240F G657A1 200µm Microcable MLT Black PA OD 7.7mm 4km/d
Product code | 4985687 | |
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Count | 1 | |
Sales unit | Meter | |
ETIM-Class | EC000034 |
Business unit
Micro Cables
Fibre Optic Cables
Fibre Optic Cables
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Product specifications
240F G657A1 200µm slim micro cable typically used in outdoor microduct installation applications. The cable is suitable for air-blown installation. Cable parameters such as cable diameter, stiffness and sheath friction are optimized for best installation performance. The cable is based on a slim multi loose tube construction with SZ design around a central strength member of fiberglass-reinforced plastic (FRP) which facilitates mid-span access.
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Measurements
Length 1,000 mm Height 7.7 mm Width 7.7 mm Weight 56 g - Documents
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Physical Characteristics
Fibre Count 240 Cable Construction Multi Loose Tube (MLT) Fibre Type ITU-T G.657 A1 200um Fibres per Tube 12 Fibre Colour Sequence EIA/TIA-598A Tube Size 1.3 mm Central Strength Member FRP No of Tubes 20 Tube Colour Sequence EIA/TIA-598A Outer Sheath Material PA (Polyamid) Colour of Cable Sheath Black Nominal Sheath Thickness 0.4 mm No of Ripcords Below Outer Sheath 1 Cable Diameter 7.7 mm Cable Diameter Tolerance +/- 0.3mm Nominal Cable Weight 56 kg/km -
Mechanical & Environmental Characteristics
Generic_Halogen_Free Yes UV Proof Yes Metal free Yes Tensile Strength (N) IEC-60794-1-21-E1 700 N Crush Resistance - IEC- 60794-1-21-E3 500 N/10cm Impact Strength (Nm) IEC-60794-1-21-E4 50 Torsion IEC-60794-1-21-E7 ± 180° Min. Bend Radius (During Installation) IEC-60794-1-21-E11 20 x D Min. Bend Radius (After Installation) IEC-60794-1-21-E11 10 x D Water Penetration TestIEC-60794-1-22-F5 1m head, 3m samples, 24 hrs. Drip Test IEC-60794-1-21-E14 30 cm, 70°C, 24 hr Temperature Performance Installation IEC-60794-1-22-F1 '-10°C to +70°C (Max. change in attenuation shall be ≤ 0.15 dB/km) Temperature Performance Operation IEC-60794-1-22-F1 '-40°C to +70°C (Max. change in attenuation shall be ≤ 0.15 dB/km) Temperature Performance Storage IEC-60794-1-22-F1 '-40°C to +70°C (Max. change in attenuation shall be ≤ 0.15 dB/km)