Our Products
Solar Power Cables manufactured by us are developed for the new era of power generation. Designed and manufactured using latest technologies, the PV Solar Cable are available in various specifications as per the clients needs. Designed for minimal power losses, the Solar Power Cables or Photovoltaic Cables are tested on various international standards before their delivery to the clients.
Our sound infrastructure facility has enabled us to manufacture, export and supply superior quality LT Elastomeric Cable. Manufactured in compliance with the IS: 9968(Pt-2)2002 and BS: 7835 standards, these cables are heat resistant and very strong. Quality elastomeric materials are procured from the reliable vendors of the market to insulate these cables. These cables are widely demanded by our customers for their excellent design and durability. Our LT Elastomeric Cable is demanded by various industries for wiring houses, office, electronic machines and equipment.
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We provide the valued clients with XLPE Cables in various dimensions. These XLPE Cables are designed for standard operating conditions in India that takes under consideration geographical, climatic conditions, general applications and distribution. We are a renowned Manufacturer, Supplier and Exporter of XLPE Cables that are suitable for diverse industrial applications.
Owing to our vast experience in this field, we are able to manufacture and supply superior quality LT Xlpe Cable. The offered cables are widely demanded by our customers for heat and chemical resistant properties. Our vendors supply us with the best quality raw-materials, which are used in the manufacturing process to obtain quality cables. The LT Xlpe Cable is used in various, telecommunication, mining and construction industries for lining wires. Moreover, these cables are insulated with high quality LT Xlpe to ensure longer service life.
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We are involved in bringing to the esteemed clients a wide range of Elastomeric Cables . These Elastomeric Control Cables are manufactured with high quality Elastomer raw materials such as Polypropylene, Chloro-Sulphoneted Polyethylene (CSP), Nitirile Rubber/ PVC blends, Ethylene Polypropylene Rubber (EPR) and Silicone. These materials have been specially chosen to meet several heating oil and resisting requirements.
After constant research and development, we have come up with best-in-class HT Elastomeric Cable. These cables are widely known for their high elasticity and strength. We manufacture these cables using quality elastomeric materials to meet the IS: 9968(Pt-2)2002 and BS: 7835 standards. The offered cables are made for the production of advanced tools and machines. Owing to our widespread distribution network, we are able to deliver the HT Elastomeric Cable within a given time-frame.
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Wind power generation cables connect the primary generator motor in the turbine nacelle with the transformers and relay the electricity produced to the power grid. The cables must be highly flexible so that they are not damaged even if the generators rotate thousands of cycles.
The Flexibility of the wind power generator cables developed by CENTURION POWER CABLES PVT. LTD. has been improved greatly in comparison with competitors, products. the cables have all passed 15, 000 cycle rotation tests to quality for requirements of the European wind generation industry, which demand a high durability of 10, 000 rotation cycles for more than 20 years.
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This products incorporates several environmental friendly features such as non-toxic burn resistant materials that are difficult to ignite and do not release harmful fumes on fire, These features will enable this product to lead the global wind generation power cable market in the future.
The diagram shows the turbine yawed to the position where its power cables are completely untwisted. In this case, the cable that untwists the yaw system attaches to its topmost pulley wheel in such a way that it is not wrapped around that topmost pulley wheel at all. (The topmost pulley wheel is the one with the axis of rotation that is coincident with the turbine's yaw axis). Now as the turbine yaws, it doesn't matter which direction the turbine waws in, Whichever way the turbine yaws, it wraps the untwist cable around the topmost pulley wheel, and in so doing it draws the twist sensing component that is attached to the untwist cable (colored purple) up to a higher elevation. When this part of the sensor passes close by the topmost twist sensor component (colored red), the control system knows that the power cables are twisted up. To untwist the turbine, the controller simply turns on the small elwctric motor at the base of the tower until the cable mounted twist sensor component passes by the lowest red colored twist sensor component, then turns the motor back off. If the system fails for some reason, the result is that the small untwist motor will burn up or blow a fuse - a minor repair indeed. The controller might wait until the wind isn't blowing before untwisting the power cables.
Sensorless Variation
In this variation, the controller merely untwists the turbine every time the wind speed drops to zero (rotor blades not turning). Some kind of slip clutch mechanism might be provided to keep the untwist motor from burning up if it runs too long. Alternatively, the motor could be turned off whenever the power it draws jumps up by a large value (indicating the turbine has been completely untwisted). Or a simple mechanical switch could be tripped whenever the turbine is completely untwisted.
Manual Variation
A manual version of this device might also work well. In this case, the controller might issue some kind of mechanical or telecommunications signal to let someone know that the turbine needs untwisting.