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Electrical Arcing and Tracking? Not if You Can Prevent It.

Posted on 8/20/24 9:54 AM

When searching for cord-locking mechanisms to prevent accidental or abrupt disconnects from IEC 60320 power inlets such as the IEC 60320 C13, beware of the type of metal locking mechanisms (one unfortunately approved by a well-known agency) that tightly clamp onto notched grounding blades, a tight metal-on-metal retention resulting in a dangerous loss of material on the grounding blade. This friction, similar to striking a flint to produce sparks, creates carbonized buildup around the terminal after repeated disconnects, which could lead to an electrical fire through repeated arcing. Carbonized buildup may also appear on alloy pins if those pins are molded a fraction too close together, the narrow space between them providing small enough air gaps for the current to jump from one pin to the next. This would also apply to metal screws on the plug face of rewirable cord sets.

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Topics: electrical safety, IEC 60320, connector locks

Not All Cord-locking Mechanisms Are Created Equal

Posted on 6/13/22 4:15 PM

Easy-to-disconnect connector locks and other cord-locking mechanisms are convenient tools for anchoring cords to inlets to prevent abrupt disconnects, but not all manufactured versions are created equal. Avoid easy-to-disconnect locking mechanisms which gouge or shave away the ground blade of the inlet during abrupt disconnects or improper usage and removal.

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Topics: electrical safety, power cord, connector locks, connectors

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