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Lightweight and Cost-Effective
Aluminum cables are lighter than copper cables, making them ideal for long-distance installation, especially in large-scale construction projects. Additionally, aluminum is much more affordable than copper, offering a significant cost advantage for projects with tight budgets.
Good Conductivity
Although aluminum has lower conductivity than copper, its performance can be improved by increasing the cable's cross-sectional area. This ensures that aluminum cables can meet the electrical demands of buildings while maintaining stable power transmission.
Corrosion Resistance
A natural oxide layer forms on the surface of aluminum, giving it excellent corrosion resistance. This makes aluminum cables particularly suitable for environments with high humidity or exposure to chemical corrosives, helping extend their service life.
Weather Resistance and Anti-Aging Performance
The outer sheath of aluminum cables is often made from high-quality PVC or XLPE materials, which offer strong resistance to weathering and aging. These cables are suitable for outdoor use or extreme environments and are resistant to aging caused by temperature fluctuations or sun exposure.
Easy Installation
The flexibility and light weight of aluminum cables make them easier to handle and install, reducing construction time and labor costs. They are especially well-suited for high-rise buildings and large-span wiring installations.
Flame Retardant and Safe
Aluminum building cables typically have flame retardant properties, which slow the spread of fire. This increases the safety of the cables and provides more escape time for building occupants in case of fire.
Lightweight and Cost-Effective
Aluminum cables are lighter than copper cables, making them ideal for long-distance installation, especially in large-scale construction projects. Additionally, aluminum is much more affordable than copper, offering a significant cost advantage for projects with tight budgets.
Good Conductivity
Although aluminum has lower conductivity than copper, its performance can be improved by increasing the cable's cross-sectional area. This ensures that aluminum cables can meet the electrical demands of buildings while maintaining stable power transmission.
Corrosion Resistance
A natural oxide layer forms on the surface of aluminum, giving it excellent corrosion resistance. This makes aluminum cables particularly suitable for environments with high humidity or exposure to chemical corrosives, helping extend their service life.
Weather Resistance and Anti-Aging Performance
The outer sheath of aluminum cables is often made from high-quality PVC or XLPE materials, which offer strong resistance to weathering and aging. These cables are suitable for outdoor use or extreme environments and are resistant to aging caused by temperature fluctuations or sun exposure.
Easy Installation
The flexibility and light weight of aluminum cables make them easier to handle and install, reducing construction time and labor costs. They are especially well-suited for high-rise buildings and large-span wiring installations.
Flame Retardant and Safe
Aluminum building cables typically have flame retardant properties, which slow the spread of fire. This increases the safety of the cables and provides more escape time for building occupants in case of fire.
Power Transmission in Buildings
Aluminum cables are widely used for power transmission in residential, commercial, and industrial buildings, connecting distribution boxes, sockets, and lighting equipment to ensure stable and safe electricity supply within the building.
Lighting Systems
These cables are commonly used in both indoor and outdoor lighting systems, providing reliable power transmission to lamps and lighting equipment. They meet the lighting needs in various environments such as residential areas, shopping malls, and parking lots.
Main Distribution Lines
Aluminum cables serve as the main distribution lines in buildings, linking main distribution rooms, transformers, and branch circuits to ensure efficient power distribution throughout the building.
Air Conditioning and Elevator Systems
Aluminum cables are suitable for connecting high-power equipment such as air conditioning systems and elevators. These systems typically require significant electrical power, and aluminum cables help reduce overall construction costs while ensuring stable power transmission.
Emergency Power Systems
Aluminum cables are used in emergency power systems, such as backup power supplies and emergency lighting. These cables ensure that a building retains basic power and safety features during an emergency situation.
Firefighting Systems
Aluminum cables also play a crucial role in firefighting systems, supplying power to fire pumps, smoke exhaust fans, and other critical equipment. Their corrosion resistance and flame-retardant properties ensure the long-term safety and functionality of the firefighting system, protecting the building's fire safety.
Power Transmission in Buildings
Aluminum cables are widely used for power transmission in residential, commercial, and industrial buildings, connecting distribution boxes, sockets, and lighting equipment to ensure stable and safe electricity supply within the building.
Lighting Systems
These cables are commonly used in both indoor and outdoor lighting systems, providing reliable power transmission to lamps and lighting equipment. They meet the lighting needs in various environments such as residential areas, shopping malls, and parking lots.
Main Distribution Lines
Aluminum cables serve as the main distribution lines in buildings, linking main distribution rooms, transformers, and branch circuits to ensure efficient power distribution throughout the building.
Air Conditioning and Elevator Systems
Aluminum cables are suitable for connecting high-power equipment such as air conditioning systems and elevators. These systems typically require significant electrical power, and aluminum cables help reduce overall construction costs while ensuring stable power transmission.
Emergency Power Systems
Aluminum cables are used in emergency power systems, such as backup power supplies and emergency lighting. These cables ensure that a building retains basic power and safety features during an emergency situation.
Firefighting Systems
Aluminum cables also play a crucial role in firefighting systems, supplying power to fire pumps, smoke exhaust fans, and other critical equipment. Their corrosion resistance and flame-retardant properties ensure the long-term safety and functionality of the firefighting system, protecting the building's fire safety.
ROHS, UL, CUL, CSA
ISO Certifications: ISO 9001 (Quality Management), ISO 14001 (Environmental Management)
IEC Standards: IEC 60227 (PVC Insulated Cables), IEC 60502 (Power Cables), IEC 60332 (Cable Flame Propagation Tests)
UL (Underwriters Laboratories)
CSA (Canadian Standards Association)
CE (Conformité Européenne)
RoHS (Restriction of Hazardous Substances)
NEC (National Electrical Code)
NEMA (National Electrical Manufacturers Association)
ASTM (American Society for Testing and Materials)
Performance and Special Application Certifications
BS (British Standards): BS 5467 (Power Cables), BS 6004 (Cable Insulation Materials)
AS (Australian Standards): AS/NZS 3000
SAA (Standards Australia Approval)
LSZH Certification (Low Smoke Zero Halogen)
NFPA (National Fire Protection Association) Certification
Environmental Certifications: REACH, IEC 60332 (Fire Safety Testing)
ROHS, UL, CUL, CSA
ISO Certifications: ISO 9001 (Quality Management), ISO 14001 (Environmental Management)
IEC Standards: IEC 60227 (PVC Insulated Cables), IEC 60502 (Power Cables), IEC 60332 (Cable Flame Propagation Tests)
UL (Underwriters Laboratories)
CSA (Canadian Standards Association)
CE (Conformité Européenne)
RoHS (Restriction of Hazardous Substances)
NEC (National Electrical Code)
NEMA (National Electrical Manufacturers Association)
ASTM (American Society for Testing and Materials)
Performance and Special Application Certifications
BS (British Standards): BS 5467 (Power Cables), BS 6004 (Cable Insulation Materials)
AS (Australian Standards): AS/NZS 3000
SAA (Standards Australia Approval)
LSZH Certification (Low Smoke Zero Halogen)
NFPA (National Fire Protection Association) Certification
Environmental Certifications: REACH, IEC 60332 (Fire Safety Testing)
Customization Services: We offer tailored solutions for specific project needs, including armored specialty cables (corrugated armor), cables with high and low-temperature resistance, and custom-shaped conductor cables (aluminum/copper).
Large Project Expertise: We provide optimized cable solutions for complex and large-scale construction projects, improving project efficiency and reducing overall costs.
Customization Services: We offer tailored solutions for specific project needs, including armored specialty cables (corrugated armor), cables with high and low-temperature resistance, and custom-shaped conductor cables (aluminum/copper).
Large Project Expertise: We provide optimized cable solutions for complex and large-scale construction projects, improving project efficiency and reducing overall costs.
Q: How long is the delivery time of the order?
A: The delivery time for MOQ quantity is about 10-15 days, and for large quantity it will take about 35-60 days.
About logistics and transportation:
Q: What transportation services do you provide? Can you arrange sea or rail transportation?
A: We can provide air transportation, sea transportation, road transportation and railway transportation etc.
Q: How long is the delivery time of the order?
A: The delivery time for MOQ quantity is about 10-15 days, and for large quantity it will take about 35-60 days.
About logistics and transportation:
Q: What transportation services do you provide? Can you arrange sea or rail transportation?
A: We can provide air transportation, sea transportation, road transportation and railway transportation etc.