| Brand Name: | Gracyfiber |
The Box Type PLC Fiber Optic Splitter is a passive optical component designed to distribute one optical input into multiple output paths. Based on Planar Lightwave Circuit (PLC) technology, it is suitable for optical power distribution in PON, FTTH, telecom access, CATV, and other passive fiber optic networks.
The PLC splitting structure provides low insertion loss design, good output-port uniformity, and low wavelength-dependent performance for multi-port optical distribution. As a passive component, the splitter operates without an external power supply and can be integrated directly into fiber distribution and access-network infrastructure.
The optical splitter is installed in a protective box package, helping organize and protect the internal optical components and fiber connections. Different splitting configurations, fiber types, connector interfaces, cable lengths, and package formats can be selected according to system and installation requirements.
Box type PLC splitter
Planar Lightwave Circuit technology
Passive optical power distribution
Multiple output configurations available
Low insertion loss design
Good port-to-port uniformity
Low wavelength dependence
Stable optical splitting performance
Protective box package
No external power supply required
Multiple connector options available
Multiple fiber configurations available
Customizable cable length
Suitable for optical distribution networks
FTTH / FTTx networks
GPON / EPON networks
Telecom access networks
Passive optical networks
Optical distribution networks
CATV systems
Fiber distribution boxes
Optical monitoring systems
Fiber optic sensing systems
Optical test systems
Telecom equipment integration
Customized passive optical assemblies
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A Box Type PLC Fiber Optic Splitter is a passive optical device that distributes the optical power from one input fiber to multiple output fibers. The PLC splitter is installed inside a protective box package for easier handling, installation, and integration into optical networks.
Yes. The splitter can be configured with different input/output port counts, fiber types, connector interfaces, cable lengths, and package structures according to the network design. Final optical parameters should be confirmed based on the required splitting configuration and system optical power budget.