4cabling Cat 6 Ethernet Cable W/ Solid Conductors 305m Reel Box - Grey Sld.c6utp.grey.r
Details
Cat 6 Ethernet Cable with Solid Conductors 305m Reel Box - GREY
***IMAGE of PULL BOX SHOWN***
Cat 6 Ethernet Cables allow for better signal to noise ratio with minimal loss - which translates to faster and more reliable networks for today’s applications.
Category 6 cable, commonly referred to as Cat-6, is a cable standard for Gigabit Ethernet and other network protocols that are backwards compatible with the Category 5/5e and Category 3 cable standards.
Compared with Cat-5 and Cat-5e, Cat-6 ethernet cable features more stringent specifications for crosstalk and system noise. The cable standard provides the performance of up to 550 MHz and is suitable for 10BASE-T, 100BASE-TX (Fast Ethernet), 1000BASE-T / 1000BASE-TX (Gigabit Ethernet) and 10GBASE-T (10-Gigabit Ethernet).
Applications:
- Gigabit Ethernet, Multimedia, video, voice & data
- Horizontal wiring in Local Area Networks (LAN)
- 550MHz Broadband Video
CABLE SPECIFICATIONS
- Cable Type: Cat 6
- Connectors: Unterminated
- Length: 305m (1000ft)
- Colour: Grey
- Jacket Material: PVC
- Diameter: 6.2mm
FEATURES
- Unterminated Cat 6 in Reel Box
- PVC Outer Jacket
- Metre Marked
- 305m Reel Box
- 23 AWG
CERTIFICATIONS
- UL listed
- EIA/TIA and ACMA approved
- ANSI/TIA/EIA 568-B.2-1 CAT.6
- ISO/IEC 11801 CLASS E, 2nd Edition
- IEC 61156-6
- CENELEC EN 50173-1 CENELEC EN 50288-5-1
- CENELEC EN 50288-5-2
- Flame Retardancy is verified according to IEC 60332-1-2
- RoHS compliance the European Union issued Directive 2002/95/EC
WARRANTY
3 year warranty.
Specifications
STANDARD COMPLIANCES
All Proposed Category 6 requirements as per ANSI/TIA/EIA, ISO/IEC, and CENELEC EN Standards.
ANSI/TIA/EIA 568-B.2-1 CAT.6
ISO/IEC 11801 CLASS E, 2nd Edition IEC 61156-6
CENELEC EN 50173-1 CENELEC EN 50288-5-1,CENELEC EN 50288-5-2
Flame Retardancy is verified according to IEC 60332-1-2.
We implemented RoHS compliance for the requirement of European Union issued Directive 2002/95/EC.
CONSTRUCTION & CHARACTERISTICS
Conductor | Material/Size | Bare Copper/23 AWG |
Insulation | Material | HDPE |
Thickness | Normal Avg.: 0.22 mm | |
Diameter | Normal: 1.00 mm | |
Colours | Blue/White-Blue Orange/White-Orange | |
Green/White-Green Brown/White-Brown | ||
Elongation | Min. 300% | |
Tensile Strength | Min. 1.682 Kg/mm2 | |
Sheath | Material | PVC |
Thickness | Average: 0.50 mm | |
Diameter | 6.3 ± 0.3 mm | |
Colour | Assorted upon request | |
Elongation | Min. 100% | |
Tensile Strength | Min. 1.407 Kg/mm2 | |
Aging at 100°C for 168Hrs | Min. elongation retention:50% Min. tensile strength retention:75% | |
Marking | CAT.6 UTP ISO/IEC 11801 & EN 50288 & TIA/EIA-568-B.2-1 ELT/3P VERIFIED - 23AWGX4P SOLID TYPE CM (UL) c(UL) E164469XXXXXXM | |
or as customer request. | ||
Flame Test | Burning five times, every time is less than 60 seconds and paper flag can't be burned. |
APPROVALS
- UL/cUL Listed
- ELT/3P Certified ANSI/TIA/EIA-568-B.2-1 Category 6 testing safety/performance requirements.
APPLICATIONS
- 000BASE-Tx Gigabit Ethernet
- 10BASE-T, 100BASE-T Fast Ethernet (IEEE 802.3)
- 100 VG - AnyLAN(IEEE802.12), 155/622 Mbps ATM
- 550MHz Broadband Video
- Voice, T1, ISDN
ELECTRICAL PERFORMANCES
Spark Test | 2000 ± 250 V ac | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
Dielectric Strength | 2500 V dc / 3 seconds | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
Insulation Resistance Test | Min. 150 MΩ/Km | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
Conductor Resistance | Max.9.38Ω/100m at 20°C | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
Resistance Unbalance | Max. 2% | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
Capacitance Unbalance | Max. 160 pF/100m | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
Mutual Capacitance | Max. 5600 pF/100m | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
|
The asterisked (*) values are for information only. The minimum Next coupling loss for any pair combination at room temperature is to be greater than the value determined using the formula:
NEXT(f MHZ) ≥ NEXT(0.772)-15LOG10(f MHZ/0.772)
CONFIGURATION