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  Single Mode 9/125 G652D
Model:Single Mode 9/125 G652D
This Single-Mode Fiber is designed specially for optical transmission systems, which operates over the entire wavelength window from 1260 nm to 1625 nm. It has a low dispersed in the 1310 nm window .By suppressing the water peak that occurs near 1383 nm in conventional single mode fiber due to hydroxyl (OH-) ions absorption, the Fiber is able to open E-band (1360 to 1460nm) for operation, and consequently provides 100 nm more usable wavelengths.
 
 
   
G652D-2
G652D-2
 

The fiber complies with or even exceeds the ITU-T Recommendation G.652.D and the IEC 60793-2-50 type B1.3 Optical Fiber Specification.

Thanks to its broad usable optical spectrum and outstanding attenuation performance, The Single-mode Fiber is the optimum choice that supports various applications such as Ethernet, Internet Protocol (IP), Asynchronous Transfer Mode (ATM), Synchronous Distribution Network (SDH) and Wavelength Division Multiplexing (WDM). The Single mode Fiber provides wider bandwidth and much lower signal attenuation for backbone, metropolitan area and access networks. It enables bandwidth demanding of multi-service like voice, digital and image transmission; at the same time, it also enables fiber attenuation demanding for extended long distance transmission.

Optical Characteristics for Single Mode 9/125 µm (G652D)

CHARACTERISTIC

CONDITION

SPECIFIC VALUE

UNIT

Optical   Characteristics


Attenuation

1310   nm

≤0.34

[dB/km]

1383   nm

≤0.34

1550   nm

≤0.20

1625   nm

≤0.23

Attenuation   vs. Wavelength Max. α Difference

1285-1330   nm

≤0.03

 

[dB/km]

1525-1575 nm

 

≤0.02

 

Dispersion   Coefficient

1285-1340   nm

≥-3.4   ≤3.4

[ps/(nm.km)]

1550   nm

≤18

1625   nm

≤22

Zero Dispersion Wavelength


1300-1324

[nm]

Zero Dispersion Slope

 

Typical value


≤0.091

[ps/(nm².km)]

Zero Dispersion Slope Typical Value

 

 


0.086

[ps/(nm².km)]

PMD

Maximum Individual Fiber


≤0.10

[ps/√km]

Link Design Value (M=20, Q=0.01%)


≤0.06

Typical Value


0.04

Cable Cutoff Wavelength λсс

 


≤1260

[nm]

Mode Field Diameter (MFD)

1310 nm

 

8.7~9.5

[µm]

1550 nm

 

9.9~10.9

[µm]

Effective Group Index of Refraction (Neff)

1310 nm

 

1.466


1550 nm

 

1.467


Point Discontinuities

 

1310 nm

 

≤0.05

[dB]

1550 nm

 

≤0.05

[dB]

Macro Bending Induced Attenuation




1 Turn Around a Mandrel @ 16mm Radius

1550 nm

≤0.05

[dB]

100 Turns Around a Mandrel @ 25mm Radius

1310 nm & 1550 nm

≤0.05

[dB]

100 Turns Around a Mandrel @ 30mm Radius

1625 nm

≤0.05

[dB]

Geometrical Characteristics

Cladding Diameter


125.0±0.7

[µm]

Cladding Non-Circularity


≤1.0

[%]

Coating Diameter


245±7

[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


2.1 to 50.4

[km/reel]

Environmental Characteristics

1310 nm, 1550 nm & 1625 nm

Temperature Dependence (Induced Attenuation)

- 60°C to +85°C

≤0.05

[dB/km]

Temperature Humidity Cycling (Induced Attenuation)

-10°C to +85°C, 98% RH

≤0.05

[dB/km]

Damp Heat Dependence (Induced Attenuation)

85°C and 85% RH, for 30days

≤0.05

[dB/km]

Water Soak Dependence (Induced Attenuation)

23°C, for 30days

≤0.05

[dB/km]

Dry Heat Aging

85°C

≤0.05

[dB/km]

Mechanical Characteristics

Proof Test


≥9.0

[N]


≥1.0

[%]


≥100

[Kpsi]

Coating Strip Force

Typical Average Force

1.5

[N]

Peak Force

≥1.3 & ≤8.9

[N]

Dynamic Stress Corrosion Susceptibility Parameter (Nd,   Typical)

≥20




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