M22759/2-04

M22759/2-04
$0.00 / 1000 FT
  • Approx LBS/MFT: 835.00
  • AWG Size: 4/0
  • Cond. Material: Nickel-Plated Copper
  • Conductor Stranding: 2109/30
  • Insul. Material: Polytetrafluoroethylene (PTFE)
  • Jacket Material: Polytetrafluoroethylene (PTFE)
  • M27500 Component: E
  • Max O.D. (in): 0.730
  • Max. Temp: 260C
  • Mil-Spec: M22759/2
  • Min O.D. (in): 0.690
  • Min. Temp: -55C
  • No. of Cond.: 1
  • No. of Strands: 2109
  • SAE Spec: AS22759/2
  • Shield: Impregnated Glass Braid
  • Shield Material: Polytetrafluoroethylene (PTFE) Coated Fiberglass
  • Strand Size: 30
  • Voltage: 600

M22759/2-04 — 4/0 Gauge M22759/2 Mil-Spec Wire

The M22759/2-04 is a heavy-duty electrical cable designed to meet the rigorous demands of various high-power applications. Weighing approximately 835.00 pounds per thousand feet, it provides a robust and reliable solution for electrical connections requiring substantial current-carrying capacity. This cable features a 4/0 AWG size, ensuring efficient electrical conduction, and its conductors are made of nickel-plated copper, offering excellent electrical performance and resistance to corrosion. The conductor stranding consists of 2109 strands of 30-gauge wire, providing both flexibility and durability. Insulated with Polytetrafluoroethylene (PTFE), known for its exceptional high-temperature resistance and outstanding electrical insulation properties, this cable ensures reliable performance even in the most challenging environments. With a maximum outer diameter of 0.730 inches and the capability to withstand temperatures of up to 260 degrees Celsius, it is well-suited for applications that demand high-temperature performance and durability. The M22759/2-04 complies with Mil-Spec M22759/2 and SAE Spec AS22759/2 standards, ensuring its reliability and quality. With 2109 strands and a high voltage rating of 600, the M22759/2-04 cable is a trusted and versatile solution for various high-power electrical and electronic applications, particularly those requiring exceptional performance and reliability, even in applications with higher voltage requirements.

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