Fiber Optics and Accessories

Image Part Number Description / PDF Quantity Rfq
1278118-4

1278118-4

TE Connectivity AMP Connectors

TERMINATION KIT LC/MTRJ/SC/ST

0

8765-PS/UPC

8765-PS/UPC

3M

ASSEMBLY FIXTURE

0

1754845-2

1754845-2

TE Connectivity AMP Connectors

TERMINATION KIT LC/MTRJ/SC CONN

0

FOCTT2-BKIT2

FOCTT2-BKIT2

Panduit Corporation

TERMINATION KIT OPTICAM 2

43

1918809-1

1918809-1

TE Connectivity AMP Connectors

CLEANER MTP/MPO CONNECTORS

0

CCK-3

CCK-3

ITW Chemtronics (Chemtronics)

CLEANER

0

1278023-1

1278023-1

TE Connectivity AMP Connectors

ASSEMBLY FIXTURE

0

2527

2527

3M

FIBER SPLICE ORGANIZER TRAY

0

1658231

1658231

Phoenix Contact

TERMINATION KIT SCDUPLEX/SCRJ

0

503577-1

503577-1

TE Connectivity Raychem Cable Protection

SPLICE SINGLEMODE/MULTIMODE

0

6650-LC

6650-LC

3M

TERMINATION KIT LC CONNECTORS

0

FPPKIT-CVY

FPPKIT-CVY

Panduit Corporation

TERMINATION KIT OPTICAM CONNECT

0

2540G

2540G

3M

SPLICE

0

HFBR-4593

HFBR-4593

Broadcom

POLISHING KIT

0

1754737-2

1754737-2

TE Connectivity AMP Connectors

TERMINATION KIT SC CONNECTORS

0

0867100040

0867100040

Woodhead - Molex

POLISHING PLATE TOOL KIT

0

IF-FC2

IF-FC2

Industrial Fiber Optics, Inc.

FIBER CUTTER

0

1032030000

1032030000

Weidmuller

TERMINATION KIT SC/ST CONNECTOR

0

WST.OU.110.20PN

WST.OU.110.20PN

REDEL / LEMO

FIBER CLEAVER

0

CFK1302

CFK1302

ITW Chemtronics (Chemtronics)

CLEANING KIT FIBER OPTIC CONN

0

Fiber Optics and Accessories

Fiber optics refers to the technology that transmits light through thin glass or plastic fibers for data, voice, and video signal transmission. Fiber optic accessories include components that enable system assembly, signal management, and network optimization. These technologies form the backbone of modern high-speed communication, offering advantages such as ultra-high bandwidth, low signal loss, and immunity to electromagnetic interference.

Type Functional Features Application Examples
Single-Mode Fiber (SMF) Transmits single light path, low dispersion, ideal for long-distance Telecom backbone networks, submarine cables
Multi-Mode Fiber (MMF) Multiple light paths, higher bandwidth for short distances Data centers, enterprise LANs
Optical Transceivers Convert electrical to optical signals and vice versa Switch/routers in 5G networks
Optical Amplifiers Boost signal strength without optical-electrical conversion Long-haul DWDM systems
Fiber Optic Connectors Enable physical fiber connections with minimal loss FTTH installations, data centers

Fiber optic cables consist of:

  • Core: Central glass/plastic medium for light transmission
  • Cladding: Surrounding material with lower refractive index
  • Coating: Protective polymer layer against physical damage
  • Strength Members: Aramid yarns for tensile protection
  • Outer Jacket: Environmental protection against moisture/chemicals

Accessories include:
- Mechanical splices and fusion splicers
- Optical isolators and circulators
- WDM multiplexers/demultiplexers

Parameter Description Importance
Attenuation (dB/km) Signal loss per kilometer Directly affects transmission distance
Bandwidth (MHz km) Data carrying capacity Determines maximum data rate
Chromatic Dispersion Light pulse spreading over distance Impacts signal integrity at high speeds
Operating Wavelength (nm) Optimal transmission window Matches laser source characteristics
Return Loss (dB) Reflected signal power Affects system stability

Major industries:

  • Telecommunications: 5G fronthaul/backhaul, undersea cables
  • Healthcare: Endoscopy imaging systems
  • Industrial: Sensor networks for temperature/vibration monitoring
  • Defense: Secure communication links and missile guidance systems
  • Consumer: Home theater cabling for 4K/8K video

Typical equipment: DWDM multiplexers, OTDR testers, fiber patch panels

Manufacturer Key Products
Corning Incorporated SMF-28 Ultra fiber, ClearCurve VCSEL fiber
Finisar (II-VI) 100G QSFP28 transceivers, WDM solutions
Huawei Technologies OptiX OSN transmission systems
3M Fiber Optics Enclosure systems, fiber management solutions

Key considerations:

  • Transmission requirements: Distance, bandwidth, and latency
  • Environmental factors: Temperature, moisture, and mechanical stress
  • Compatibility: Interface types (LC/SC/MPO), wavelength matching
  • Scalability: Support for future network upgrades
  • Cost-benefit analysis: Initial investment vs. lifecycle maintenance

Example: Selecting OM4 MMF for 100G data center links under 150m distance

Future developments include:

  • 400G/800G high-speed transceivers for cloud infrastructure
  • Photonic integrated circuits (PICs) for compact systems
  • Space-division multiplexing (SDM) for enhanced capacity
  • AI-driven fiber monitoring systems for predictive maintenance
  • Biophotonics applications in medical diagnostics
RFQ BOM Call Skype Email
Top