Kabels: Fiber: Fiber Patchcables: LOGON FIBER PATCH CABLE 50/125 - LC/LC 10M - OM5
LOGON FIBER PATCH CABLE 50/125 - LC/LC 10M - OM5 LOGON FIBER PATCH CABLE 50/125 - LC/LC 10M - OM5
 
LOGON FIBER PATCH CABLE 50/125 - LC/LC 10M - OM5
36,60-incl. BTW

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EAN: 8051128107814
MPN: AL5LCLC10I/5I
Merk: LOGON PROFESSIONAL
Stock: 10

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Model: Logon Professional AL5LCLC10I/5I (10m)

 

Wideband OM5 bend insensitive Multimode Fibre LC/LC

 

WideBand OM5 Bend Insensitive Multimode Fibre is a 50µm laser-optimized multimode fibre designed for short wavelength division multiplexing (SWDM) applications. Unlike

traditional OM4 fibre with high bandwidth performance in a narrow band centred at 850nm, WideBand OM5 Bend Insensitive Multimode Fibre delivers OM4 performance in the 850-950nm window while maintaining compatibility with current multimode fibres.

 

WideBand OM5 and multi-wavelength transceivers are a viable solution for future 100Gb/s and 400Gb/s multiwavelength systems. WideBand OM5 Bend Insensitive Multimode Fibre complies with or exceeds ISO/IEC 11801 OM5 specification, IEC 60793-2-10 type A1a.4 Optical Fibre Specification, and TIA/EIA-492AAAE detail specification.

 

Features

  • Designed for multi-wavelength systems
  • Duplex transmission of 40/100/400 Gb/s using SWDM technology
  • Maintaining compatibility with current OM4 multimode optical fibre
  • Supports today's application including 100Gb/s Ethernet
  • Very low macro-bending sensitivity
  • Supports installation with small cable bend radii and compact organizers.
  • Coated with proprietary dual layer UV curable acrylate
  • Optimized performance in tight-buffer cable applications
  • High resistance to micro-bending Stable performance over a wide range of
  • environmental conditions
  • LC/LC connectors
  • Lenght: 10 meters

Specifications

Geometry Characteristics

  • Core Diameter: 50 ± 2.5 [pm]
  • Core Non-Circularity: < 5.0 [%]
  • Cladding Diameter: 125.0 ± 0.8 [Mm]
  • Cladding Non-Circuiarity: < 0.6 [%]
  • Coating Diameter: 245 ± 7 [Mm]
  • Coating/Ciadding Concentricity Error: < 10.0 [pm]
  • Coating Non-Circularity: < 6.0 [%]
  • Core/Ciadding Concentricity Error: < 1.0 [pm]
  • Delivery Length: Up to 8.8 [km/reel]

Optical Characteristics

  • Attenuation:
      • 850nm: < 2.4 [dB/km]
      • 953nm: < 1.7 [dB/km]
      • 1300nm: < 0.3 [dB/km]
  • Overfilled Modal Bandwidth:
      • 850nm: > 3500 [MHz km]
      • 953nm: > 1850 [MHz km]
      • 1300nm: > 500 [MHz km]
  • Effective Modal Bandwidth:
      • 850nm: > 4700 [MHz km]
      • 953nm: > 2470 [MHz km]
  • Application support distance on
  • 40 & 100 Gigabit Ethernet: 850nm: 200 [m]
  • 10GBASE-SR: 850nm: 600 [m]
  • 1000BASE-SX: 850nm: 1100 [m]
  • Numerical Aperture: 0.200 ± 0.015
  • Group Refractive Index:
      • 850nm: 1.482
      • 1300nm: 1.477
  • Zero Dispersion Wavelength, ?o: 1297-1328 [nm]
  • Zero Dispersion Slope, So: < 4(-103) /(840(1-( ?o/840)4)) [ps/(nm2 km)]
  • Macrobending loss*:
    • @850nm:
      • 2 turns @15mm radius < 0.1 [dB]
      • 2 turns @7.5mm radius < 0.2 [dB]
    • @1300nm:
      • 2 turns @15mm radius < 0.3 [dB]
      • 2 turns @7.5mm radius < 0.5 [dB]

Backscatter Characteristics (850nm & 1300nm)

  • Step (Mean of bidirectional measurement): < 0.10 [dB]
  • Irregularities over fibre length and point discontinuity: < 0.10 [dB]
  • Attenuation uniformity: < 0.08 [dB/km]

Environmental Characteristics (850nm & 1300nm)

  • Temperature Cycling at -60°C to +85°C: < O.10 [dB/km]
  • Temperature-Humidity Cycling at -10°C to +85°C and 4% to 98% RH < 0.10 [dB/km]
  • Water Immersion at 23°C for 30 days: < 0.10 [dB/km]
  • Dry Heat at 85°C for 30 days: < 0.10 [dB/km]
  • Damp Heat at 85°C and 85% RH for 30 days: < 0.10 [dB/km]

Mechanical Specification

  • Proof test:
      • > 9.0 [N]
      • > 1.0 [%]
      • > 100 [kpsi]
  • Coating strip force:
      • typical average force: 1.5 [N]
      • peak force: >1.3 < 8.9 [N]
  • Dynamic stress corrosion susceptibility parameter (Nd , typical): 27

* : The Launch condition for the macrobending loss measrement fulfils that described in IEC 61280-4-1.


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36.60

 


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