Enterprise-grade equipment built for heavy workloads, high availability, and rugged industrial deployments.
A precision hardware design lab driving digital transformation with strict quality controls.
Complete origin verification and structural tracking of raw materials for industrial-grade safety compliance.
Every single product undergoes strict physical, functional, and electrical load inspections prior to shipment.
Comprehensive design capabilities including hardware blueprint adaptations, graphic processing, and on-demand chassis development.
In the era of hyper-scale artificial intelligence, high-density computing arrays, and distributed edge intelligence networks, generic off-the-shelf equipment frequently fails to meet specific deployment requirements. The modern enterprise infrastructure landscape demands customized, highly resilient hardware tailored to exact computational parameters, power supply margins, and operational profiles.
Our core mission revolves around building robust enterprise solutions. We bridge the gap between complex hardware configurations and deployment scenarios. For instance, in modern smart cities, AI edge applications require highly reliable power distribution networks alongside processing nodes. By integrating high-power PoE (Power over Ethernet) switches with specialized acceleration systems, like the Tiangai 150 GPGPU AI card, we construct turnkey edge computing grids. These setups perform real-time video analytics, smart traffic management, and automated environmental monitoring without overloading localized power grids or demanding frequent site visits.
The global demand for high-capacity computing has triggered a monumental shift in manufacturing standards. Enterprises in North America, Eastern Europe, and developing domestic markets struggle to source components that adhere to strict localization mandates, thermal limits, and specific power-distribution guidelines. The server market has transitioned from general-purpose CPUs to specialized GPU cluster hosts. Systems like the HPE ProLiant DL380 G10/G11 and our customized AMD EPYC AI Training Servers represent this technological shift, hosting massive parallel workloads, large language model (LLM) fine-tuning, and DeepSeek model deployments.
Many integrators overlook the physical micro-structures holding servers together. A key bottleneck in high-density storage arrays is drive carrier stability. Vibrations from high-density, multi-drive arrays (such as the 240TB DE4000H) degrade read/write head performance. This is why utilizing robust, precision-engineered hot-swap caddies—such as the X7K8W SATA/SAS carrier—is critical to maintaining structural integrity and preventing silent data corruption in mission-critical server environments.
Operating from our 120-square-meter specialized engineering lab, we focus strictly on high-value prototyping, customized system testing, and electrical validation. Founded in 2003, our 21-year industry legacy is built on the principle of 100% component inspection. Unlike bulk factories that rely on random sampling, every single unmanaged network switch, high-power PoE injector, and rackmount server host undergoes a rigorous verification cycle.
Our three graduate R&D engineers oversee a rigid quality assurance protocol. We guarantee complete traceability of raw materials, ensuring that every capacitor, power supply, and integrated circuit meets structural guidelines. This methodology eliminates latent defects before the systems are packaged and shipped to Eastern Europe, North America, or integrated into domestic infrastructures.
| OEM Parameter | Standard Configuration | Customization Capacity |
|---|---|---|
| PoE Surge Protection | 4KV Standard Line Protection | Up to 6KV Built-In Surge Protection for AP/IP Network Switches |
| Storage Enclosures | Standard SAS/SATA Caddy Assemblies | Precision X7K8W Hot Swap Trays with Enhanced Vibration Dampening |
| Server Architecture | Intel Xeon / Standard GPU Rails | AMD EPYC 7U AI Training Racks supporting 8x 5090 GPU / DeepSeek platforms |
| Switching Control | Plug and Play Unmanaged Switches | High-bandwidth CE6860-48S8CQ-EI with 48x 10G/25G & 8x 100G QSFP28 configurations |
When exporting computing equipment, global regulatory and physical compatibility issues frequently surface. We ensure that our systems meet localized standards in their respective destination regions. Our shipments to Eastern Europe and North America comply with strict electrical requirements, thermal dynamics, and mechanical mounting specifications.
For network switches deployed in harsh environments, our built-in 6KV surge protection safeguards network integrity without requiring bulky external surge arrestors. This built-in reliability is critical for industrial security setups, remote cellular base stations, and smart monitoring fields, significantly lowering the total cost of ownership (TCO) and minimizing post-installation site maintenance.
As deep learning platforms grow exponentially, our R&D roadmap actively prioritizes compatibility with high-density GPU nodes and ultra-fast optical switching matrices. We design next-generation servers with flexible PCIe lanes to house high-speed GPGPU accelerators. Meanwhile, our high-bandwidth switches—like the CE6860 featuring 100G QSFP28 uplinks—are engineered to eliminate network latency, helping cloud datacenters avoid network congestion and process real-time AI workloads seamlessly.
Reliable components designed for seamless network expansions, cluster storage, and high-bandwidth datacenters.