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Fibre Optic Cables - FOP Faseroptische Produkte …

LEONI Q-LINE it s your lineFibre Optic CablesContentsEdition: October 2003 Subject to change and error. 4 The LEONI Q-LINE Concept 5 Quality and the Environment General 6 Fire protection/standards 7 Order number coding/ pictograms 8 Fibre Optic cores 9 Fibre Optic colour code for multi-fi bre loose tubes 10 Fibre specifi cation Multi-mode fi bre G50/125 Multi-mode fi bre G 11 Fibre specifi cation Single-mode fi bre E 9/125 Applications and link lenghts 12 Packaging Fibre Optic indoor Cables 14 LEONI Q-LINE I -VH 15 LEONI Q-LINE I -VH 2 16 LEONI Q-LINE I -VH n .. 17 LEONI Q-LINE I -VHH 2 18 LEONI Q-LINE I -VHH n .. Fibre Optic universal Cables 21 LEONI Q-LINE U-VQBH n .. 22 LEONI Q-LINE U-DBH n .. 23 LEONI Q-LINE U-DH nxm .. 24 LEONI Q-LINE U-D(ZN)BH n.

7 Pictograms Flame-retardant and halogen-free jacket The outer jacket of the cable is self-extinguish-ing and not fi re conductive. The halogen-free

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Transcription of Fibre Optic Cables - FOP Faseroptische Produkte …

1 LEONI Q-LINE it s your lineFibre Optic CablesContentsEdition: October 2003 Subject to change and error. 4 The LEONI Q-LINE Concept 5 Quality and the Environment General 6 Fire protection/standards 7 Order number coding/ pictograms 8 Fibre Optic cores 9 Fibre Optic colour code for multi-fi bre loose tubes 10 Fibre specifi cation Multi-mode fi bre G50/125 Multi-mode fi bre G 11 Fibre specifi cation Single-mode fi bre E 9/125 Applications and link lenghts 12 Packaging Fibre Optic indoor Cables 14 LEONI Q-LINE I -VH 15 LEONI Q-LINE I -VH 2 16 LEONI Q-LINE I -VH n .. 17 LEONI Q-LINE I -VHH 2 18 LEONI Q-LINE I -VHH n .. Fibre Optic universal Cables 21 LEONI Q-LINE U-VQBH n .. 22 LEONI Q-LINE U-DBH n .. 23 LEONI Q-LINE U-DH nxm .. 24 LEONI Q-LINE U-D(ZN)BH n.

2 25 LEONI Q-LINE U-D(ZN)BH nxm .. 26 LEONI Q-LINE U-D(ZN)(L)H LEONI Q-LINE U-DHWH n .. 27 LEONI Q-LINE U-D(ZN)(L)H LEONI Q-LINE U-D(ZN)WH Fibre Optic outdoor Cables 29 A-DQ(ZN)B2Y n .. 1200 30 A-DQ(ZN)B2Y n .. 2500 31 A-DQ(ZN)B2Y 32 A-DF(ZN)2Y nxm .. 33 A-DF(ZN)2YW2Y nxm .. FO Cables for special applications 35 The jacket material 36 U-D(ZN)11Y 37 A-V(ZN)11Y(ZN)11Y 38 A-V(ZN)11Y 39 AT-V(ZN) 40 POF and PCF fi bre Optic Cables 42 The LEONI product range 4 The LEONI Q-LINE ConceptNew, faster network protocols and the further development of active and passive network components to match make constantly rising transmission rates possible. A key element of such nets are the Cables used. LEONI fully concentrates on the cable and regards it as our core the past few years we have managed to constantly increase the quality of our fi bre Optic Cables through improvements and process optimization.

3 We do not only keep pace with constantly changing technical requirements by means of state-of-the-art and most fl exible technologies but we have also been leading in the areas of further development and innovations. Fibre Optic Cables of the LEONI Q-LINE series are both technically and economically optimal passive compo-nents for company networks as well as for is our demand to be better than others. This is one of the reasons why the customer and his individual demands always come fi rst. By being in steady contact with our customer we achieve a plus in prod-uct and service quality which is refl ected in the LEONI Q-LINE Q-LINE which means: Best qualityContinuously developing and improving productivity. Ease of installationExtremely rugged Cables which can be installed both time and cost effi ciently. Systems independenceIndividual solutions which fi t in any system.

4 AvailabilityDelivery at short notice without delivery charge. Technical supportComprehensive instruction and individual help for all of your managementA consistently high level of quality is indispen-sable for our products. This means that the entire process at LEONI from a product s plan-ning to its completion is subjected to permanent quality management system is certifi ed in accordance with DIN/ISO 9001 and QA 9000/VDA and is permanently and safeHalogen- free versions of all the Cables in our range are also available, of course. Not only does this reduce the strain on the environment, it also means less smoke and corrosive emissions in the event of a fi re for your managementFor us, business success with ecological responsibility is not a con-tradiction in terms. As such, environmental protection is an intrinsic element of our corporate activities.

5 Our environmental management system is certifi ed as complying with DIN EN ISO 14001, confi rming that our environmental policy is effectively Quality management6 Fire protectionAll LEONI Q-LINE fi bre Optic indoor and outdoor Cables pass the extensive fi re behavior tests laid down in IEC 60332-1 (DIN VDE 0472 Part 804 B) and in addition to the stricter bundle fi re test according to IEC 60332-3, Category A durchgef hrt (DIN VDE 0472 Part 804 C).Smoke production of FRNC is very small compared to PVC and is measured compliant with IEC 61034-1 and 61034-2. Both tests are necessary for verifi cation of minimum smoke production. Absence of halogen is tested in accordance with IEC 60754-2. The most dangerous component for people in the event of a fi re is carbon monoxide. FRNC produces only about 1/5th of the volume of carbon monoxide created by advantages of FRNC Cables at a glance: no self-propagation of fi re along the cable relatively low toxicity of gases emitted in a fi re no production of corrosive gases no dioxins in the remains of the fi re minimum smoke productionAll the fi bre Optic Cables for inhouse cabling in this catalogue are made in FRNC (LSFROH) Flame Retardant NC Non Corrosive LS Low Smoke 0H Zero halogen There is good reason for this safety for persons, buildings and instal-lations in the case of fi re.

6 LEONI Q-LINE data Cables with a sheath made of halogen - free and fl ame-retardant material are the better alternative to PVC in this respect, as their mechanical properties are fully used to be a preferred choice of cable sheath material for cost reasons. Initially PVC displays good fl ame-inhibiting properties; its exposure to fl ames is accompanied, however, by severe loss of plasti-cizer components through vaporization, reducing the fl ame-retardant effect. Furthermore, the halogens contained in PVC can result in the emission of toxic dioxin, which along with carbon monoxide emissions constitutes a major hazard for a fi re PVC also results in the formation of chloric acid gas, which is highly corrosive and attacks both metal surfaces and reinforced concrete. The damage caused to a building by corrosion is generally greater by a multiple than that caused by the actual fi of FRNC Cables compared to PVC Cables :FRNC contains absolutely no halogen and is non-corrosive, for that reason no dioxins and no corrosive gases are emitted.

7 Exposure to fl ames creates water vapor, which absorbs heat and therefore quenches the burning cable . StandardsFibre Optic Cables from LEONI fulfi l one or several of the following standards: DIN VDE 0888 DIN VDE 0899 DIN VDE 0472 DIN VDE 0473 EN 50 173 EN 187 000 to 187 105 EN 188 000 ITU-T Rec to IEC 60793 and 607947 PictogramsFlame-retardant and halogen - free jacketThe outer jacket of the cable is self-extinguish-ing and not fi re conductive. The halogen -freejacket material develops neither toxic nor cor-rosive combustion gases in the case of a fi proofThe cable core is protected against damage due to waterproof Water in the cable core can-not spread in the longitudi-nal sely waterDiffusion of water in the transverse direction of the cable core is number codingCable constructionNumber of fi bresCore typeFibre type I-VH 2x1G50/125 U - DBH 12G62.

8 5/12 5 3. 2B2 50 0 0 A - D Q (ZN) B2Y 12 x12E9/12 5 5/0. 22H18 see product page00 = 1 fi bre01 = 2 fi bres02 = 4 fi bres03 = 6 fi bres04 = 8 fi bresxx = 2 x XX fi bres 0 = tight buffered fi bre 1 = semi-tight fi bre, gel fi lled2 = loose tube with 2 fi bres 3 = loose tube with 4 fi bres 4 = loose tube with 6 fi bres 5 = loose tube with 8 fi bres 6 = loose tube with 10 fi bres7 = loose tube with 12 fi bresB = loose tube with 16 fi bresD = loose tube with 20 fi bresF = loose tube with 24 fi bres A = OS1 B = OS1F = OM1G = OM2H = OM2 I = OM3 K = = OM1 M = OM1 8 4 0 0 5 0 1 1 H 8 4 0 2 5 0 6 7 L8 4 3 1 6 7 2 7 BOrdering examples:8 Fibre Optic coresProperties/Applications For splicing as pigtail As connection Cables in equipment and distribution cabinets High fl exibility Very good kink resistance Longitudinal waterproof due to gel fi lling Available without gel fi lling for pigtails Ease of installation and assembly (2000 cm and more can be set down in one piece)Properties/Applications In equipment and distributor cabinets as two-sided ready assembled cable Resistant against temperature fl uctuations High resistance to external mechanical loads as bending, transverse pressures.

9 And environmental infl uences No gel fi lling Good stripping ability of the cores (up to 80 mm in one piece) Fibre Gel fi llingSecondary coatingSTB Semi-tight fi breTB Tight buffered fi bre Fibre Silicone buffer Secondary coatingTe m p e r at u r e r a n g eTransport and storage 20 C to + 50 CInstallation +5 C to + 40 COperation 10 C to + 60 CMechanical propertiesmin. bending radius 30 mmmax. pull force long-term 5 Nmax. crush resistance long-term 200 NV-E9 e Construction Diameter ( m) Weight (kg/km) 900 Tight buffered fi bre 900 84998000 (fi bre type)TB 600 Tight buffered fi bre 600 84950116 (fi bre type)STB 900 Semi-tight fi bre, gel fi lled 900 84998001 (fi bre type)STB 900 unfi lled Semi-tight fi bre, dry 900 84998009 (fi bre type) solely as core available9 Fibre Optic colour code for multi-fi bre loose tubes Standard code of LEONI Kabel according to IEC 60 304 No.

10 Of fi bre (with ring marking) 13 red 14 green 15 blue 16 yellow 17 white 18 grey 19 brown 20 violet 21 turquoise 22 transparent (no ring marking) 23 orange 24 pink No. of fi bre 1 red 2 green 3 blue 4 yellow 5 white 6 grey 7 brown 8 violet 9 turquoise 10 black 11 orange 12 pink10 Multi-mode fi bre G50/125 according to IEC 60 793-2-10 Transmission properties Fibre type F (OM1) Fibre type G (OM2) Fibre type H (OM2) Fibre type I (OM3)Wavelength (nm) 850 1300 850 1300 850 1300 850 1300 Attenuation max. (dB/km) min. (MHz km) 350 600 500 1000 600 1200 1500 500 Effective group of refraction apperture specificationGeometry/mechanical propertiesCore diameter ( m) 50 diameter ( m) 125 2 Coating diameter ( m) 245 10 Core non-circularity (%) < 5 Optical core Optical claddingPrimary coatingMulti-mode fi bre according to IEC 60 793-2-10 Transmission properties Fibre type K Fibre type L (OM1) Fibre type M (OM1)Wavelength (nm) 850 1300 850 1300 850 1300 Attenuation max.


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