Network Cable
(Cat 6 SF/UTP)
Cable Size (mm) Conductor Diameter ( mm ) Nominal Central Separator Thickness (mm) Nominal Sheath Thickness (mm ) Nominal Outer Diameter
( mm )Approx. Weight
( Kg⁄Km )
Cat 6 SF/UTP 0.57 5.9x1 0.6 8 69
Dedicated tests
Frequency(MHz) 10 16 62.5 100 200 250
Attenuation(db/100m) 6 7.6 15.4 19.8 29 32.8
NEXT(db) 59.3 56.2 47.4 44.3 39.8 38.3
ACR-N(db) 53.3 48.6 32 24.5 10.8 5.5
ACR-F(db) 44.8 40.7 28.9 24.8 18.8 16.8
RL(db) 25 25 21.5 20.1 18 17.3
Characteristic Impedanc(Ω) 100 ± 15
Max. Conductor Resistance (Ω / 100m) 9.38
Max. Mutual Capacitance nf/Km (@1KHz) 56
Nominal Velocity of propagation (%) 69
Max. Propagation Delay sKew (ns) 498
Max. Delay sKew (ns) 45
Technical Data
- Network cables, PE insulated, PVC or LSZH sheathed.
Cable code
- Cat 6 SF/UTP
Reference standard
- ISO/IEC 11801 & IEC 61156-5
- TIA/EAI-568-C.2
- TIA/EAI-568-D.2
- IEC 60332-1
- IEC 60754-1,2
Temperature range
- −20 ℃ to +70 ℃
Cable Layer Construction
- Cu/PE/PET/Al Foil/TDW/TCWB/PVC
- Cu/PE/PET/Al Foil/TDW/TCWB/LSZH
Cable structure
- Conductor material: Annealed copper class 1 (solid).
- Insulation material: HDPE compound
- Pairs Identification: Single cores are twisted together to form a pair; four pairs are twisted to form the cable core. Four pair’s colors are White-Blue, Blue, White- Orange, Orange, White-Green, Green, White Brown and Brow
- Central separator: The cores are twisted into pairs and placed around an X-shaped central HDPE separator
- Aluminum Shield: A layer of polyester tape wrapped helically or longitudinally combined with a layer of aluminum foil wrapped helically or longitudinally as a shield in contact with a tinned copper drain wire.
- Braided Shield: Braided tinned copper in contact with aluminum foil layer and a drain wire.
- Outer Sheath material: PVC or Low Smoke/Halogen Free (LSZH) compound.
- Outer Sheath color: Jade green.
- Cable Length: 305 or 500 m
Application
This types of cables are used for transmission data to Gigabit networks and other network protocols. The aluminum foil serves a shield, therefore, it would eliminate any effects of environmental noises in the system and would have the maximum efficiency on noise cancellation
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