M22759/28-12

M22759/28-12
$0.00 / 1000 FT
  • Approx LBS/MFT: 23.00
  • AWG Size: 12
  • Cond. Material: Silver-Coated Copper
  • Conductor Stranding: 19/25
  • Insul. Material: Polytetrafluoroethylene (PTFE)
  • Jacket Material: Polyimide (PI)
  • M27500 Component: JB
  • Max O.D. (in): 0.114
  • Max. Temp: 200C
  • Mil-Spec: M22759/28
  • Min O.D. (in): 0.108
  • Min. Temp: -55C
  • No. of Cond.: 1
  • No. of Strands: 19
  • SAE Spec: AS22759/28
  • Strand Size: 25
  • Voltage: 600

M22759/28-12 — 12 Gauge M22759/28 Mil-Spec Wire

The M22759/28-12 cable is a high-performance electrical cable designed to meet the demands of various industries and applications. With an approximate weight of 23.00 pounds per thousand feet, it strikes a balance between durability and flexibility.

Featuring a 12 AWG size, this cable is well-suited for a wide range of electrical applications. It boasts silver-coated copper conductors, known for their excellent electrical conductivity, corrosion resistance, and durability. The conductor stranding consists of 19 strands, each with a 25-gauge thickness, ensuring both flexibility and strength.

This cable is insulated with Polytetrafluoroethylene (PTFE), renowned for its exceptional thermal and electrical insulating properties. The jacket material is Polyimide (PI), providing additional protection and robustness. With a maximum outer diameter of 0.114 inches and a maximum operating temperature of 200 degrees Celsius, it is suitable for use in high-temperature environments.

Compliant with Mil-Spec M22759/28 and SAE Spec AS22759/28 standards, this cable meets stringent industry regulations and quality standards. It is equipped with 19 strands, ensuring reliable performance and compliance with the demands of a variety of applications.

The M22759/28-12 cable is a dependable and durable solution ideal for numerous applications. Its silver-coated copper conductors, PTFE insulation, Polyimide jacket, and high-temperature rating make it well-suited for environments where consistent signal transmission and resistance to high temperatures are essential.

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