Klyvora
Explore our flagship industrial-grade AI compute nodes, customized database servers, and deep learning compute platforms engineered for modern enterprises.
The paradigm shift in artificial intelligence, highlighted by Large Language Models (LLMs) like DeepSeek, GPT-4, and Llama architectures, has revolutionized data center hardware demands. Modern AI Training Systems require more than just general compute; they demand high-bandwidth memory (HBM3e), dense PCIe Gen 5 topologies, and low-latency interconnected fabrics.
At Klyvora Node Technologies Ltd., we design systems targeting the primary hardware bottlenecks in machine learning pipelines: compute density, memory throughput, and inter-node network speed. By providing dedicated GPU infrastructure, our training servers support heterogeneous acceleration, ensuring minimal latency and maximized FLOPS efficiency during model fine-tuning and inference.
| Infrastructure Feature | Standard Server Specs | Klyvora AI Training Specs |
|---|---|---|
| GPU Interface | PCIe Gen 4 x8 / x16 | PCIe Gen 5 x16 & SXM5/OAM Ready |
| Memory Standard | DDR4 ECC up to 3200MHz | DDR5 ECC up to 4800/5600MHz |
| Networking Speed | 10 Gbps / 25 Gbps SFP28 | 100G / 200G / 400G InfiniBand & RoCE v2 |
| Thermal Solution | Standard Air Cooling (PWM Fans) | Advanced Direct-to-Chip Liquid Cooling |
| Custom Integration | Fixed Configurations | Full OEM/ODM Chassis & Firmware Tuning |
Established in 2016, Klyvora Node Technologies Ltd. is a high-performance computing infrastructure manufacturer specializing in AI GPU server systems, scalable compute clusters, and enterprise-grade data center solutions.
Our integration facility operates a modern production floor with a total building area of approximately 320㎡, housing advanced machinery for assembly, structural testing, hardware tuning, and continuous burn-in verification. With over 11 years of accumulated industry expertise and 6 years of direct global exporting, Klyvora guarantees seamless hardware delivery globally.
How Klyvora supports global AI research centers, enterprise data hubs, and cloud system providers.
We specialize in designing optimized structural chassis for 1U, 2U, 4U, and 8U rackmount servers. Customizations include airflow optimization, customized PCIe expansion risers, GPU density modifications, and specialized PSU distribution boards tailored to specific high-density energy requirements.
Navigating global trade frameworks is integral to our 6+ years of exporting. Our products align with CE, FCC, RoHS, and UL hardware certifications. We collaborate with testing bureaus to provide full safety and electromagnetic compliance documentation for North American, European, and Middle Eastern entry ports.
AI workloads generating massive thermal energy demand efficient dissipation techniques. Our R&D engineers deploy proprietary direct-to-chip (D2C) liquid cold plates, custom manifolds, and high-performance server fans, dramatically reducing datacenter Power Usage Effectiveness (PUE) to below 1.15.
We maintain long-term procurement frameworks with premier chipmakers, memory fab lines, power systems manufacturers, and interconnect developers. This mitigates supply shortages, securing access to crucial DDR5 modules, enterprise SSDs, and advanced switching controllers.
Hardware performance depends largely on low-level configuration. Our engineers execute BIOS-level customizations, virtualization optimization (SR-IOV), firmware-level power threshold adjustments, and container-ready orchestrations to maximize performance right out of the box.
We provide remote diagnostic support using IPMI 2.0 and Redfish out-of-band management. For qualified large-scale system deployments, we offer specialized field technician dispatches and customized Service Level Agreements (SLAs) through regional service nodes.
Klyvora Node Technologies employs a structured quality assurance system, combining automated testing methods, burn-in stress testing, and full-system validation procedures. Product inspection methods include thermal performance testing, hardware stress diagnostics, and multi-stage functional verification.
The quality control team consists of approximately 42 dedicated professionals ensuring strict compliance with international manufacturing standards.
Every single GPU compute node undergoes a mandatory 48-hour continuous loading simulation in customized environmental chambers. We test at peak thermal boundaries to verify motherboard VRM performance, power supply efficiency, and memory address consistency.
PCIe Lane lane-reversal diagnostics, memory read/write stress checks, and IPMI 2.0 functional validation.
FLOP utilization testing, thermal chamber monitoring up to 45°C ambient, and structural vibration tests.
High-density multi-GPU servers, short-depth cloud configurations, and high-reliability data-center SSDs for rapid parallel-processing operations.
Technical insights, customization details, and logistics guidelines from our server integration team.