In electrical systems, high temperatures normally indicate an impending trouble. This can result from unnecessarily high resistance, short circuits, poor connections, ground fault or any other failing components common with electrical equipment. The problem must be pinpointed and rectified early enough as complete failures are normally expensive and at times can results to catastrophes. Instead of struggling to find the incipient failures through visual and other manual inspection methods which are costly, time consuming and may not pinpoint the problem, engineers are now turning to electrical infrared inspection that has proved to be the most effective alternative.
Through this method of inspection, it is much easier to locate the underlying problem reducing downtime and equipment damage. It also come with additional benefits such as prevention of catastrophic failures well in advance, help establish repair priorities, improves preventive and maintenance efficiency and provides for testing under load hence avoiding costly shutdowns.
Excessive heat is normally an indication of the underlying problem that must be handled before a disaster. Other than mechanical damages to power lines and other electrical devices, there are several causes of overheating but the common ones include faulty assembly, loose connections, wear and tear, ground faults, contamination and corrosion. Most of these results from exposure to physical elements and thus calls for periodic inspection.
The other benefit of this survey is that there is no need to shut down the system. It is a non-contact a nondestructive form of testing (NDT) that allows for work continuation without interrupting system production. The equipment get inspected under normal loads and the normal operating condition by scanning devices to reveal the existing and emerging problems before it is too late.
This is the best way in terms of cost and time to inspect almost all electrical components. The most common components that need regular inspection include transformers, switchgear, bus ducts, power correcting banks, variable frequency drives, the disconnects, distribution centers and panels, sub-feed panels, the motor control centers, the uninterruptable power supplies, the lighting and the receptacle panels among several other components.
This form of inspection is endorsed and recommended by several associations and regulatory bodies such as the InterNational Electrical Testing Association and National Fire Protection Association among several others. It has 1 to 4 returns on investment for both the labor and material used. It is this cost benefit analysis that make is a viable business for many companies that now offer this service.
This form of testing and survey therefore saves engineers millions of dollars improving profitability and significantly decrease the expenses in the areas of operations, testing and maintenance in general. With this convenience and financial benefits, this is a technology you cannot afford to miss in this century if you think of remaining in business.
Part of the decision to use this cutting edge infrared detection technology requires that the companies you choose for your inspection job are certified. They should have experienced engineers for the job with a proven work record. With the correct inspectors, you will be able to significantly reduce unscheduled power outages and increase energy efficiency, safety and dependability in general.
Through this method of inspection, it is much easier to locate the underlying problem reducing downtime and equipment damage. It also come with additional benefits such as prevention of catastrophic failures well in advance, help establish repair priorities, improves preventive and maintenance efficiency and provides for testing under load hence avoiding costly shutdowns.
Excessive heat is normally an indication of the underlying problem that must be handled before a disaster. Other than mechanical damages to power lines and other electrical devices, there are several causes of overheating but the common ones include faulty assembly, loose connections, wear and tear, ground faults, contamination and corrosion. Most of these results from exposure to physical elements and thus calls for periodic inspection.
The other benefit of this survey is that there is no need to shut down the system. It is a non-contact a nondestructive form of testing (NDT) that allows for work continuation without interrupting system production. The equipment get inspected under normal loads and the normal operating condition by scanning devices to reveal the existing and emerging problems before it is too late.
This is the best way in terms of cost and time to inspect almost all electrical components. The most common components that need regular inspection include transformers, switchgear, bus ducts, power correcting banks, variable frequency drives, the disconnects, distribution centers and panels, sub-feed panels, the motor control centers, the uninterruptable power supplies, the lighting and the receptacle panels among several other components.
This form of inspection is endorsed and recommended by several associations and regulatory bodies such as the InterNational Electrical Testing Association and National Fire Protection Association among several others. It has 1 to 4 returns on investment for both the labor and material used. It is this cost benefit analysis that make is a viable business for many companies that now offer this service.
This form of testing and survey therefore saves engineers millions of dollars improving profitability and significantly decrease the expenses in the areas of operations, testing and maintenance in general. With this convenience and financial benefits, this is a technology you cannot afford to miss in this century if you think of remaining in business.
Part of the decision to use this cutting edge infrared detection technology requires that the companies you choose for your inspection job are certified. They should have experienced engineers for the job with a proven work record. With the correct inspectors, you will be able to significantly reduce unscheduled power outages and increase energy efficiency, safety and dependability in general.
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