ZhiCloud AI
A global leader in high-performance computing (HPC) engineering, custom GPU architecture, and secure enterprise server deployment.
Shenzhen Intelligent Computing Cloud Technology Co., Ltd. (ZhiCloud AI) stands at the forefront of the global AI server and High-Performance Computing (HPC) hardware industry. Established in 2016, we operate a state-of-the-art production and integration facility covering approximately 320㎡ in Shenzhen’s core technology cluster. This facility handles complex system integration, custom thermal design verification, and complete burn-in processes for high-density GPU nodes and multi-socket cluster servers.
Leveraging 7 years of direct export experience and 11 years of deep industry expertise, we bridge the gap between advanced silicon manufacturers and field-ready enterprise deployments. Our robust cross-border logistical reach supports major operations in North America, Europe, Southeast Asia, and the Middle East, supplying critical infrastructure that meets stringent local compliance and efficiency benchmarks.
How emergent AI models and cloud-scale operations are transforming physical hardware demands.
Large Language Model architectures require highly specific tensor core and interconnect layouts. Modern servers are designed to eliminate bandwidth bottlenecks between GPU memory pool configurations and system host memory.
As server processors exceed TDP limits of 350W+ and GPUs push past 700W, traditional air cooling is meeting physical limits. We engineer advanced air-flow ducts and chassis designs compatible with hybrid and liquid cooling systems.
PCIe Gen 5 and emerging Gen 6 lanes are vital for handling high-bandwidth HBA cards, NVMe arrays, and network interface adapters. This provides latency-free throughput for real-time model training and distributed storage arrays.
Aligning raw processing capacity with specific vertical workloads and complex procurement environments.
Enterprise IT infrastructure buyers require predictable performance, component longevity, and seamless software-hardware compatibility. Rather than ordering generic server models off the shelf, scaling teams demand specific chassis sizes, PCI slot maps, specialized dual-port host bus adapters (such as Fibre Channel HBAs), and custom memory-to-core ratios.
Our collaborative sourcing model meets these requirements through a robust ecosystem of over 1,200 strategic partners. This broad network guarantees stable pricing and access to high-demand CPUs (such as the Intel Xeon Scalable series) and enterprise hard drives. This allows us to scale production up or down while ensuring prompt delivery.
We provide standard and short-depth rack solutions optimized for density, energy efficiency, and remote IPMI management. These match strict power metrics in modern multi-tenant facilities.
Supporting advanced GPU integration for computational chemistry, physics simulations, and generative AI research. We focus on customizable node configurations and robust hardware warranties.
Delivering high-availability, multi-socket platforms (such as the 2488H V5 4-socket system) that feature redundant power supplies and hot-swappable enterprise SAS arrays for absolute system uptime.
Take a closer look at the advanced equipment and multi-stage workflows inside our production facility.
To ensure high quality, ZhiCloud AI employs a systematic production process. Every server chassis, motherboard component, and GPU rack undergoes precise hardware checks. We operate dedicated machinery, including modern bending machines, riveting centers, stamping equipment, and high-efficiency reflow soldering units.
During the PCBA stage, automated optical inspection and functional testing ensure all circuits are properly connected before components are populated. Our assembly environment separates high-volume chassis lines from customized configuration zones. In these customization zones, technicians build systems according to client-provided specifications.




Preventing hardware failure through comprehensive environmental simulation and validation.
Our dedicated quality assurance department, consisting of 45 specialized QC inspectors, operates state-of-the-art testing equipment. This ensures that every high-performance server node remains stable under continuous loads in demanding environments.




Supporting next-generation hardware designs while providing global logistics and compliance assistance.
Our rapid prototyping and engineering process enabled the launch of over 180 new configurations last year. This helped keep our product portfolio aligned with changes in the AI and deep learning industry.
With 120 R&D engineers, we design and test next-generation server architectures. Our projects focus on direct-to-chip liquid cooling loops, high-density server configurations, and customized GPU cooling assemblies.
Our team manages export documentation and safety compliance for key global regions. We ensure all imports comply with FCC, CE, RoHS, and local electrical standards.




Addressing common technical questions from enterprise infrastructure buyers and systems integration teams.
We configure hardware using high-bandwidth PCIe Gen 5 lanes, fast DDR5 or HBM server memory, and low-latency network cards. This configuration helps prevent memory bottlenecks during deep learning training and inference workloads.
Every system undergoes physical inspections (CMM checks, X-ray scanning) and dynamic stress testing. This dynamic phase includes thermal testing inside climate chambers and structural checks on vibration tables before shipment.
We provide full hardware customization, including processor speed matching, customized SSD and HDD storage configurations, specialized PCIe expansion card integration, and private deployment OS pre-installations.
We maintain active supply arrangements with more than 1,200 strategic hardware vendors. This network helps secure key silicon, memory, and controllers during periods of component shortage.