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600V High-Temp 105° C Flame Retardant Wire - Stranded Pure Copper for Industrial Use
600V High-Temp 105° C Flame Retardant Wire - Stranded Pure Copper for Industrial Use
This product is a 600V voltage level wire specially designed for industrial high-temperature scenarios. It has 105°C high-temperature resistance and reliable flame-retardant properties. The conductor is made of stranded pure copper material, which can stably transmit power in complex industrial high-temperature environments. It is suitable for various industrial equipment and scenarios that have strict requirements on the high-temperature resistance, flame retardancy, and electrical conductivity of wires, providing a safe and durable solution for power supply in high-temperature working conditions during industrial production.​ In terms of core performance and specifications, the rated voltage of this wire is 600V, which belongs to the category of low-voltage industrial wires and can meet the low-voltage power supply needs of most industrial equipment, such as motor control circuits, auxiliary circuits of heating equipment, and power supply for industrial instruments. The 105°C high-temperature resistance is one of its core advantages. Through professional testing, in a continuous high-temperature environment of 105°C, the performance of the wire's insulation layer and conductor can still remain stable, without softening, aging of the insulation layer or abnormal increase in conductor resistance. It can even withstand short-term instantaneous high temperatures of 120°C for a short time, which is far superior to the high-temperature upper limit of 60-70°C of ordinary wires. It is suitable for high-temperature scenarios such as metallurgical workshops, around drying equipment, and boiler auxiliary systems.​ The conductor is made of stranded pure copper material with a purity of more than 99.95%. Compared with ordinary copper alloys or tinned copper conductors, the stranded pure copper conductor has more excellent electrical conductivity - the DC resistance (at 20°C) is ≤10.1Ω/km, with high current transmission efficiency, which can effectively reduce power loss during transmission and avoid increasing the line burden in high-temperature environments due to conductor heating. The stranded structure design also endows the conductor with good flexibility. Each copper wire has a diameter as thin as 0.1-0.2mm, and the conductor is formed through a precision stranding process, so that its minimum bending radius can be as low as 3-5 times the outer diameter of the wire. This makes it easy to route in complex narrow spaces and corners inside industrial equipment, and can adapt to slight vibrations and displacements during equipment operation, avoiding installation difficulties or bending fractures caused by excessive conductor rigidity.​ Flame-retardant property is an important guarantee for the safety performance of this wire. The product meets the Class B flame-retardant requirements in GB/T 19666-2019 "General Specification for Flame-Retardant and Fire-Resistant Wires, Cables or Optical Cables", and some high-end models can reach Class A flame-retardant standards. The insulation layer of the wire is made of flame-retardant polyvinyl chloride (PVC) or cross-linked polyethylene (XLPE) material with a special formula, added with environmentally friendly flame retardants. When encountering an open flame, it can quickly form a carbonized layer to inhibit the spread of flame, slow down the burning speed, and release less smoke and low content of toxic gases when burning. It can self-extinguish within 30 seconds after the fire source is removed, which can effectively reduce the risk of fire caused by wire burning in industrial high-temperature scenarios and ensure the safety of personnel and equipment.​ The selection of insulation layer material further enhances the high-temperature resistance and durability of the wire. Regular models adopt flame-retardant PVC insulation layer, which has good oil resistance and chemical corrosion resistance, and can resist oil pollution and slight chemical solvent erosion in industrial environments; high-end models adopt cross-linked polyethylene insulation layer, which not only has better high-temperature resistance, but also has stronger aging resistance and mechanical strength, with a service life of more than 10 years. It is suitable for long-term operation industrial equipment with higher requirements on wire life, such as continuously operating production lines and large industrial furnace control systems.​ In terms of application scenarios, this wire has an extremely wide range of adaptations. In the metallurgical industry, it can be used for the control circuits of steelmaking furnaces and rolling mills and the power supply of auxiliary equipment, withstanding high temperatures and metal dust erosion in the workshop; in the automobile manufacturing field, it is suitable for the circuit wiring around the coating drying line and welding equipment, resisting high temperatures and welding sparks during the drying process; in the food processing industry, it can be used for the internal circuits of high-temperature baking equipment, meeting the requirements of food production environments for wire safety and high-temperature resistance; in the new energy field, such as the high-temperature heat dissipation areas of photovoltaic inverters and energy storage equipment, this wire can also stably transmit power and adapt to the high-temperature working environment of the equipment; in addition, in the server heat dissipation areas of large data centers and the temperature control circuits of industrial ovens, this wire can also exert the advantages of high-temperature resistance and flame retardancy to ensure the safe and stable transmission of power.​ Overall, this 600V High-Temp 105°C Flame Retardant Wire - Stranded Pure Copper for Industrial Use accurately matches the power transmission needs of industrial high-temperature scenarios through the high conductivity and flexibility of the stranded pure copper conductor, the 105°C high-temperature resistant insulation layer, and reliable flame-retardant performance. It forms significant advantages in performance, safety, and durability, making it an ideal choice for power transmission in industrial high-temperature working conditions.​
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