M22759/28-20
- Approx LBS/MFT: 5.42
- AWG Size: 20
- Cond. Material: Silver-Coated Copper
- Conductor Stranding: 19/32
- Insul. Material: Polytetrafluoroethylene (PTFE)
- Jacket Material: Polyimide (PI)
- M27500 Component: JB
- Max O.D. (in): 0.061
- Max. Temp: 200C
- Mil-Spec: M22759/28
- Min O.D. (in): 0.057
- Min. Temp: -55C
- No. of Cond.: 1
- No. of Strands: 19
- Nom. Dia. of Cond.: 0.038
- SAE Spec: AS22759/28
- Strand Size: 32
- Voltage: 600
M22759/28-20 — 20 Gauge M22759/28 Mil-Spec Wire
The M22759/28-20 cable is a versatile electrical cable designed for demanding applications where reliable performance and durability are essential. With an approximate weight of 5.42 pounds per thousand feet, it provides a balanced combination of flexibility and strength.
Featuring a 20 AWG size, this cable is suitable for a wide range of electrical and electronic applications. It is constructed with silver-coated copper conductors, known for their excellent electrical conductivity, corrosion resistance, and longevity. The conductor stranding consists of 19 strands, each with a 32-gauge thickness, ensuring both flexibility and robustness.
This cable is insulated with Polytetrafluoroethylene (PTFE), a high-performance insulating material that offers excellent thermal and electrical insulation properties. The jacket material is made of Polyimide (PI), which provides additional protection and durability. With a maximum outer diameter of 0.061 inches and a maximum operating temperature of 200 degrees Celsius, it is well-suited for use in high-temperature environments.
Compliant with Mil-Spec M22759/28 and SAE Spec AS22759/28 standards, this cable adheres to stringent industry regulations and quality requirements. It is equipped with 19 strands, ensuring reliable electrical performance and compliance with various application demands.
The M22759/28-20 cable is a dependable and rugged solution suitable for a wide range of applications. Its silver-coated copper conductors, PTFE insulation, Polyimide jacket, and high-temperature tolerance make it an excellent choice for environments where consistent signal transmission and resistance to elevated temperatures are critical.