Neuralinko
As large language models (LLMs), AI deep learning clusters, and hyperscale cloud networks expand, fiber optic and high-speed server architectures merge to solve the ultimate bottlenecks of latency, data throughput, and energy efficiency.
Modern telecommunication channels and AI computing architectures demand low-latency, high-bandwidth interconnectivity. Global deployment of FTTH, 5G networks, and AI data centers relies heavily on reliable optical fiber cabling assemblies. To prevent packet loss and high transmission attenuation, selecting premium high-density interconnect cables, transceivers, and optical splitters is non-negotiable for system engineers.
With processing engines running workloads like DeepSeek, GPT-4, and complex high-performance computing (HPC) simulations, standard copper networking lines create major physical constraints. Modern optical components, such as high-density MTP/MPO trunk cables and 400G/800G optical transceivers, form the baseline requirement to bypass backplane limitations.
Our solutions span across custom-designed patch cords, armored fiber cables, structural patch panels, and PLC splitters. We bridge the gap between heavy hardware processing nodes—such as xFusion and Dell PowerEdge servers—and the central fiber optic backbone, ensuring zero throughput bottlenecking at any scale.
Integrating high-capacity GPU systems with advanced fiber optic infrastructures to power modern enterprise operations.
Established in 2018, Neuralinko Intelligent Technology Co., Ltd. is a professional AI server and high-speed network integration manufacturer. Operating from a highly specialized, clean-room grade 386㎡ production and engineering facility, we provide robust, high-performance hardware structures to drive large language models (LLMs), machine learning, deep learning, cloud computing, and high-performance computing (HPC) workflows.
Boasting over 8 years of industry experience and 6 years of export expertise, our annual export revenue exceeds USD 18 million. We deliver premium servers, optical distribution systems, and enterprise networking hardware to dynamic markets across North America, Europe, Southeast Asia, the Middle East, and Australia.
Innovation is embedded in our engineering culture. Powered by an elite R&D team of 118 engineers, we design products to address evolving requirements. In the past year alone, Neuralinko launched 126 new hardware configurations and systems, establishing a competitive standard for high-bandwidth server and fiber connectivity setups.
Unparalleled supply chain density, advanced automation, and vertical integration set Chinese manufacturing hubs apart.
China is home to the world’s most concentrated component manufacturing network. With over 1,200 reliable supply chain partners, we secure high-grade optical chips, raw ceramic ferrules, precise metal casings, and premium ICs at optimal cost and speed, bypassing supply chain constraints that delay operations elsewhere.
Chinese factories lead in manufacturing automation. By employing computerized polishing machines, automated 3D interferometers, and robotic terminal alignment equipment, we produce optic fiber assemblies with sub-decibel insertion loss and optimal return loss profile at scale.
We provide full-spectrum customization. Whether you require specific fiber jacket materials (LSZH, OFNP plenum, armored steel), customized pinout configurations, specific fiber core counts (from simplex up to 144-core MTP/MPO configurations), or custom server chassis layouts, our design teams bring your layouts to life.
| Fiber Interface / Connector Type | Insertion Loss (Typical) | Return Loss (PC/UPC/APC) | Primary Use Case Scenario |
|---|---|---|---|
| LC-UPC / LC-APC Simplex/Duplex | < 0.20 dB | ≥ 55 dB / ≥ 65 dB | High-density patch panel wiring, server Nic connection |
| MTP/MPO-12/24 Elite Multimode | < 0.35 dB | ≥ 25 dB / ≥ 35 dB | High-bandwidth AI cluster backplanes, 100G/400G SR4 modules |
| SC-APC Single Mode Simplex | < 0.15 dB | ≥ 60 dB | FTTH deployments, telecom local loop networks |
| FC-UPC Industrial Armored | < 0.25 dB | ≥ 50 dB | Industrial automation, high vibration environments |
We deploy tailored network architectures across various computing environments, ensuring stable system runtimes.
Modern data centers hosting hundreds of GPU servers require tight cable management and low-loss transmission. Our high-density fiber cassettes, MPO patch cords, and fiber management trays facilitate clean, structured layouts that minimize cooling blockages and optimize operational workflows.
For organizations deploying hybrid cloud networks, we provide a unified hardware package. Our customers secure both server processing platforms and structural optical cabling in one order, streamlining procurement and ensuring system compatibility.
We supply telecommunication operators worldwide with PLC splitters, distribution boxes, drop cables, and quick-assembly connectors, designed to withstand harsh outdoor deployments and maintain signal integrity over long distances.
Every product is systematically tested to meet stringent international standards before leaving our warehouse.
Raw optical materials, ceramic ferrules, lasers, sub-components, and server chassis parts are systematically checked for structural integrity and baseline specifications before production.
Fibers are aligned and polished. Connectors are verified under microscopic 3D interferometers to ensure the exact radius of curvature, fiber height, and apex offset parameters are met.
Servers and active optical assemblies undergo high-stress burn-in testing under full load to identify potential defects prior to packaging.
Led by our dedicated quality assurance team of 42 experienced inspectors, final checks ensure that every component complies with CE, FCC, RoHS, and Telcordia specifications.
Staying ahead of the curve is crucial for maintaining a competitive edge in network design and computing capacity.
Co-Packaged Optics (CPO) is replacing traditional pluggable optical transceiver modules in advanced high-speed setups. By placing the optics directly on the ASIC substrate, CPO significantly lowers power consumption and signal latency.
To feed the hunger of AI clusters, backplane speeds are transitioning from 100G/200G to 800G and 1.6T. This transition demands single-mode and high-spec OM4/OM5 multi-mode fibers polished to exact tolerances.
Modern data centers focus heavily on power usage effectiveness (PUE). Passive optical LAN (POL) architectures and low-attenuation fiber networks reduce the need for active signal repeaters, lowering overall energy draw.
A visual walkthrough of our high-standard manufacturing floor, R&D offices, and quality control departments.
Clear answers to core technical and commercial questions to streamline your procurement cycle.