Low Water Peak G. 652. D Outdoor Communication Single-Mode Optical Fiber

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Shanghai Fiber Cloud Communication Technology Co., Ltd

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G. 652. D
Communication
Single-mode Fiber
SC
Round Wire
Proof Test>9n
<100N
Single Core
RoHS, CE, ISO9001
OEM
Acrylic
235-245μm
≤1.0%
125.0±0.7[μm]
25.2/50.4km
≥4m
fiber cloud
Carton
300mm*300mm*600mm
China
9001100009
Product Description
Low Water Peak G. 652. D Outdoor Communication Single-Mode Optical Fiber
Product Description

Fibercloud low water peak dispersion unshifted Single-mode fiber is designed specially for optical transmission systems operating over the entire wavelength window from 1260 nm to 1625 nm. By suppressing the water peak that occurs near 1383 nm in conventional single mode fiber due to hydroxyl (OH-) ions absorption, Fibercloud low water peak fiber is able to open E-band (1360-1460nm) for operation, and consequently provides 100 nm more usable wavelengths.

• Designed for operation over the full optical spectrum from 1260-1625 nm, which provides 50% more usable wavelengths and hence the transmission capacity is increased
• Outstanding optical performance supporting high-speed transmission technologies such as DWDM and CWDM
• Being compatible with existing 1310 nm equipment
• Good protection and excellent strip force stability
• Accurate geometrical parameters that insure low splicing loss and high splicing efficiency

Applications
Thanks to its broad usable optical spectrum and outstanding optical performance, Fibercloud low water peak fiber is the optimum choice that supports various applications such as Ethernet, Internet Protocol (IP), Asychronous Transfer Mode (ATM), Synchronous Optical Network (SONET) and Wavelength Division Multiplexing (WDM). Fibercloud low water peak fiber provides more bandwidth for backbone, metropolitan area and access networks.

 
Product Parameters
Specifications (G652D)
CharacteristicsConditionsSpecified valuesUnits
Optical Characteristics
Attenuation1310nm≤0.32[dB/km]
1383nm(after H2-aging)≤0.31[dB/km]
1550nm≤0.18[dB/km]
1625nm≤0.20[dB/km]
Attenuation vs. Wavelength1285-1330nm, in reference to 1310nm≤0.03[dB/km]
Max. α difference1525-1575nm, in reference to 1550nm≤0.02[dB/km]
Dispersion Coefficient1285-1340nm-3.5 to 3.5[ps/(nm·km)]
1550nm≤18[ps/(nm·km)]
1625nm≤22[ps/(nm·km)]
Zero Dispersion Wavelength(λ0)--1300-1324[nm]
Zero Dispersion Slope(S0)--≤0.092[ps/(nm2·km)]
Typical Value--0.086[ps/(nm2·km)]
P M DMaximum 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 (λCC)--≤1260[nm]
Mode Field Diameter(MFD)1310nm8.7-9.5[μm]
1550nm9.8-10.8[μm]
Effective Group Index of Refraction(Neff )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--235-245[μm]
Coating-Cladding Concentricity Error--≤12.0[μm]
Coating Non-Circularity--≤6.0[%]
Core-Cladding Concentricity Error--≤0.6[μm]
Curl(radius)--≥4[m]
Delivery Length--Up to 50.4[km/reel]
Environmental Characteristics1310nm, 1550nm & 1625nm
Temperature Dependence Induced Attenuation-60ºC to +85ºC≤0.05[dB/km]
Temperature-Humidity Cycling Induced Attenuation-10°C to +85°C, 98% RH≤0.05[dB/km]
Watersoak Dependence Induced Attenuation23°C,for 30 days≤0.05[dB/km]
Damp Heat Dependence Induced Attenuation85°C and 85% RH,for 30 days≤0.05[dB/km]
Dry Heat Aging85ºC, for 30 days≤0.05[dB/km]
Mechanical Specification
Proof Test--≥9.0[N]
--≥1.0[%]
--≥100[kpsi]
Macro-bend Induced Attenuation100 Turns Around a Mandrel of 30 mm Radius1625nm≤0.05[dB]
100 Turns Around a Mandrel of 25 mm Radius1310nm and 1550nm≤0.05[dB]
1 Turn Around a Mandrel of 16 mm Radius1550nm≤0.05[dB]
Coating Strip Forcetypical average force1.5[N]
peak force1.3-8.9[N]
Dynamic Fatigue Parameter(nd)--≥20--
Certifications

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