OPTICAL FIBRES. MULTIMODE Multimode Optical Fibres 50/125 Multimode Optical Fibres 62,5/125. SINGLEMODE Singlemode Optical Fibre
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1 OPTICAL FIBRES MULTIMODE Multimode Optical Fibres 50/125 Multimode Optical Fibres 62,5/125 SINGLEMODE Singlemode Optical Fibre PLASTIC Plastic Optical Fibre POF PCF Optical Fibre PCF HIGH TEMPERATURE Optical Fibre HTF
2 P.112 Multimode MM50Optical Fibre 50/125 Graded-Index multimode optical fibres 50/125 microns. The fibres are designed for use at 850 and. These fibres are suitable for use in premises wiring applications, like Local Area Networks (LAN) with video,data and voice using LED, VCSEL or Laser Fabry Perot sources. These fibres comply with IEC A1a.1 and A1a.2. Geometrical and mechanical characteristics according to IEC Geometrical and Mechanical Characteristics Core diameter Core non-circularity Core / cladding concentricity error Cladding diameter Cladding non-circularity Primary coating diameter coating non-circularity Error concentricidad recubrimiento primario m 1.5 m m 1% m 12.5 m 8.8N/ 1%/ 100kpsi Optical properties according to IEC , ISO/IEC 11801, EN 50173, TIA/EIA-492AAAC, EIA/TIA 568-B. Optical Characteristics OM1 OM2 OM2 XL OM3 SL OM3 OM3 XL Giga Attenuation Coefficient (db/km) Bandwidth (MHz.Km) Link Distance (m) 1000 Base-SX 1000 Base-LX 10G Base-SX Group Index of Refraction
3 P.113 Multimode MM62Optical Fibre 62,5/125 Graded-Index multimode optical fibres 62,5/125 microns. The fibres are designed for use at 850 and. These fibres are suitable for use in premises wiring applications, like Local Area Networks (LAN) with video,data and voice using LED, VCSEL or Laser Fabry Perot sources. These fibres comply with IEC A1b. Geometrical and mechanical characteristics according to IEC Geometrical and Mechanical Characteristics Core diameter Core non-circularity Core / cladding concentricity error Cladding diameter Cladding non-circularity Primary coating diameter coating non-circularity Error concentricidad recubrimiento primario m 1.5 m m 1% m 12.5 m 8.8N/ 1%/ 100kpsi Optical properties according to IEC , ISO/IEC 11801, EN 50173, TIA/EIA-492AAAC, EIA/TIA 568-B. Optical Propiedades Characteristics Ópticas OM1 OM2 GIGA Attenuation Coefficient (db/km) Bandwidth (MHz.Km) Link Distance (m) Group Index of Refraction 1000 Base-SX 1000 Base-LX
4 P.114 SM10Singlemode Optical Fibre SMF Step index singlemode optical fibres. These fibres provide optimum performance at 1310 and 1 nm. They can be used on long haul, metropolitan, access, CATV and premises applications in telecom. These fibres comply with IEC , UIT G.652.B, G.652.C, G.652.D, G.655, Telcordia GR-20-CORE, ANSI/IECA S (1) Low tolerance in cladding diameter. Used in Patchcord cables (CPS / Zipcord / Flat). Geometrical And Mechanical Characteristics MFD non-circularity MFD / Cladding concentricity error Cladding diameter Cladding non-circularity Primary coating diameter Coating non-circularity Coating concentricity error 1 m m (1) m 1% m 12.5 m 8.8N / 1% / 100 kpsi Geometrical, optical and mechanical characteristics according to ITU-T G.652, G.655, G.656, IEC , ISO/IEC 11801, EN 50173, Telcordia GR-20-CORE and ANSI/ICEA S Optical Characteristics G.652.B G.652.C&D G.655 & G.656 Mode field diameter ( m) Attenuation coefficient (db/km) Chomatic dispersion coefficient (ps/nm.km) Zero dispersion wavelength (nm) Zero dispersion slope (ps/nm km) Group Index of Refraction Cutt-off wavelength (nm) PMD (ps Km) link design value 1 nm 1383 nm 1 nm nm nm 1 nm nm nm 1 nm Cableado 1 nm
5 P.115 POFPlastic Optical Fibre Step index plastic optical fibre. This fibre provides optimum performance at 650 nm. Suitable to use in short distances, industrialenvironments and low speed data transmission. General Parameters Core material Cladding material Index profile Diameter Attenuation (650 nm) Numerical aperture Bending radius Temperature range Polymethyl Methacrylate Fluorinated Polymer Step Index 1.0mm 0.20 db/m 0.50 > 20mm -40ºC - +70ºC
6 P.116 PCF Optical fibre PCF Step Index multimode optical fibre 200/230 microns. This fibre is designed to use at 650 nm and. Suitable for short haul data and video communications, sensing systems (medical and industrial) and illumination. General Parameters Core / Cladding Material Coating Material Index Profile Core Diameter Cladding Diameter Coating Diameter Attenuation (650 nm) Attenuation () Bandwidth () Bending Radius Temperature Range Silica Fluorinated Polymer Step Index m / - 10 m m 7 db / Km 6 db / Km 20 MHz x Km 0.37 > 20 mm -40ºC - +80ªC
7 P.117 HTF High Temperature Optical Fibres Specialty multimode or singlemode fiber with special coating to withstand severe temperature fluctuations, from 65 to +300ºC. Applications: Optical fiber sensors, data communications, data transmission. Geometrical / Mechanical Characteristics HTF62 HTF50 Core Diameter ( m) 62,5 + 2, ,5 Modal Field Diameter ( m) 1 nm Core-no Circularity (%) 6 5 Core / Cladding Concentricity Error ( m) 3 1,5 Cladding Diameter ( m) / + 1 Cladding non-circularity (%) 2 Primary Coating Diameter ( m) Kpsi / 4,4 N HTF10 9,2 + 0,4 10,5 + 0,8 0, Kpsi / 8,8 N Optical Characteristics Attenuation Coefficient (db / Km) Bandwidth (MHz x Km) 1383 nm 1 nm Cut-off Wavelength (nm) Cut-off Wavelength (nm) Zero Dispersion Slope (ps / nm 2 km) Group Index of Refraction 1 nm HTF62 HTF50 HTF10 2,8-3,2 0,6-1, ,4-2,6 0,6-0, , , , , ,35-0,38 1,0 0,21-0, ,092 Temperature Range HTF62 HTF50 HTF10 Operational Temperature Range -60ºC to +200ºC -65ºC to +300ºC
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