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MISUMI Cable Carriers(Cable Insertion Surface:Both Surfaces)

MISUMI offers products Cable Carriers specified by Cable Insertion Surface Both Surfaces from Automation Components product category. There are a total of 2 items. Search and select detailed specifications of parts for your machine with free CAD downloads. MISUMI products are available to order through MISUMI online 24 hours a day. Free shipping, no minimum order.

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  • Economy series
    You can add up to 6 items per a category to the compare list.
    Cable Carriers Low Particle Generation, Low Noise, Inner Height

    MiSUMi C-VALUE

    Cable Carriers Low Particle Generation, Low Noise, Inner Height

    MiSUMi C-VALUE

    Cable Carriers - Low Particle Generaion, Low Noise
    Cable carriers are essential equipment used in automation machines to effectively organize and prevent the tangling and twisting of cables. They provide a wide range of sizes to choose from.
    [Feature]
    - Inner Width Minimum / Maximum (mm.) : 30 and 100
    - Outer Width Minimum / Maximum (mm.) : 46 and 116
    - Bending Radius (mm.) : 55, 75, 100, 125 and 150
    - Number of links (Pcs.) : can select between 10 and 65
    - Material: PA+Glass Fiber
    [Application]
    It is used in automation machines to organize and prevent issues from the cable tangling and twisting.
    From: ฿ 1,266.88
    Days to Ship: day to ship Same day
    day to ship Same day
  • Economy series
    You can add up to 6 items per a category to the compare list.
    Cable Carriers Low Particle Generation, Low Noise, Inner Height 40mm (Separator Attachable)

    MiSUMi C-VALUE

    Cable Carriers Low Particle Generation, Low Noise, Inner Height 40mm (Separator Attachable)

    MiSUMi C-VALUE

    Cable Carriers are an economy item, The price is cheaper than the MISUMI standard product.They offer a wide variety of sizes to choose from.
    [Feature]
    ● Inner Width Minimum/Maximum (mm.) : 40 and 100
    ● Inner Height (mm.) : 40
    ● Bending Radius R Minimum/Maximum (mm.) : 60 and 150
    ● Operating Temperature (℃) : -40 to 120
    ● Noise : 40% noise reduction compared to MISUMI general-purpose model
    [Application]
    Cable Carriers are commonly used in various applications in factory automation systems
    From: ฿ 2,769.48
    Days to Ship: day to ship Same day
    day to ship Same day
Brand
Product Series
CAD
From
Days to Ship
Specifications
Inner Height H1(mm)
Inner Width W1(mm)
Bending Radius R(mm)
Properties
Cover Type
Type
Pitch P(mm)
Number of Divided Sections inside Carrier
Cable Insertion Type
Max. Cable O.D. Dp(Ø)
Cable Insertion Surface
Operating Speed(m/s)
You can add up to 6 items per a category to the compare list.
Cable Carriers Low Particle Generation, Low Noise, Inner Height
You can add up to 6 items per a category to the compare list.
Cable Carriers Low Particle Generation, Low Noise, Inner Height 40mm (Separator Attachable)
Brand

MiSUMi C-VALUE

MiSUMi C-VALUE

Product Series

Cable Carriers Low Particle Generation, Low Noise, Inner Height

Cable Carriers Low Particle Generation, Low Noise, Inner Height 40mm (Separator Attachable)

CAD
  • 2D / 3D
  • 2D / 3D
From

฿ 1,266.88

฿ 2,769.48

Days to Ship Same day Same day
Specifications
      Inner Height H1(mm)3040
      Inner Width W1(mm)30 ~ 10040 ~ 100
      Bending Radius R(mm)55 ~ 15060 ~ 150
      PropertiesLow Particle Generation / Low Noise / Low FrictionLow Particle Generation / Low Noise / Low Friction
      Cover TypeStandard-
      TypeSquare Shape-
      Pitch P(mm)2528
      Number of Divided Sections inside Carrier--
      Cable Insertion Type--
      Max. Cable O.D. Dp(Ø)--
      Cable Insertion SurfaceBoth SurfacesBoth Surfaces
      Operating Speed(m/s)--

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      1. 1

      Application example related to this category

      Related Categories to Cable Carriers

      FAQ Cable Carriers

      Question: What are the advantages of using a cable carrier?
      Answer: 1. Cable Organization: Cable carriers help manage and organize cables, preventing tangling, twisting, and damage. Moreover, they also enhance workplace safety.
      2. Improved Reliability: By preventing cable damage and wear, cable carriers increase the reliability and uptime of machinery and equipment.
      3. Easy Maintenance: Cable carriers simplify maintenance tasks by providing easy access to cables and hoses.
      4. Noise Reduction: The enclosed design dampens vibrations and reduces noise levels in a working environment.
      5. Customizability: Cable carriers come in various sizes, materials, and configurations, allowing for customization based on specific application requirements of the machine
      Question: How do you select the right size and type of cable carrier?
      Answer: 1. Determine cable and hose requirements: For example, how many cables are in the systems, what diameter, bending radius and types of cables and hoses
      2. Check the Inner dimensions of the cable: To select the internal application area of the cable carrier We have to consider taking into account the size of the cable. Including having to allow for the distance between the cables as well
      3. Consider Load Capacity: Determine the maximum weight of the cables and hoses, including any additional loads such as connectors or fittings.
      4. Environmental Factors: Evaluate the operating environment for the cable carrier, such as moisture, clean room and so on. Choose a cable carrier with appropriate material and protection features to withstand these conditions.
      5. Evaluate Motion Requirements: Determine the expected range of motion and dynamic behavior of the cables and hoses. Consider factors such as linear or multi-axis movement, speed and acceleration.
      6. Mounting Options: Consider the available mounting methods, such as horizontal or vertical mounting, fixed or moving mounts
      Question: What are some of the most important factors to consider when designing a cable carrier or drag chain system for electrical conduit protection?
      Answer: 1. Cable and Conduit Size: Ensure that the selected cable carrier has sufficient inner dimensions to accommodate the size of the electrical conduits along with any additional space required for cable movement.
      2. Load Capacity: Choose a cable carrier that can handle the anticipated load without sagging or causing excessive strain.
      3. Flexibility and Range of Motion: Consider factors such as linear or multi-axis movement, bending radius, and the need for torsional or lateral flexibility.
      4. Environmental Conditions: Choose a cable carrier made from materials that can withstand these conditions for example high temperatures , moisture and provide adequate protection.
      5. Mounting and Installation: Ensure that it is compatible with your application. Consider ease of installation, accessibility for maintenance
      6. Safety and Codes Compliance: Ensure that the cable carrier system complies with relevant safety standards such as fire resistance, electrical insulation etc.
      7. Maintenance: Select a cable carrier that allows for easy access and maintenance of cables moreover consider for replacements in the future.
      Question: What are the different materials used to make cable carrier?
      Answer: 1. Plastic/Polymers: Cable carriers are commonly manufactured using engineering plastics such as polyamide (nylon), polypropylene, or polyethylene. These materials offer excellent resistance to chemicals, impact, and wear.
      2. Steel: Steel cable carriers provide high strength and rigidity. They are often used in heavy-duty applications where there are higher loads, extreme temperatures, or exposure to harsh environments.
      3. Aluminum: Aluminum cable carriers offer a balance between strength and weight.. Aluminum is corrosion-resistant and often used in applications that require reduced weight, such as robotics and automation systems.
      4. Stainless Steel: Stainless steel cable carriers are highly resistant to corrosion, making them suitable for applications in harsh environments, such as marine or chemical industries. They offer excellent durability, strength, and protection against moisture, chemicals, and temperature extremes.