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Customized MT-Jumper Factory in China - 100G/200G High Speed Transceiver Suppliers for Multi-Channel Transmission
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Customized MT-Jumper Factory in China - 100G/200G High Speed Transceiver Suppliers for Multi-Channel Transmission

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Discover our high-performance fiber optic solutions designed to support a range of data rates: 40G (4x10G), 100G (4x25G), 100G (2x50G), 200G (8x25G), 200G (4x50G), 400G (8x50G), and 800G (8x100G). Our products feature multi-channel parallel transmission that enhances data transfer efficiency, making them ideal for modern networking needs. As a trusted supplier in China, our factory ensures top-notch quality with options for direct fiber connections or crosswise connections, as well as fiber end cutting or polishing. We cater to different standards, including OM1, OM2, OM3, and OM4, while meeting industry certifications like GR-326 and GR-46Experience unmatched efficiency and reliability with our advanced fiber optic solutions.

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    Product Introduction

    MT-jumper (MT Connector Jumper) is a high-precision, short-reach optical interconnect component specifically designed for internal or external connections in optical modules, enabling low-loss parallel signal transmission.

    Core Definition & Core Role

    It is a compact optical jumper with MT (Mechanical Transfer) connectors pre-terminated at both ends—an industry-standard high-density interface. Its primary function is to establish reliable parallel optical links within optical modules (e.g., connecting laser arrays, photodetectors, or AWG chips to module ports) or between modules and external fiber arrays. It supports multi-channel signal transmission in a single connector, optimizing space and ensuring alignment accuracy for high-speed applications.

    Key Design & Structural Components
    MT Connectors

    Rectangular ferrule (typically ceramic zirconia or LCP plastic) with precision-machined V-grooves to secure fibers. Equipped with two guide pins for self-alignment, ensuring micron-level core positioning. Available in male (with guide pins) or female (with guide pin holes) configurations.

    Optical Fibers

    Bundled in a linear array, compatible with both multimode (OM3/OM4/OM5, 50/125 μm or 62.5/125 μm) and single-mode (OS1/OS2, 9/125 μm) fibers. Common channel counts include 12-fiber, 24-fiber, or 48-fiber.

    Cable Structure

    Short-length cable (typically 10–50 mm, tailored to module internal space) with a thin, flexible jacket (e.g., PVC or LSZH) for easy routing. Reinforced with aramid yarn or glass fiber to resist tensile stress.

    End-Face Treatment

    Polished to UPC (Ultra Physical Contact) or APC (Angled Physical Contact) standards. UPC is standard for multimode and single-mode, while APC is used for low-reflection single-mode applications.

    Critical Performance Traits
    Low Insertion Loss

    Typical insertion loss <0.3 dB per channel (multimode) and <0.5 dB per channel (single-mode), with channel-to-channel uniformity <0.2 dB.

    Mechanical Reliability

    Guide pins enable repeatable mating (≥1000 cycles) without alignment drift. Withstands vibration and temperature fluctuations (-40°C to +85°C).

    High Density

    Compact MT connector footprint (e.g., 24-fiber MT ferrule: ~6.4mm × 2.5mm) allows high-channel integration in space-constrained modules (e.g., QSFP-DD, OSFP).

    Compatibility

    Compliant with IEC 61754-20 (MT connector standard) and compatible with FA-MT arrays, AWG MUX/DEMUX, and other optical module components.

    Typical Applications
    High-Speed Optical Transceivers

    Used in QSFP28, QSFP-DD, OSFP, and 800G/1.6T modules to connect internal photonic components (lasers, detectors) to external ports.

    Parallel Architecture Modules

    Integrated into PSM4 (Parallel Single Mode 4-channel) or SR4 (Short-Reach 4-channel) modules for data center and enterprise network applications.

    Module Internal Interconnects

    Facilitates signal routing between optical chips (e.g., PLC splitters, AWG) and module I/O ports, simplifying assembly and improving manufacturing yield.

    Test & Measurement

    Used as a custom-length jumper in module testing setups to validate parallel signal transmission performance.

    Frequently Asked Questions
    What is the primary function of an MT-jumper?
    Its primary function is to establish reliable parallel optical links within optical modules (such as connecting laser arrays, photodetectors, or AWG chips to module ports) or between modules and external fiber arrays, enabling low-loss parallel signal transmission.
    What types of optical fibers are compatible with MT-jumpers?
    MT-jumpers are compatible with both multimode (OM3/OM4/OM5, 50/125 μm or 62.5/125 μm) and single-mode (OS1/OS2, 9/125 μm) fibers, supporting common channel counts of 12-fiber, 24-fiber, or 48-fiber.
    What is the typical insertion loss for MT-jumpers?
    The typical insertion loss is <0.3 dB per channel for multimode fibers and <0.5 dB per channel for single-mode fibers, with a channel-to-channel uniformity of <0.2 dB.
    How do MT-jumpers achieve precise mechanical alignment?
    They utilize rectangular ferrules equipped with precision-machined V-grooves and two guide pins (or guide pin holes in female configurations) to ensure micron-level core positioning and repeatable mating for at least 1000 cycles.
    What standard optical transceivers and modules use MT-jumpers?
    They are typically used in high-speed optical transceivers like QSFP28, QSFP-DD, OSFP, and 800G/1.6T modules, as well as modules with parallel architectures such as PSM4 and SR4.
    What temperature range can MT-jumpers withstand?
    MT-jumpers are designed to maintain mechanical reliability and signal integrity across a temperature fluctuation range of -40°C to +85°C.