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Specifications of PLC Optical Splitter

Specifications of PLC Optical Splitter

Specifications of PLC Optical Splitter - MADIBA BAY OPTICS

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PLC optical splitters are passive devices that evenly divide a single optical signal into multiple outputs with high uniformity, low loss, and scalable configurations.

Key Features

1. Uniform Signal Distribution: PLC splitters ensure consistent optical power across all output ports, minimizing signal degradation and maintaining network performance . 2. High Splitting Ratios: They can support splitting ratios up to 1x64 or even 1x128, making them suitable for large-scale fiber networks . 3. Low Insertion Loss: The planar waveguide technology reduces signal loss compared to traditional FBT splitters, ensuring efficient transmission . 4. Compact and Scalable Design: PLC splitters are small in size and can be easily integrated into centralized or distributed PON architectures, supporting network expansion without major infrastructure changes . 5. Wide Wavelength Range: They operate effectively across a broad wavelength spectrum, typically covering 1260–1650 nm, which is ideal for FTTH, PON, and CATV networks . 6. High Reliability and Stability: Manufactured using semiconductor planar waveguide technology, PLC splitters offer consistent performance, long-term stability, and resistance to environmental variations . 7. Passive Operation: Being passive devices, they do not require power, reducing operational costs and network complexity . 8. Versatile Configurations: Available in multiple configurations such as 1x2, 1x4, 1x8, 1x16, 1x32, 1x64, and 1x128, allowing network designers to select the appropriate splitter based on the number of endpoints .

Applications

PLC optical splitters are widely used in:

  • Fiber-to-the-Home (FTTH) networks to distribute signals from a central office to multiple homes .
  • Passive Optical Networks (PONs) including EPON, GPON, and BPON .
  • Data centers for efficient optical signal distribution .
  • CATV networks and optical testing/monitoring systems .

Working Principle

Optical signals enter the input fiber and are coupled into a planar waveguide chip. The waveguide circuit splits the signal into multiple paths, with each output port receiving a portion of the optical power. The splitting process is highly controlled, ensuring minimal variation between outputs . PLC optical splitters are essential for modern fiber optic networks, providing efficient, scalable, and reliable signal distribution while supporting high bandwidth and large-scale deployments.

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