Singlemode Omnilit™ Fiber

The Omnilit™ Fiber support ITU-T G.652C/D specifications and the attenuation at 1385nm less than that at 1310nm. This specification conforms to the requirement of IEC 60793 B1.3.
 
OPTICAL CHARACTERISTICS    
Characteristics
Conditions
Specified Values
Unit
Attenuation Coefficient
1310 nm
≦ 0.34
〔dB/km〕
 
1385 nm
≦ 0.31*
〔dB/km〕
 
1550 nm
≦ 0.21
〔dB/km〕 
 
1625 nm
≦ 0.24
〔dB/km〕
The maximum attenuation between 1285 to 1330 nm is within 0.05 dB/km of the attenuation at 1310 nm.
The maximum attenuation between 1525 to 1575 nm is within 0.05 dB/km of the attenuation at 1550 nm.
*Attenuation increases due to hydrogen aging at this wavelength will be ≦0.01 dB/km and evaluated in accordance with the IEC 60793-2 test procedure.
Mode Field Diameter
1310 nm
9.2  ± 0.4
〔µm〕
 
1550 nm
10.4 ± 0.5
〔µm〕
Fiber Cut-Off Wavelength
 
1150~1330
〔nm〕
Cable Cut-Off Wavelength
 
<1260
〔nm〕
Zero Dispersion Wavelength
 
1300~1322
〔nm〕
Zero Dispersion Slope
 
≦ 0.092
〔ps/(nm2·km)〕
Dispersion Coefficient
1285 – 1330 nm
≦ 3.1
〔ps/(nm·km)〕
 
1550 nm
≦ 18
〔ps/(nm·km)〕
 
1625 nm
≦ 22
〔ps/(nm·km)〕
Fiber Polarization Mode Dispersion (PMD)
≦ 0.2
〔ps/√km〕
 
BACKSCATTER CHARACTERISTICS
Attenuation Directional Uniformity
 
≦ 0.03
〔dB/km〕
Attenuation Uniformity
 
≦ 0.05
〔dB〕
Reflections
 
Not Allowed
 
Group Index of Refraction
1310 nm
1.467
 
 
1550 nm
1.468
 
 
PHYSICAL CHARACTERISTICS
Core / Cladding Concentricity Error
≦ 0.8
 
Cladding Diameter
 
125 ± 1
 
Cladding Non-Circularity
 
≦ 2.0
 
Coating Diameter (UV Curable Acrylate)
245 ± 10
 
Clad/Coat Concentricity Error
 
≦ 6
 
Fiber curl
 
≧ 4
 
Proof Test
 
100
 
Bend Induced Attenuation at 1625 nm
≦ 0.5
 
(100 turns around a mandrel of 60 mm diameter)
 
 
Fatigue Resistance Parameter (nd)
20
 
Average Coating Strip Force /
≧ 105 / 140 (1.4)
 
Peak Coating Strip Force    
Length (Typical)
 
12.6~25.2
 
 
ENVIRONMENTAL CHARACTERISTICS
Temperature Dependence at 1310 nm and 1550 nm
≦ 0.05
〔dB/km〕
  Induced Attenuation – 60°C to +85°C
 
 
Watersoak Dependence at 1310 nm and 1550 nm
≦ 0.05
〔dB/km〕
  Induced Attenuation at 20°C for 30 days
 
 
Damp Heat Dependence at 1310 nm and 1550 nm
 ≦ 0.05
〔dB/km〕
  Induced Attenuation at 85°C, 85%R.H., 30 days