Velorix
Explore our flagship high-density rackmount nodes, GPU AI servers, and power interconnect hardware designed for modern hyperscale environments.
Architectural insights into high-speed copper interconnects, trunk fiber optics, and low-latency cabling topologies driving global enterprise computing.
In modern artificial intelligence superclusters and multi-tenant cloud architectures, network throughput is bounded not merely by ASIC raw power, but by the physical cabling infrastructure. As link speeds transition from 100G/400G to 800G and 1.6T InfiniBand/Ethernet systems, cable attenuation, insertion loss, and thermal dissipation become primary engineering metrics. Strategic structured cabling minimizes physical distance, eliminates signal reflection, and optimizes packet transfer speeds across large-scale racks.
While Category 6A and Category 8 copper cables remain essential for short-reach Top-of-Rack (ToR) and horizontal distribution within patch panels, high-density MTP/MPO fiber optical trunks have become indispensable for spine-leaf architectures. Integrating ultra-low-loss OM4/OM5 multimode and OS2 single-mode optical cabling guarantees headroom for future network bandwidth scaling without requiring expensive physical conduit overhauls.
With high-density server configurations demanding upwards of 30kW to 100kW per cabinet, cable management significantly impacts chassis airflow. Modern network cabling designs incorporate slimline patch cables, high-density cable managers, and liquid-cooling compatible routing pathways to maximize airflow dynamics and reduce overall Power Usage Effectiveness (PUE).
Velorix Intelligent Technology Co., Ltd. — Your trusted partner in AI GPU servers, network cabling hardware, and compute infrastructure.
Founded in 2016, Velorix Intelligent Technology Co., Ltd. is a premier manufacturer specializing in AI GPU servers, high-performance computing (HPC) systems, structured network cabling assemblies, GPU clusters, and customized enterprise IT solutions. Operating state-of-the-art production facilities spanning 380m², we design and export scalable connectivity and computing platforms tailored for AI training, deep learning inference, cloud server hosting, and industrial networking applications.
Leveraging 10 years of deep industry experience and 6 years of global export experience, Velorix has successfully deployed hardware infrastructure across North America, Europe, the Middle East, Southeast Asia, and Oceania. With an annual export turnover exceeding USD 12 million, our operational footprint guarantees reliability, structural precision, and rapid global supply chain execution.
To uphold uncompromising network integrity, every cabling component and compute node undergoes mandatory multi-tiered inspection:
Deployment blueprints designed for high-density enterprise environments, cloud data hubs, and industrial networks.
Designed for cloud service providers and enterprise storage networks requiring maximum port density. Pre-terminated fiber assemblies and modular patch panels enable fast installation, zero-downtime hot-swaps, and structured cabling compliance across multi-floor data halls.
Tailored for deep learning setups such as DeepSeek R1 and GPU clusters. Uses ultra-low-latency direct-attach copper (DAC), active optical cables (AOC), and MTP fiber interconnects to ensure seamless parameter synchronization across thousands of compute cores.
Built for ruggedized edge nodes and industrial manufacturing plants. Industrial-grade shielded Cat6A/Cat7 cabling systems prevent electromagnetic interference (EMI) while ensuring constant uptime for automated production systems.
Unlocking competitive advantages through strategic component sourcing, rapid prototyping, and end-to-end customization.
Backed by over 850 verified supply chain partners, Velorix guarantees stable material flow, reducing lead times for custom copper wire harnesses, specialized fiber patch leads, and server chassis power backplanes even during global logistics bottlenecks.
Driven by our 135-engineer strong R&D department, we released 168 new product variations last year alone. From bespoke rack designs to high-speed interconnect pinouts, we turn technical concepts into production-ready solutions in weeks.
Complete flexibility for system integrators and global distributors. Customize cable jacket materials (LSZH, Plenum, Riser), port configurations, custom color-coding, chassis branding, packaging, and factory certification reports.
Expert answers regarding structured cabling specifications, OEM capabilities, quality benchmarks, and global shipping.
Velorix combines over a decade of deep infrastructure manufacturing experience with complete OEM/ODM flexibility. We integrate high-density cabling (Cat6A, Cat8, MPO/MTP optics) with complete AI GPU server platforms, supported by a 42-person quality control team and over 850 strategic supply chain partners.
In high-density GPU computing environments, physical cabling directly influences packet loss, signal latency, and thermal airflow. Our ultra-low-loss fiber trunks and optimized cable routing configurations ensure full 400G/800G throughput per node while maintaining optimal system airflow and lower operating temperatures.
Yes. We offer fully customizable cabling solutions, including LSZH (Low Smoke Zero Halogen), CMP Plenum, and CMR Riser jackets, along with custom pinouts, color-coded strain relief boots, and pre-terminated MTP/MPO optical trunks tailored to your exact facility layout.
All products comply with ISO/IEC 11801, ANSI/TIA-568 enterprise cabling standards, IEEE 802.3 Ethernet protocols, CE, and RoHS specifications. Every optical lead and copper link undergoes 100% factory channel testing prior to shipment.
Standard sample orders and customized prototypes are typically completed within 5-7 business days. Large-scale bulk production runs are fulfilled in 2-3 weeks, with expedited door-to-door air freight and ocean shipping available to North America, Europe, Middle East, and Asia-Pacific destinations.
Discover our comprehensive range of high-performance servers, rackmount storage systems, and specialized infrastructure components.