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BayCom® FO outdoor cables with metallic armouring

A-DQ(ZN)2Y(SR)2Y

Vodafone acc. to DIN VDE and Bayka standard


OT141_A-DQ(ZN)2Y(SR)2Y_zentral_en
VodafoneVDE_LogoRoHS_LogoREACH_LogoCE_Logo

 

02-Erdverlegung08-Trogverlegung44-Nagetierschutz36-Längswasserdicht50-Verlegung -5

 


Standards

Acc. to Arcor TNP 01

Technical Data

Type of fibre  E9/125
Field diameter μm  9-10
Sheath diameter μm  125
Attenuation dB/km
at 1310 nm
at 1550 nm
≤ 0.36
≤ 0.23
Chromatic dispersion
ps/[nm x km]
at 1310 +30/-15 nm
at 1550 +30/-70 nm  

≤ 3.5
≤ 18

Permissible temperature range °C

 

transport and storage

-40 to +70

laying

-5 to +50

operation

-30 to +60


 

Application

The fibre optic cables are designed for outdoor installation in the ground and trays. Planning and laying must be performed according to the respectively applicable technical instructions of Vodafone (planning and construction of cable systems and ducts).
The cables are approved for use in the Vodafone network.

Type Designation Codes

A outdoor cable
D loose tube, filled
Q cable core dry, longitudinally watertight
2Y inner sheath made of polyethylene, PE
(SR) steel channel sheath
2Y outer sheath made of polyethylene, PE
LG stranded in layers

Special Designs

Design according to national and international standards
Design according to customer specifications
Design with limited tolerance of outer diameter on request

Order Example

A-DQ(ZN)2Y(SR)2Y 1x12 E9/125 0,36F3,5 / 0,23H18 LG


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BayCom® FO outdoor cables with metallic armouring

A-DQ(ZN)2Y(SR)2Y

Vodafone acc. to DIN VDE and Bayka standard

Product Bayka Order No. No. of fibers Outer ∅
approx.
Max. tensile force Bending radius one-off Bending radius repeated Fire load
mm daN min. mm min. mm MJ/m  
A-DQ(ZN)2Y(SR)2Y   1x 8 E9/125  (1500 N / ZB) 5950401 8 12 150 180 300 3.7
A-DQ(ZN)2Y(SR)2Y   1x12 E9/125  (1500 N / ZB) 5928000 12 12 150 180 300 3.7
Errors and omissions excepted, weights and dimensions are approximate values.
The bending radius for repeated bending applies to the radius of switching mechanisms, too.
Tensile stress only valid when cable sheath and cable core involved.