Electrical Cable Wire
ค้นหา {คีย์เวิร์ด} การขายส่ง & คำพูดจากประเทศจีน เราเป็นผู้ผลิตมืออาชีพของ บริษัท {คีย์เวิร์ด} โรงงานและผู้ส่งออกเชี่ยวชาญใน {คำหลัก} ที่มีคุณภาพสูง
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Cable Duplex Triplex Quadruplex Aluminum XLPE Multiplexed 0.6/1kv Bare Neutral Conductor Al
การจัดหมวดหมู่: สายไฟที่หุ้มฉนวนเหนือศีรษะเข้าชม: 302จำนวน:เวลาเผยแพร่: 2025-07-25 07:06:12Cable Duplex Triplex Quadruplex Aluminum XLPE Multiplexed 0.6/1kv Bare Neutral Conductor Al The Cable Duplex Triplex Quadruplex Aluminum XLPE Multiplexed 0.6/1kv with Bare Neutral Conductor stands as a versatile solution for low-voltage power distribution, offering duplex (2-core), triplex (3-core), and quadruplex (4-core) configurations. Engineered with high-conductivity aluminum conductors and XLPE insulation, it delivers efficient power transmission in 0.6/1kV networks, ideal for residential, rural, and light commercial applications. The multiplexed design integrates phase conductors with a bare aluminum neutral, optimizing both power delivery and system stability. XLPE insulation provides exceptional resistance to UV radiation, moisture, and temperature extremes (-40°C to 90°C), ensuring durability in outdoor overhead installations. The bare neutral conductor enhances conductivity and acts as a reliable return path for unbalanced currents, maintaining voltage stability across phases. Available in various core counts, the cable adapts to diverse needs: duplex for simple two-wire systems, triplex for three-phase setups, and quadruplex for complex distributions. Its lightweight aluminum construction reduces installation stress on poles, while the integrated design minimizes clutter and simplifies deployment. Compliant with IEC 60502 and regional standards, it guarantees safety, compatibility, and long-term performance, making it a cost-effective choice for modern low-voltage infrastructure. -
Single Core Cable 1X150mm2 1X240mm2 Electrical Wire Cable with PVC PE XLPE Jacket
การจัดหมวดหมู่: สายเคเบิลแรงดันไฟฟ้าต่ำเข้าชม: 358จำนวน:เวลาเผยแพร่: 2025-08-07 06:13:20The 1X150mm² and 1X240mm² single core cables are two types of cables commonly used for medium and low voltage power transmission. Both adopt copper or aluminum conductors, paired with PVC (polyvinyl chloride), PE (polyethylene), or XLPE (cross-linked polyethylene) jackets, and are respectively suitable for power transmission needs in different scenarios. The cross-sectional specifications of 150mm² and 240mm² endow them with high current-carrying capacity, which can meet medium and large capacity power transmission scenarios such as industrial equipment, large buildings, and energy facilities. The diversified jacket materials make them have different focuses in environmental adaptability, providing flexible choices for different working conditions. In terms of structure, the core of both cables is high-purity conductors (copper conductor purity ≥99.95%, aluminum conductor purity ≥99.5%), made by multi-strand fine stranding process. This not only ensures excellent conductivity (copper conductor conductivity ≥58MS/m, aluminum conductor ≥37MS/m) but also improves the flexibility of the cable, facilitating laying in complex terrain or narrow spaces. After the conductor is wrapped with an insulation layer, it is covered with jackets of different materials: PVC jackets are added with flame retardants and antioxidants, with good wear resistance and flame retardancy; PE jackets have excellent chemical resistance and low-temperature resistance, and can remain flexible at -40℃; XLPE jackets form a three-dimensional network structure through cross-linking reaction, with strong heat resistance, long-term working temperature up to 90℃, and can withstand 250℃ high temperature during short circuits (within 5 seconds). All three jackets can provide mechanical protection for internal conductors and insulation layers, resisting erosion from the external environment. In terms of performance parameters, the rated voltage of the two cables is usually 0.6/1kV, suitable for AC 50Hz/60Hz power systems. The current-carrying capacity varies slightly depending on conductor material, cross-sectional specification, and jacket type: for 1X150mm² copper core cables laid in air, the current-carrying capacity of PVC/PE jackets is about 300-320A, and that of XLPE jackets is about 320-340A; for 1X240mm² copper core cables, they are 400-420A and 420-440A respectively. The current-carrying capacity of aluminum core cables is slightly lower, about 85% of that of copper core cables. In terms of insulation performance, the insulation resistance of XLPE insulation layer is ≥1000MΩ·km, and the dielectric loss tangent (tanδ) is ≤0.005, which is better than PVC and PE; the insulation resistance of PVC and PE insulation layers can also meet the requirements of conventional working conditions. In terms of mechanical properties, the tensile strength of PVC jacket is ≥12MPa, PE ≥14MPa, and XLPE ≥16MPa, all of which can withstand stretching, extrusion, and friction during laying, with a minimum bending radius of 10-12 times the outer diameter (for fixed laying). In application scenarios, cables of different specifications and jackets have their own focuses: 1X150mm² cables are suitable for medium-sized industrial equipment and distribution main lines of commercial complexes. Among them, the PVC jacket type is suitable for indoor dry environments, such as office buildings and shopping malls; the PE jacket type is suitable for underground direct burial or humid environments, such as underground garages and sewage treatment plants; the XLPE jacket type is used in high-temperature environments, such as metallurgical workshops and boiler rooms. 1X240mm² cables have larger current-carrying capacity and are mostly used in main lines of large factories, collector lines of wind farms and photovoltaic power stations. The XLPE jacket type is especially suitable for new energy facilities that need to withstand high temperatures, while the PE jacket type performs well in underground cable projects and can resist chemical erosion in the soil. In terms of installation and maintenance, cables can be laid by bridge, pipe, or direct burial. During installation, appropriate laying methods should be selected according to the jacket material: PVC jackets should avoid direct sunlight, PE jackets should be careful to avoid contact with sharp objects, and XLPE jackets can adapt to a wider range of environments. Terminal connections require connectors matching the cross-section, and copper-aluminum transition connectors should be properly anti-corrosive treated. After laying, insulation resistance testing and voltage withstand testing (applying 2.5 times the rated voltage for 5 minutes without breakdown) must be carried out. In daily maintenance, it is necessary to regularly check whether the jacket has damage or aging signs. PVC jackets need to be protected from ultraviolet rays, while PE and XLPE jackets need to be protected from mechanical damage to ensure the long-term stable operation of the cable. In summary, the 1X150mm² and 1X240mm² single core cables (PVC, PE, XLPE jackets) can meet the medium and large capacity power transmission needs of different scenarios with their reasonable cross-sectional design and diversified jacket choices. They play an important role in industrial, commercial, energy, and other fields, providing reliable guarantee for the stable operation of power systems. -
1mm 1.5mm 2.5mm 4mm 6mm 10mm 300/500V Copper Electric Wires Cables Electrical Cable Wire Prices
การจัดหมวดหมู่: การสร้างสายไฟเข้าชม: 366จำนวน:เวลาเผยแพร่: 2025-09-16 06:32:53The 300/500V Copper Electric Wires & Cables series, spanning conductor cross-sections from 1mm² to 10mm², is a versatile low-voltage power transmission solution engineered for residential, commercial, and light industrial applications. Designed with high-purity copper conductors, flame-retardant insulation, and durable sheathing, this product line balances electrical efficiency, mechanical resilience, and cost-effectiveness—catering to diverse load demands, from small household appliances to medium-duty commercial equipment. Beyond technical performance, its pricing structure, influenced by material costs, production scale, and market dynamics, offers transparency for buyers seeking value-aligned solutions for projects of all sizes. At the core of this cable series is its high-purity copper conductor design, which defines both performance and cost. All conductors use 99.95% pure electrolytic copper, achieving 100% International Annealed Copper Standard (IACS) conductivity to minimize energy loss (I²R losses) during transmission. The stranded construction (class 5 flexibility per IEC 60228) enhances installation adaptability, allowing bending to a minimum radius of 4–6 times the cable’s outer diameter (e.g., 12mm for 1mm², 30mm for 10mm²)—critical for routing through tight wall cavities, under floors, or around furniture. Current-carrying capacity scales with cross-section, aligning with the 300/500V voltage rating (300V phase-to-earth, 500V phase-to-phase) to meet global low-voltage standards: 1mm²: 6–10A (ideal for low-power devices like LED lighting, phone chargers, and small fans) 1.5mm²: 10–16A (suitable for bedroom sockets, table lamps, and home office equipment) 2.5mm²: 16–24A (for kitchen appliances, electric kettles, and small air conditioners) 4mm²: 24–32A (commercial use: retail display lighting, POS terminals, and medium-duty tools) 6mm²: 32–40A (light industrial applications: portable grinders, small compressors, and HVAC units) 10mm²: 40–50A (heavy-duty commercial use: large air conditioners, commercial refrigerators, and workshop machinery) The insulation and sheathing system further enhances usability and safety, while influencing cost differentials between variants. Most models use flame-retardant PVC (polyvinyl chloride) for insulation and sheathing—an economical choice that meets IEC 60332-1 (flame propagation) and IEC 61034 (smoke density) standards. PVC insulation (Shore A hardness 60–70) adheres tightly to copper conductors to prevent moisture ingress, with thickness calibrated to cross-section (0.4mm for 1mm², 0.8mm for 10mm²) to ensure dielectric strength ≥18kV/mm. For premium applications (e.g., hospitals, data centers), low-smoke zero-halogen (LSZH) sheathing is available—reducing toxic gas emission during fires but increasing costs by 15–25% compared to PVC. Environmental resilience is consistent across the series: a temperature range of -20°C to 70°C, resistance to household chemicals (ammonia, bleach) and mild solvents, and IP20 ingress protection (indoor use) or IP44 (outdoor variants with UV stabilizers). Pricing dynamics for these copper cables are driven by three key factors: raw material costs, production scale, and product specifications. Copper, the primary cost component (60–70% of total production cost), fluctuates with global commodity markets—for example, a 10% increase in copper prices typically raises cable costs by 6–8%. As of 2024, average per-meter prices (excluding taxes and shipping) for standard PVC-insulated variants are: 1mm²: $0.30–$0.50/m (lowest cost, high demand for residential lighting) 1.5mm²: $0.45–$0.70/m (most popular for home wiring, balanced cost and capacity) 2.5mm²: $0.60–$0.90/m (kitchen and high-power home use, moderate price premium) 4mm²: $0.90–$1.30/m (commercial focus, higher copper content driving cost) 6mm²: $1.30–$1.80/m (light industrial, increased insulation thickness adding cost) 10mm²: $2.00–$2.80/m (highest per-meter cost, heavy copper usage and thick sheathing) Volume discounts significantly reduce unit costs: orders of 1,000–5,000m typically receive 5–10% off, while bulk orders (≥10,000m) for commercial or industrial projects qualify for 15–20% discounts. Customizations like LSZH sheathing, UV stabilizers, or color-coded conductors (for easy circuit identification) add 10–30% to base prices. Regional variations also apply: prices in North America and Europe are 20–30% higher than in Asia (due to labor and regulatory costs), though shipping bulk orders from Asian manufacturers can offset this difference for global buyers. Practical applications across sectors highlight the series’ versatility and cost-effectiveness. In residential buildings, 1mm²–2.5mm² PVC-insulated cables are the standard for wiring—1mm² for lighting circuits (cost-efficient for long runs), 2.5mm² for kitchen and bathroom sockets (balancing capacity and budget). A typical 100m² apartment requires ~300m of 1.5mm² cable ($135–$210) and ~150m of 2.5mm² cable ($90–$135), totaling $225–$345 for core wiring. In commercial spaces (e.g., 500m² retail stores), 4mm²–6mm² cables power display systems and POS terminals, with 500m of 4mm² cable costing $450–$650. For light industrial use (small workshops), 10mm² cables handle heavy machinery, with 200m costing $400–$560—an investment offset by reduced energy loss and longer service life (15–20 years vs. 10–15 years for lower-grade cables). Compliance with global standards ensures market accessibility and safety, while influencing pricing for certified variants. All cables meet IEC 60227 (PVC-insulated cables), GB/T 5023 (Chinese standards), and UL 62 (North American standards), with certification adding 5–10% to production costs. Rigorous testing—voltage withstand (1.5kV for 5 minutes), insulation resistance (≥100MΩ at 500V DC), and flexibility (10,000 bending cycles)—validates performance, reducing long-term maintenance costs for buyers. In summary, the 1mm²–10mm² 300/500V Copper Electric Wires & Cables series delivers a cost-effective, safe, and versatile solution for low-voltage power transmission. Its scalable cross-sections cater to diverse applications, while transparent pricing—tied to copper costs, volume, and customizations—enables buyers to align purchases with project budgets. Whether for residential renovations, commercial fit-outs, or light industrial setups, this cable series balances performance and affordability, making it a staple in modern electrical infrastructure.
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