
Driven by the dual forces of digital economy and AI technology, data centers are rapidly evolving toward high density, low energy consumption, and easy maintenance.Our solution leverages 1U/xU racks and the full series of MTP connectivity components to build an integrated cabling system from the physical layer to the link layer.
Racks: Flexibly adapting to different computing scenarios
1U rack is optimized for lightweight scenarios such as edge computing and distributed storage, supporting high-density deployment of 36-core MTP modules, achieving 3x higher fiber density compared to traditional LC interface racks.
xU rack targets heavy-duty computing scenarios like AI training and super computing clusters, with reserved redundant power and cooling channels, capable of supporting 144-core MTP trunk cables, meeting long-term scalability needs for 10G/400G high-speed networks.
MTP Assemblies: Enabling seamless link interconnection
MTP module as the core hub of high-density cabling, adopts an integrated 12/24/36-core design, with precision polishing technology controlling with low insertion loss, supporting over 1,000 mating cycles, significantly reducing link attenuation risks. Paired with LC Uniboot patchcords, it enables rapid connection between MTP trunks and server optical modules. Its reverse polarity design allows on-site polarity adjustment with one click, reducing cabling error rates by 90%.
MTP-LC harness solves the adaptation challenge between trunk cables and device ports, splitting a 12-core MTP trunk into 12 LC interfaces without additional conversion devices, reducing link nodes while enhancing signal stability.
MTP trunk cables use low-smoke zero-halogen flame-retardant jackets and bend-insensitive fiber, with a minimum bending radius, enabling flexible routing within cabinets, improving cable tray utilization and airflow efficiency.
MTP jumpers are ideal for short-distance device interconnections, with duplex design supporting bidirectional transmission. Combined with the blind-mate alignment function of MTP modules, they reduce cabinet cabling time by 70%, especially suitable for fast deployment and expansion in data centers.
Reduced management complexity
The full series of MTP components features a unified polarity design, combined with blind-mate alignment, reducing cabling error rates. The reverse polarity adjustment of LC Uniboot patchcords allows on-site correction within 10 seconds, significantly reducing maintenance time.
Lowered total cost of ownership
High-density cabling reduces the number of cabinets and cables, directly lowering data center footprint and cooling energy consumption. Low-insertion-loss MTP components reduce signal attenuation, decreasing optical module power usage.
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