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Multimode MM FA-MT 40G/100G Transceiver for Data Centers | China Suppliers & Factory Solutions
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Multimode MM FA-MT 40G/100G Transceiver for Data Centers | China Suppliers & Factory Solutions

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Enhance your data center's performance with our advanced QSFP-DD, OSFP, and SFP56 solutions. Our products are designed for internal links in data centers, featuring high-density fiber integration that ensures low insertion loss and precision alignment. With mechanical robustness and fast connectivity, our offerings are perfect for any demanding environment. We proudly manufacture these high-quality solutions in China, making us a leading factory and supplier in the industry. Our multimode compatibility further enhances the versatility of our products, allowing for seamless integration across various systems.

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    Product Introduction

    Multimode FA-MT (Fiber Array - Mechanical Transfer) is a high-density, precision optical component that integrates multimode fibers into a MT-compatible array, designed for parallel optical communication systems requiring high bandwidth and compact connections.

    High-Density Alignment

    Combines a linear array of multimode optical fibers (typically 50/125 μm or 62.5/125 μm) with an MT (Mechanical Transfer) ferrule—an industry-standard precision connector interface.

    Parallel Transmission

    Enables low-loss, parallel signal transmission between multimode optical devices (e.g., transceivers, switches, or fiber arrays), supporting high-data-rate applications (10G/40G/100G/400G) by aligning multiple fiber cores simultaneously.

    About Matrix PT

    Matrix PT Tech Co., Ltd. (hereinafter referred to as "Matrix PT") is headquartered in Pingshan District, Shenzhen. It is a high-tech enterprise dedicated to the R&D, production and sales of core components for optical communication. The company is committed to providing high-performance optical interconnection solutions for fields such as 5G communication, artificial intelligence (AI), cloud computing and medical care.

    Strategic Synergy & Partnerships

    Driven by the "technology + manufacturing" dual-engine model, Matrix MT continues to deepen its presence in the field of core optical communication components. In July 2025, JPT Optoelectronics (Stock Code: 688025), a global leader in "laser +" solutions, completed the strategic holding of Matrix PT. The two parties have formed a dual-core product matrix of "MPO + FAU".

    With the resource synergy from JPT Optoelectronics, the company will further improve its product ecosystem, promote the replacement of high-end domestic optical components, and contribute to the development of the global AI computing power and high-speed optical communication industry.

    Frequently Asked Questions

    What is the primary function of Multimode FA-MT?
    It enables low-loss, parallel signal transmission between multimode optical devices (such as transceivers, switches, or fiber arrays), supporting high-data-rate applications (10G/40G/100G/400G) by aligning multiple fiber cores simultaneously.
    What types of fibers are integrated into the Multimode FA-MT?
    It typically integrates a linear array of multimode optical fibers of 50/125 μm or 62.5/125 μm with an industry-standard MT (Mechanical Transfer) precision connector interface.
    What industries does Matrix PT serve?
    Matrix PT provides high-performance optical interconnection solutions for fields such as 5G communication, artificial intelligence (AI), cloud computing, and medical care.
    Who is the strategic holding company of Matrix PT?
    In July 2025, JPT Optoelectronics (Stock Code: 688025), a global leader in "laser +" solutions, completed the strategic holding of Matrix PT.
    What is the dual-core product matrix formed by the partnership?
    Through the collaboration between Matrix PT and JPT Optoelectronics, the two parties have formed a dual-core product matrix of "MPO + FAU".
    How does the partnership with JPT Optoelectronics benefit the industry?
    The resource synergy improves the product ecosystem, promotes the replacement of high-end domestic optical components, and contributes to the growth of the global AI computing power and high-speed optical communication industry.