Fiber Optic Cables

Image Part Number Description / PDF Quantity Rfq
F62ERLNLNSNM019

F62ERLNLNSNM019

Panduit Corporation

OM1 2 FIBER 1.6MM JACKET PATCHCO

0

VFA1LCSCOS2

VFA1LCSCOS2

HellermannTyton

FT LC - SC DUPLEX OS2 FIBER ASSE

8

FWTYL7575KAM086

FWTYL7575KAM086

Panduit Corporation

OM5 SIG CORE 12F TRUNK LSZH

0

FJ5G4LCLC-05M

FJ5G4LCLC-05M

Unirise USA

FIBER OPTIC 100GIG OM4 LC-LC 5M

358

1062837224

1062837224

Woodhead - Molex

TRACER CABLE MTPE-F B 115FT OM4

0

FX8RPJNJNXNF080

FX8RPJNJNXNF080

Panduit Corporation

OM3 8-FIBER, INTERCONNECT, PLENU

0

X9LAYUS10FISCU

X9LAYUS10FISCU

Fiber Instrument Sales

FIS DUPLEX 1.6MM SM 9/125 ULTRA

100

FWTRP7N7NLNF063

FWTRP7N7NLNF063

Panduit Corporation

OM5+ 12F INTERCONN OFNP PANMPO F

0

FWUYL7575KAM084

FWUYL7575KAM084

Panduit Corporation

OM5 SIG CORE 24F TRUNK LSZH

0

FZ8RPJNJNYNF093

FZ8RPJNJNYNF093

Panduit Corporation

OM4 8-FIBER, INTERCONNECT, PLENU

0

FZ8RPJNJNYNF025

FZ8RPJNJNYNF025

Panduit Corporation

OM4 8-FIBER, INTERCONNECT, PLENU

0

NKFP92ELLLSM040

NKFP92ELLLSM040

Panduit Corporation

FIBER OPTIC CBL LC-LC DUPLEX 40M

475

F623PSNSNSNM005

F623PSNSNSNM005

Panduit Corporation

OM1 2-FIBER 3MM JACKET PATCHCORD

0

F623LSNSNSNM011

F623LSNSNSNM011

Panduit Corporation

OM1 2-FIBER 3MM JACKET PATCHCORD

0

FWTRP7N7NKNF005

FWTRP7N7NKNF005

Panduit Corporation

FIBER OPTIC CBL MPO-MPO OM5 1.5M

2

FXURPEN74XNF040

FXURPEN74XNF040

Panduit Corporation

OM3 24-FIBER, INTERCONNECT, PLEN

0

FWTRP7N7NLNF060

FWTRP7N7NLNF060

Panduit Corporation

OM5+ 12F INTERCONN OFNP PANMPO F

0

N318-06M

N318-06M

Tripp Lite

FIBER OPTIC CBL LC-ST DUPLEX 6M

0

1062837334

1062837334

Woodhead - Molex

TRACER CABLE MTPE-M/F A 160FT OM

0

N846D-05M-16BMG

N846D-05M-16BMG

Tripp Lite

400G MULTIMODE 50/125 OM4 PLENUM

20

Fiber Optic Cables

1. Overview

Fiber optic cables are critical components in modern communication systems, utilizing glass or plastic fibers to transmit data via light pulses. Compared to traditional copper cables, they offer higher bandwidth, faster data rates, and immunity to electromagnetic interference (EMI). These cables form the backbone of global telecommunication networks, data centers, and high-speed internet infrastructure, enabling technologies like 5G, cloud computing, and IoT.

2. Major Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Single-Mode Fiber (SMF)Transmits one light mode with minimal dispersion, ideal for long-distance transmissionTelecom backbone networks, transoceanic cables
Multi-Mode Fiber (MMF)Supports multiple light modes, lower cost for short-distance high-speed linksData center interconnects, enterprise LANs
Tight Buffered CableIndividual fiber protection with polymer coating, flexible for indoor useOffice networks, security camera systems
Loose Tube CableWaterproof gel-filled design for outdoor durabilityUnderground/metro deployment, aerial installations
Ribbon Fiber CableFlat ribbon structure for high-density parallel optical connectionsHigh-density data centers, 400G/800G networks

3. Structure and Composition

A typical fiber optic cable consists of:

  1. Core: Glass (silica) or plastic center (50-62.5 m diameter) guiding light signals
  2. Cladding: Lower-refractive-index material surrounding core for total internal reflection
  3. Coating: UV-cured acrylate layer for mechanical protection and flexibility
  4. Strength Members: Aramid yarn or fiberglass for tensile load resistance
  5. Outer Jacket: Flame-retardant PVC/LSZH (Low Smoke Zero Halogen) for environmental protection

Advanced designs incorporate micro-bend-resistant coatings and bend-insensitive fibers (BIF) for complex routing scenarios.

4. Key Technical Parameters

ParameterTypical ValuesImportance
Attenuation0.18-0.35 dB/km @1310/1550nmDetermines maximum transmission distance
Bandwidth10-100 GHz km (MMF), unlimited (SMF)Limits data rate capacity
Operating Wavelength850/1300/1550 nmMatches optical transceiver specifications
Max Tensile Load100-500 N (short-term)Ensures mechanical reliability during installation
Bend Radius10-20 cable diameterPrevents signal loss from micro-bending
Temperature Range-40 C to +70 CGuarantees performance in extreme environments

5. Application Fields

Major industries and equipment utilizing fiber optic cables:

  • Telecommunications: 5G base stations, DWDM backbone systems
  • Data Centers: Switch interconnects (40G/100G/400G), MPO trunk cables
  • Medical: Endoscopy equipment, MRI machine connections
  • Industrial: Smart grid sensors, factory automation networks
  • Defense: Submarine sonar systems, secure communication networks

Case Study: Google's Equiano submarine cable (2021) uses space-division multiplexing with 12 fiber pairs, achieving 144Tbps capacity across the Atlantic.

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductsFeatures
CommScopeClearCurve Ultra Low Bend Loss Fiber10x smaller bend radius than standard SMF
FujikuraSM-G.654.E Ultra Low-Loss Fiber0.15 dB/km attenuation for long-haul networks
Yangtze Optics172-fiber Ribbon CableSupports 800Gbps per cable in data centers
HuaweiOptiX OSN 9800 Multi-Service PlatformIntegrated with G.652/G.655 fiber modules
3MEncore Zirconia ConnectorsLow back reflection (<-60dB) for CATV networks

7. Selection Guidelines

Key considerations for optimal cable selection:

  • Transmission Requirements: Match fiber type (SMF/MMF) and wavelength with transceiver specifications
  • Environmental Conditions: Choose LSZH jackets for indoor fire safety, armored cables for direct burial
  • Installation Constraints: Use bend-insensitive fibers for tight spaces, pre-terminated cables for rapid deployment
  • Future-Proofing: Select WDM-compatible cables with extra buffer tubes
  • Cost-Benefit Analysis: Balance upfront costs vs. lifetime maintenance requirements

Example: For a 200m data center link, choose OM4 multi-mode fiber with MPO connectors for 100Gbps Ethernet compatibility.

8. Industry Trends

Key development trends shaping the fiber optic market:

  • Higher Speeds: Transition to 800Gbps and 1.6Tbps systems driving adoption of SX6/SX8 fibers
  • Network Virtualization: FlexGrid DWDM systems requiring bend-insensitive and polarization-maintaining fibers
  • IoT Expansion: Proliferation of fiber-to-the-home (FTTH) networks for smart city infrastructure
  • Material Innovation: Adoption of hollow-core fibers with 0.18 dB/km loss and ultra-low latency
  • Sustainability: Biodegradable jackets and reduced rare-earth dopant usage in cables

The global fiber optic market is projected to grow at 12% CAGR through 2030, driven by 5G deployment and hyperscale data center expansion.

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