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Ergom KM 35/16 Copper Ring Terminal
The Ergom KM 35/16 copper ring terminal is a professional-grade component designed to provide secure and efficient electrical terminations for copper conductors. Engineered for high performance, this terminal is specifically built to accommodate cables with a cross-section of 35 mm² and features a 16 mm stud hole for robust mounting. Its construction ensures excellent electrical conductivity and mechanical stability, making it a reliable choice for demanding electrical infrastructure projects.
This copper ring terminal offers superior electrical properties due to the high-quality material used in its manufacturing, which minimizes resistance and prevents overheating at the connection point. The design provides a permanent and vibration-resistant termination, ensuring long-term reliability in various industrial and power distribution environments. Its precise dimensions allow for easy installation and consistent performance across multiple connection points, contributing to the overall safety and efficiency of the electrical system.
This terminal is designed exclusively for copper conductors and should not be used with aluminum wires to prevent galvanic corrosion. It is also not suitable for applications requiring high-temperature insulation or specialized environmental protection unless additional heat-shrink tubing or protective measures are applied.
To use the Ergom KM 35/16 terminal, first strip the insulation from the end of the 35 mm² copper cable to the appropriate length. Insert the conductor fully into the barrel of the terminal. Use a professional-grade crimping tool specifically calibrated for this size to ensure a cold-weld connection between the terminal and the wire. Once crimped, secure the terminal to the desired contact point using a 16 mm bolt or stud, ensuring the connection is tightened to the manufacturer's recommended torque specifications.
Always ensure that the crimping tool is properly maintained and calibrated to achieve a gas-tight connection, which is essential for preventing oxidation and maintaining low electrical resistance over time.
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