specifications, workplace procedures, and safety and environmental requirements
  • 3.3Analytical and other diagnostic findings are verified, as required, by using reliable alternative or optional processes
  • 3.4Analytical findings and results are assessed against evaluation criteria
  • 3.5Valid conclusions are drawn from available evidence and documented according to workplace requirements

4 Make recommendations

  • 4.1Options for responding to the objective are determined from further research of technical support information
  • 4.2Rectification method is selected from an analysis of the options, operating conditions, regulatory requirements, Australian Design Rules, and financial implications
  • 4.3Report is prepared specifying analysis and evaluation process, and detailing and justifying rectification method or variation to the rectification method

5 Complete work processes

  • 5.1Final inspection is made to ensure work is to workplace expectations
  • 5.2Work area is cleaned, waste and non-recyclable materials are disposed of, and recyclable material is collected
  • 5.3Tools and equipment are checked and stored, and any faulty electrical equipment is identified, tagged and isolated according to workplace procedures
  • 5.4Workplace documentation is processed according to workplace procedures

Performance evidence

  • analyse and evaluate an electrical or electronic fault in the electronic over hydraulic systems of two different vehicles or machinery
  • the above faults must involve two of the following systems: • traction motion control • excavator bucket control • steering control • crane ram control • garbage compactor control

Knowledge evidence

  • work health and safety (WHS) or occupational health and safety (OHS) requirements relating to analysing and evaluating electrical and electronic faults in electronic over hydraulic systems, including procedures for: • identifying hazards and controlling risks associated with wearing jewellery while working around high current wiring systems • working with high pressure fluid hazards • tagging out and isolating machines, and wheel chocking
  • environmental requirements, including procedures for trapping, storing and disposing of fluids released from electronic over hydraulic systems
  • principles and processes involved in planning and implementing analysis and evaluation of electrical and electronic faults in electronic over hydraulic systems
  • design and planning of diagnostic procedures of electronic over hydraulic system faults, including procedures for diagnosing: • hydraulic faults • mechanical faults • electrical faults
  • procedures for analysing and evaluating electronic over hydraulic system faults, including: • system failure analysis • component failure analysis
  • types, functions, operation and limitations of electronic over hydraulic systems, including: • gateway network control module • bus network topography • hydraulic control module functions • associated network electronic over hydraulic system components • sensor and actuator control and monitoring systems • control signal circuits • operator joystick control devices • solenoid and proportional valve control of hydraulic fluid
  • testing procedures for electronic over hydraulic systems, including the use of: • digital multimeter • scan tool • oscilloscope
  • types, functions, operation and limitations of diagnostic testing equipment required to analyse and evaluate electrical and electronic faults in electronic over hydraulic systems
  • procedures for accessing and interpreting scan tool system data, including: • diagnostic trouble codes (DTCs), including: - conditions that set the DTCs - conditions for running DTCs • live data • freeze frame data • waveforms
  • procedures for documenting and reporting the analysis and evaluation process
  • requirements of Australian Design Rules (ADRs) relating to electronic over hydraulic systems

Foundation skills

  • Learning skills: apply learning and processes to different situations.
  • Reading skills: research, organise and interpret technical information relating to electronic over hydraulic systems.
  • Writing skills: legibly and accurately fill out workplace documentation when reporting failure analysis findings • document and complete reports.
  • Numeracy skills: use mathematical ideas and techniques to complete measurements, calibrate testing equipment and present analytical results.
  • Planning and organising skills: plan own work requirements and prioritise actions to achieve required outcomes and ensure tasks are completed within workplace timeframes.
  • Technology skills: use specialised electronic over hydraulic system diagnostic equipment.

Unit content sourced from training.gov.au — © Commonwealth of Australia, licensed under CC BY 4.0. Auditori is not affiliated with the Department of Employment and Workplace Relations.

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Questions about assessing AURETA001

What does an assessment tool for AURETA001 need to cover?

To satisfy the Principles of Assessment and Rules of Evidence, an assessment for AURETA001 needs to address all 40 unit components: 5 elements with 21 performance criteria, 2 performance evidence requirements, 11 knowledge evidence requirements, and the foundation skills. A coverage matrix mapping each question and task to these components is what an auditor looks for.

How does Auditori generate an assessment tool for AURETA001?

Auditori pulls the current release of AURETA001 from training.gov.au and generates a complete package: candidate assessment, assessor guide with model answers and observation criteria, and a coverage matrix mapping every component. A suitably qualified person then reviews and approves the draft in a built-in workflow — consistent with ASQA's guidance on AI use in VET — before export as branded PDF and editable Word.

Is the first assessment tool really free?

Yes. Every new account includes one free credit — enough to generate the complete assessment tool for AURETA001 — with no card and no subscription required. After that it's pay-as-you-go per unit.

Can I check my existing AURETA001 assessment instead of generating a new one?

Yes — upload your existing assessment or learner guide and Auditori maps it against every element, performance criterion, PE and KE of AURETA001, showing exactly what's covered and what's missing. Mapping costs a quarter of a credit.

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