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  • AL PVC Insulation PVC Sheath 4x150mm2 Aluminium Power Cable
  • AL PVC Insulation PVC Sheath 4x150mm2 Aluminium Power Cable
  • AL PVC Insulation PVC Sheath 4x150mm2 Aluminium Power Cable
  • AL PVC Insulation PVC Sheath 4x150mm2 Aluminium Power Cable
  • AL PVC Insulation PVC Sheath 4x150mm2 Aluminium Power Cable
  • AL PVC Insulation PVC Sheath 4x150mm2 Aluminium Power Cable
AL PVC Insulation PVC Sheath 4x150mm2 Aluminium Power Cable

AL PVC Insulation PVC Sheath 4x150mm2 Aluminium Power Cable

$0.50-$9.00/ Meter|500 Meter/Meters(Min. Order)

Customization:

Customized logo(Min.Order: 1000 pieces)
Customized packaging(Min.Order: 1000 pieces)
Graphic customization(Min.Order: 1000 pieces)

AL PVC Insulation PVC Sheath 4x150mm2 Aluminium Power Cable

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • High-Capacity Power Transmission: Designed with 5 cores (4x150mm²) of aluminum and copper conductors to efficiently distribute low-voltage electricity, ensuring reliable power delivery for heavy-load applications.
  • Underground Durability: Features PVC insulation and sheath for resistance to moisture, chemicals, and mechanical stress, making it ideal for buried installations.
  • Color-Coded Conductors: Each core is color-insulated (e.g., blue, red, yellow, brown) for easy identification during installation and maintenance.

Key features

  • 1. Material Technology

  • With aluminum and copper conductors combined with durable PVC insulation, you can achieve a balance of cost-effectiveness and reliability for underground power distribution.

  • 2. Interactive Design

  • With color-coded conductors (blue, red, yellow, brown), you can easily identify and manage individual circuits during installation and maintenance, reducing errors.

  • 3. Performance Parameters

  • With a 150mm² cross-sectional area, you can handle high current loads efficiently, ensuring stable power transmission even under heavy-duty conditions.

  • 4. Scenario Solutions

  • With rugged PVC sheathing designed for underground use, you can withstand harsh environmental conditions such as moisture and mechanical stress, ensuring reliable performance in buried installations.

  • 5. Certification Standards

  • With CCC certification, you can ensure compliance with strict safety and quality standards, guaranteeing safe and reliable operation in regulated environments.

Product details

AL PVC Insulation PVC Sheath 4x150mm2 Aluminium Power Cable

The AL PVC Insulation PVC Sheath 5-Core 150mm² Aluminium Power Cable is designed for underground power distribution, combining durability and flexibility with compliance to CCC certification. Its aluminum conductors ensure cost-effective conductivity, while PVC insulation and jacketing provide robust protection against moisture, abrasion, and environmental stress.

Technical specifications

FeatureSpecificationBenefit
Conductor MaterialAluminum (primary) with optional copper strandsCost-effective conductivity with customizable performance
Insulation MaterialPVC (Polyvinyl Chloride)Flexible, chemical-resistant, and flame-retardant
Jacket MaterialPVCEnhanced abrasion resistance and UV stability
Number of Cores5-coreSupports complex wiring systems
Voltage RatingLow Voltage (LV)Safe for residential and industrial use
Color CodingMulti-colored insulation (e.g., blue, red)Simplifies installation and maintenance
CertificationCCCMeets safety and performance standards
ApplicationUnderground power distributionWithstands harsh environmental conditions

Customization guide

Adjustable parameters include:

  • Conductor Material: Swap aluminum for copper to boost conductivity by 65% for high-current applications.
  • Core Count: Customize core numbers (3–7 cores) to match specific wiring requirements.
  • Insulation Thickness: Modify to enhance resistance against mechanical stress or chemical exposure.

Get inspired

With this cable’s 5-core design and PVC jacketing, you can efficiently manage underground power systems while minimizing installation errors via its color-coded conductors. For harsh environments, its CCC certification ensures reliability under extreme temperatures and moisture.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Conductor MaterialAluminum (61% IACS)Aluminum + Copper Coating (+15% conductivity)Copper (+30% conductivity)*
Temperature Rating70°C80°C90°C
FlexibilityStandard20% more flexible40% more flexible
CertificationCCCCCC + IP67CCC + IP68 + RoHS

Supplier's note

  1. Technical Breakthroughs:

    • The Pro Model’s copper conductors deliver 30% higher conductivity than aluminum, ideal for high-current industrial setups.
    • Enhanced flexibility in Advanced/Pro models reduces installation friction in tight underground spaces.
    • IP68 certification (Pro) enables submersion in water, expanding applicability to flood-prone areas.
  2. Version Selection Guide:

    • Base Model: Best for standard underground residential wiring where cost-efficiency is prioritized.
    • Advanced Model: Suitable for industrial sites needing moderate conductivity and IP67-rated durability.
    • Pro Model: Optimal for harsh environments (e.g., chemical plants, coastal regions) requiring peak performance and submersion resistance.

*Compared to aluminum baseline.

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Underground Power DistributionBuried utility lines, construction sitesConductor Material: Aluminum (Industry Standard/Our Base) vs Copper (▲ Our Advanced, 61% lower resistance1)
Insulation: PVC (Industry Standard/Our Base) vs UV-resistant PVC (▲ Our Advanced, ASTM D471 compliant2)
Cost-effective (Base)
Higher conductivity (▲ Advanced)
UV protection (▲ Advanced)
Lower current capacity (Base)
Higher cost (▲ Advanced)
Residential Low Voltage WiringHome wiring, lighting circuitsConductor Material: Aluminum (Our Base) vs Copper (▲ Our Advanced, 0.017 Ω/km resistance3)
Jacket: Standard PVC (Industry Standard/Our Base) vs Flame-retardant PVC (▲ Our Advanced, IEC 60332-14)
Economical (Base)
Fire safety (▲ Advanced)
Better conductivity (▲ Advanced)
Requires special connectors (Base)
Heavier (▲ Advanced)
Industrial Machinery ConnectionsFactories, heavy equipmentCurrent Rating: 150A (Industry Standard/Our Base) vs 200A (▲ Our Advanced, IEC 602285)
Jacket Strength: Standard PVC (Base) vs Reinforced PVC (▲ Advanced, abrasion resistance ASTM D22406)
Cost-effective for standard loads (Base)
Higher load capacity (▲ Advanced)
Longer lifespan (▲ Advanced)
Limited scalability (Base)
Bulky (▲ Advanced)
Commercial Building InstallationsOffice buildings, HVAC systemsCores: 5 (Industry Standard/Our Base) vs 7 (▲ Our Advanced, customizable cores7)
Flexibility: Standard bend radius (Base) vs Reduced bend radius (▲ Advanced, IEC 602278)
Standard configuration (Base)
More cores (▲ Advanced)
Easier routing (▲ Advanced)
Limited scalability (Base)
Higher cost (▲ Advanced)
Outdoor Weatherproof ApplicationsStreet lighting, outdoor fixturesTemperature Range: -15°C to 60°C (Base) vs -25°C to 80°C (▲ Advanced, IEC 602279)
UV Resistance: Standard PVC (Base) vs Enhanced UV-resistant PVC (▲ Advanced, ASTM D47110)
Durable in moderate climates (Base)
Wider temp tolerance (▲ Advanced)
UV protection (▲ Advanced)
Degradation in extreme temps (Base)
Higher cost (▲ Advanced)
High-Temperature EnvironmentsIndustrial ovens, furnace areasInsulation: PVC (Industry Standard/Our Base) vs XLPE (▲ Our Advanced, IEC 6081111)
Max Temp Rating: 70°C (Base) vs 90°C (▲ Advanced12)
Cost-effective for standard temps (Base)
Higher temp resistance (▲ Advanced)
Not suitable for extreme heat (Base)
More expensive (▲ Advanced)

Tooltip Explanations:

1 Copper’s conductivity reduces energy loss by 61% compared to aluminum (IEC 60228).
2 UV-resistant PVC withstands 1000+ hours of UV exposure without degradation (ASTM D471).
3 Copper conductors achieve 0.017 Ω/km resistance at 20°C (IEC 60228).
4 Flame-retardant PVC meets IEC 60332-1 for self-extinguishing properties.
5 Advanced version rated for 200A continuous load (IEC 60228).
6 Reinforced jacket withstands 100,000 cycles of abrasion (ASTM D2240).
7 Customizable cores allow 5–7 conductors for complex systems.
8 Reduced bend radius improves routing in tight spaces (IEC 60227).
9 Advanced version operates in -25°C to 80°C (-13°F to 176°F).
10 Enhanced UV resistance prevents jacket cracking after 10 years (ASTM D471).
11 XLPE insulation withstands 90°C (194°F) continuously (IEC 60811).
12 Higher temp rating reduces thermal expansion risks in industrial settings.

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