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GYTA-53 outdoor optical cable

GYTA-53 outdoor optical cable is a filled armored optical cable, the structure is 250 μ m optical fiber into a high modulus material made of loose sleeve, loose sleeve filled with waterproof compounds. At the center of the core is a metal reinforcing core, and for some core cables, it needs to squeeze a layer of polyethylene (PE). Release the sleeve (and filling rope) around the center strengthening core to synthesize a compact and circular core, and the gap in the core fills the water filling. Plastic aluminum strip (APL) after squeezing a layer of polyethylene inner sheath, double-sided plastic steel strip (PSP) after squeezing polyethylene sheath into cable.

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GYTA-53 outdoor optical cable

Optical cable meter number:500M 1000M 1500M 2000M 3000M

Number of cable cores:4/6/8/12/24/48/72/96/144 cores

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GYTA-53 outdoor optical cable is a filled armored optical cable, the structure is 250 μ m optical fiber into a high modulus material made of loose sleeve, loose sleeve filled with waterproof compounds. At the center of the core is a metal reinforcing core, and for some core cables, it needs to squeeze a layer of polyethylene (PE). Release the sleeve (and filling rope) around the center strengthening core to synthesize a compact and circular core, and the gap in the core fills the water filling. Plastic aluminum strip (APL) after squeezing a layer of polyethylene inner sheath, double-sided plastic steel strip (PSP) after squeezing polyethylene sheath into cable.


Characteristics


1. With excellent mechanical and environmental performance, can resist tension, pressure and resistance to external environmental interference.

2. In terms of optical fiber transmission, it has the advantages of low loss, low crosstalk and high bandwidth.

3. The loose sleeve is twisted around the reinforcement, and the process of water ointment filling, the full section of water resistance.

4. Steel (aluminum) strip edge bonding is reliable, high strength, torsion without cracking.

5. The residual length of the optical fiber is stable. After forming the cable, the additional attenuation of the optical fiber is almost zero, and the dispersion value does not change

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