Find the end face of PLC splitter coupling

The end face of a PLC splitter coupling consists of either a bare fiber input and fiber ribbon output or connectorized terminations such as SC/APC, precisely aligned to the splitter chip.Structure of ...

Find the end face of PLC splitter coupling

The end face of a PLC splitter coupling consists of either a bare fiber input and fiber ribbon output or connectorized terminations such as SC/APC, precisely aligned to the splitter chip.

Structure of PLC Splitter Ends

A PLC splitter is composed of a planar lightwave circuit chip with one input port and multiple output ports. The input end typically consists of a single optical fiber, while the output end may have multiple fibers arranged in a ribbon array, depending on the number of channels (1xN or 2xN) . These fibers are coupled to the waveguides on the chip and are precisely aligned to ensure minimal insertion loss and uniform splitting .

Bare Fiber vs Connectorized Ends

  • Bare Fiber Ends: Some PLC splitters are supplied with bare fiber at both input and output ends. This configuration is compact and suitable for integration into larger systems where the fibers will be spliced or connectorized later .
  • Connectorized Ends: Many PLC splitters come with pre-installed connectors, such as SC/APC, at the input and output ends. Connectorized ends simplify installation and provide reliable optical connections for PON or FTTx networks . The connectors are aligned to the fiber arrays and the splitter chip to maintain optical performance .

Fiber Arrangement and Coupling

The fiber arrays at the output end are often arranged in a ribbon format, especially for splitters with multiple channels (e.g., 1x8, 1x16, 1x32). The fibers are fusion-spliced or mechanically coupled to the waveguide outputs on the PLC chip, and the assembly is typically sealed in a protective package to prevent damage and maintain alignment .

Summary

The end face of a PLC splitter coupling can be either:

  • Bare fiber input and ribbon output, ideal for system integration and splicing, or
  • Connectorized input and output (e.g., SC/APC), ready for plug-and-play installation.

In all cases, the end faces are carefully aligned with the splitter chip waveguides to ensure low insertion loss, uniform splitting, and stable optical performance .

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