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  • Aluminum Cable 240 mm2 4*240 Sq. mm XLPE AC Power Cable with Low Voltage 600/1000 V

    Aluminum Cable 240 mm2 4*240 Sq. mm XLPE AC Power Cable with Low Voltage 600/1000 V

    Leur classification: Câble basse tension
    Vues: 313
    Numéro:
    Temps de libération: 2025-07-16 02:32:35
    This is a low-voltage 600/1000V 4-core 240 sq. mm aluminum conductor XLPE insulated AC power cable, suitable for low-voltage power transmission and distribution systems.
  • 4 Core XLPE Swa PVC Steel Wire Armoured Power Cable with 16mm 25mm 35mm 50mm Aluminium & Pure Copper Conductor 16mm Wide

    4 Core XLPE Swa PVC Steel Wire Armoured Power Cable with 16mm 25mm 35mm 50mm Aluminium & Pure Copper Conductor 16mm Wide

    Leur classification: Câble basse tension
    Vues: 272
    Numéro:
    Temps de libération: 2025-07-21 08:30:22
    The 4-core XLPE insulated steel wire armored power cable is available in 16mm, 25mm, 35mm and 50mm² sizes with aluminum or pure copper conductor options. Featuring XLPE insulation and PVC sheath with 16mm wide steel wire armoring for superior mechanical protection, it is suitable for demanding environments like direct underground burial. With high temperature and corrosion resistance, this IEC-compliant cable is widely used in industrial power distribution and building electrical systems, ensuring safe and reliable power transmission.
  • U1000 XLPE Power Cable Rvfv 5X10mm2 Yjv 5c with PVC Sheath for Overhead Application

    U1000 XLPE Power Cable Rvfv 5X10mm2 Yjv 5c with PVC Sheath for Overhead Application

    Leur classification: Câble basse tension
    Vues: 267
    Numéro:
    Temps de libération: 2025-07-24 02:17:25
    The U1000 XLPE power cable (models including RVFV and YJV 5c) is of 5×10mm² specification, features a PVC sheath, and is suitable for overhead application scenarios.
  • BS 6746 N2xy Three Phase 5 Core XLPE Power Cable 16mm 25mm 35mm 70mm2 95mm2

    BS 6746 N2xy Three Phase 5 Core XLPE Power Cable 16mm 25mm 35mm 70mm2 95mm2

    Leur classification: Câble basse tension
    Vues: 288
    Numéro:
    Temps de libération: 2025-07-28 05:57:53
    This product is a three-phase five-core cross-linked polyethylene (XLPE) power cable compliant with BS 6746 standard, covering specifications such as 16mm², 25mm², 35mm², 70mm², and 95mm², suitable for transmission scenarios in three-phase power systems.​ The cable adopts a 5-core structure, which is compatible with complex power demand scenarios such as three-phase five-wire systems. It can transmit electricity and achieve grounding protection simultaneously, improving electricity usage safety. Different cross-sectional area specifications can match different power requirements: 16-35mm² is suitable for power supply of small and medium-sized equipment, while 70-95mm² is suitable for medium and large industrial equipment and distribution trunk lines.​ The insulation layer is made of cross-linked polyethylene (XLPE), which has excellent temperature resistance (-40℃ to 90℃) and insulation performance. It has strong anti-aging and chemical corrosion resistance, and can work stably for a long time, reducing the risk of electric leakage.​ The product meets the N2xy protection level, with good resistance to mechanical impact, ultraviolet rays and moisture. It is suitable for various indoor and outdoor laying environments, such as commercial buildings, industrial plants, and municipal engineering.​ The overall design strictly complies with BS 6746 standard, with stable structure, safety and reliability. It provides an efficient and safe transmission solution for three-phase power systems, balancing flexibility and durability.​
  • Aluminum Cable 240 mm2 4*240 Sq. mm XLPE AC Power Cable with Low Voltage 600/1000 V

    Aluminum Cable 240 mm2 4*240 Sq. mm XLPE AC Power Cable with Low Voltage 600/1000 V

    Leur classification: Câble basse tension
    Vues: 399
    Numéro:
    Temps de libération: 2025-07-29 07:15:31
    This product is a 4-core 240mm² cross-linked polyethylene (XLPE) insulated aluminum core power cable with a rated voltage of 600/1000V, suitable for power transmission in low-voltage distribution systems. The cable uses aluminum as the conductor material, which combines good electrical conductivity with the advantage of light weight, effectively reducing laying and installation costs. The 4-core 240mm² specification design can meet the needs of large current loads and is applicable to low-voltage power supply lines in scenarios such as industrial plants, commercial buildings, and residential communities. The insulation layer is made of cross-linked polyethylene material, which has excellent temperature resistance, insulation performance, and mechanical strength. It can work stably in an ambient temperature range of -40℃ to 90℃. Moreover, it has outstanding anti-aging and chemical corrosion resistance, and can adapt to complex environments such as humidity and dust. At the same time, the overall structure of the cable has good flexibility, which is convenient for bending and laying, reducing construction difficulty. In terms of safety performance, the product complies with relevant standards for low-voltage cables, with high insulation resistance and low dielectric loss, which can effectively reduce the risk of electric leakage and ensure the stability and safety of power transmission. In addition, its design fully considers long-term use needs, with a long service life and low maintenance costs, making it a reliable choice in the field of low-voltage power distribution.
  • U1000 Rvfv XLPE Power Cable 4G 16mm2 Cable

    U1000 Rvfv XLPE Power Cable 4G 16mm2 Cable

    Leur classification: Câble basse tension
    Vues: 330
    Numéro:
    Temps de libération: 2025-08-04 07:43:47
    U1000 Rvfv XLPE Power Cable 4G 16mm² is a multi-core power cable with both efficient transmission and safety protection performance, specially designed for medium and high-voltage distribution systems. By virtue of the excellent characteristics of cross-linked polyethylene (XLPE) insulation layer, the precise specification of 4-core 16mm² and the structural advantages of RVFV model, it is widely used in industrial power distribution, construction engineering, new energy facilities and other scenarios, providing stable and reliable power support for complex electrical environments.​ The core competitiveness of this cable lies in the collaborative design of materials and structure. The conductor is made of high-purity electrolytic copper with a purity of more than 99.95%. The 16mm² single-core cross-sectional area and 4-core stranded structure form a balanced current-carrying capacity, which not only meets the demand for large current transmission under the working voltage of 1000V and above, but also reduces the skin effect through multi-core shunting, thus lowering transmission loss. The measured conductor DC resistance is ≤1.15Ω/km (20℃), ensuring that the electric energy conversion efficiency exceeds 95%, which is especially suitable for precision manufacturing and data centers sensitive to energy consumption.​ The insulation layer is made of cross-linked polyethylene (XLPE) material. After special cross-linking treatment, it forms a three-dimensional network molecular structure, with a temperature resistance range extended to -40℃~90℃, and can work stably for a long time in alternating high and low temperature environments. Compared with traditional PVC insulation, the insulation resistance of XLPE is increased by more than 30% (≥1000MΩ·km), and it can withstand power frequency voltage of 10kV for 5 minutes without breakdown, which can effectively resist moisture, dust and chemical corrosion, and is suitable for various installation methods such as underground direct burial and bridge laying.​ The sheath of RVFV model is made of flame-retardant polyvinyl chloride (PVC), with dual protection functions: on the one hand, it forms a mechanical barrier by tightly covering the insulation layer, with impact strength up to 12kJ/m², which can withstand dragging and extrusion during construction; on the other hand, it achieves GB/T 18380.3-2008 Class B flame retardant grade through halogen inhibition formula. In case of fire, the smoke density is ≤75%, and the release of toxic gas is 50% lower than the industry standard, providing additional safety guarantee for crowded places such as commercial complexes and hospitals.​ In application scenarios, the cable shows strong adaptability. In the industrial field, it provides power transmission for assembly line motors and frequency conversion equipment. The grounding core in the 4-core structure can conduct leakage current in real time, meeting EN 60228 safety specifications; in building power distribution, its flexibility (bending radius ≥12 times the outer diameter) facilitates pipe wiring in walls and ceilings, supporting multi-loop power supply in smart buildings; in new energy projects, it can withstand high-temperature radiation of photovoltaic panel arrays and vibration environment of wind turbine towers, becoming an ideal connection carrier between inverters and combiner boxes.​ In addition, the cable has passed EU CE certification and domestic CCC certification. Each meter of sheath is printed with clear marks (model, cross-section, standard number), supporting full life cycle traceability. Its comprehensive performance makes it stand out among similar products, which is not only a reliable choice for conventional power distribution, but also a preferred solution for power system upgrading in complex environments.
  • Polyvinyl Chloride XLPE PVC Insulated NYY NYY-0/J Cable 240mm Single 1/2/3/4/5 Core Copper Wire Power Cables

    Polyvinyl Chloride XLPE PVC Insulated NYY NYY-0/J Cable 240mm Single 1/2/3/4/5 Core Copper Wire Power Cables

    Leur classification: Câble basse tension
    Vues: 419
    Numéro:
    Temps de libération: 2025-08-05 01:51:21
    NYY and NYY-0/J series power cables are copper-core cables with high-performance insulating materials as their core advantage, designed specifically for medium and high-voltage power transmission scenarios. With a cross-sectional specification of 240mm² and a diversified structure of 1, 2, 3, 4, and 5 cores, they can meet the complex power supply needs in industrial, energy, construction, and other fields. This series of cables uses copper as the conductor material, combined with polyvinyl chloride (PVC) or cross-linked polyethylene (XLPE) insulation layers. While ensuring excellent conductivity, it has strong environmental adaptability and safety stability, making it an ideal choice in high-power power transmission systems.​ In terms of insulating materials, the series offers two high-performance options: the PVC insulation layer has excellent mechanical strength and chemical corrosion resistance, which can work stably in an environment of -15℃ to 60℃, and has high insulation resistance (not less than 100MΩ·km at room temperature), effectively preventing current leakage; the XLPE insulation layer forms a three-dimensional network structure through cross-linking technology, with better temperature resistance, which can adapt to a wide temperature range of -40℃ to 90℃, significantly improved anti-aging ability, low dielectric loss, and high insulation strength. It can withstand higher working voltages, especially suitable for high-voltage transmission lines. Both insulating materials have passed strict voltage resistance tests (no breakdown under 1kV and above power frequency voltage), ensuring safety during power transmission.​ The conductor is made of high-purity electrolytic copper (purity ≥99.9%) with high conductivity and low resistance. The 240mm² cross-sectional copper conductor can reach a current-carrying capacity of 480A (3-core structure) when laid in the air and 580A when laid underground, which can efficiently transmit high-power electricity and reduce energy loss. The diversity of core number design makes it suitable for different scenarios: 1-core cables are suitable for single-phase high-voltage transmission or grounding systems; 2-core cables are often used in single-phase power and lighting circuits; 3-core cables are widely used in three-phase AC power supply systems; 4-core and 5-core cables integrate neutral wires or grounding wires, suitable for complex systems that need to transmit power and ensure safe grounding at the same time, such as large industrial plants and substation outgoing lines.​ In terms of structural design, in addition to the core conductor and insulation layer, the cable also includes a shielding layer (for some models) and a polyvinyl chloride sheath. The shielding layer is braided with copper tape or copper wire, which can effectively reduce electromagnetic interference (EMI) and ensure the stability of signal transmission; the outer sheath enhances the wear resistance, impact resistance, and weather resistance of the cable, making it suitable for various laying methods such as underground, bridge, and pipeline, and can operate reliably for a long time even in humid, dusty, or mechanically vibrating environments.​ In terms of application fields, the high-power characteristics of NYY, NYY-0/J 240mm² cables make them play a core role in many key scenarios: in the industrial field, 3-core and 4-core cables provide power support for large motors and production lines; in the energy industry, 1-core and 3-core cables are used for grid-connected transmission in wind farms and photovoltaic power stations; in the construction field, 5-core cables serve as the main lines of high-rise buildings or commercial complexes to meet the centralized power supply needs of high-power equipment such as central air conditioners and elevators; in municipal engineering, this series of cables can be used in underground cable lines in urban power grid transformation to improve power supply reliability.​ In addition, this series of cables strictly complies with international standards such as DIN VDE, and has passed multiple tests including conductor resistance, insulation thickness, and flame retardancy to ensure no safety hazards such as short circuits and electric leakage during long-term use. Its diversified core number design, high-performance insulating materials, and stable conductivity make it a benchmark product with both practicality and safety in the medium and high-voltage power transmission field.
  • Na2xy Na2xh Nayy-O Lxv 1X300mm2 1X400mm2 1X500mm2 1X630mm2 0.6/1kv Aluminum XLPE Power Cable 1X300mm2 1X400mm2 Power Cable

    Na2xy Na2xh Nayy-O Lxv 1X300mm2 1X400mm2 1X500mm2 1X630mm2 0.6/1kv Aluminum XLPE Power Cable 1X300mm2 1X400mm2 Power Cable

    Leur classification: Câble basse tension
    Vues: 391
    Numéro:
    Temps de libération: 2025-08-06 06:05:01
    The 0.6/1kv aluminum XLPE power cables of models Na2xy, Na2xh, Nayy-O, Lxv, etc., involved in this article include various specifications such as 1X300mm², 1X400mm², 1X500mm², and 1X630mm². With excellent performance and wide applicability, they occupy an important position in the field of low-voltage power transmission.​ In terms of specification parameters, these cables are all single-core structure, and the number after "1X" represents the cross-sectional area of the conductor, which are 300mm², 400mm², 500mm², and 630mm² respectively. The cross-sectional area of the conductor is a key factor determining the current-carrying capacity of the cable; the larger the cross-sectional area, the higher the current-carrying capacity. At an ambient temperature of 25℃, the long-term allowable current-carrying capacity of the 1X300mm² cable is about 420A, which can meet the power transmission needs of power around 92kW; the long-term allowable current-carrying capacity of the 1X400mm² cable is about 500A, which can cope with the power consumption scenarios with power around 110kW; the long-term allowable current-carrying capacity of the 1X500mm² cable is about 580A, suitable for power transmission with power around 128kW; the long-term allowable current-carrying capacity of the 1X630mm² cable can reach 680A, which can meet the power demand of high-power equipment with power above 149kW. At the same time, the rated voltage of these cables is 0.6/1kv, which is suitable for low-voltage power systems and can stably transmit power.​ In terms of materials, the conductor is made of high-purity aluminum. Aluminum has good conductivity. Although its conductivity is slightly lower than that of copper, its price is relatively low, which can reduce costs while ensuring transmission efficiency. The aluminum conductor has undergone special treatment, with good oxidation resistance and corrosion resistance, and can work stably for a long time in various environments. The insulation layer is made of XLPE (cross-linked polyethylene) material. XLPE has excellent electrical performance, with high insulation resistance and good corona resistance, which can effectively prevent leakage and improve the safety performance of the cable. Its temperature resistance is excellent, and it can operate for a long time at a working temperature of 90℃, with a short-term overload temperature of up to 130℃, adapting to the possible temperature changes during power transmission. In addition, XLPE also has good mechanical strength and aging resistance, which prolongs the service life of the cable.​ These cables have a wide range of characteristic uses. In the industrial field, 1X500mm² and 1X630mm² cables can be used for power supply of large industrial equipment, such as large motors and compressors, ensuring the stable operation of high-power equipment; 1X300mm² and 1X400mm² cables are suitable for small and medium-sized industrial equipment, workshop power distribution systems, etc., providing power support for the normal operation of production lines. In urban distribution networks, they can be used for power transmission between substations and residential communities and commercial facilities. Appropriate specifications are selected according to the power load to ensure stable power supply. In construction projects, 1X300mm² and 1X400mm² cables are often used as power distribution trunks in buildings, transmitting power from the distribution room to each floor to meet the power demand inside the building.​ In addition, this series of cables also has significant cost advantages. Due to the use of aluminum as the conductor material, compared with copper-core cables, the cost is lower, which can save a lot of funds for engineering projects. At the same time, its excellent performance and various specifications make it possible to find suitable options in different power transmission scenarios, improving the cost performance of the project.​ To sum up, the 0.6/1kv aluminum XLPE power cables of models Na2xy, Na2xh, Nayy-O, Lxv, etc., with their various specifications, excellent materials, outstanding performance and economic cost, have become ideal choices in the field of low-voltage power transmission, providing reliable power transmission guarantee for various power projects.
  • Medium Voltage 10KV 33KV XLPE Aluminum Copper Power Cable 3C 300mm2 MV Cable Price

    Medium Voltage 10KV 33KV XLPE Aluminum Copper Power Cable 3C 300mm2 MV Cable Price

    Leur classification: Câble de tension moyenne
    Vues: 433
    Numéro:
    Temps de libération: 2025-08-11 05:55:36
    Medium Voltage 10KV 33KV XLPE Aluminum Copper Power Cable 3C 300mm² MV Cable Price​ Our medium voltage power cables, rated for 10KV and 33KV, feature 3-core (3C) 300mm² conductors—available in both aluminum and copper—with XLPE insulation, designed for efficient, reliable power transmission in medium-voltage networks. Balancing performance and cost, these cables cater to utility grids, industrial plants, and infrastructure projects where stable medium-voltage distribution is critical.​ The XLPE insulation is a standout feature, offering exceptional thermal stability (withstanding continuous temperatures up to 90°C) and low dielectric loss, ensuring minimal energy waste even under high-voltage loads. This insulation resists moisture, chemicals, and aging, making it suitable for underground, overhead, or duct installations in diverse environments, from urban grids to industrial zones.​ The 3C 300mm² conductor configuration—available in aluminum (cost-effective for long-distance runs) or copper (high-conductivity for heavy loads)—supports balanced three-phase power distribution, a standard for medium-voltage systems. Aluminum options provide economic advantages for large-scale projects, while copper ensures superior conductivity and durability for high-demand applications.​ Rated for 10KV and 33KV, these cables comply with international standards (e.g., IEC 60502-2), guaranteeing safety and compatibility with medium-voltage equipment like transformers and switchgear. Competitive pricing, tailored to conductor material and project scale, makes them a practical choice for utility companies and industrial clients seeking reliable medium-voltage solutions.

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