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Application: | Communication |
Type: | Single-mode Fiber |
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GYFTY83 fiber optic cable is designed by physical and chemical anti-rodent methods. The optical fiber is installed in the loose tube and twisted around the central strength member. The gap of the cable core is filled with water-blocking ointment. Combine the aramid yarn for reinforcement, finally add PE outer sheath, extrude PE sheath inside, and use flat FRP for armor, and finally extrude PE outer sheath.
GYFTY83 optical cable is a full-dielectric non-metallic structure, using high-strength glass fiber reinforced plastics to form an extremely effective anti-rodent and anti-squirrel protective layer, and through structural optimization, the miniaturization of the optical fiber cable core and the heavy-duty anti-rodent layer are achieved, effectively ensuring Anti-rodent, anti-squirrel performance.
1. The optical cable is suitable for direct burial laying
2. Non-self-supporting overhead, pipeline1. Precise fiber excess length control ensures that the cable has excellent tensile and temperature performance
2. The loose tube material has good hydrolysis resistance, and the tube is filled with ointment to protect the optical fiber
3. The sheath material has good anti-solar radiation performance
4. The double-layer sheath makes the cable have excellent compression resistance
5. All-dielectric optical cable, especially suitable for areas around electric fields or lightning-prone areas
Structure
|
Unit
|
Parameter
|
|
Fiber count
|
fibers
|
6~24
|
|
Loose tube Diameter
|
mm
|
Ф1.8~2.0
|
|
Cores of per tube
(no more than) |
--
|
6
|
|
Central strength member diameter(FRP)
|
mm
|
2.0
|
|
Element
|
--
|
5
|
|
FRP
|
|
1.6*19
|
|
Cable diameter
|
mm
|
15.7±0.5
|
|
Weight
|
Kg/km
|
249
|
|
wooden drum 2km
|
mm
|
1300*760*500(D*d*L)
|
|
Tensile strength
|
Long term
|
N
|
4500
|
|
Short term
|
N
|
8800
|
Crush Resistance
|
Long term
|
N
|
2200
|
|
Short term
|
N
|
3000
|
Bending Radius
|
Dynamic
|
mm
|
≥25*OD
|
|
Static
|
mm
|
≥12.5*OD
|
Operating Temperature
|
ºC
|
-40 --- +60
|
No
|
Item
|
Test standard
|
Method
|
Details specification
|
1
|
Tensile
test |
IEC-60794-1-E1
|
-Max. Tensile strength:5000N
-Sample length:50 meters -Time: 1minutes |
-Fiber strain at maximum
Load: max. 0.33% -Attenuation increase<0.10dB, -Reversible |
2
|
Crush
test |
IEC-60794-1-E3
|
-Load: 3000N/100mm
-Time: 1 minutes -Number of tests: 3 |
-No splits or cracks in the
outer jacket; -Attenuation increase<0.10dB, -Reversible |
3
|
Impact
test |
IEC-60794-1-E4
|
-Impact energy:1kg
- Height:1 meter -Impact points: 5 --Number of impacts: 5 |
-No splits or cracks in the outer jacket
-Attenuation increase≤0.10dB -Reversible |
4
|
Repeated bending
|
IEC-60794-1-E6
|
-1m cable length with 250N weight,
30 cycles |
-No damage to the outer jacket
-Attenuation increase ≤0.10dB -Reversible |
5
|
Torsion
test |
IEC-60794-1-E7
|
-1m cable length with 250N weight
±90 degrees -Time:10 cycles |
-No damage to the outer jacket
-Attenuation increase ≤0.10dB -Reversible |
6
|
Bending
test |
IEC-60794-1-E11
|
-Diameter of mandrel: 25×D
-Number of turns/helix:10 -Number of cycles: 5 |
-No damage to the outer jacket
- No fiber break -Reversible |
7
|
Temperature cycling test
|
IEC-60794-1-F1
|
-Temperature step:
+20ºC→-40ºC→+60ºC→-40ºC→ +60ºC→+20ºC -Time per each step: 24 hrs -Number of cycles: 2 cycles |
-Attenuation variation for reference value(the attenuation to be measured before test at +20±3ºC) ≤0.05dB/km,
-Reversible |
8
|
Water penetration test
|
IEC-60794-1-F5
|
-Water height: 1m,
-Sample length:3m, -Duration of test: 24hrs |
-No water leakage at the end of the sample
|
9
|
Drip test
|
IEC-60794-1-E14
|
-Five 0.3m samples suspended vertically in a climate chamber, raised temperature to +70ºC
|
-No filling compound shall drip from tubes after 24 hr
|