UEEIC0047 — Use instrumentation drawings, specifications, standards and equipment manuals
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What an assessment for UEEIC0047 must cover
92 assessable components: 3 elements (12 performance criteria), 9 performance evidence and 71 knowledge evidence requirements. 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 instrumentation drawings, specifications, industry standards and equipment manuals
- 1.1Work health and safety (WHS)/occupational health and safety (OHS), risk control measures and workplace procedures are followed
- 1.2Need for instrumentation drawings, specifications, industry standards or equipment manuals is determined for the work to be undertaken
- 1.3Instrumentation drawings, specifications, industry standards or equipment manuals required for the work to be undertaken are obtained in accordance with workplace procedures
2 Use instrumentation drawings, specifications, industry standards and equipment manuals
- 2.1Instrumentation drawings, specifications, industry standards and/or equipment manuals are selected appropriate to the work being undertaken
- 2.2Instrumentation drawings, specifications, industry standards and equipment manuals are interpreted using information from process controls, instrumentation drawing layouts, conventions and symbols
- 2.3Dimensions are extracted and applied from drawings and diagrams for application to work being undertaken
- 2.4Location of equipment is determined from instrumentation drawings and specifications
- 2.5Connections between pneumatic, hydraulic and electrical equipment are determined from instrumentation drawings and specifications
- 2.6Equipment manuals are reviewed to ascertain content, format and located information are relevant to the work to be undertaken
3 Convey instrumentation information using drawings and diagrams
- 3.1Drawing conventions are used in freehand drawing layouts to convey instrumentation information and ideas to others involved in the work to be undertaken
- 3.2Instrumentation drawing conventions are used to neatly correct freehand original job drawing to show final ‘as-installed’ arrangement
- 3.3Corrected drawings are forwarded to appropriate person/s in accordance with workplace procedures
Performance evidence
- applying relevant work health and safety (WHS)/occupational health and safety (OHS) requirements, including applying risk control measures
- conveying instrumentation information and ideas using drawings and diagrams
- determining connections between pneumatic, hydraulic and electrical equipment
- determining location of equipment from instrumentation drawings and specifications
- identifying and using instrumentation drawings, specifications, industry standards and equipment manuals
- interpreting instrumentation drawings, specifications, industry standards and equipment manuals for process controls and instrumentation drawing layouts, conventions and symbols
- sketching of instrumentation and control drawings
- using instrumentation drawings, diagrams and manuals
- using workplace conventions in freehand drawings
Knowledge evidence
- industrial instrumentation. including:
- introduction to the purposes of measurement in industrial processes
- instrument control loops
- types of measurement in these processes
- local and remote measurement
- measurement signal methods
- signal transmissions electrical standards
- signal transmissions pneumatic standards
- flow, temperature, pressure and other appropriate measurements
- identification and purpose of instruments measuring processes directly and those measuring indirectly
- instrumentation and control components: sensors, transducers, converters and transmitters
- instrument standards, including:
- instrumentation standards
- relationship between standards
- using standards
- fluids in process piping colour coding
- instruments symbols
- instrumentation terminology and International System of Units (SI), including:
- SI base units
- SI derived units
- scientific and engineering notation
- SI prefixes
- instrumentation metric units
- non-standard SI units - kg/cm2, and so on
- conversion of units
- instrumentation terminology:
- span
- range
- accuracy
- precision
- errors
- zero
- repeatability
- sensitivity
- hysteresis
- calibration of link and lever instruments, including:
- principles of levers and links and calibration of indicator recorder instrument
- calibration terms
- calibrate a link and lever instrument
- interpret calibration data so as to identify the types of error displayed by an instrument and whether the instrument is within its specified accuracy
- interpretation of graphs and tables associated with instrumentation
- instrumentation safe working practices, including:
- identification of instrumentation and control hazards
- risk control measures for instrumentation work
- risk assessment
- instrumentation drawings, diagrams and manuals, including:
- electrotechnology drawing symbols for instrumentation and control (electrical/electronic circuits, instrument circuits/diagrams, programmable logic controller (PLC) diagrams, pneumatic and hydraulic)
- standards used in instrumentation drawings (ISA, ASME, Australian Standards (AS), and SAMA)
- drawings used in instrumentation - schematic, single line, wiring, PLC diagrams, process flow diagrams - brief instrument information, process loop diagrams - details, terminals and types of instruments
- manufacturers data sheets, manuals, specifications and test procedures - instrumentation manuals, catalogues and drawings, including:
- interpretation of the specifications contained within instrumentation manuals, catalogues and drawings
- interpretation of the test procedures contained within instrumentation manuals, catalogues and drawings
- comparison of data presented in different forms for the same equipment.
- identification of data relevant to instrumentation from a range of publicity material
- extraction of information such as calibration, testing or installation procedures from manuals, specification sheets and drawings
- quantity take-offs and parts lists, including:
- part numbers for components, assemblies and equipment
- parts list for a specified project or installation from manuals, catalogues, specifications and drawings
- list of equipment, required to undertake a specified project or installation, from manuals, catalogues, specifications and drawings
- identification and extraction of a part number for an actual sample component or part from a manual, catalogue, specification and/or drawing
- sketching of instrumentation and control drawings, including:
- sketching a schematic circuit diagram from a given circuit board layout diagram, wiring or installation drawing and installation or modification of a specified project using information contained within manuals
- sketching a part or equipment layout needed to perform a specified task, such as installation or modification, from given manuals, catalogues, specifications and drawings
- principles of process control
- relevant instrument industry standards including fluids in process piping colour coding and instrument symbols
- relevant manufacturer specifications
- relevant safe work statements (SWMS)/job safety assessments or risk mitigation processes, including risk control measures and instrumentation safe working practices
- relevant WHS/OHS legislated requirements
- relevant workplace documentation, including catalogues, drawings, manufacturer’s data sheets, manuals, specifications and test procedures
- instrumentation manuals, catalogues and drawings
- relevant workplace policies and procedures.
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 UEEIC0047
What does an assessment tool for UEEIC0047 need to cover?
To satisfy the Principles of Assessment and Rules of Evidence, an assessment for UEEIC0047 needs to address all 92 unit components: 3 elements with 12 performance criteria, 9 performance evidence requirements, 71 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 UEEIC0047?
Auditori pulls the current release of UEEIC0047 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 UEEIC0047 — with no card and no subscription required. After that it's pay-as-you-go per unit.
Can I check my existing UEEIC0047 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 UEEIC0047, showing exactly what's covered and what's missing. Mapping costs a quarter of a credit.
Related units
- UEEIC0001 — Analyse complex electronic circuits controlling fluids
- UEEIC0002 — Assemble, enter and verify operating instructions in microprocessor equipped devices
- UEEIC0003 — Assist in commissioning process and instrumentation control systems
- UEEIC0004 — Calibrate, adjust and test measuring instruments
- UEEIC0005 — Configure and maintain industrial control system networks
- UEEIC0006 — Design and configure Human-Machine Interface (HMI) networks
- UEEIC0007 — Design and use advanced programming tools, PC networks and HMI Interfacing
- UEEIC0008 — Design electronic control systems
- UEEIC0009 — Develop an electrical integrated system interface for access through a touch screen
- UEEIC0010 — Develop and test code for microcontroller devices
- UEEIC0011 — Develop electrical integrated systems
- UEEIC0012 — Develop structured programs to control external devices
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