BoltGrid
Explore our high-performance hardware, designed to satisfy demanding requirements for latency control, SAS/SATA RAID operations, and edge storage compute arrays.
The global push towards Artificial Intelligence, Large Language Models (LLM), and extreme cloud virtualization has shifted the baseline requirements for modern network switches. Networks are no longer mere pipelines; they are the core interconnects of the computing grid. BoltGrid Computing Systems Co., Ltd. has stood at the intersection of network and high-performance server engineering, developing optimized platforms to maximize data transmission rates and reduce network jitter.
Modern workloads demand zero packet loss and hyper-low latency. Standard Ethernet structures struggle under the heavy, synchronized communication stages characteristic of AI model training (AllReduce phase). This has given rise to the widespread adoption of RoCE v2 (RDMA over Converged Ethernet) and dedicated InfiniBand fabrics, enabling direct memory transfers across servers without utilizing system CPU resources.
Since 2016, we have engineered infrastructure that scales seamlessly. We bridge the gap between complex network switches, RAID interface configurations, and high-performance GPU server chassis, enabling seamless compatibility and optimized bandwidth allocation across every single node.
Architecting the modern high-density data center requires a deep understanding of hardware layers, PCIe bus topologies, and network-attached storage integration.
Implementing non-blocking Clos topologies (Spine-Leaf) to support East-West traffic patterns. By decoupling control and data planes, our network systems optimize bandwidth utilization dynamically.
Integrating PCIe SAS/SATA host bus adapters and array controllers like the XC170-M-8i, enabling 12Gb/s local storage pipelines that match the ingestion rates of 100G/400G switches.
High-speed switching ASICs and massive CPU/GPU platforms release significant heat. We design dynamic thermal paths and active liquid-cooling compatibility to maintain operational temperatures.
| Technology Spec | Ethernet Fabric (RoCE v2) | InfiniBand Native Fabric | Target Workloads |
|---|---|---|---|
| Latency (Port-to-Port) | < 500ns to 1μs | < 100ns to 300ns | RoCE v2: General Cloud AI, InfiniBand: Extreme Scale LLMs |
| Bandwidth Support | Up to 800G per Port | NDR (400G) / XDR (800G) | Highly intensive distributed dataset computing |
| Congestion Control | ECN, PFC, DCQCN | Hardware-level adaptive routing | Zero packet loss optimization for parallel matrix multiplication |
| Cabling Options | AOC, DAC (QSFP+, QSFP28, OSFP) | Copper and optical active link cables | Short-reach intra-rack & long-reach inter-row networking |
BoltGrid Computing Systems Co., Ltd. is a specialized AI GPU server and high-performance networking supplier. Operating an extensive 18,500㎡ modern manufacturing facility, we integrate system-level designs, large-scale assembly lines, testing bays, and advanced network diagnostic stations. With annual export revenues scaling past USD 18 million, our logistics infrastructure guarantees reliable delivery worldwide.
Quality and stability are governed by 12 years of industry experience and an elite QA division composed of 45 certified inspectors. We run strict procedures, from visual alignment on custom PCBs to thermal stress loading, simulation runs, and complete system-level burn-in protocols before packing.
Our expansive global footprint includes over 850 strategic partners, supporting easy procurement of critical chipsets, custom ASIC boards, network interface cards (NICs), SAS/SATA controllers, and specialized server racks.
BoltGrid hardware complies with rigorous international regulatory frameworks to ensure seamless enterprise deployment.
All network adapters, high-speed cable systems, and server nodes hold CE, FCC, RoHS, and UL approvals, complying with data center safety and environmental standards worldwide.
We deliver prompt support across North America, Europe, Southeast Asia, and the Middle East, offering hardware replacement parts and direct technician consulting.
Our engineering division handles client-specific modifications, encompassing chassis length limits, variable PCIe port locations, custom-programmed firmware, and customized backplanes.
High-speed networking is the main driver behind multiple technology sectors. Deploying 100G+ switches with optimized servers enables major speed improvements across key areas:
Distributed training platforms like DeepSeek, GPT architectures, and LLaMA demand high data throughput. High-speed switches prevent training delays caused by slow communication, keeping expensive GPUs fully utilized.
Within financial institutions, microsecond network delays affect transaction success. Low-latency, non-blocking switches process transactions safely without queue bottlenecks.
Weather forecasting, molecular dynamic simulations, and physics research rely on heavy data exchanges between compute nodes. InfiniBand and RoCE fabrics keep these operations running smoothly.
BoltGrid updates its systems by rolling out roughly 85 new products every year, ensuring clients have access to the latest PCIe revisions, dense chassis configurations, and advanced networking architectures.
Keeping pace with next-generation requirements for high-speed network fabrics and artificial intelligence platforms.
Developing 1.6T silicon architectures to handle upcoming GPU cluster scaling demands.
Integrating fiber connectors directly onto the ASIC substrate to lower power draw.
Supporting the Ultra Ethernet Consortium standard to optimize Ethernet performance.
Refining cold-plate designs to cool optical switch systems efficiently.
Get answers to common hardware selection and deployment questions from our engineering team.
RoCE v2 runs Remote Direct Memory Access (RDMA) over standard UDP/IP Ethernet networks. It offers high speeds at lower integration costs, relying on existing Ethernet switches. InfiniBand is a dedicated network architecture that manages routing directly in hardware. It delivers lower latency and better congestion control, though at a higher cost. We engineer servers to support both formats seamlessly.
The XC170-M-8i leverages the Broadcom SAS3808iMR controller, supporting PCIe Gen 4 connectivity and up to 12Gb/s per SAS/SATA channel. Since it does not utilize DRAM-based write cache, it is well-suited for fast RAID 0, 1, and 10 configurations. This setup ensures stable storage reads/writes while keeping power use and hardware costs down.
Our QA process utilizes a team of 45 professional inspectors at our 18,500㎡ facility. We run multi-phase diagnostics, including thermal imaging, electrical load verification, and complete server burn-in testing, ensuring hardware remains stable under full processing workloads.
Our complete collection of AI accelerators, multi-socket workstations, high-speed interconnect cables, and network server systems.
A look at BoltGrid's manufacturing facility, system testing bays, and logistics operations.