China CATV FTTH PLC Splitter Module  Optical Splitter Module For Communication Systems for sale
China CATV FTTH PLC Splitter Module  Optical Splitter Module For Communication Systems for sale

CATV FTTH PLC Splitter Module Optical Splitter Module For Communication Systems

Low Loss Low Polarization Sensitivity Wide Wavelength PLC Splitter Module Optical Splitter Device for Optic Communication Systems PLC Splitter Module Optical Splitter Device Optical splitter device is available in multiple configurations including cassette type, tray splitter, modular splitter, bare fiber splitter, mini type splitter, and rack-mounted splitter. Key Features Low insertion loss Low polarization sensitivity Wide wavelength range Excellent environmental

Brand Name OEM
Payment Terms T/T
Place of Origin shanghai
Price negotiated
Delivery Time 14 work days
Minimum Order Quantity 10
Product Description

Low Loss Low Polarization Sensitivity Wide Wavelength PLC Splitter Module Optical Splitter Device for Optic Communication Systems

 

PLC Splitter Module
Optical Splitter Device
Optical splitter device is available in multiple configurations including cassette type, tray splitter, modular splitter, bare fiber splitter, mini type splitter, and rack-mounted splitter.
Key Features
  • Low insertion loss
  • Low polarization sensitivity
  • Wide wavelength range
  • Excellent environmental reliability
Applications
Ideal for optic communication systems, CATV, FTTH, FTTx, LAN networks, and fiber sensor applications.
The Planar Lightwave Circuit (PLC) splitter is an optical power management device fabricated using silica optical waveguide technology. It efficiently distributes optical signals from Central Office (CO) to multiple premise locations.
Technical Advantages
  • Compact size for space-efficient installations
  • High reliability for continuous operation
  • Broad operating wavelength range
  • Excellent channel uniformity
  • Cost-effective solution for PON networks
PLC splitters are widely implemented in PON (Passive Optical Network) architectures to achieve optical signal power splitting while maintaining optimal performance at reduced costs.

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