Low Voltage Power Supply Safe Work Method Statement

Low Voltage Power Supply Safe Work Method Statement (SWMS Template) delivered in Microsoft Word format for easy editing.

Low Voltage Power Supply Safe Work Method Statement

Low Voltage Power Supply Safe Work Method Statement (SWMS)

Whether you need to get on site to start work, looking to create a safe work environment or pitching for that next big contract or government tender - the Low Voltage Power Supply Safe Work Method Statement is easy to customise, easy to use and integrate into your current Safety Management System. If you don't have a Safety Management System, we need to talk, seriously, and you don't need to be carrying that level of risk exposure in your business - we can help.

Look, we understand that business should be rewarding and not consumed by tedious red tape. The Safe Work Method Statement Template we create is in an easy to understand format, while at the same time being some of the highest quality documents in the industry. Our SWMS documents get you onsite, save you loads of time and are very user-friendly. This way, you can get on with doing what you do best.

The Low Voltage Power Supply Safe Work Method Statement (SWMS) covers the following Job Steps, including potential hazards, control measures and risk ratings:

  1. Planning and preparation
  2. Training and capabilities
  3. Assess onsite conditions
  4. Set up work area
  5. Temporary Traffic Control (TMP)
  6. Delivery of materials and equipment
  7. Preparation
  8. Specific precautions
  9. Use
  10. Trouble shooting
  11. On completion

The Low Voltage Power Supply Safe Work Method Statement, includes;


Risk Assessment Matrix | Hierarchy of Controls | PPE | Emergency Response

Your Low Voltage Power Supply Safe Work Method Statement is ready to be used in three easy steps:

  1. Add your company logo and details to the SWMS Template.
  2. Identify site specific risks.
  3. Address any site specific risks and add them to your SWMS Template.

Your SWMS is now read to use, and may also be used as training materials for work related activities such as Workplace Inductions or WHS-OHS Toolbox Meeting Talks.

Bluesafe Quick Tips:

  1. Connect only one power tool to each.
  2. Low Voltage Electrical Installation Isolation Access Safety Tips:
  3. Cover power tools to protect them from the rain when they are not in.

Low Voltage Power Supply Safe Work Method Statement

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View a Safe Work Method Statement Example

See an example of a Safe Work Method Statement Template below. All our SWMS Template documents are comprehensive in nature, easy to use, and are a huge time saver. Our Safe Work Method Statement Templates are quick and easy to customise to your specific business or operation and are perfectly suited for every day use, for larger contracts and tenders right through to qualifying for contractor management platforms such as CM3.

What is a Safe Work Method Statement?

A SWMS is a document that outlines the high-risk construction work activities that will be performed at a workplace, the hazards that will be present as a result of these activities, and the controls that will be implemented to mitigate the risks.

A single SWMS can be utilised for numerous high-risk construction work activities, such as employing powered mobile plant, working at heights of more than 2 metres, and working near to a road that is used by traffic other than pedestrians.

A SWMS is an administrative control that is used to support higher-order controls, such as engineering controls, that are designed to remove or reduce hazards to health and safety.

A SWMS differs from other documentation such as a Job Safety Analysis or a Safe Operating Procedure in that it focuses on specific jobs or processes. A SWMS isn't meant to be a procedure; rather, it's a tool for supervisors and workers to check and monitor the workplace control measures. For high-risk work activities, a PCBU (Person Conducting a Business or Undertaking)  must prepare a Safe Work Method Statement (SWMS) or check that one has been prepared before starting work. It is important to note that before any work process has started, a SWMS must be prepared.

A PCBU, on the other hand, also must manage health and safety hazards by eliminating or reducing them as much as possible. Before beginning any work on a project, the principal contractor must also obtain a copy of the SWMS.

What information does a Safe Work Method Statement need to contain?

A Safe Work Method Statement should identify high-risk work and any specify hazards related to high-risk construction work as well as any health and safety risks. The SWMS should describe the risk-control measures to be implemented, monitored, and reviewed and also should describe how the risk-control measures will be effective at reducing or eliminating the risk, and how they will be implemented, monitored, and reviewed.

A Safe Work Method Statement should be concise and focus on outlining the specific risks identified for the high-risk work to be performed, as well as the control measures to be implemented to ensure that the work is completed safely.

A long and overly complex Safe Work Method Statement which could be difficult to comprehend, implement and monitor or review may be confusing for workers to mentally digest and therefore is not ideal in helping to reduce or eliminate risks in the workplace. It is imperative that workers, and especially those who do not speak English, are able to understand the Safe Work Method Statement. Consider having pictures or diagrams added to the SWMS as a more effective way of presenting information contained within the SWMS.

The SWMS should also contain other regulatory requirements to protect health and safety of all personnel, such as controlling noise exposure and manual job risks. Also, keep in mind that evidence of a completed risk assessment may be required by the regulator or for auditing reasons if the Safe Work Method Statement is based on a workplace-specific risk assessment.

Who's Responsible for creating the Safe Work Method Statement?

In collaboration with workers who will be directly engaged in the activity, the person responsible for carrying out the work is usually best equipped to prepare the SWMS document. In most cases, this means that a Safe Work Method Statement is created by the builder for his or her employees, or by the subcontractor for their employees.

To establish who is in the best position to prepare the Safe Work Method Statement, the principle contractor, builder, and/or subcontractors should decide who will take responsibility for the SWMS.

It's also a requirement that all managers, contractors, supervisors, and workers be involved in the creation of a Safe Work Method Statement. Workers must be consulted so that they understand the SWMS in depth and what they must do to establish and maintain risks and implement control measures to manage the risk. Sharing information and utilising workers' knowledge and experience may also aid in ensuring that the task is completed in accordance with the SWMS.

If your workplace has a Health and Safety Representative, they should also be contacted while creating a Safe Work Method Statement.

What does the principal contractor's responsibility entail?

Before beginning work, a principal contractor must take all reasonable steps to obtain a SWMS from any contractor performing high-risk work. If no SWMS exists, the principal contractor must arrange for one to be created, for example by the contractor or subcontractor.

A general contractor should establish plans to ensure that high-risk work is carried out safely and in compliance with the Safe Work Method Statement. This can be done by keeping an eye on how the SWMS is being implemented on the ground.

The principal contractors' WHS management plan must also include detailed arrangements for collecting, assessing, monitoring, and reviewing the SWMS, according to the WHS Regulations.

How to Write a Safe Work Method Statement

If you're looking to write your own Low Voltage Power Supply Safe Work Method Statement, the first step is to create the document as a Safe Work Method Statement Template. This way, you can use the same SWMS Template and then adjust the document for each different low voltage power supply project as needed, making sure that your Low Voltage Power Supply SWMS Template addresses any site specific risks.

The fastest and most cost effective solution would be to purchase a Bluesafe Low Voltage Power Supply SWMS Template. However, if you decide to take the route of writing your own low voltage power supply SWMS.

There are some fundamental requirements and information which you may want to consider adding to your Low Voltage Power Supply SWMS such as:

  • Details of the person(s) responsible for making sure implementation, monitoring and compliance of the Low Voltage Power Supply SWMS as well as any reviews and modifications.
  • Any information detailing safety meetings or toolbox talks in relation to low voltage power supply work, scheduled in accordance with legislative requirements to first identify any site hazards where the low voltage power supply work is being conducted, secondly, communicate the risks and hazards and then take steps to eliminate or control each hazard in relation to the low voltage power supply work being done.
  • Any changes added to the Low Voltage Power Supply SWMS after an incident or a near miss. 

Note: The Low Voltage Power Supply SWMS must be kept and be available for inspection at least until the low voltage power supply work is completed. Where the Low Voltage Power Supply SWMS is revised, all versions of the SWMS Template should be kept. If a notifiable incident occurs in relation to the Low Voltage Power Supply Safe Work Method Statement, the Low Voltage Power Supply SWMS must be kept for a minimum of two years from the date of the incident.

Your Low Voltage Power Supply Safe Work Method Statement Template should list any high risk construction work, such as:

  • Does the low voltage power supply work outlined in the Low Voltage Power Supply SWMS involve a risk of a person falling more than 2meters?
  • Is the low voltage power supply work outlined in the Low Voltage Power Supply SWMS carried out on or near pressurised gas mains or piping?
  • Is the low voltage power supply work outlined in the Low Voltage Power Supply SWMS carried out on a telecommunication tower?
  • Is the low voltage power supply work outlined in the Low Voltage Power Supply SWMS carried out on or near chemical, fuel or refrigerant lines?
  • Does the low voltage power supply work outlined in the Low Voltage Power Supply SWMS involve demolition of an element of a structure that is load-bearing?
  • Is the low voltage power supply work outlined in the Low Voltage Power Supply SWMS carried out on or near energised electrical installations or services?
  • Does the low voltage power supply work outlined in the Low Voltage Power Supply SWMS involve demolition of an element related to the physical integrity of a structure?
  • Is the low voltage power supply work outlined in the Low Voltage Power Supply SWMS carried out in an area that may have a contaminated or flammable atmosphere?
  • Does the low voltage power supply work outlined in the Low Voltage Power Supply SWMS involve, or is likely to involve, disturbing asbestos?
  • Does the low voltage power supply work outlined in the Low Voltage Power Supply SWMS involve tilt-up or precast concrete?
  • Does the low voltage power supply work outlined in the Low Voltage Power Supply SWMS involve structural alteration or repair that requires temporary support to prevent collapse?
  • Is the low voltage power supply work outlined in the Low Voltage Power Supply SWMS carried out on, in or adjacent to a road, railway, shipping lane or other traffic corridor?
  • Is the low voltage power supply work outlined in the Low Voltage Power Supply SWMS carried out in or near a confined space?
  • Is the low voltage power supply work outlined in the Low Voltage Power Supply SWMS carried out in an area of a workplace where there is any movement of powered mobile plant?
  • Is the low voltage power supply work outlined in the Low Voltage Power Supply SWMS carried out in/near a shaft or trench deeper than1.5 m or tunnel involving use of explosives?
  • Is the low voltage power supply work outlined in the Low Voltage Power Supply SWMS carried out in areas with artificial extremes of temperature?
  • Is the low voltage power supply work outlined in the Low Voltage Power Supply SWMS carried out in or near water or other liquid that involves a risk of drowning?
  • Does the low voltage power supply work outlined in the Low Voltage Power Supply SWMS involve diving work? 

Your Low Voltage Power Supply Safe Work Method Statement should also identify any high-risk machinery or equipment in operation near the work site, such as:

Your Low Voltage Power Supply SWMS should also list any Personal Protective Equipment such as:

  • Foot Protection - Boots or closed in shoes
  • Hand Protection - Gloves
  • Head Protection - Hard hat or helmet
  • Hearing Protection - Ear plugs or ear muffs
  • Eye Protection - Safety glasses, goggles or face shields
  • Respiratory Protection - Face masks etc
  • Face Protection - Face shield, welding mask etc
  • High Visual Clothing
  • Protective Clothing - Overalls etc
  • Fall Protection - Safety harness, edge protection etc
  • Sun Protection - Sunscreen, hat etc
  • Hair and Jewellery Secured - Hair Net, etc

The Low Voltage Power Supply SWMS must be reviewed continually to ensure it remains effective and relevant. The Low Voltage Power Supply SWMS must be reviewed (and revised if necessary) if relevant control measures in relation to low voltage power supply work are revised. The review process should be carried out in consultation with workers (including contractors and subcontractors) who may be affected by the Low Voltage Power Supply and their health and safety representatives who represented that workgroup at the workplace.

When the Low Voltage Power Supply SWMS has been revised, the person conducting a business or undertaking must ensure: 

  1. All persons involved in the low voltage power supply work are advised that a revision has been made and how they can access the revised Low Voltage Power Supply SWMS;
  2. Persons who will need to change a work procedure or system as a result of the review are advised of the changes in a way that will enable them to implement their duties consistently with the revised Low Voltage Power Supply SWMS; and,
  3. Workers that will be involved in the low voltage power supply work are provided with the relevant information and instruction that will assist them to understand and implement the revised Low Voltage Power Supply SWMS.

When preparing your Low Voltage Power Supply SWMS, here are some topics you might want to also include to ensure you have covered as many risks and hazards as possible.

Planning and Preparation When Working With and Around Low Voltage Power Supply.

When writing your Low Voltage Power Supply SWMS, establish any policies, procedures and systems for working with Low Voltage Power Supply in consultation with the Principal Contractor and workers while being sure to establish:

  • Health and Safety guidelines for low voltage power supply work
  • Emergency plans and evacuation procedures for the Low Voltage Power Supply SWMS
  • Worker inductions for Low Voltage Power Supply
  • Toolbox talks (safety meetings) added to the Low Voltage Power Supply SWMS
  • Outline details of supervision of the site and workers on the Low Voltage Power Supply SWMS
  • Check all workers qualifications, permits and competencies for Low Voltage Power Supply operations
  • Ensure the Low Voltage Power Supply and any related equipment is functioning correctly
  • Hazard reporting procedures in place and added to the Low Voltage Power Supply SWMS
  • Incident reporting procedures in place and added to the Low Voltage Power Supply SWMS
  • Exclusion zones when conducting low voltage power supply work
  • Risk Assessment for TASK completed and noted on the Low Voltage Power Supply SWMS
  • Electrical NO GO ZONES identified, discussed and documented.

Assessment of Site Conditions

 Thoroughly assess the work site/area conditions when excavating and ensure that:

  1. A risk assessment of the low voltage power supply work is conducted
  2. Suitable access and adequate space to conduct low voltage power supply work safely
  3. Consult with all stakeholders on potential hazards and risks when conducting low voltage power supply work
  4. Consultation with all relevant workers and personnel for Low Voltage Power Supply SWMS details
  5. If conducting Low Voltage Power Supply at night, ensure there is adequate lighting
  6. Check that the work environment is suitable for low voltage power supply work

Low Voltage Power Supply Training and Worker Qualifications

Ensure all workers have the appropriate licenses in conducting Low Voltage Power Supply as well as any qualifications that may be required for various low voltage power supply projects before starting work. If White Cards are required, retain copies of all cards, licenses and qualifications of personnel.

All personnel must:

  1. Be trained and/or have received instructions on the Low Voltage Power Supply SWMS including all safety and emergency procedures.
  2. Be qualified, knowledgeable and competent in Low Voltage Power Supply operations and low voltage power supply work as well as all delegated tasks/responsibilities
  3. Be fully aware and understand the scope of work in relation to the Low Voltage Power Supply SWMS 

Below are some examples of some Control Measures to be implemented when creating your own Low Voltage Power Supply Safe Work Method Statement Template:

  • Before using, make sure the power supply has a current inspection test tag fitted.
  • Check the casing for damage. All terminals and connectors must be checked to ensure plastic knobs are securely fitted to brass nuts, and their threads are not damaged.
  • Male banana connectors on the apparatus being connected must be inspected to ensure good connections can be made, and that connectors are tight in their sockets.
  • Operation of all controls and switches must be smooth.
  • Never use equipment that is out of rest, damaged or is unserviceable in any way.
  • Worn connectors must be replaced.
  • Only a competent person must carry out the repairs.
  • A properly functioning safety switch must be used to power a low voltage power supply.
  • Before connecting components, make sure that power is switched off at the socket.
  • Before switching the power supply on, make sure that polarity, current type and voltage are proper.
  • Apparatus connected to unprotected power supply must not be used.
  • Never connect to live apparatus.
  • Make sure that the maximum voltage specified by the manufacturer of the apparatus in not exceeded by the voltage selected on the low voltage power supply.
  • Before connecting or disconnecting cables at the terminals, always switch off the power supply.
  • When power is turned on, always avoid contact with terminals, cables or live parts.
  • Never use higher than the recommended voltage.
  • Never handle live connections.
  • Before handling, always allow hot parts to cool.
  • Before touching any connection, make sure the power to unit is turned off.
  • Before checking safety fuse, switch the power off and unplug the power supply.
  • Check the reasons for a blown fuse. Make sure the power supply load is within limits.
  • Always replace fuse with the recommended amperage and the right type.
  • Do not handle live connections.
  • Never check fuse while power supply is turned on.
  • Make sure settings on the power supply are proper for the apparatus being connected.

National: View the Model Codes of Practice for Excavation Work on Safe Work Australia's website here.
Victoria: Victoria's Code of Practice for Excavation Work may be viewed on Work Safe Victoria's website here.