It’s good to keep the enemy away instead of fighting it. And that’s what CMCE – Electromagnetic field protector does. This lightning protection technology compensates for the electric field "thus canceling the formation of lightning" in its protection area, unlike conventional lightning rods...
Description: Developed for Small deposits, Telecommunications Towers, Medium and High Voltage Power Lines, Traffic Lights, Small Radars, Road Cameras, Garitas, and other structures that can be covered by their protection radius.
Description: Developed to protect all types of structures on land, residences, small buildings, warehouses, etc
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Description: Greater deionizing power, for use in buildings, large complexes, mining, boats, electric stations, etc.
Description: Developed for installations in high temperature environments. For example, chimneys, industries, etc. Supports up to 400ºC.
Description: Designed for highly corrosive environments, since it is a steel with high resistance to corrosion, given that the chromium or other alloying metals it contains, have great affinity for oxygen and react with it forming a passivating layer, thus avoiding corrosion of iron (purely stainless metals, which do not react with oxygen are gold and platinum, and of lower purity are called corrosion resistant.
Description: Developed with the same characteristics as the CMCE 120, but with a special design to avoid the fall of the equipment, especially for derricks, etc.
Description: Developed for special applications and Military use. The innovation is based on the properties of Graphene.
Description: For safe and effective protection in high electrical load environments, Sertec SRL has designed, created and tested the CMCE TWIN MAX device that exceeds the high efficiency of its inspiring base, the CMCE 120, to work in the most extreme conditions. With the CMCE TWIN MAX it manages to compensate extreme electric fields with greater speed, efficiency and reduce the intensity of magnetic fields, so its application is focused on this type of conditions tested in the laboratory.
Coverage Area
· CMCE Technology Method: Cover radius depending on the model varies between 25m. to 120m. (Check model’s manual).
· All models must be installed at a height of 3m. above the highest point to be protected (For more detailed information check the manual).
· Rolling Spheres Method: For protection levels I, II, III and IV defined according to IEC 62305, the rolling sphere method must be used, with the protection radius marked by the standard.
It incorporates in its axis the connection system to the mast. The CMCE needs an internal measuring mast 42 mm Ø and outside 49 mm Ø with through hole of 8 mm Ø to 32 mm from the edge of the mast (may vary depending on the model, more detailed information consult the manual).
Recycled Aluminum, Insulator: Polyacetal, also called polyoxymethylene (POM); Ceramic, or According to model, consult the manual.
515.41 KV at one meter, according to high voltage laboratory tests (UNE 21186:2011// NF C17- 102:2011).
The tests carried out according to IEC-10/350 Q curves of 100,000 Amperes, specified in the IEC- 62305 norms, show that the equipment supports 7 continuous degasses of 89,906KA; 89.62KA; 88.53KA; 89.3KA; 90.44KA; 96,656KA; 89,688KA; without breaking materials or marks of deterioration or perforation.
99% reduction of impact of direct rays in the protected structure. In case of direct impact of lightning (1%) or indirect effects due to external induced overvoltages in the protected structure, the CMCE behaves like a thermal fuse, absorbing part of the lightning energy in heat by melting its components, minimizing (between 60% - 90%) electromagnetic effects
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