Bexora
Explore our tier-one network systems and custom AI infrastructure designed for massive deep learning, enterprise storage, and cloud acceleration workloads.
Bexora AI Systems (China) Co., Ltd. builds scalable, enterprise-grade AI clusters, high-speed storage configurations, and robust GPU hardware architectures for global hyperscalers.
We configure and export flexible GPU rack mounts, custom direct-to-chip liquid cooling loops, high-performance computing chassis structures, and advanced PCIe system topologies optimized for deep learning models.
Our OEM/ODM capability allows tailored server assembly, including firmware-level performance tuning, custom BIOS settings, customized server dimensions, power supply units (PSU), and scalable storage capacities.
Applying 100% full inspection under rigorous burn-in validation, mechanical vibration simulation, thermal stress testing, and real-world high-load GPU workload simulations to guarantee absolute uptime in data centers.
Operating from our ultra-modern 18,600㎡ manufacturing facility, we mitigate supply-chain volatility through dynamic global partnerships, automated logistics, and comprehensive component localization.
To produce modern, high-density AI servers—such as the massive 4U and 8U multi-GPU architectures—factories must master the intersection of high-wattage power delivery, advanced structural support, and complex thermal mitigation. At Bexora, our Factory 4.0 methodology addresses these needs systematically.
Our surface mount technology (SMT) rooms boast high-speed precision placement systems capable of handling multi-layer PCB designs required by state-of-the-art server motherboards. Automated Optical Inspection (AOI) systems review solder joints at the micron level, identifying potential anomalies long before the boards reach functional assembly. This reduces latent hardware failure risks to less than 0.05%.
Because high-end server configurations like the Dell PowerEdge R960 and xFusion 5885H V7 carry substantial weight in components (due to heavy copper heat sinks, structural steel reinforcement, and multiple redundant PSUs), we manufacture heavy-gauge server chassis in-house. This allows us to guarantee perfect rack alignment, resistance to structural sag, and optimum internal airflow aerodynamics.
With an active database of approximately 860 verified upstream partners, we secure high-priority allocation of critical hardware elements, including:
Deploying high-efficiency architectures for the transition to Hopper, Blackwell, and next-generation ultra-dense cluster interconnect structures.
As computing requirements shift toward ultra-large models (like DeepSeek-R1 and similar LLMs), the bottleneck moves from raw compute to memory bandwidth. By integrating systems engineered for high-bandwidth memory (HBM3e), such as the NVIDIA H200 and Blackwell platforms, we guarantee high-efficiency token generation and low-latency inference cycles.
Traditional air cooling reaches its limits above 350W TDP per chip. The latest computing nodes utilize advanced Direct-to-Chip (D2C) liquid cooling, coolant distribution units (CDUs), and dry-disconnect manifolds. This technology helps maintain ideal operating temperatures even under continuous 700W+ AI workloads, lowering data center PUE to below 1.15.
To reduce latency across distributed training jobs, modern configurations integrate PCIe Gen5 pathways, NVLink systems, and RoCE v2 (RDMA over Converged Ethernet) network interface cards (NICs). This architecture enables high-bandwidth data transfers, bypassing traditional CPU pipelines to speed up deep learning operations.
Custom configurations matched to the distinct structural loads of modern AI initiatives, high-performance hosting, and deep learning platforms.
Modern data centers cannot run on one-size-fits-all hardware. Different algorithms demand specific processor-to-memory configurations. At Bexora, our 160+ R&D engineering team continuously optimizes server lines to address these industry workloads:
Deploying models like DeepSeek requires hardware designed for high FP8/FP16 tensor throughput. By pairing high-capacity system memory (such as 256GB RAM configurations) with multi-GPU boards, our systems support parallel processing, helping local and enterprise models run efficiently during high-demand sessions.
Scientific computing platforms need solid floating-point stability (FP64). We configure multi-socket servers with redundant, load-balanced power supplies, allowing long training jobs to run without interruptions caused by local hardware faults.
For operations combining compute power with large datasets (such as NAS/SAN and large data lake applications), we integrate arrays of Enterprise SATA HDDs (spanning 4TB to 20TB) alongside fast NVMe write buffers. This combination keeps data moving quickly, preventing processing delays in standard compute pipelines.
Ensuring seamless international B2B logistics, technical certification, and hardware warranty support.
Navigating global semiconductor regulations requires precision. We verify that each server model shipped to North America, Europe, Southeast Asia, or the Middle East complies with local import-export laws, global HS code classifications, and strict component regulations.
Bexora provides global technical support options. We offer customizable service contracts, including 3-year warranty replacements, remote BMC diagnosis, and local spare parts inventory (including critical components like the xFusion Server Power Supply and SATA HDD units).
Answers to key technical, logistical, and configuration questions from our international enterprise customers.
We offer complete OEM/ODM options. This includes structural modifications to the chassis, customized power supply units (such as dual or quad redundant hot-swappable PSUs), custom storage bays (SATA/NVMe), specialized internal cooling loops, and firmware/BIOS profiles tuned for specific computing workloads.
Our QC team uses a multi-stage validation workflow: automated optical inspection (AOI) for PCB joints, high-load burn-in testing, thermal cycle chambers to test components under heat pressure, mechanical vibration simulations, and software-based AI workload runs to confirm system stability before shipping.
Yes. Our high-performance setups (including our 256GB RAM models and custom xFusion systems) are optimized for large language model workloads, including training, fine-tuning, and low-latency inference on frameworks like DeepSeek R1/V3 and other major open models.
Absolutely. We supply and configure enterprise storage systems utilizing certified SAS, NVMe, and SATA HDD components ranging from 4TB up to 20TB, helping you strike the right balance between processing speed and total storage cost.
Complete your datacenter configuration with robust nodes, specialized power modules, high-capacity hard drives, and system upgrades.