C2G 83106 User Manual

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NETWORKING SOLUTIONS
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10Gb Duplex 50/125 Multimode Fibre Patch Cables
Laser-optimised 50 micron aqua fibre for LED/VCSEL laser light sources and 10-Gigabit applications
Blazing-fast 10-Gigabit performance with Laser-Optimised 50/125 Multimode Fibre Patch Cables from Cables To Go provide backward compatibility with existing 50/125 
equipment and provide the performance flexibilty required to support laser light sources and 10-Gigabit applications.
LSZH Duplex 50/125 Multimode Fibre Patch Cables
High speed Multimode fibre cables that provide protection from toxic and corrosive gasses
Low-Smoke Zero-Halogen (LSZH) Fibre Patch Cables from Cables To Go are designed to lessen the emissions of smoke and halogens when the cable is exposed to extreme 
temperatures. These fibre patch cables are perfect for fast Ethernet, Fibre Channel, ATM and Gigabit Ethernet applications. Use to connect fibre optic equipment to fibre 
optic cross-connects, interconnects and information outlets. Each cable is individually 100% optically inspected and tested for insertion loss and quality. All cables meet or 
exceed industry specifications.
85303
•  Low-Smoke Zero-Halogen jackets provide protection from toxic and corrosive gasses
•  Fully compatible with Multimode fibre applications
•  A cost-effective solution that provides lower loss and higher bandwidth 
supporting longer distances
•  Perfect for use in Gigabit Ethernet applications
•  Lifetime warranty against defects of materials and workmanship
•  Buffer OD: 900 µm
•  Jacket OD: 3.0 mm
•  Jacket colour: Orange
•  Attenuation @850 nm: 3.75 dB/km
•  Attenuation @1310 nm: 1.5 dB/km
•  Min. bandwidth @850 nm: 160 kHz/km
•  Min. bandwidth @1310 nm: 500 kHz/km
•  Maximum tensile load: 100 N/cm
•  Loaded min. bend radius: 5cm
•  Unloaded min. bend radius: 3cm
•  Crush resistance: 750 N/cm
•  Impact resistance: 1000 cycles
•  Flex resistance: 5000 cycles
Description 
 
 
SC SC  LC SC  LC LC 
1m LSZH Duplex 50/125 Multimode Fibre Patch Cable    85303  85319  85335
2m LSZH Duplex 50/125 Multimode Fibre Patch Cable   85304  85320  85336
3m LSZH Duplex 50/125 Multimode Fibre Patch Cable   85305  85321  85337
5m LSZH Duplex 50/125 Multimode Fibre Patch Cable   85306  85322  85338
7m LSZH Duplex 50/125 Multimode Fibre Patch Cable   85307  85323  85339
10m LSZH Duplex 50/125 Multimode Fibre Patch Cable   85308  85324  85340
Description 
 
 
SC SC  LC SC  LC LC 
1m 10Gb Duplex 50/125 Multimode Fibre Patch Cable   
85162  85177  85192
2m 10Gb Duplex 50/125 Multimode Fibre Patch Cable   
85163  85178  85193
3m 10Gb Duplex 50/125 Multimode Fibre Patch Cable   
85164  85179  85194
5m 10Gb Duplex 50/125 Multimode Fibre Patch Cable   
85165  85180  85195
10m 10Gb Duplex 50/125 Multimode Fibre Patch Cable    85166  85181  85196
Duplex 50/125 Multimode Fibre Patch Cables
For your high-speed Multimode fibre applications
Get more bandwidth and higher transmission rates over longer distances with 50/125 Multimode fibre cables from Cables To Go. These cables provide lower loss rates 
than standard 62.5/125 fibre. Perfect for use with today’s narrower aperture components, these cables are fully compatible for Multimode applications. Perfect for protocols 
such as Ethernet, Fibre Channel, Infiniband, ATM and Internet Protocol.
• Fully compatible with Multimode fibre applications
•  A cost-effective solution that provides lower loss and higher bandwidth 
supporting longer distances
• Perfect for use in Gigabit Ethernet applications
• Lifetime warranty against defects of materials and workmanship
• Buffer material: PVC
• Buffer OD: 900 µm
• Jacket material: PVC (OFNR-rated)
• Jacket OD: 3.0 mm
• Jacket colour: Orange
• Attenuation @850 nm: 3.75 dB/km
• Attenuation @1310 nm: 1.5 dB/km
• Min. bandwidth @850 nm: 160 kHz/km
• Min. bandwidth @1310 nm: 500 kHz/km
• Maximum tensile load: 100 N/cm
• Loaded min. bend radius: 5cm
• Unloaded min. bend radius: 3cm
• Crush resistance: 750 N/cm
• Impact resistance: 1000 cycles
• Flex resistance:  5000 cycles
85108
Description 
 
 
SC SC  LC SC 
LC LC 
1m Duplex 50/125 Multimode Fibre Patch Cable  85108  85126  85144
2m Duplex 50/125 Multimode Fibre Patch Cable  85109  85127  85145
3m Duplex 50/125 Multimode Fibre Patch Cable  85110  85128  85146
5m Duplex 50/125 Multimode Fibre Patch Cable  85111  85129  85147
7m Duplex 50/125 Multimode Fibre Patch Cable  85112  85130  85148
10m Duplex 50/125 Multimode Fibre Patch Cable  85113  85131  85149
15m Duplex 50/125 Multimode Fibre Patch Cable  85114  85132  85150
20m Duplex 50/125 Multimode Fibre Patch Cable  85115  85133  85151
•  Fully compatible with 50/125 Multimode fibre applications
•  Use with both LED and VCSEL laser light sources
•  Designed for use in 10-Gigabit Ethernet applications
•  Lifetime warranty against defects of materials and workmanship
•  Optical Multimode 3 (OM3) fibre supporting 2000 MHz.km EMB at 850 nm
•  10 Gigabit transfers up to 300m using 850 nm VCSEL source
•  Jacket material: PVC (OFNR-rated)
•  Jacket colour: Aqua
85162
10Gb Laser Optimised
Applications continue to grow faster and larger, consuming more bandwidth and placing greater demands on network infrastructure. 
As the marketplace moves towards 10 Gigabit Ethernet (10Gb) and beyond, it becomes necessary to come up with bigger pipes to 
carry traffic such as high definition video, voice-over-IP (VoIP), and web-based computing. Right now, the leading choice of media 
for 10Gb applications is fibre optic patch cables. Fibre has proven its worth in a variety of infrastructure settings between buildings, 
inside data centers, and in riser backbones. The benefits that fibre offers include long segment lengths, high bandwidth and immunity 
to electromagnetic interference. Laser-optimised Multimode fibre (LOMMF) allows vendors to use a new technology in fibre transceivers, 
the vertical cavity surface emitting laser, or VCSEL (pronounced “vixel”). The VCSEL operates at a shorter wavelength than standard 
transceiver designs, such as distributed feedback (DFB) or Fabry-Perot (F-P) lasers and uses Multimode fibre instead of Single-Mode. Its 
biggest benefit is that the manufacturing process allows many VCSELs to be built and tested while still on a single wafer, substantially 
reducing  the  fabrication  cost  when  compared  to  DFB  or  F-P  lasers.  The  end  result  is  a  relatively  low-cost  transceiver  capable  of 
supporting 10Gb links for premise and LAN applications, where copper UTP cord has traditionally been dominant.