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Evidence Guide: UEEEC0011 - Design and develop electronics/computer systems projects

Student: __________________________________________________

Signature: _________________________________________________

Tips for gathering evidence to demonstrate your skills

The important thing to remember when gathering evidence is that the more evidence the better - that is, the more evidence you gather to demonstrate your skills, the more confident an assessor can be that you have learned the skills not just at one point in time, but are continuing to apply and develop those skills (as opposed to just learning for the test!). Furthermore, one piece of evidence that you collect will not usualy demonstrate all the required criteria for a unit of competency, whereas multiple overlapping pieces of evidence will usually do the trick!

From the Wiki University

 

UEEEC0011 - Design and develop electronics/computer systems projects

What evidence can you provide to prove your understanding of each of the following citeria?

Identify electronics/computer system project requirements

  1. Work health and safety (WHS)/occupational health and safety (OHS) processes and workplace procedures for a given work area are identified, obtained and applied
Work health and safety (WHS)/occupational health and safety (OHS) processes and workplace procedures for a given work area are identified, obtained and applied

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Hazards are identified, WHS/OHS risks are assessed, control measures and workplace procedures are implemented in preparation for work

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Scope of proposed project design/development work is determined from design brief in consultation with appropriate person/s

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Project work is planned to meet scheduled timelines in consultation with others involved on the worksite

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Resources required for work are selected based on compatibility with project requirements and budget constraints

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Tools, equipment and testing devices needed to carry out work are obtained and checked for correct operation and safety

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Design and develop electronics/computer system

  1. WHS/OHS risk control work measures and workplace procedures are followed
WHS/OHS risk control work measures and workplace procedures are followed

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Electronics/computer devices and systems and industry standards are applied to the design specifications

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Alternative designs are considered based on the design brief

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Safety, functional and budget considerations are incorporated in the design

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Electronic/computer hardware and/or software systems are constructed and tested for compliance with design brief and regulatory requirements

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Electronic/computer faults are rectified and retested to ensure effective operation of design

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Project design specifications are documented for submission to appropriate person/s for approval

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Solutions to unplanned situations are implemented in accordance with workplace policy

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Obtain approval for electronics/computer system

  1. Electronic/computer system design is presented and explained to client representative and/or relevant person/s
Electronic/computer system design is presented and explained to client representative and/or relevant person/s

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Modifications to design are negotiated with relevant person/s within the constraints of workplace policy

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Final project design is documented and approval obtained from appropriate person/s

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Quality of work is monitored against performance agreement and/or workplace or industry standards

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Assessed

Teacher: ___________________________________ Date: _________

Signature: ________________________________________________

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Instructions to Assessors

Required Skills and Knowledge

Evidence required to demonstrate competence in this unit must be relevant to and satisfy all of the requirements of the elements, performance criteria and range of conditions on at least two separate occasions and include:

applying relevant work health and safety (WHS)/occupational health and safety (OHS) requirements, including:

implementing workplace procedures and practices

using risk control measures

constructing and testing prototype hardware and/or software according to design brief and regulatory requirements

dealing with unplanned events/situations in accordance with workplace procedures in a manner that minimises risk to personnel and equipment

developing outlines/plans of alternative designs

developing the design within the safety and functional requirements and budget limitations/constraints

documenting and presenting design effectively

obtaining final design approval

successfully negotiating design alteration requests

verifying compliance of the design against the final brief

identifying and preparing to design and develop electronic/computer system in accordance with design brief.

Evidence required to demonstrate competence in this unit must be relevant to and satisfy all of the requirements of the elements, performance criteria and range of conditions and include knowledge of:

connection of test/measuring devices into a circuit

design objectives (specifications) to satisfy a customer attribute/brief

design plan and solution synthesis (by selecting or creating the solution)

electronic measuring instruments

engineering design process

functional and non-functional requirements of a customer project

relevant job safety assessments or risk mitigation processes, including:

risks and control measures associated with low voltage (LV) machines

relevant industry standards, regulations, codes of practice and WHS/OHS legislated requirements

relevant manufacturer specifications

relevant workplace documentation

relevant workplace policies and procedures

validations of the resulting design against the customer's needs.

Range Statement

Range is restricted to essential operating conditions and any other variables essential to the work environment.

Non-essential conditions may be found in the UEE Electrotechnology Training Package Companion Volume Implementation Guide.

Designing and developing a medium-sized electronics/computer systems project includes designing, modifying, installing and applying the following:

at least four digital andfour analogue inputs and outputs (I/O), and at least one human-machine interface (HMI)