This product is used as the terminal ending and distribution of the main, optical fiber cable of the central office in the optical fiber cable, communication system. It can realize the connection, distribution, and dispatching of the fiber circuit.And it is the distribution connection equipment between the optical fiber cable and the fiber cable communication system.
Feature: Excellent corrosion resistant, waterproof, flame retardant properties; More cable cores, compact structure, small size, and light weight; Flexible, small bending radius, and excellent stress and strain properties. Application: Used in indoor cabling, especially used as distribution cable; Used in pigtails and patch cord; Used as interconnect lines of equipment, and used in optical connections in optical communication equipment rooms and distribution frames.
This cable has been designed for long haul direct / backbone application. Our stranded loose tube design provides stable performance over a wide temperature range and is compatible with any telecommunications-grade optical fiber. Direct Buried type Fiber Optical Cables are designed for easy and economical installation. The stranded loose tubes contain thixotropic jelly but the cable core is based on dry-block construction. Incorporation of Dry Water Block Technology eliminates the need for traditional jelly filled water blocking methods, thus providing efficient and craft-friendly cable installation. The thixotropic jelly is used to fill the buffer tubes to prevent water ingress. Steel Tape Armoring provides a rodent protection, length markings in meters for easy determination of cable length. Extra Strength cable can also be delivered with Peripheral Strength Members. Features & Application òExcellent optical, mechanical & environmental performance òHigh strength-to-weight ratio òCSM dielectric type û Fiber Reinforced Plastic òDry block construction òHigh tensile strength òHigh crush strength òCorrosion resistance òKINK resistance òVery light weight òVery flexible & small bending radius òLong haul / backbone application òJunction communication systems òAll dielectric applications òCATV applications. Construction Parameters Fiber Count 02 û 144 Fibers Color of Loose Tube Blue , Orange , Green , Brown , Grey , White, Red & Black Loose Tube Material Polybutylene Terephthalate (PBT) Loose Tube Filling Material Thixotropic Jelly Filler Material Medium Density/High Density Polyethylene (MDPE/HDPE) Central Strength Member Fiber Reinforced Plastic (FRP) û Non Metallic Core Moisture Protection Methodology Dry Block Design, Water Blocking Yarns/Tapes Second (Outer) Sheath Material High Density Polyethylene (HDPE) Printing on Outer Sheath Engraved Hot Foil or Inkjet Printing Nominal Cable Delivery Length (km) 4 KM ¦ 3%.
This cable has been designed for long haul direct / backbone application. Our stranded loose tube design provides stable performance over a wide temperature range and is compatible with any telecommunications-grade optical fiber. Direct buried type fiber optical cable are designed for easy and economical installation. The stranded loose tubes contain thixotropic jelly but the cable core is based on dry-block construction. Incorporation of dry water block technology eliminates the need for traditional jelly filled water blocking methods, thus providing efficient and craft-friendly cable installation. The thixotropic jelly is used to fill the buffer tubes to prevent water ingress. Steel tape armoring provides a rodent protection, length markings in meters for easy determination of cable length. Extra strength cable can also be delivered with peripheral strength members. Features & application Excellent optical, mechanical & environmental performance High strength-to-weight ratio Csm dielectric type û fiber reinforced plastic Dry block construction High tensile strength High crush strength Corrosion resistance Kink resistance Very light weight Very flexible & small bending radius Long haul / backbone application Junction communication systems All dielectric applications Catv applications. Construction Parameters Fiber Count As per CustomerÆs Requirement No. of Loose Tube As per CustomerÆs Requirement G.655 As per CustomerÆs Requirement G.652 As per CustomerÆs Requirement Loose Tube Material Polybutylene Terephthalate (PBT) Loose Tube Filling Material Thixotropic Jelly Filler Material Medium Density/High Density Polyethylene (MDPE/HDPE) Central Strength Member Fiber/Glass Reinforced Plastic (FRP/GRP) Armoring Corrugated Steel Tape Armoring Peripheral Strength Member (if required) Aramid / Glass Yarn Core Moisture Protection Methodology Dry Block Design, Water Blocking Yarns/Tapes Outer Sheath Material High Density Polyethylene (HDPE) Printing on Outer Sheath Engraved Hot Foil or Inkjet Printing Nominal Cable Delivery Length (km) 4 KM ¦ 3%.
Product description This cable has been designed for aerial application with flat type construction. Our stranded loose tube design provides stable performance over a wide temperature range and is compatible with any telecommunications-grade optical fiber. This aerial type fiber cable is designed for easy and economical installation with a sufficient tensile strength to overcome wind pressures and ice loadings. Features & application Excellent optical, mechanical & environmental performance Csm dielectric type û fiber reinforced plastic High tensile strength High crush strength Aerial application Application in lan, wan, especially in ftth networks Easy to clamp and install Can bear ice loads and high wind pressures. Construction Parameters Fiber Count 02 to 12 Fiber Fiber Type G.652.D Loose Tube Material Polybutylene Terephthalate (PBT) Loose Tube Filling Material Thixotropic Jelly Sheath Material High Density Polyethylene (HDPE) Printing on Outer Sheath Engraved Hot Foil or Inkjet Printing Nominal Dimensions Width : 7.0 + 0.5mm , Height : 3.5 + 0.3mm Nominal Cable Delivery Length (km) 2 KM + 3% . Mechanical Characteristics Tensile Strength (N) 600 Tensile Strength (N) (Installation) 1000 Crush Strength (N) 2,000 Minimum Bending Radius (mm) 75 Temperature Operating Range -10 to +70¦C.
í= Applications: Short and medium distance, indoor and protected environments. Offered as a riser, plenum, or general purpose cable, it is used for interconnection of distribution boxes, or the distribution boxes and customer equipments, and between floors. í= Installations: Installed along the wall, the roof, interlayer, canal and indoor. í= Construction: The cable contains 4 to 72 fibers individually buffered to 0.9 mm in a tight or semi tight construction and coded. The cable structure depends on the number of fibers: The 4 to 12 fiber cables contain individual fibers without sub-units,In the 16 to 72 fiber cables the fibers are grouped in the sub-units. In the 4 to 12 fiber cables, the individual fibers are stranded and protected by aramid yarn and a PVC or LSZH jacket. In the 16 to 72 fiber cables, the fibers are grouped into sub-units which are laid helically along the cable axis. Each sub-unit contains 4 to 6 fibers, aramid yarn and a PVC or LSZH jacket. The 72 fiber cable consists of twelve sub-units, nine of them are stranded around a central element made of 3 sub-units. í=Technical Parameters: íe Maximum Transmission Distance: 6km (Single Mode); 0.3km (Multimode) íe Maximum Pulling Load: 100N(Short Term Installation);60N(Long Term Installation) íe Minimum Bending Radius: Short Term Installation: 20 x Overall Diameter Long Term Installation: 10 x Overall Diameter (Non-Armoured); 20 x Overall Diameter (Armoured) íe Twist (Torsion Length): 125 x Overall Diameter. íe Working Temperature: -10íµ ~ +70íµ (PE sheath) íe Storage Temperature: -20íµ ~ +70íµ (PE sheath) í= Product Highlights: íe Small diameter and light weight. íe The high tension characteristics of the aramid yarn serving as strength member can offer good stability in the transmission performance. íe Compact and flexible construction are especially suitable for indoor installations. íe Tight Buffer fibers are made from fiber rods with good linearity and low extruding output. By careful calibration of the vacuum pumping equipment, the uniformity of the outer diameter of the tight buffer fibers can be easily achieved with excellent strip ability. íe LSZH jackets can be offered for indoor application for which flame retardancy is required. íe Cutting edge production equipment, good quality materials and optimized process ensure low induced attenuation within the operating temperature range. íe Fiber geometry are strictly monitored to ensure superior transmission performance. roll,box,drum
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