A-A-52081-CSE-1
- Color: Black, Natural
- Finish: Self-Extinguishing Synthetic Elastomer
- Finish Content: 7-17%
- Length (yds): 250
- Material: Polyester
- Max. Tensile Strength: 135 lbs
- Mil-Spec: Formerly Mil-T-43435B Type II, Size 1, Finish C or A-A-52081-C-1
- Size: 1
- Thickness (in): 0.013 - 0.019
- Ultimate Elongation: 0.4
- Width (in): 0.180 - 0.220
A-A-52081-CSE-1 — Polyester Lacing Tape with Self Extinguishing Finish
A-A-52081-CSE-1 from Breyden is a Size 1 Polyester Lacing Tape featuring a Self-Extinguishing finish, specifically engineered for use in critical cable management tasks within defense, industrial, and high-performance environments. Made from premium, durable polyester material, this lacing tape offers exceptional strength, flexibility, and resistance to wear and tear, ensuring long-lasting performance even under demanding conditions.
With a tensile strength of 135 lbs, the A-A-52081-CSE-1 provides reliable and secure bundling of cables and wires, offering superior holding power without compromising the integrity of the wiring system. The tape’s width range of 0.180 to 0.220 inches makes it versatile enough for a variety of applications, accommodating medium to large cable bundles and ensuring a secure fit in industrial, military, or aerospace wiring systems.
One of the key features of this lacing tape is its Self-Extinguishing finish, which provides an added layer of safety by preventing the spread of flames in the event of a fire. This self-extinguishing property is crucial for applications in environments where fire resistance is a top priority, such as military installations, aerospace systems, and sensitive industrial settings.
Each roll of the A-A-52081-CSE-1 contains approximately 250 yards of tape, making it ideal for large-scale installations, ongoing maintenance, and long-term service needs. Whether it’s being used to organize complex wiring systems in defense or industrial projects, this lacing tape offers a reliable and safe solution for cable management, ensuring both performance and safety in critical applications.