Heliax Coaxial Cable—LDF Series Foam Dielectric Cable

Our LDF Heliax Coax Cable is available in a wide variety of configurations. These cables are available with fire retardant jacketing and are extremely flexible. These cables also come with shielding to protect the cable from its environment and to minimize signal interference. LDF Heliax Coaxial Cables are used for cellular and personal communications, CATV, CCTV, HF communication, VLF military data links, AM and FM broadcasts, and terrestrial microwaves.

6 items

  • LDF2-50
    $0.00 / 100 FT
    • Approx LBS/MFT: 0.00
    • Cond. Material: Bare Copper Clad Aluminum
    • Conductor Stranding: solid
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  • LDF4-50A
    $0.00 / 100 FT
    • Approx LBS/MFT: 0.00
    • Cond. Material: Bare Copper Clad Aluminum
    • Conductor Stranding: solid
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  • LDF4-75A
    $0.00 /
    • Approx LBS/MFT: 160.00
    • Cond. Material: Bare Copper Clad Aluminum
    • Conductor Stranding: solid
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  • LDF5-50A
    $0.00 / 100 FT
    • Approx LBS/MFT: 0.00
    • Cond. Material: Bare Copper Tube
    • Conductor Stranding: solid
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  • LDF6-50
    $0.00 / 100 FT
    • Approx LBS/MFT: 0.00
    • Cond. Material: Bare Copper
    • Conductor Stranding: solid
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  • LDF7-50
    $0.00 /
    • Approx LBS/MFT: 0.00
    • Cond. Material: Corrugated Copper Tube
    • Conductor Stranding: solid
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LDF Heliax Coaxial Cable Specifications

LDF Heliax Coax Construction:

  • Conductor: Annularly corrugated
  • Shielding: RFI/EMI
  • Jacket: Materials are dependent upon fire retardancy requirements
  • Dielectric: Closed-cell dielectric
  • Connectors: O-rings seal out moisture.

LDF Heliax Coax Ratings:

  • Temperature Range: -40°C to +60°C
  • Max. Frequency: 5000 MHz

LDF Heliax Coax Features:

  • Closed-cell, foamed PE dielectric prevents water penetration and maintains its characteristics over time.
  • Ultra-high frequencies, low loss.
  • Annularly corrugated outer conductor gives excellent shielding and offers flexibility.
  • Excellent Intermodulation Performance.
  • Solid inner and outer conductors eliminate IM generated by moving contacts in the current path found with stranded inner conductors and braided outer conductors.