MaxBand® OM4 Ultra Bending Insensitive Multimode Fibre
Classification:
MaxBand® OM4 Ultra Bending Insensitive Multimode Fibre is designed for 100G/Lane and Terabit BiDi technology
Cotnact:
Details Introduction
MaxBand® OM4 Ultra Bending Insensitive Multimode Fibre is designed for 100G/Lane and Terabit BiDi technology, offering high bandwidth in the wavelength range of 850 nm - 870 nm & 910nm. It can compensate the center wavelength shift of 100G/Lane transceivers, ensuring smooth upgrades to 400G, 800G, and higher data rates for data center. It is fully backward compatible with legacy OM4 and OM5 fibres. Compared to OM5, it is more cost-effective and can maintain significant cost and power advantages in high-speed links.
MaxBand® OM4 Ultra Bending Insensitive Multimode Fibre complies with or exceeds ISO/IEC 11801-1 OM4 specification, IEC 60793-2-10 A1-OM4 specification, and TIA-492AAAF A1-OM4 specification.
Details
Features | Benefits and Applications |
Optimized for 100G/Lane transmission system High effective mode bandwidth in wavelength range of 850-870nm & 910nm Backward compatibility with legacy OM4 fibre |
Support single-wavelenght and double-wavelength transmission system form 400Gb/s to 1.6Tb/s |
Superior geometry uniformity Low attenuation High bandwidth Low differential mode delay (DMD) |
Office centers Local area networks Data centers Data storage networks High-performance computing centers 1 & 10 & 40 & 100 & 400 Gb/s Ethernet |
Very low macro-bending sensitivity | Supports the use and installation of optical cables with a small bending radius |
Coated with YOFC's proprietary dual layer UV curable acrylate |
High resistance to micro-bending Optimized performance in tight-buffer cable applications Stable performance over a wide range of environmental conditions |
System Link Length
YOFC MaxBand® OM4 Ultra Bending Insensitive Multimode Fibre can support transmission
distances of 100m in 100G/Lane and Treabit BiDi links whitch comply with or exceed
IEEE 802.3db specification and Terabit BiDi MSA specification.
Parameter
Characteristics |
Conditions |
Specified values |
|
Geometry Characteristics |
|||
Core Diameter |
-- |
50±2.5 |
|
Core Non-Circularity |
-- |
≤5.0 |
|
Cladding Diameter |
-- |
125.0±1.0 |
|
Cladding Non-Circularity |
-- |
≤0.6 |
|
Coating Diameter |
-- |
245±7 |
|
Coating/Cladding Concentricity Error |
-- |
≤10.0 |
|
Coating Non-Circularity |
-- |
≤6.0 |
|
Core/Cladding Concentricity Error |
-- |
≤1.0 |
|
Delivery Length |
-- |
up to 8.8 |
|
Optical Characteristics |
|||
Attenuation |
850nm |
≤2.4 |
|
|
910nm |
≤2.0 |
|
|
1300nm |
≤0.6 |
|
Overfilled Modal Bandwidth |
850nm |
≥3500 |
|
|
1300nm |
≥500 |
|
Effective Modal Bandwidth |
850nm-870nm |
≥4700 |
|
|
910nm |
≥3100 |
|
Link Length |
800GBase-SR8 / 800GBaseSR-4.2 |
100 |
|
Numerical Aperture |
-- |
0.200±0.015 |
|
Group Refractive Index |
850nm |
1.482 |
|
|
1300nm |
1.477 |
|
Zero Dispersion Wavelength, λ0 |
-- |
1295-1340 |
|
Zero Dispersion Slope,S0 |
1295nm≤λ0≤1310nm |
≤0.105 |
|
|
1310nm≤λ0≤1340nm |
≤0.000375(1590-λ0) |
|
Macrobending Loss2 |
-- |
-- |
|
2 Turns @ 15 mm Radius |
850nm |
≤0.1 |
|
|
1300nm |
≤0.3 |
|
2 Turns @ 7.5 mm Radius |
850nm |
≤0.2 |
|
|
1300nm |
≤0.5 |
|
Backscatter Characteristics 1300nm |
|||
Step(Mean of Bidirectional Measurement) |
-- |
≤0.10 |
|
Irregularities Over Fibre Length and Point Discontinuity |
-- |
≤0.10 |
|
Attenuation Uniformity |
-- |
≤0.08 |
|
Environmental Characteristics 850nm & 1300nm |
|||
Temperature Cycling |
-60℃ to 85℃ |
≤0.10 |
|
Temperature-Humidity Cycling |
-10℃ to 85℃ , 4% to 98% RH |
≤0.10 |
|
Water Immersion |
23℃, 30 days |
≤0.10 |
|
Dry Heat |
85℃,30 days |
≤0.10 |
|
Damp Heat |
85℃, 85% RH, 30 days |
≤0.10 |
|
Mechanical Specification |
|||
Proof Test |
-- |
≥9.0 |
|
|
-- |
≥1.0 |
|
|
-- |
≥100 |
|
Coating Strip Force |
typical average force |
1.5 |
|
|
peak force |
≥1.3,≤8.9 |
|
Dynamic Stress Corrosion Susceptibility Paraeter(nd, typical) |
-- |
20 |
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