G652D optical fiber

Products
G.652.D Standard Single-Mode Optical Fiber

ITU-T G652D and IEC60793-2-50 B1.3 fiber technlogy standard.

Product Details

G.652.D Standard Single-Mode Optical Fiber
Product Introduction
Standard  single-mode  fiber  is  also  called  non-dispersion-shifted  single-mode  fiber with extended wavelength band that is currently the most widely used optical fiber. The working wavelength can be from 1310nm and 1550nm.
Application Scenarios
The wider wavelength range is suitable for high-speed networks.
Accurate mode field diameter (MFD) characteristics to ensure low fusion loss and good compatibility.
Performance Features
 100G & B100G high-speed, long-distance and long-span backbone network.
Large bandwidth metropolitan area network and access network.
 
CharacteristicsConditionsSpecified valuesUnits
 Optical Characteristics
Attenuation1310nm≤0.34[dB/km]
1383nm≤0.34[dB/km]
1550nm≤0.20[dB/km
1625nm≤0.24[dB/km]
Attenuation vs.Wavelength
Max.a difference
1285-1330nm,in reference to 1310nm≤0.03[dB/km]
1525-1575nm,in reference to 1550nm≤0.02[dB/km]
Dispersion Coefficient1285-1340nm3.5 to 3.5[ps/(nm·km)]
1550nm≤18[ps/(nm·km)]
1625nm≤22[ps/(nm·km)]
Zero Dispersion Wavelength (a) 1300-1324[nm]
Zero Dispersion Slope(S) ≤0.092[ps/(nm²·km)]
Typical Value 0.086[ps/(nm²·km]
PMDMaximum Individual Fibre ≤0.1[ps/ √km
Link Design Value (M=20,Q=0.01%) ≤0.06[ps/ √km]
Typical Value 0.04[ps/ √km]
Cable Cutoff Wavelength () ≤1260[nm]
Mode Field Diameter (MFD)1310nm8.7-9.5[um]
1550nm9.8-10.8[μm]
Effective Group Index of Refraction (Ner)1310nm1.466-=
1550nm1.467 
Point Discontinuities1310nm≤0.05[dB]
1550nm≤0.05[dB]
 Geometrical Characteristics
Cladding Diameter 125.0±0.7[μm]
Cladding Non-Circularity ≤1.0[%]
Coating Diameter 235-250[μm]
Coating-Cladding Concentricity Error ≤12.0[μm]
Coating Non-Circularity ≤6.0[%]
Core-Cladding Concentricity Error ≤0.6[um]
Curl(radius) ≥4[m]
 Environmental Characteristics1310nm,1550nm&1625nm
Temperature Dependence Induced Attenuation60℃ to+85℃≤0.05[dB/km]
Temperature-Humidity Cycling Induced Attenuation-10℃to+85℃,98%RH≤0.05[dB/km]
Water Immersion Dependence Induced Attenuation23℃,for 30 days≤0.05[dB/km]
Damp Heat Dependence Induced Attenuation85℃and 85%RH,for 30 days≤0.05[dB/km]
Dry Heat Aging85°℃,for 30 days≤0.05[dB/km]
 Mechanical Specifications
Proof Test ≥9.0[N]
 ≥1.0 




All  delivery length can be specified by cu