Optical fibers are widely used in fiber optic communication systems because of their ability to transmit data over large distances more quickly and efficiently than other communication media. In addition, optical fibers are often used in the development of multiple sensors (receivers) and related applications.
Fiber optic cables are designed for use in a variety of industries such as Telecommunications, Structural Health Monitoring, Railroad etc. and many applications such as blast, direct burial, confined space, underwater, customized causes.
Fiber optic cables are designed in accordance with international standards such as ISO and IEEE.
Optical cables pass water resistance, mechanical, temperature and electrical tests to keep performance and quality levels at the highest level.
Model | Fiber Count | Tensile Load | Resistance to Crushing Loads |
In Air ADSS Standard Aramid![]() |
≤ 432 | 50kN | 0.3kN/cm < |
In Air ADSS Reinforced Aramid![]() |
≤ 432 | 100kN | 0.3kN/cm < |
Armored Standard Dielectric![]() |
≤ 432 | 20kN | 0.4kN/cm < |
Armored Standard Reinforced Dielectric![]() |
≤ 432 | 40kN | 1kN/cm < |
Model | Fiber Count | Tensile Load | Resistance to Crushing Loads |
InGround Standard![]() |
≤ 432 | 20kN | 0.4kN/cm < |
InGround Standard Reinforced![]() |
≤ 432 | 80kN | 1kN/cm < |
InGround Standard Wetland Reinforced![]() |
≤ 432 | 80kN | 1kN/cm < |
InGround Light Dielectric![]() |
≤ 432 | 12kN | 0.7kN/cm < |
InGround Standard Dielectric![]() |
≤ 432 | 20kN | 0.4kN/cm < |
InGround Standard Reinforced Dielectric![]() |
≤ 432 | 40kN | 1kN/cm < |
Model | Breaking Tensile Strength | Crush Resistance | Water blocking system suitable for submarine application |
![]() |
200Kn | 2.5kN/cm | x |
Model | Fiber Count | Long Term Tensile Load | Resistance to Crushing Loads |
InTube Blowing Micro![]() |
≤ 24 | ≤ 0.3kN | 0.3kN/cm < |
InTube Blowing Standard![]() |
≤ 144 | 1kN | 0.1kN/cm < |
InTube Blowing 288![]() |
≤ 288 | 0.9kN | 0.1kN/cm < |
InTube Blowing 432![]() |
≤ 432 | 1kN | 0.1kN/cm < |
InTube Blowing 576![]() |
≤ 576 | 3kN | 0.3kN/cm < |
InTube Blowing 864![]() |
≤ 864 | 4kN | 0.3kN/cm < |
Model | Fiber Count | Crush | Max. Rated design tension |
![]() |
≤ 432 | 0.22kN/cm | ≤ 2.7kN/cm < |
Model | Fiber Count | Tensile Load | Resistance to crushing loads |
InWater Standard![]() |
≤ 24 | ≤ 70kN | 1.5kN/cm < |
InWater Stainless Steel Tube![]() |
≤ 48 | ≤ 80kN | 1.5kN/cm < |
InWater Strainded Stainless Steel Tube![]() |
≤ 24 | 90kN | 1.5kN/cm < |
Model |
Fiber Count |
Solution for Tall Buildings |
Solution for Multiple Housing Units |
Tight – Buffered Riser![]() |
≤ 48 | fiber is buffered to floor box or subscriber’s apartment | |
Riser With Micro Tubes![]() |
≤ 288 | a separate micro loose tube is routed to each inter-floor box. With 100% penetration, the number of micro loose tubes equals the number of floors and the number of fibers equals the number of flats in the floor. |
Model |
Fiber Count |
Crush |
Maksimum Rated Design Tension |
Advantages |
Fire Rated Universal![]() |
≤ 96 | 1kN | ≤ 7 kN |
– Ability to remain functional against direct flame for at least 180 minutes – Low toxicity/toxicity/toxin ratio – Low steam – Halogen free |
Fire Rated Dielectric ![]() |
≤ 48 | 0.2kN | ≤ 1.1kN | |
Fire Rated Outdoor ![]() |
≤ 24 | 0.2kN | ≤ 2.7 kN |