“A cable cleat is a device designed to secure electrical cables when installed at intervals along the length of the cables” – IEC 61914 Cable Cleats for Electrical Installations “Cable cleats should: The fifth edition of API Recommended Practice 14F (Design, Installation and Maintenance of Electrical Systems for Fixed and Floating Offshore Petroleum Facilities). “Single […]
Author Archives: nascodev
Cable cleats may seem like a small component in electrical installations, but their significance cannot be overstated. Here are some key reasons why cable cleats are essential for both safety and efficiency in electrical systems: 1. Safety Assurance One of the primary roles of cable cleats is to secure cables in place, preventing them from […]
Cable cleats are typically secured around the cable using a threaded bolt and nut. The higher the torque applied when fastening, the tighter the cable cleat’s grip on the cable. While a tight grip can help prevent axial slippage, care must be taken to avoid over-tightening, as this can damage the cable’s outer jacket and […]
Cable Cleats and Their Operating Temperatures Our standard range of cable cleats is designed to function in ambient temperatures from -50°C to +60°C and with cable conductor temperatures up to 90°C. Cable Cleats and Eddy Currents Ferro-magnetic materials that fully enclose single conductors in AC circuits can heat up due to eddy currents. Generally, eddy […]
Ellis, a prominent name in cable management solutions for the rail sector, is proud to present the expanded Pegasus® Cable Hanger series at Rail Live 2024. Held on June 19th and 20th, Rail Live 2024 stands as the UK’s premier outdoor railway exhibition, and this year marks Ellis’ fourth consecutive appearance—a testament to the event’s […]
Considerations for Specifying Cable Cleats One of the most important factors when specifying cable cleats is the risk of material corrosion. This risk comes not only from the installation environment but also from other metals that the cable cleat may come into contact with. Galvanic Corrosion Galvanic corrosion occurs when dissimilar metals are in contact […]
Calculating Forces Between Conductors During a Three-Phase Fault When the system peak fault current and cable diameter are known, you can use the formula from the International standard (IEC 61914) to calculate the forces between two conductors during a three-phase fault: Ft=0.17×Sip2 Where: Once Ft in N/m is determined, you can calculate the force for […]
Ellis Patents is pleased to announce the appointment of Tom Rooney as Export Sales Manager. Tom brings a wealth of experience in industrial offshore electrical engineering and a strong background in global export sales to the team. Starting his career in industrial offshore electrical engineering, Tom transitioned into global export sales with Wiremold. He then […]
Proving Cable Cleat Strength: The Importance of Short-Circuit Testing Conducting a short-circuit test is the only reliable method to verify that a cable cleat can withstand specific fault conditions. We always recommend that claims of cable cleat strength be supported by a short-circuit test conducted in an independent and accredited laboratory, complete with appropriate certification. […]
Calculating Forces Between Conductors During a Fault The international standard IEC 61914 includes a formula in Annex B that allows designers to calculate the force between two conductors during a fault. If the strength of a particular cable cleat is known, the optimal spacing of the cable cleat along the cable to restrain the force […]
- 1
- 2










