BoltGrid
Engineered for deep learning, high-density storage, mission-critical virtualization, and exascale processing.
The global demand for high-performance computing has experienced an exponential structural shift. Driven by multi-billion parameter large language models (LLMs) such as DeepSeek, LLaMA, and proprietary enterprise models, computational architectures are evolving from standard CPU-centric virtualization hosts to high-density, heterogeneous GPU acceleration farms. AI cloud data centers, high-frequency trading networks, and research labs now require extreme throughput, optimized interconnect pathways, and highly resilient systems designed to run 24/7 without thermal performance throttling.
As enterprise operations transition toward autonomous decision-making and scientific research embraces AI-guided physical modeling (AI for Science), hardware specifications must meet rigorous parameters. Factors such as memory bandwidth per core, ultra-low latency interconnect fabrics (e.g., PCIe Gen 5.0, CXL 2.0, InfiniBand NDR), and power usage effectiveness (PUE) represent the difference between technological breakthrough and cost-prohibitive latency. Hardware operators are forced to source clusters from partners who not only provide raw compute nodes but design complete, integrated systems that align with specific software runtimes, thermal thresholds, and physical spatial limitations.
Supporting rapid deployment of clusters containing thousands of nodes. Our designs minimize overhead bottlenecks by utilizing high-density GPU chassis optimized for massive matrix calculations and low-latency storage access layers.
Delivering high-compute density at the perimeter. Perfect for localized autonomous vehicle data aggregation, smart grid monitoring, and real-time medical imaging systems requiring secure, local inference capabilities.
Uncompromising double-precision (FP64) performance platforms optimized for meteorological simulations, quantum calculation emulation, structural mechanics, and custom bioinformatics pipelines.
BoltGrid Computing Systems Co., Ltd. is a recognized leader in high-performance computing infrastructure, specialized GPU clusters, and enterprise AI data center design. Established in 2016, the company leverages a deep heritage of 12 years of industry engineering experience. By establishing stable supply chains and modern assembly protocols, BoltGrid has developed key capacities in the design, configuration, thermal engineering, and export of robust servers.
Operating a state-of-the-art production facility covering approximately 18,500㎡, BoltGrid has built the physical infrastructure required to manage concurrent large-scale system integrations. The facility is equipped to handle complex chassis assembly, custom GPU interconnect configuration, thermal testing under full loads, and complete software burn-in procedures. Our global export operations exceed USD 18 million annually, backed by 7 years of seamless international trade compliance serving enterprise clients across North America, the EU, Southeast Asia, and the Middle East.
Our engineering division employs approximately 120 dedicated system designers and engineers specializing in GPU architecture optimization, low-latency rack topography, and advanced cooling dynamics. BoltGrid produces over 85 new product configurations annually to meet the swift evolutionary cycles of silicon technology. We offer extensive custom build-to-order options including GPU scaling (PCIe/OAM), high-density memory configurations, specialized liquid cooling manifolds, and flexible host bus adapters.
Supported by a comprehensive QA team of 45 specialized inspectors, BoltGrid ensures that structural durability, electrical safety, and logic stability metrics are met prior to shipment. Every system is stress-tested with modern load simulation platforms, eliminating early component infant mortality risks.
Providing the physical backbone for complex computing pipelines across diverse corporate and industrial sectors.
As deep learning operations scale, clusters of GPU-heavy hosts must maintain high network fabric efficiency. BoltGrid servers are deployed globally to host fine-tuning models, high-volume semantic queries, and generative vector pipelines, delivering reliable operation with high network up-times.
Training neural networks for vision processing and sensor fusion requires massive compute pools. Our rack systems process high-frequency video capture inputs to compile virtual environment models, driving autonomous neural nets from conceptual design into reliable real-world operations.
Processing genomic structures requires rapid matrix mathematics. BoltGrid's customized architectures allow research clinics to scale CPU cores and HBA speed interfaces, accelerating complex sequence comparison calculations down from days to minutes.
BoltGrid's engineering trajectory for the next generation of high-density computing platforms.
As silicon geometries push boundaries and thermal design power (TDP) per node climbs past 1000W, traditional air-cooled solutions reach physical limitations. Our R&D team works closely with chip makers and interconnect consortiums to prototype systems that address spatial, thermal, and bandwidth bottlenecks.
Pioneering closed-loop coolant distribution units (CDUs) capable of handling up to 1200W TDP per component, decreasing data center PUE to under 1.12.
Implementing Compute Express Link technologies to enable direct memory pooling between CPU sockets and GPU hubs, eliminating system latency.
Standardizing system topologies on Open Compute Project (OCP) form factors to facilitate fast, tools-free hardware replacement in high-volume settings.
One of BoltGrid’s core strengths is our location in the Pearl River Delta (Shenzhen-Dongguan-Guangzhou electronics hub). This industrial region provides unmatched access to sub-assembly components, raw materials, mechanical manufacturing, and high-frequency PCB fabricators. While standard supply lines in other regions struggle with component lead times, BoltGrid manages component procurement through a network of over 850 strategic partners, allowing us to respond quickly to engineering revisions.
This localized supply chain covers sheet metal stamping, high-performance power supply units (CRPS with up to 96% efficiency), copper heat-pipe assemblies, heat exchangers, and high-speed connectors. These capabilities reduce custom chassis prototyping time from months to weeks. Additionally, Shenzhen’s logistics infrastructure provides fast shipping routes to global ports, assuring our clients receive high-performance computing hardware efficiently and cost-effectively.
Our engineering team can customize motherboard trays, chassis rails, power distributions, and front bezels to match your exact rack systems and brand style guidelines.
We source top-tier memory components, solid-state drives, and expansion cards, ensuring high-quality, high-speed parts are used throughout the system.
Our 18,500㎡ facility is optimized for scalable production, enabling us to handle orders ranging from single high-performance nodes to multi-rack clusters.
BoltGrid uses a strict quality assurance system to verify the electrical, thermal, and logical stability of every rack server. Our QA department consists of 45 specialized inspectors who track each build from component arrival to final shipping packaging. We utilize advanced testing methods to guarantee performance under heavy workloads.
BoltGrid platforms are engineered to meet global safety and import standards. We maintain a full suite of compliance certifications to support deployment in key international markets:
Premium 1U, 2U and 4U servers and key network upgrades for cloud environments.
Addressing the common questions raised by infrastructure engineers and import managers.