CodingBox Documentation

Optical cable construction and types

The fibre carries the light; the cable carries the fibre through ducts, soil, air, buildings and data-centre trays without letting it feel strain, water, rodents or fire. A cable is a set of layers, each solving one problem, and the designs differ in how they combine those layers. This page describes the layers, the main cable families and where each is used, the fire ratings that govern indoor cable, the fibre and tube colour codes used to identify fibres, and how to read a cable data sheet so the cable, the route and the link budget agree.

The layers

LayerWhat it isWhat it does
Coated fibreglass 125 µm with dual acrylate coating to 250 or 200 µm, colouredthe optical path (How fibre is made)
Bufferloose tube — 12 or 24 fibres float in a 2–3 mm plastic tube with gel or dry water-blocking yarn; tight buffer — 900 µm plastic layer on each fibreloose tube decouples fibre from cable strain and temperature (0.1–0.5 % excess fibre length); tight buffer makes fibres handleable indoors
Ribbon4–24 fibres bonded side by side in a matrix; rollable ribbons are bonded intermittentlymass fusion splicing, extreme density
Central strength memberfibreglass rod (FRP/GRP) or steel wireanti-buckling, takes compression and part of the tension
Strandingtubes and fillers stranded around the core, usually in reversing SZ patternmid-span access to any tube without cutting the others
Peripheral strength membersaramid yarns, fibreglass yarns, steel wirestake the installation tension so the fibre does not
Water blockingpetroleum-based gel in tubes and core, or dry super-absorbent yarns and tapesstops water travelling along the cable and freezing on the fibres
Armourcorrugated steel tape, steel wire armour, or dielectric fibreglass yarnscrush, rodents, direct burial; dielectric where lightning or induced voltage rule out metal
Jacket (sheath)polyethylene (HDPE/MDPE) outdoors, LSZH or PVC indoors, polyurethane or nylon for special environmentsmechanical, UV and chemical protection; fire behaviour indoors
Ripcords, markingsnylon cords under the jacket; printed metre marks, type, count, dateopening without a knife; identification and length accounting

Cable families

FamilyConstructionFibre countWhere
Stranded loose tube6–12 tubes × 12 fibres SZ-stranded around a central member, gel or dry, single or double jacket12–288, up to 432+ with 24-fibre tubesthe default outdoor cable: ducts, direct burial with armour, aerial with messenger
Central (uni-) tubeone large tube with all fibres, strength members in the jacket2–96small counts, drop and distribution, cheap
Ribbon loose tubestacks of 12-fibre ribbons in tubes or a central tube144–1 728metro backbones, hyperscale interconnect
Rollable ribbonintermittently bonded ribbons rolled into tubes; 200 µm fibres1 728–6 912 in 30–40 mmdata-centre interconnect, dense ducts
Micro-cablesmall-diameter loose tube or ribbon with 200 µm fibres and a thin jacket12–288 in 4–10 mm, 432 in ~12 mmblown into microducts (5/3.5 to 16/12 mm); fill 55–80 % of the duct bore (Installation)
Tight-buffered distribution900 µm fibres with aramid under one LSZH jacket2–144indoor backbones, risers, patch panels; needs breakout kits or pigtails
Breakout (fan-out)each fibre in its own 2–3 mm sub-cable2–24direct connectorisation, harsh indoor, short runs
Indoor/outdoorloose tube with LSZH jacket and dry core12–144one cable from the manhole to the rack without a transition splice
ADSS (all-dielectric self-supporting)loose tube core, aramid yarns sized for the span, track-resistant jacket near HV12–144power-line corridors; spans 50–1 500 m; no metal anywhere
OPGW (optical ground wire)fibres in a stainless tube inside aluminium-clad steel strands12–144replaces the HV line's lightning shield wire; utility backbones
Figure-8cable moulded to a steel messenger12–144fast aerial deployment on poles
FTTH dropflat 2 × 5 mm with two FRP rods, or round 3–5 mm; G.657 fibres1–4 (12)pole or duct to the home; indoor drop 2–3 mm; "invisible" 0.9 mm inside flats
Submarinesteel-tube fibre unit, steel wire vault, copper power conductor, polyethylene insulation; armoured near shore4–24 fibre pairsintercontinental and coastal systems
Hybrid / compositefibres plus copper power or coaxanyremote radio heads, cameras, PoE extenders
Tactical / deployableruggedised polyurethane, 2–12 fibres, expanded-beam or hardened LC connectors2–12broadcast, military, temporary events
Pre-terminated trunkMPO/MTP-terminated 12–144 fibres with pulling grips, factory tested12–144 (bundles to 3 456)data centres — install in hours, no field splicing (Fibre network topologies)

Indoor fire ratings

RegimeRatingsMeaning
USA / NECOFNP (plenum, NFPA 262), OFNR (riser, UL 1666), OFNG/OFN (general, UL 1685); OFC when conductive (metal inside)where the cable may run: air-handling spaces, vertical shafts, general
IEC / LSZHIEC 60332-1-2 (single cable flame), 60332-3 (bunched cables), 61034 (smoke density), 60754 (halogen acid gas)low smoke, zero halogen — the default indoor jacket outside North America
EU / CPR (EN 50575)Euroclasses Aca, B1ca, B2ca, Cca, Dca, Eca, Fca plus s1–s3 smoke, d0–d2 droplets, a1–a3 aciditymandatory declaration for permanently installed cable since 2017; typical requirements Cca-s1b,d1,a1 or Dca
Russia / EAEUGOST 31565-2012 designations: нг(A), нг(A)-LS (low smoke), нг(A)-HF (halogen-free ≈ LSZH), нг(A)-FRLS / FRHF (fire resistant), LTx (low toxicity)which type is allowed in which building category

Outdoor polyethylene jackets are flammable and must stop at the building entrance (typically within 15 m or at the first splice point) unless the cable is dual-rated indoor/outdoor.

Fibre and tube colour codes

PositionTIA-598-C / IEC 60304 colourPositionColour
1blue7red
2orange8black
3green9yellow
4brown10violet
5slate (grey)11rose (pink)
6white12aqua

Fibres 13–24 in a 24-fibre tube repeat the sequence with a black tracer stripe (yellow tracer on the black fibre). Tubes follow the same sequence; fillers are natural or grey. Fibre number in the cable = (tube number − 1) × 12 + fibre position. Other schemes exist — the German DIN VDE 0888 sequence (red, green, blue, yellow, white, grey, brown, violet, turquoise, black, orange, pink) and manufacturer-specific sets with uncoloured fibres in Russian and Asian cables — so the splice plan must state which scheme the cable uses (Documentation & labelling).

Jacket colours: yellow single-mode, orange OM1/OM2, aqua OM3/OM4, lime OM5, black outdoor (any fibre); indoor colours are conventions, not standards (Labels & colour codes).

Reading a cable data sheet

ParameterTypical values (outdoor loose tube)Why it matters
Fibre type and countG.652.D / G.657.A1, 12–288; OM4 indoorslink budget and connector plan (Fibre types)
Cabled attenuation≤ 0.36 dB/km at 1310, ≤ 0.22 dB/km at 1550 (max); design with these, not the bare-fibre valuesthe fibre in a cable at −40 °C is not the fibre on a spool (Link budget)
Tensile strengthinstallation 1 500–2 700 N (ADSS 10–30 kN by span); long-term 600–1 000 Npulling and blowing limits; fibre strain stays below 0.2 % long-term (Reliability & ageing)
Crush resistance1 000–3 000 N per 100 mm (IEC 60794-1-21 E3)direct burial, trays, clamps
Impact, torsion, repeated bendingpass per IEC 60794-1-2handling on site
Minimum bend radius20 × OD under tension, 10 × OD installed (15 × / 10 × for some)duct bends, closure entry, tray corners
Temperatureinstallation −10 … +50 °C; operation −40 … +70 °C (−60 °C variants for northern climates); storage −40 … +70 °Ccold installation cracks jackets; cold operation adds microbend loss
Water penetration1 m head, 24 h, no leakage over 3 m (IEC 60794-1-22 F5)closures still must be sealed — the cable blocks longitudinal flow only
Diameter and weight8–20 mm, 60–300 kg/kmduct fill, reel sizes, pole loads
Armour and jacketCST, SWA, dielectric; HDPE, LSZH, nylon anti-termiteenvironment (Installation)
Fire ratingsee aboveindoor route
Reel length2–6 km typical, up to 12 km for micro-cablesnumber of splice points on the route
StandardsIEC 60794-3 (outdoor), 60794-2 (indoor), 60794-4 (aerial along power lines), 60794-5 (microduct); Telcordia GR-20; GOST R 52266 in Russiawhat to write in the tender (Standards map)

Choosing the cable

SituationChooseAvoid
Duct, long route, growth expectedstranded loose tube 144–288, or microducts with blown micro-cablestight-buffered indoor cable outdoors
Direct burialarmoured loose tube (CST or dielectric), double jacketunarmoured cable in rodent country
Along or on HV linesADSS sized for span and electric field, or OPGW at the shield-wire positionany metallic cable near HV
Poles, fast deploymentfigure-8 or ADSS with short spanslashing indoor cable to a messenger
Building entrance to rackindoor/outdoor dry LSZH loose tubeoutdoor PE cable running 50 m through a building
Riser and horizontal indoorstight-buffered distribution LSZH/OFNR, plenum-rated where requiredgel-filled cable vertically (gel migrates)
Data centre between rowspre-terminated MPO trunks, rollable-ribbon high-count between hallsfield splicing hundreds of fibres
FTTH last 50 mflat or round drop with G.657.A2/B3G.652 in tight indoor bends
Harsh temporarytactical polyurethane with hardened connectorsstandard patch cords outdoors

In CodingBox

Nothing in a module's memory describes the cable, but two of its fields interact with cable choice: the fibre-length ratings assume the cabled attenuation of a standard cable, and the connector code must match the trunk termination — MPO for parallel optics, LC for duplex. CodingBox shows both so the cable, the panel and the module are ordered as one system (Check transceiver, Breakout & MPO cabling).