Vornaxis
Accelerate complex AI training workloads, deep learning inference, and large scale data center deployments with our flagship systems.
Established in 2016, Vornaxis Compute Ltd. (Vornaxis) has positioned itself at the forefront of high-performance computing (HPC) and artificial intelligence infrastructure. For over a decade, we have engineered and manufactured enterprise-grade GPU servers, network processing architectures, and high-density storage arrays tailored for hyperscale data centers, scientific laboratories, and AI startups worldwide.
Our focus on NVIDIA-accelerated architectures equips enterprises with the raw computational performance required for training Large Language Models (LLMs), executing complex deep learning tasks, and running real-time video analytics pipelines. With a dedication to rigorous quality control standards, including ISO 9001 certification and comprehensive RoHS compliance, we ensure that every system leaving our facility is certified for maximum uptime.
Through our vast supply network of 850 upstream and downstream partners, we source tier-1 components directly, allowing us to supply highly customizable configurations at wholesale price points to support the massive growth of generative AI infrastructure globally.
How our custom-built architectures support NVIDIA Hopper, Blackwell, and next-generation GPU ecosystems.
We support high-bandwidth SXM5 and dual-width PCIe Gen5 server platforms. By utilizing high-signal integrity PCBs, our servers maximize NVLink data transfer rates up to 900 GB/s, minimizing latency bottlenecks in multi-GPU configurations.
To cope with the rising thermal design power (TDP) of advanced processors (reaching 700W to 1200W per GPU), our platforms support hybrid direct-to-chip liquid cooling manifolds and optimized airflow layouts for efficient heat dissipation.
Designed for easy integration into massive networks, our hardware supports RDMA over Converged Ethernet (RoCE v2) and InfiniBand NDR interfaces, allowing clusters of hundreds of nodes to function as a singular, cohesive supercomputer.
As artificial intelligence transitions from narrow models to massive generative AI networks with trillions of parameters, compute infrastructure must adapt. Our engineering team closely aligns our server design roadmap with NVIDIA's chip design cadence. We specialize in building structural chassis and robust power delivery units (PDUs) capable of driving the high current transient demands of high-density nodes.
By implementing localized step-down power conversion and multi-phase voltage regulation modules (VRMs), Vornaxis servers prevent voltage drops under intensive computing loads. This translates to prolonged GPU life cycles, stable operational frequencies, and lower Total Cost of Ownership (TCO) for data centers facing rising energy overheads.
Operating out of China's premier technology hardware clusters gives Vornaxis Compute Ltd. an unparalleled supply chain advantage. The concentration of component vendors, PCB fabs, precision chassis metalworking shops, and advanced cooling specialists allows us to dramatically accelerate time-to-market compared to Western counterparts.
Our manufacturing strategy integrates automated assembly lines with advanced AOI (Automated Optical Inspection), X-ray solder inspection, and dynamic system stress-testing. Rather than just assembling systems, we conduct structural resonance tests and thermal cycle analysis down to the slot level.
This concentration of technology ecosystem enables rapid development cycles. When client requirements change—whether for custom storage drive configuration, specialized PCIe layouts, or proprietary out-of-band management firmware—our R&D department can build, test, and validate prototype servers within days.
| Feature | Standard Configurations | Custom Enterprise Options |
|---|---|---|
| Processor Class | Dual Intel® Xeon® Scalable (Gen 4/Gen 5) or AMD EPYC™ | Customer-specified SKU, optimized core-to-frequency ratios |
| GPU Compatibility | NVIDIA L40S, H100, H200 PCIe/SXM, Blackwell Ready | Custom baseboards, custom multi-GPU interconnect bridges |
| Memory | DDR5 ECC Registered RDIMM up to 8TB | Optimized memory configurations for low-latency in-memory databases |
| Storage Interfaces | PCIe Gen5 NVMe U.2/U.3 SSDs, Hot-Swap Drive Bays | Hardware RAID controllers, custom direct-attach storage options |
| Network Controllers | Dual 10GbE Base-T or Dual 25GbE SFP28 | NVIDIA Mellanox ConnectX-6/ConnectX-7 InfiniBand adapters |
| Firmware & IPMI | Standard AMI BIOS, Redfish Compliant BMC | Custom BIOS profiles, secure boot configurations, OEM branding |
At Vornaxis, we recognize that server downtime equates to thousands of dollars of lost compute capacity. Our quality assurance team of 45 dedicated quality control professionals enforces a rigorous testing protocol. Every GPU server undergoes system burn-in testing for at least 72 hours under thermal stress chambers mimicking extreme data center conditions.
Through detailed optical inspections and complete testing of communication channels, we guarantee hardware stability from the motherboard traces down to the PCIe slots.
How global enterprises deploy Vornaxis computing power to solve complex data challenges.
Providing high-throughput architectures designed specifically for training foundational neural networks and running real-time AI inference at scale, supporting applications such as DeepSeek, ChatGPT, and custom LLMs.
Accelerating calculations for scientific modeling, molecular chemistry simulation, meteorological modeling, and structural mechanics, using dual-socket processors paired with multi-GPU architectures.
Optimized dense rackmount systems offering virtualization, storage array performance, and multi-tenant hosting with minimal energy footprints and simplified maintenance options.
As a major exporter sending equipment to North America, Europe, Southeast Asia, and the Middle East, Vornaxis Compute Ltd. recognizes the complexity of global import compliance. Every GPU platform is designed to align with strict electromagnetic compatibility standards (such as FCC and CE marks) and industrial safety ratings (UL, CB).
We collaborate directly with customer compliance departments to facilitate smooth customs processing by verifying end-use documentation, verifying components against standard global safety tables, and implementing robust physical security measures.
Additionally, our team offers firmware localization, configuring out-of-band management systems (IPMI/BMC) to utilize native languages, custom API configurations, and distinct cybersecurity protocols matching the destination country's regulations.
Browse more specialized rackmount configurations, high-density storage servers, and expansion components.
Everything you need to know about our customization options, shipping process, and hardware guarantees.
We offer complete customization of the system architecture. This includes installing customer-specified processors (Intel Xeon or AMD EPYC), selecting targeted GPU form factors (PCIe Gen5 cards or SXM modules), adjusting high-speed RAM layouts up to 8TB, configuring NVMe solid-state storage arrays, and selecting specific network interfaces (Ethernet SFP28/SFP56, InfiniBand). Additionally, we customize out-of-band management firmware to meet security standards.
Our QA department uses advanced automated inspection protocols. Every assembled motherboard and GPU baseboard undergoes Automated Optical Inspection (AOI). After full system integration, we execute a continuous 72-hour burn-in and stressing protocol under variable heat profiles. This includes monitoring for thermal bottlenecks, validating memory data integrity, and conducting PCIe slot loop tests to verify zero bit-error rates.
Yes. Vornaxis Compute Ltd. has 6 years of experience exporting high-performance computing hardware globally. We verify compliance with regional standards such as CE, FCC, UL, and RoHS. We coordinate with shipping agents, compile the required export classifications, and ensure that out-of-band firmware meets security criteria to avoid clearance issues.
For configurations that draw immense power, we offer advanced cooling configurations. Our chassis designs optimize internal air flow with high-RPM hot-swap counter-rotating fans. Additionally, we engineer direct-to-chip liquid cooling loops featuring leak-detection systems and quick-release connections. These liquid cooling setups keep temperatures below thermal throttling limits, ensuring continuous system operation at peak compute speeds.