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FAU Mode-Field Conversion Scheme

Agix's Fiber Array Units (FAUs) are designed for superior stability and low insertion loss. They achieve low-loss coupling of optical signals between optical fibers and devices such as silicon photonic chips through special fusion discharge processing to adjust the mode field diameter (e.g., converting 9μm to 3-6μm). For high-density integration, we offer SM fibers with different mode fields and FAUs with spacing as low as 80/127/250 μm.

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FAU, Internal Passive Optical Connector

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▍Product Introduction

Agix's Fiber Array Units (FAUs) are designed for superior stability and low insertion loss. They achieve low-loss coupling of optical signals between optical fibers and devices such as silicon photonic chips through special fusion discharge processing to adjust the mode field diameter (e.g., converting 9μm to 3-6μm).

For high-density integration, we offer SM fibers with different mode fields and FAUs with spacing as low as 80/127/250 μm.


▍Product Applications
AI Data Center/CPO
Quantum computing
Silicon photonics
Fiber-optic sensing

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    • Commodity name: FAU Mode-Field Conversion Scheme

    Agix's Fiber Array Units (FAUs) are designed for superior stability and low insertion loss. They achieve low-loss coupling of optical signals between optical fibers and devices such as silicon photonic chips through special fusion discharge processing to adjust the mode field diameter (e.g., converting 9μm to 3-6μm). For high-density integration, we offer SM fibers with different mode fields and FAUs with spacing as low as 80/127/250 μm.

    ▍Product Introduction

    Agix's Fiber Array Units (FAUs) are designed for superior stability and low insertion loss. They achieve low-loss coupling of optical signals between optical fibers and devices such as silicon photonic chips through special fusion discharge processing to adjust the mode field diameter (e.g., converting 9μm to 3-6μm).

    For high-density integration, we offer SM fibers with different mode fields and FAUs with spacing as low as 80/127/250 μm.


    ▍Product Applications
    AI Data Center/CPO
    Quantum computing
    Silicon photonics
    Fiber-optic sensing

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