Product Description: How to Translate
The GYDTS optical cable structure is: the fiber optic ribbon is located in a loose tube with fiber paste (the fiber optic ribbon can be 4, 6, 8, or 12 cores); The center of the cable core is made of steel wire (possibly with a PE cushion layer), which is surrounded by loose sleeves and twisted with filling ropes. The gaps inside and outside the cable core are filled with cable paste; The outer layer of the cable core is a steel polyethylene sheath.
The ribbon fibers are positioned in a loose tube made of a high modulus plastic. (The ribbon fiber may have 4,6,8,12 fibers.) The tubes are filled with a water-resistant filling compound. A steel wire (may PE blanket) locates in the center of core as a metallic strength member. Tubes are stranded around the strength member into a compact and circular cable core. An steel Polyethylene Laminate(PSP) is applied around the cable core, which is filled with the filling compound to protect it from water ingress. Then, the cable is completed with a PE sheath.
Range of fiber optic cable cores:4~864core
Optical cable core number:4~864core
Types of optical fibers and their main optical characteristics:
Optical fiber types and their opticalcharacteristics:
|
Fiber optic category Fibertype |
Attenuation(20℃)Attenuation(20℃) |
bandwidthBandwith |
Cut off wavelength of optical cableCable Cut-off Wavelength lcc |
|||
|
1310nm |
1550nm |
850nm |
1300nm |
850/1300nm |
||
|
unitunit |
dB/Km |
dB/Km |
dB/Km |
dB/Km |
MHz.Km |
nm |
|
G652D |
≤0.36 |
≤0.22 |
--- |
--- |
--- |
≤1260 |
|
G655 |
≤0.40 |
≤0.23 |
--- |
--- |
--- |
≤1450 |
|
50/125 |
--- |
--- |
≤3.3 |
≤1.2 |
≥500/500 |
--- |
|
62.5/125 |
--- |
--- |
≤3.3 |
≤1.2 |
≥200/500 |
--- |
|
HiBand50/125HiBand50/125 |
--- |
--- |
≤3.0 |
≤1.0 |
≥500/1000 |
--- |
|
HiBand62.5/125HiBand62.5/125 |
--- |
--- |
≤3.0 |
≤1.0 |
≥200/600 |
--- |
|
OM2(MaxBand®150 MaxBand® 150) |
--- |
--- |
≤3.0 |
≤1.0 |
≥700/500 |
--- |
|
OM3(MaxBand®300 MaxBand® 300) |
--- |
--- |
≤3.0 |
≤1.0 |
≥1500/500 |
--- |
|
OM4(MaxBand®550 MaxBand® 550) |
--- |
--- |
≤3.0 |
≤1.0 |
≥3500/500 |
--- |
Product Features:
1Can effectively protect optical fibers;
2The fiber optic cable structure design is very tight;
3Has excellent mechanical and temperature characteristics;
4Has strong water and moisture resistance;
5ThePEThe outer sheath has strong resistance to ultraviolet radiation and wear resistance;
Product features:
1, It can effectively protect the optical fiber;
2, Cable structure design is very compactness;
3, With very good mechanical characteristics and temperature characteristics;
4, It has a strong water resistance and moisture resistance;
5, PE outer sheath has very strong ultraviolet radiation resistance and wear resistance;
Main performance:
1Allowable tensile strength: long-term600NIn the short term1500N;
2Allowable flattening force: long-term300N/100mmIn the short term1000N/100mm;
3Bending radius: Static bending radius10Multiple fiber optic cable outer diameter, dynamic bending radius20Double the diameter of the optical cable;
4Storage and usage temperature range:-40~+70℃。
Main performance:
1, Tensile Strength: long term 600N, short term 1500N;
2, Crush Resistance: long term 300N/100mm, short term 1000N/100mm;
3, Bending radius: The static bending radius is 10 times the optical cable diameter, the dynamic bending radius is 20 times the optical cable diameter;
4, Storage and operating of temperature range: -40~+70℃.
Purpose:
Used for outdoor trunk networks and local area networks, widely used in telecommunications, mobile, China Unicom, cable TV, highways, railways, subways, petrochemicals, national defense, video surveillance and other fields.
Uses:
used for outdoor trunk network, LAN, widely used in telecommunications, mobile, cable TV, highway, railway, subway, petrochemical, national defense, video surveillance and other fields.
Construction method:Pipelines, overhead structures, and trenches can also be used.
Application:Duct, Aerial, Can also be used for trench.
Meet the standards:YD/T 981.3andIEC 60794-1Standard.
This kind of cable complies with standard YD/T 981.3 as well as IEC 60794-1.
Fiber ribbon chromatography and sleeve chromatography:
1Fiber optic band chromatography:
(1)The fiber spectrum in the fiber optic ribbon is called "full spectrum", with colors in sequence: blue, orange, green, brown, gray, white, red, black, yellow, purple, pink, and water green;
(2)Arabic numerals are printed on the fiber optic ribbon to distinguish between fiber optic ribbons within the same conduit;
2Tube chromatography:
Sleeve chromatography is usually full chromatography, with colors in sequence: blue, orange, green, brown, gray, white, red, black, yellow, purple, pink, and water green;
Colour Arrangement ofribbonfibers and loose tubes:
1, ribbon fibers colour identification:
(1)The ribbon’s standard fiber colour identification, followed by color: blue, orange, green, brown, gray, white, red, black, yellow, purple, pink, aqua;
(2) The ribbon fibers are printed with Arabia numbers to distinguish the ribbon fibers in the same loose tube;
2, loose tubes colour identification:
Colour Arrangement of loose tubes in cable is usually full colour identification , followed by color: blue, orange, green, brown, gray, white, red, black, yellow, purple, pink, aqua;
