Isolation Procedures for Safe Working on Electrical Systems and Equipment by the JIB | solation Procedures for Safe Working on Electrical Systems and Equipment
This chart shows the safe isolation procedure that you should use when working on electrical systems and equipment.
You'll receive a printed copy of this from your Training Provider, but it's also here as a handy reference to keep electronically.
THE RULES OF SAFE ISOLATION ARE:
Obtain permission to start work (a Permit may be required in some situations)
Identify the source(s) of supply using an approved voltage indicator or test lamp
Prove that the approved voltage indicator or test lamp is functioning correctly
Isolate the supply(s)
Secure the isolation
Prove the system/equipment is DEAD using an approved voltage indicator or test lamp
Prove that the approved voltage indicator or test lamp is functioning correctly
Put up warning signs to tell other people that the electrical installation has been isolated
Once the system/equipment is proved DEAD, work can begin
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If you want to see some LOTO accessories, equipment and devices used to ensure compliance with standard safe identification, shutdown and maintenance of a defect piece of equipment, than read through this slide deck.
Creative Safety Supply shares how you best to proceed with a Lockout Tagout scenario, ensuring the highest level of safety for your workers and employees. Are you following these standardized safe steps? https://www.lean-news.com/tools-continuous-improvement/
If you want to see some LOTO accessories, equipment and devices used to ensure compliance with standard safe identification, shutdown and maintenance of a defect piece of equipment, than read through this slide deck.
A fresh new look at Lock-Out & Tag-Out (LOTO) Regulation,
as an Isolation Measure to control Hazardous Energy
in respective to other successive Control Measures.
High Voltage Electrical Compliance and Safety Operating ProceduresLiving Online
Employees performing operations and maintenance work on high voltage electrical transmission and distribution systems are exposed to a greater hazard than most other employees. In industry the majority of safety rules and regulations originated from the painful experience of workers who suffered serious injuries or even death. Therefore, rules should not be seen as a means of limiting our freedom, but should rather be looked upon as valuable advice to ensure safe working conditions. This training workshop covers the basic procedures in working safely on high voltage systems including the aspects of safety management and safety auditing.
The workshop aims to impart a thorough overall knowledge of working safely on high voltage installations and the various related topics including:
Safety legislation
Electrical hazards and safety management
Technical aspects of electrical safety
Safety in operation and maintenance
Importance of periodic inspection of electrical installations for ensuring safety
Safety audits to detect shortcomings
The workshop will include hands-on practice in safety documentation such as development of switching plans and electrical access permits of different types.
WHO SHOULD ATTEND?
Design engineers
Electrical operators
Maintenance technicians
Plant electrical engineers
Project engineers
Testing and commissioning engineers and technicians
MORE INFORMATION: http://www.idc-online.com/content/high-voltage-electrical-compliance-and-safety-operating-procedures-14
Regards, Mr. SYED HAIDER ABBAS
MOB. +92-300-2893683 MBA in progress,NEBOSH IGC, IOSH, HSRLI, NBCS,GI,FST,FOHSW,ISO 9001, 14001,
'BS OHSAS 18001, SAI 8000, Qualified .
Every year, more than 300 deaths and 4000 injuries are recorded as a result of workplace electrical hazard. Find out, all you need to know about workplace hazards and basic electrical safety practices.
Installation Operation & Maintenance of 33kV & 11kV SwitchgearSheikh Nazmul Islam
In-Country Training On Operation, Maintenance, Protection & Control of 33/11 kV Substation Project Name: Design, Supply, Installation, Testing & Commissioning of 33/11 kV sub-stations with source end feeder bays. Contract No: BREB/UREDS/W-01A-001/02/2016-2017 BREB/UREDS/W-01A-002/03/2016-2017 BREB/UREDS/W-01A-004/04/2016-2017
A fresh new look at Lock-Out & Tag-Out (LOTO) Regulation,
as an Isolation Measure to control Hazardous Energy
in respective to other successive Control Measures.
High Voltage Electrical Compliance and Safety Operating ProceduresLiving Online
Employees performing operations and maintenance work on high voltage electrical transmission and distribution systems are exposed to a greater hazard than most other employees. In industry the majority of safety rules and regulations originated from the painful experience of workers who suffered serious injuries or even death. Therefore, rules should not be seen as a means of limiting our freedom, but should rather be looked upon as valuable advice to ensure safe working conditions. This training workshop covers the basic procedures in working safely on high voltage systems including the aspects of safety management and safety auditing.
The workshop aims to impart a thorough overall knowledge of working safely on high voltage installations and the various related topics including:
Safety legislation
Electrical hazards and safety management
Technical aspects of electrical safety
Safety in operation and maintenance
Importance of periodic inspection of electrical installations for ensuring safety
Safety audits to detect shortcomings
The workshop will include hands-on practice in safety documentation such as development of switching plans and electrical access permits of different types.
WHO SHOULD ATTEND?
Design engineers
Electrical operators
Maintenance technicians
Plant electrical engineers
Project engineers
Testing and commissioning engineers and technicians
MORE INFORMATION: http://www.idc-online.com/content/high-voltage-electrical-compliance-and-safety-operating-procedures-14
Regards, Mr. SYED HAIDER ABBAS
MOB. +92-300-2893683 MBA in progress,NEBOSH IGC, IOSH, HSRLI, NBCS,GI,FST,FOHSW,ISO 9001, 14001,
'BS OHSAS 18001, SAI 8000, Qualified .
Every year, more than 300 deaths and 4000 injuries are recorded as a result of workplace electrical hazard. Find out, all you need to know about workplace hazards and basic electrical safety practices.
Installation Operation & Maintenance of 33kV & 11kV SwitchgearSheikh Nazmul Islam
In-Country Training On Operation, Maintenance, Protection & Control of 33/11 kV Substation Project Name: Design, Supply, Installation, Testing & Commissioning of 33/11 kV sub-stations with source end feeder bays. Contract No: BREB/UREDS/W-01A-001/02/2016-2017 BREB/UREDS/W-01A-002/03/2016-2017 BREB/UREDS/W-01A-004/04/2016-2017
Low voltage systems are comprised of electrical equipment that uses 50 volts (V) of electricity or less. Common low voltages include 48 V, 24 V, and 12 V. Residential examples of low voltage systems include doorbells, garage door openers, home security sensors, thermostats, and landscape lighting.
Commercial low voltage systems cover a wide array of categories, from fire protection to security systems to sound and communication. State Systems is a proven leader in the analysis, design, installation, and service of a full range of low voltage electrical systems. Consider some of the options we offer to help you determine what systems your Mid-South business needs the most. LOW VOLTAGE FIRE PROTECTION SYSTEMS
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Fire suppression systems: This automatic equipment senses when a fire is present and douses it with dry chemicals, wet chemicals, liquid, gas, or foam to put out the fire without using water. You may need a fire suppression system if you have hazardous materials or delicate equipment onsite.
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Isolation procedures for safe working on electrical systems and equipment by the jib
1. Isolation Procedures for Safe Working
on Electrical Systems and Equipment
This instruction chart illustrates the safe isolation procedure to
be applied when working on electrical systems and equipment.
Isolation means the cutting off of the electrical supply to an electrical installation
for safety reasons.This is carried out by operating devices that have been provided
within the electrical installation for isolation to make the electrical system, or part
of it, DEAD.
Once the electrical supply has been isolated, the means of isolation must then be
secured so that the system/equipment cannot be inadvertently made live.
It is important that all sources of electrical supply are isolated and the system/
equipment proved to be DEAD before work is carried out.
The Electricity at Work Regulations requires the isolation of electrical equipment
and systems to prevent danger. All electrical systems or equipment must be
DEAD before installation or maintenance is carried out. A system is any part of
an electrical installation from the source of supply to the equipment installed.
The regulations also state that no person shall take part in any work activity
unless they possess the necessary technical knowledge and experience in order to
prevent danger, or is under suitable supervision.
An approved voltage indicator or test lamp must comply with the Health and
Safety Executive’s guidance note GS38. The approved voltage indicator or test
lamp must be “proved” using a known live supply or proving unit before and after
use to show it is working correctly.
NOTE: Both the Electricity atWork Regulations and the Health and Safety
Executive’s guidance note GS38 should be referred to with this guidance.
THE RULES OF SAFE ISOLATION ARE:
• Obtain permission to start work (a Permit may be required in
some situations)
• Identify the source(s) of supply using an approved voltage
indicator or test lamp
• Prove that the approved voltage indicator or test lamp is
functioning correctly
• Isolate the supply(s)
• Secure the isolation
• Prove the system/equipment is DEAD using an approved
voltage indicator or test lamp
• Prove that the approved voltage indicator or test lamp is
functioning correctly
• Put up warning signs to tell other people that the electrical
installation has been isolated
• Once the system/equipment is proved DEAD, work can begin