CodingBox Documentation

Fibre-optic glossary

Short definitions of the terms used across this category, grouped the way they are met: the physics of light in glass, fibre and cable types, the passive components between two transceivers, connectors, installation, testing and operation. Each entry points to the material where the term is explained in depth. Transceiver-side vocabulary — form factors, DDM, memory maps, compliance codes — lives in the optics glossary.

Light and fibre physics

TermMeaningSee
Corethe central glass region (9 µm single-mode, 50 or 62.5 µm multimode) with a higher refractive index that guides the lightHow light propagates
Claddingthe 125 µm glass layer of lower index around the core; the light is confined by the index stepsame
Coatingthe dual acrylate layer (250 or 200 µm) that protects the glass; stripped before splicingHow fibre is made
Refractive index (n)ratio of the speed of light in vacuum to that in the material; about 1.468 for silicaHow light propagates
Group index (IOR)the index that governs the speed of a pulse; the value entered into an OTDR (1.467–1.469)Reading an OTDR trace
Numerical aperture (NA)the sine of the maximum acceptance angle; 0.12–0.14 single-mode, 0.20 multimodeHow light propagates
Total internal reflectionthe effect that keeps light in the core when it hits the core–cladding boundary at a shallow anglesame
Modea stable field pattern the fibre can carry; single-mode fibre carries one above its cutoff wavelengthsame
Mode field diameter (MFD)the effective width of the single-mode light spot (9.2 µm at 1310 nm, 10.4 µm at 1550 nm); mismatch costs splice losssame
Cutoff wavelengthbelow it a single-mode fibre carries more than one mode; cabled cutoff ≤ 1 260 nmsame
Effective area (A_eff)the area over which the power is spread (≈ 80 µm² G.652); smaller means stronger non-linear effectsNon-linear effects
Attenuationloss of power with distance in dB/km; 0.35 dB/km at 1310 nm, 0.2 dB/km at 1550 nmAttenuation & windows
Rayleigh scatteringscattering from density fluctuations frozen into the glass; the dominant loss, falling with the fourth power of wavelength; source of the OTDR backscattersame
Water peakthe OH absorption band around 1 383 nm; suppressed in low-water-peak (G.652.C/D) fibresame
Transmission windowa wavelength region of low loss: 850, 1 310, 1 550 nm and the O–L bandssame
Macrobend losslight lost at a visible bend below the minimum radius; grows with wavelengthPlant faults
Microbend lossloss from microscopic axis deviations caused by cable pressure, ice or coating stresssame
Modal dispersionpulse spreading in multimode fibre because modes travel at different speeds; sets the bandwidth–distance productDispersion & bandwidth
Chromatic dispersion (CD)pulse spreading because different wavelengths travel at different speeds; D in ps/(nm·km), 17 at 1550 nm on G.652same
Zero-dispersion wavelength (λ₀)where chromatic dispersion crosses zero: 1 310 nm on G.652, 1 550 nm on G.653same
Polarization mode dispersion (PMD)spreading because the two polarization modes travel at different speeds; coefficient in ps/√kmsame
Differential group delay (DGD)the instantaneous delay between the two polarization modes, in ps; its mean is the PMD of the linkFibre characterization
Modal bandwidth (EMB)the bandwidth–distance product of multimode fibre in MHz·km (OM3 2 000, OM4 4 700)Dispersion & bandwidth
Non-linear effects (SPM, XPM, FWM, SBS, SRS)power-dependent distortions: self- and cross-phase modulation, four-wave mixing, Brillouin and Raman scatteringNon-linear effects
Fresnel reflectionthe reflection at any index step, 3.6 % (−14.4 dB) at glass–airReflections & return loss
Reflectancethe reflected fraction of one event in negative dB (−55 dB for a clean UPC pair)same
Optical return loss (ORL)the total power returned by the whole link, in positive dBsame
Fibre fusea self-propagating destruction of the core above roughly 1 W, travelling toward the sourceReliability & ageing
Proof testthe tension (0.69 GPa, 1 % strain) every metre of fibre survives in the factorysame
Static fatigueslow growth of surface flaws under stress and moisture; the reason for the 20 % strain rulesame

Fibre and cable types

TermMeaningSee
G.652.Dstandard single-mode fibre with low water peak; the default fibre of the worldFibre types
G.655non-zero dispersion-shifted fibre for 2000s DWDM long haulsame
G.657bend-insensitive single-mode fibre (A1: 10 mm, A2/B2: 7.5 mm, B3: 5 mm radius)same
G.654cut-off shifted pure-silica-core fibre with 0.15–0.17 dB/km for submarine and long-haul coherentsame
OM1–OM5multimode grades: 62.5 µm OM1; 50 µm OM2, laser-optimised OM3/OM4, wideband OM5same
OS1a, OS2single-mode cabled fibre categories of ISO/IEC 11801: 1.0 dB/km indoor, 0.4 dB/km outdoorStandards map
Dispersion-compensating fibre (DCF)fibre with large negative dispersion used in modules to cancel the line's dispersionDispersion & bandwidth
Polarization-maintaining fibre (PM)fibre with built-in stress that keeps a launched polarization; inside transceivers and instrumentsFibre types
Loose tubecable design where 12 or 24 fibres float in a gel- or dry-filled tube, decoupled from cable strainCable construction
Tight buffera 900 µm plastic layer on each fibre; indoor cables and pigtailssame
Ribbon, rollable ribbon12 fibres bonded side by side (or intermittently) for mass splicing and densitysame
Micro-cable, microductsmall cables (200 µm fibres) blown into 5–16 mm ductssame
ADSSall-dielectric self-supporting aerial cable for power-line corridorssame
OPGWoptical ground wire: fibres inside the lightning shield wire of a high-voltage linesame
Strength memberfibreglass rod, aramid yarn or steel that carries the tension instead of the fibressame
Armourcorrugated steel tape, steel wires or dielectric yarns against crush and rodentssame
Water blockinggel or dry swellable tapes and yarns stopping water from travelling along the cablesame
LSZH, CPR Euroclass, OFNP/OFNRfire ratings of indoor cable jackets in IEC, EU and NEC regimessame
Colour code (TIA-598)blue, orange, green, brown, slate, white, red, black, yellow, violet, rose, aqua for fibres 1–12 and tubessame

Passive components

TermMeaningSee
Passive planteverything between two transceivers that carries light without electronics: cables, panels, splices, connectors, splitters, filtersPassive plant
Patch panel, ODFthe rack unit or frame where cable fibres end in adapters for patch cordssame
Adapter (coupler)the bulkhead sleeve that aligns two connector ferrulessame
Pigtaila short fibre with a connector on one end, spliced to a cable fibre on the othersame
Patch cord (jumper)a connectorised fibre for panel-to-equipment or panel-to-panel connectionssame
Splice closurethe sealed outdoor enclosure where cables are opened and fibres spliced on trayssame
Splice traythe tray in a closure or panel holding splice protectors and slackSplicing & termination
Splice protectorthe heat-shrink sleeve with a steel rod that protects a fusion splicesame
Fibre distribution hub (FDH)the street cabinet of a PON with splitters and cross-connectFibre network topologies
Splittera passive divider of power 1:2 … 1:128 for PON; 3.5 dB per halving plus excess lossPassive plant
WDM filter, mux/demux, OADMcomponents that combine or separate wavelengths on one fibresame
Attenuatora fixed or variable element inserting loss to protect a receiver from overloadLink budget
Terminatora non-reflective end (APC or absorptive) for an unused fibreReflections & return loss
Cassette, MPO trunk, breakoutdata-centre modular cabling: MPO trunk cables, cassettes fanning out to LCFibre network topologies
Polarity (methods A/B/C)the scheme that keeps transmit and receive fibres paired through MPO trunksBreakout & MPO cabling
Launch cord, receive cord150–1 000 m fibres before and after the link under test so the OTDR can see its first and last connectorsReading an OTDR trace

Connectors

TermMeaningSee
Ferrulethe ceramic cylinder (2.5 mm SC/FC/ST, 1.25 mm LC) that holds and aligns the fibre endConnectors & fibre types
Endfacethe polished end of the ferrule and fibre; inspected before every matingEndface inspection & cleaning
LC, SC, FC, ST, MPO/MTPconnector families: small duplex LC (transceivers), SC (PON, panels), threaded FC (instruments), bayonet ST (legacy), 12–24 fibre MPO (parallel optics)Connectors & fibre types
PC, UPC, APCpolish types: physical contact, ultra-polished (blue, −50 dB), 8° angled (green, −60 dB, never mated to UPC)same
Insertion lossthe loss added by a connector pair or splice; 0.3 dB typical, 0.75 dB maximum per pair in structured cablingLink budget
Matingconnecting two connectors through an adapter; 500–1 000 matings per connector lifeReliability & ageing
Key, guide pinsthe features that fix the rotational position (APC angle, MPO fibre order)Connectors & fibre types

Installation and routes

TermMeaningSee
Duct, sub-duct, microductthe pipes fibre cables are pulled or blown intoInstallation
Blowing (jetting)installing cable with compressed air along a duct; kilometres per shotsame
Pulling tensionthe force on the cable during installation, capped by the cable's rated tensile strengthsame
Minimum bend radius20 × cable diameter under tension, 10 × installed; 30 mm for bare fibresame
Direct burialcable in a trench or ploughed in without a duct; armouredsame
Aerialcable on poles or towers: lashed, figure-8, ADSS, OPGWsame
Sagthe vertical droop of an aerial span; sets tension and clearancesame
Slack, storage loopextra cable coiled at closures and poles for future splicing and repairsame
Horizontal directional drilling (HDD)trenchless installation of ducts under roads and riverssame
Marker post, warning tapeabove-ground and in-trench indicators of a buried routesame
As-builtthe documentation of what was actually installed, not what was designedDocumentation & labelling

Testing and measurement

TermMeaningSee
Light source and power meter (LSPM, OLTS)the reference loss test: launch a known power, measure what arrives; Tier 1Testing & measurement
Reference method (one-jumper)the way the meter is zeroed so that the link's own connectors are countedsame
Encircled fluxthe standardized launch condition for multimode loss tests (TIA-526-14, IEC 61280-4-1)same
OTDRoptical time-domain reflectometer: sends pulses and plots backscatter and reflections versus distanceReading an OTDR trace
Pulse widththe OTDR pulse duration (5 ns–20 µs) trading resolution against rangesame
Dead zone (event, attenuation)the distances after a reflection in which events cannot be separated or measuredsame
Dynamic rangethe OTDR's usable dB between initial backscatter and noisesame
Backscatter coefficientthe fraction of pulse power the fibre scatters back, used to compute reflectancesame
Ghosta false reflective event caused by multiple reflectionssame
Gaineran apparent negative splice loss caused by a backscatter mismatch; averaged out bidirectionallysame
Bidirectional measurementOTDR from both ends, averaged, required for true splice and connector lossessame
.sor filethe standard OTDR trace file (Telcordia SR-4731)same
ORL meter (OCWR)instrument measuring the total return loss of a linkReflections & return loss
Visual fault locator (VFL)a red laser showing breaks and tight bends in cords and traysTesting & measurement
Fibre identifiera clamp-on tool detecting traffic and its direction in a bent fibre without disconnecting itsame
Inspection scopea video microscope grading endfaces against IEC 61300-3-35Endface inspection & cleaning
Tier 1, Tier 2TIA-568.3-D test levels: loss/length/polarity pass-fail; plus OTDR characterizationTesting & measurement
Fibre characterizationCD, PMD, spectral attenuation, ORL and latency measurements before high-speed or DWDM servicesFibre characterization
Link budgettransmitter power minus receiver sensitivity, compared with the sum of losses and penaltiesLink budget
Marginthe decibels left in the budget after all losses and penalties; 3 dB is the usual design targetsame
Link passport, baselinethe recorded commissioning values (OTDR, loss, DDM) every later measurement is compared withDocumentation & labelling

Operation and safety

TermMeaningSee
Dark fibrean installed fibre without equipment, leased or reservedFibre network topologies
Remote fibre test system (RFTS)an OTDR permanently connected to live fibres via 1625/1650 nm couplers, alarming on new eventsMaintenance & restoration
Distributed acoustic sensing (DAS)using the fibre as a vibration sensor to detect digging near the cablesame
Restorationthe process from alarm to temporary and then permanent repair of a cutsame
Automatic power reduction (APR, ALS)amplifier shutdown on loss of signal so that a broken fibre is not hazardousSafety & handling
Laser class (IEC 60825-1)1, 1M, 2, 3R, 3B, 4 — the hazard class of a sourcesame
Hazard level (IEC 60825-2)the class of power accessible at a location in a fibre systemsame
DDM / DOMthe transceiver's digital diagnostics: Tx and Rx power, temperature, bias — the link's built-in power meterDDM basics

In CodingBox

The bench side of this vocabulary — what the module reports about its wavelength, connector code, fibre length ratings and DDM — is what CodingBox reads and decodes, so the terms above meet the transceiver's own words on the Check screen (Check transceiver, Optics glossary).