This article was posted 02/24/2010 and is most likely outdated.

Eagle GFCI Follow Up
 

 

Topic - Safety
Subject - Eagle GFCI Receptacle Problems - A Follow Up

February 24, 2010
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Eagle GFCI Analysis
A Follow-up

Image1 On December 30, 2009 we sent out a newsletter titled Eagle GFCI Receptacle Problems in which Anthony requested information from anyone who could help regarding a faulty/burnt GFCI receptacle he discovered in his home.

In addition to generating more comments than any other newsletter that month, it caught the attention of Darron Lacey who leads the engineering group for Cooper Wiring Devices and who told Mike:
“My company puts quality as the number one priority. My goal in calling the electrician will be to determine the cause of failure and then respond to your web site in a more definitive manner. “ 

After the faulty receptacle was sent to Cooper Wiring Devices for analysis, Dan Fielder, Manager of Engineering Services reported on his findings in a letter to Anthony.

Summary: …evidence strongly suggests moisture was involved with this failure. Moisture and contaminates on a printed circuit board can lead to current leakage, carbon tracking and possible arcing. As noted the device was under an overhang and had a weatherproof cover, however moisture infiltration is very difficult to inhibit as it can occur in numerous ways such as wind blown rain, extreme humidity, pressure washing condensation……increasing the importance of keeping GFCIs dry with weatherproof enclosures, proper gaskets and caulking. Click here to read the complete analysis.

Anthony’s comment: I think the industry really needs to address a solution for this problem. Ironically the device is required in locations that are subject to moisture and the presence of a source of water. In southwest Florida where our humidity averages somewhere near 100% during our rainy season and usually near 80% the rest of the year, it is nearly impossible to keep the moisture out. We also have blowing rain. Maybe it would be a good practice to install the GFCI device on the inside of the building and use the feed through feature to protect the outlets on the exterior of the building?

 

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Comments
  • At my former position as Design and Production Engineer for an international boat manufacturer, we tested and used products designed for marine anti-corrosion and water repellent protection. Due to this exact potential problem, we applied a spray product on all accessible electrical connections, electronic boards, and terminals. Radios too. We installed only GFCI receptacles that were 'marinized' by factory application of such a protectant on the electronic board. And we paid for the privilege.

    I still field-apply a spray from CorrosionX on anything at home wherever accessible; including soaking accesible portions of GFCI's. It's a dialectric and safe on boards, lighting controls, timers, sprinkler controllers, anything you can get it onto is protected from moisture-produced current leakage, tracking, etc. Would be a nice added feature if available pre-applied at the factory at home supply stores and for electricians as an upgraded Spec-Grade model.

    R.Sanders, LEED AP
  • Reply from: luis guzman   
    me gustaria saber que producto puedo aplica para garantizar que las aplicaciones queden portegidas contra la corrocion


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