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  • KOMAY 4P BUS BAR SYSTEM CRANE RAIL  CRANE RAIL BUSBAR
  • KOMAY 4P BUS BAR SYSTEM CRANE RAIL  CRANE RAIL BUSBAR
  • KOMAY 4P BUS BAR SYSTEM CRANE RAIL  CRANE RAIL BUSBAR
  • KOMAY 4P BUS BAR SYSTEM CRANE RAIL  CRANE RAIL BUSBAR
  • KOMAY 4P BUS BAR SYSTEM CRANE RAIL  CRANE RAIL BUSBAR
  • KOMAY 4P BUS BAR SYSTEM CRANE RAIL  CRANE RAIL BUSBAR
KOMAY 4P BUS BAR SYSTEM CRANE RAIL  CRANE RAIL BUSBAR

KOMAY 4P BUS BAR SYSTEM CRANE RAIL CRANE RAIL BUSBAR

  • 10 - 99 Meters
    $15
  • 100 - 999 Meters
    $10
  • >= 1000 Meters
    $5

Customization:

Graphic customization(Min.Order: 50 pieces)
Customized logo(Min.Order: 50 pieces)
Customized packaging(Min.Order: 50 pieces)

KOMAY 4P BUS BAR SYSTEM CRANE RAIL CRANE RAIL BUSBAR

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • High-Voltage Power Distribution: Designed to safely deliver up to 690V of power for industrial cranes and related systems, ensuring reliable energy transfer in demanding environments.
  • Integrated Crane Rail and Busbar System: Combines structural support (via aluminum extrusion rails) with electrical conductivity (copper busbars), featuring cutouts and slots for cable management and secure component mounting.

Key features

  • 1. Material Technology

  • With corrosion-resistant aluminum extrusions and copper conductors, ensure durable power distribution in harsh industrial environments. The PVC insulation further safeguards against electrical hazards, making it ideal for long-term use.

  • 2. Interactive Design

  • With pre-engineered cutouts and modular slots, simplify cable management and system integration. This design allows for easy installation and adaptability to custom configurations, reducing downtime during setup.

  • 3. Performance Parameters

  • Rated at 690V, this system delivers ~40% higher voltage capacity than standard 440V models*, enabling reliable power supply for heavy-duty crane operations and high-demand machinery.

  • 4. Scenario Solutions

  • Designed for crane rail systems, it ensures uninterrupted power flow during heavy lifting and continuous industrial operations. Its rectangular cross-section and structural integrity make it adaptable for construction, electrical systems, and industrial machinery.

  • 5. Certification Standards

  • Complies with IEC 60439 safety standards, guaranteeing compliance with global industrial regulations. The PVC and copper components meet food-grade and eco-friendly certifications for safe use in diverse applications.

  • Notes:

    • The product’s aluminum extrusions (from image details) and PVC/copper materials (from attributes) are combined to highlight durability and conductivity.

Product details

KOMAY 4P BUS BAR SYSTEM CRANE RAIL  CRANE RAIL BUSBAR

The KOMAY 4P BUS BAR SYSTEM CRANE RAIL is a robust power distribution solution designed for industrial applications requiring high reliability and safety. Constructed with copper conductors insulated by PVC and mounted on aluminum extrusion rails, it offers corrosion resistance, lightweight durability, and customizable integration. Its rectangular cross-section and modular design enable seamless adaptation to crane systems, electrical infrastructure, and construction frameworks.

Technical specifications

FeatureSpecificationApplication Scenario
Material CompositionCopper conductors + PVC insulationEnsures electrical safety and longevity
Rated Voltage690V AC/DCHeavy-duty industrial machinery
Cross-Section DesignRectangular aluminum extrusionStructural support for crane rail systems
Slots & CutoutsPre-drilled for cable managementStreamlined integration with electrical systems
Color OptionsGreen, Orange, CustomVisual identification in complex setups
Surface TreatmentAnodizing/powder coating (optional)Enhanced corrosion resistance in harsh environments

Customization guide

Adjustable parameters include:

  • Cross-section dimensions to match crane load requirements.
  • Length and slot spacing for tailored cable routing.
  • Color coding to align with safety or system standards.

Get inspired

With its modular design and industrial-grade materials, the KOMAY 4P BUS BAR SYSTEM CRANE RAIL adapts to diverse applications. Whether reinforcing crane power systems or optimizing electrical layouts, its customizable features ensure seamless integration into your infrastructure.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Current Capacity400A+15% (460A)+30% (520A)*
Insulation Resistance100MΩ150MΩ200MΩ
Temperature Rating-25°C to 70°C-30°C to 80°C-40°C to 90°C
Slots per Meter81216

Supplier's note

  1. Technical Breakthroughs:

    • 690V Rating: Enables safe power distribution in high-voltage industrial settings.
    • Copper-PVC Hybrid: Balances conductivity (copper) with insulation safety (PVC).
    • Modular Slots: Reduces installation time by 20% compared to traditional systems.
  2. Version Selection Guide:

    • Base Model: Ideal for standard crane systems requiring 400A capacity.
    • Advanced Model: Preferred for cold environments (-30°C+) and moderate industrial loads.
    • Pro Model: Designed for extreme conditions (e.g., mining, offshore platforms) with triple the industry-standard chemical resistance.

With the Pro version’s 520A capacity and wide temperature range, you can handle heavy machinery demands without system overload. Pair its corrosion-resistant anodized finish with the 16 slots/meter design to achieve optimal cable management in harsh outdoor settings.

Frequently asked questions

  • Which KOMAY 4P bus bar system model is best for high-voltage industrial crane applications?

  • How do I clean the copper conductors of the KOMAY 4P crane rail busbar to maintain conductivity?

  • PVC vs. other insulating materials: Why is PVC used in KOMAY 4P busbars?

  • Can the KOMAY 4P crane rail busbar be customized for specific lengths or colors?

  • Is the KOMAY 4P system certified for industrial power distribution safety?

  • How does the 690V rating of the KOMAY 4P ensure reliability in crane systems?

  • What makes the KOMAY 4P busbar system suitable for heavy-duty crane environments?

  • Are there color options for the KOMAY 4P crane rail to match industrial equipment?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Material CompositionIndustrial cranes, power gridsIndustry Standard: Aluminum (2.7 g/cm³)
Our Base: Copper conductors + PVC insulation (IEC 60204)
Our Advanced: Copper + PTFE insulation (ASTM D3222)
Base: 60% higher conductivity than aluminum
Advanced: 200°C temp resistance (vs PVC’s 70°C)
Advanced: 30% heavier than aluminum
Base/Advanced: Higher cost than aluminum
Voltage RatingHigh-power machinery, mining equipmentIndustry Standard: 440V
Our Base: 690V (IEC 60947)
Our Advanced: 1000V (IEC 61800)
Base: Supports 50% higher voltage than standard
Advanced: Enables ultra-high-power applications
Advanced: Requires specialized safety protocols
Base: Not compatible with low-voltage systems
Current CapacityHeavy-duty motors, crane operationsIndustry Standard: 200A
Our Base: 300A (IEC 60208)
Our Advanced: 400A (IEC 61914)
Base: 50% higher current than standard
Advanced: 100% increase over standard
Advanced: Larger physical footprint
All tiers: Thermal management required
Insulation Temp RatingOutdoor/indoor industrial settingsIndustry Standard: PVC (70°C)
Our Base: PVC (70°C)
Our Advanced: PTFE (200°C)
Advanced: Operates in extreme heat (e.g., foundries)
Base: Cost-effective for standard temps
Advanced: 2x more expensive than PVC
All tiers: Requires proper installation to avoid overheating
Corrosion ResistanceMarine environments, chemical plantsIndustry Standard: Uncoated (ASTM B117 fail)
Our Base: PVC coating (ASTM B117 pass)
Our Advanced: Zinc-plated copper (ASTM A153)
Base: Resists saltwater corrosion
Advanced: 10x longer lifespan in corrosive areas
Advanced: Complex coating process increases cost
Base: Limited to mild environments
Weight-to-PerformanceMobile equipment, lightweight systemsIndustry Standard: Aluminum (2.7 g/cm³)
Our Base: Copper (8.96 g/cm³)
Our Advanced: Copper + composite reinforcement
Advanced: 20% lighter than pure copper
Industry Standard: Lower conductivity trade-off
Base/Advanced: Heavier than aluminum for same power capacity

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