Neuralinko
Explore our flagship servers, high-performance solid-state arrays, and enterprise storage controller systems designed for next-generation computing architectures.
Modern workloads such as high-density deep learning, massive language model training (such as DeepSeek and GPT variations), and real-time smart city video analysis demand more than just capacity. They call for architectures that mitigate latency bottlenecks and optimize total cost of ownership (TCO) across physical and virtual environments.
At Neuralinko Intelligent Technology Co., Ltd., we serve as a premier AI server and storage solution manufacturer, designing next-generation, high-performance computing (HPC) nodes that bridge hardware limits and software execution. Operating out of an advanced R&D and engineering center, we specialize in customizing server systems that meet the rigorous density and thermal management demands of modern data centers.
"Organizations do not just require disks; they require highly integrated fabric systems capable of routing millions of IOPS without thermal throttle."
From 1U and 2U rack enclosures to complex hyperconverged systems, we engineer infrastructure that powers the future of compute-intensive ecosystems.
An inside look at how large-scale enterprise storage configurations mitigate the global data explosion, shifting from traditional NAS to dynamic, high-throughput NVMe fabric networks.
Configured with cutting-edge GPUs and high-throughput network cards (HBAs) to ensure model parameters flow instantly between CPU caches, DRAM, and PCIe Gen5 NVMe arrays.
Utilizing high-performance Broadcom/LSI RAID controllers (such as the 9540-8i series) to orchestrate robust mirroring, striping, and hardware-level data corruption prevention.
Unifying storage resources and computing clusters inside dense rack enclosures (1U, 2U, and 4U chassis profiles) to minimize physical footprints within high-cost colocation facilities.
With massive investments in advanced engineering and component supply networks, Neuralinko ensures consistent product quality and quick turnaround times for data centers worldwide.
Our commitment to reliable hardware starts at the component level. Neuralinko implements rigorous, multi-stage testing schedules that eliminate physical and firmware anomalies prior to packaging and shipment.
Our quality assurance workflow includes:
Navigating different regulatory zones is crucial when deploying storage assets globally. Neuralinko ensures that all server architectures comply with international certification standards, including CE, FCC, RoHS, and local regional benchmarks.
Beyond hardware compliance, we specialize in OEM/ODM software-level customizations:
Our ongoing research agenda centers on meeting next-generation density requirements while lowering operational energy demand.
Maximizing drive lane routing to ensure zero-loss signal integrity across the backplane, supporting up to 128 GB/s bandwidth throughput on high-density NVMe drive configurations.
Integrating closed-loop and open-loop liquid cooling blocks for high-TDP processor nodes, drastically reducing facility power usage effectiveness (PUE) ratings.
Pioneering architectures utilizing CXL protocols to allow dynamic pooling of memory resources, dramatically accelerating heavy virtualization and big data tasks.
Deploying specialized servers across target compute applications allows organizations to unlock efficiencies that basic bare-metal boxes cannot achieve.
Using GPU-optimized nodes (like our G5200 V5 series) to process massive pre-training datasets without causing memory bottlenecks.
Processing hundreds of ultra-high-definition video feeds concurrently, utilizing localized high-speed SATA SSD arrays to guarantee zero-packet-loss logging.
Where microseconds dictate profitability, our low-latency PCIe configuration and enterprise controller caches maintain sub-millisecond query responses.
Complete your deployment with our range of high-efficiency server power units, server chassis, and specialized hardware controller additions.
In-depth technical answers to the most common configuration, reliability, and capability queries from systems engineers and datacenter architects.