Aluminum Heat Sink for Medium-Temp Superconducting Systems

  • Efficient heat dissipation for superconducting systems
  • Lightweight aluminum construction for easy integration
  • Optimized design for medium-temperature applications
  • Customizable sizes to fit specific system requirements
  • Corrosion-resistant material for enhanced durability
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    Products Details

    Grade
    6000 Series
    Tolerance
    ±10%
    Delivery Time
    31-45 days
    Temper
    T3-T8
    Application
    Heat Sink
    Shape
    flat
    Alloy Or Not
    Non-Alloy
    Processing Service
    Bending, Decoiling, Welding, Punching, Cutting
    Product name
    Customized Water Cooling Plate Aluminum Liquid Cold Plate
    Material
    6063 Aluminum Alloy
    MOQ
    1pcs
    Usage
    water cooling system
    Certification
    ISO 9001/ROHS
    Size
    Customers' Drawing
    Keyword
    cooled heat sink, water cold plate, liquid cooling plate, water block
    Package
    custom packaging
    Delivery time
    20-45 Days
    Fabrication
    CNC Machining Etc
    Selling Units
    Single item
    Single package size
    35X30X2 cm
    Single gross weight
    1.200 KG

    Our Manufacturing Base

    Factory Panorama

    Aluminum Bar Manufacturing Workshop

    Mold Storage Warehouse

    43 Aluminum Extrusion Lines (500–5500 Tons)

    Powder Coating Workshop

    Anodizing Workshop

    Deep Processing Workshop

    CNC Precision Machining Workshop

    Finished Product & Export Warehouse

    FAQ

    1. What materials are used in the aluminum heat sink?
    The heat sink is made from high-quality aluminum for efficient heat dissipation.

    2. Is this heat sink suitable for medium-temperature superconducting systems?
    Yes, it is specifically designed for medium-temp superconducting applications.

    3. Can the aluminum heat sink be customized for different sizes?
    Yes, we offer customizable sizes to meet specific system requirements.

    4. Is the aluminum heat sink corrosion-resistant?
    Absolutely, the aluminum material is treated for corrosion resistance.

    5. How does the heat sink improve superconducting system performance?
    It efficiently dissipates heat, improving system stability and performance.

    6. What applications are ideal for this aluminum heat sink?
    It is ideal for medium-temp superconducting systems in various industrial applications.

    7. How does the lightweight design benefit system integration?
    The lightweight aluminum design makes it easy to integrate into existing systems without adding significant weight.

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