
● BRAND-NEW · FUSIONSERVER G5200 V7
xFusion FusionServer G5200 V7 — the 4U storage-rich AI server for training, inference and video analysis
The FusionServer G5200 V7 is xFusion’s 4U, two-socket accelerator server built for AI projects that also need large local storage. Two 4th- or 5th-Generation Intel Xeon Scalable processors, 32 DDR5 DIMMs and a choice of 4 full-height full-length dual-width GPUs or up to 10 single-width cards sit behind up to 28 front hot-swap drives. A GPU pass-through design connects the CPUs directly to the accelerators with no PCIe switch in the path, while redundant Platinum/Titanium power and N+1 fans keep the node available. If you want a single enclosure that does inference, AI rendering and HPC while holding a sizeable data set at the front, the G5200 V7 is the practical, air-cooled choice.
Built for workloads where accelerators and large storage both matter
The chassis is optimized for projects that read a lot of local data, so you can keep the accelerator topology matched to the job rather than paying for a fixed dense-GPU layout.
AI inference & rendering
Four dual-width accelerators or up to ten single-width cards power production inference, image generation and AI rendering from data held on the front drives.
Voice, image & video analysis
The combination of GPUs and up to 28 front drives suits media analysis, surveillance processing and content pipelines that need local capacity.
HPC & accelerated databases
GPU pass-through and high-core Xeon CPUs accelerate scientific computing and database workloads without a PCIe switch adding latency.
Flexible expansion
Up to ten standard PCIe 5.0 slots plus two OCP 3.0 NICs leave room for networking, additional accelerators and future I/O.
G5200 V7 technical specifications
Key platform details from the official specification; the final build is configured to your CPU, GPU, memory and storage requirements.
| Specification | xFusion FusionServer G5200 V7 |
|---|---|
| Form factor | 4U AI server, dual-socket |
| Processors | 4th/5th-Generation Intel Xeon Scalable, up to 350 W TDP per processor |
| Chipset | Emmitsburg PCH (Intel C741) |
| Memory | 32 × DDR5 DIMMs, up to 5600 MT/s |
| GPU cards | 4 × FHFL dual-width GPU cards, or up to 10 × single-width GPU cards |
| PCIe expansion | Up to 10 × standard PCIe slots, supporting PCIe 5.0 |
| Network | 2 × OCP 3.0 NICs (orderly hot-swap, PCIe 5.0) |
| Local storage | Up to 28 × 3.5" SAS/SATA drives; up to 4 × NVMe SSDs; 2 × M.2 SSDs |
| RAID | RAID 0/1/10/1E/5/50/6/60; supercapacitor cache protection; level migration and drive roaming |
| Cooling | 8 × hot-swap counter-rotating fans in N+1 redundancy; Extended Volume Air Cooling (EVAC) |
| Power | 4 × 1500 W Platinum, or 2000 W Platinum/Titanium hot-swap PSUs in paired 1+1 redundancy |
| Management | iBMC: Redfish, SNMP, IPMI 2.0, HTML5/VNC KVM; optional FusionDirector |
| Security | Power-on/admin passwords, TPM 2.0, security bezel, secure boot, chassis intrusion |
| Operating temperature | 5°C to 35°C, compliant with ASHRAE Class A1/A2 |
| Certification | CE, NRTL, CCC, FCC, VCCI and RoHS |
| Operating systems | FusionOS, Windows Server, RHEL, SLES, Ubuntu, VMware ESXi, Oracle, Debian, openEuler |
| Dimensions (H×W×D) | 175 × 447 × 798 mm (6.89 × 17.60 × 31.42 in.) |
Performance with a direct CPU-to-GPU path and storage up front
The design balances high-core Xeon Scalable CPUs, a switch-free GPU connection and a large front storage bay so data-heavy accelerated jobs keep moving.
Dual Xeon Scalable
Two 4th/5th-Generation processors at up to 350 W provide the host compute and PCIe 5.0 lanes for the accelerators and I/O.
Pass-through GPUs
CPUs connect directly to four dual-width or ten single-width cards with no PCIe switch, reducing communication latency.
Up to 28 drives
A large front storage bay holds the working data set next to the GPUs, ideal for media and analysis pipelines.
Stable under load
EVAC cooling and counter-rotating N+1 fans sustain high-TDP CPU and GPU builds through extended burn-in.
A storage-first 4U layout with direct GPU pass-through
Front hot-swap storage and rear accelerator risers are separated by a counter-rotating fan wall, keeping both data and accelerators well served.



The internal layout places up to 28 hot-swap drives at the front, a wall of eight counter-rotating fans in the middle, and riser-based accelerators at the rear. The GPUs attach to the dual-CPU board through a pass-through design rather than a PCIe switch, shortening the CPU-to-GPU path. Cabling runs along the side walls to preserve front-to-back airflow, and four Platinum or Titanium PSUs in paired redundancy are sized for the complete configuration, so the node sustains full load and keeps running if a single power module or fan fails.
Typical G5200 V7 configurations
Starting points drawn from supported parts; every order is built to your workload and quoted as a tested configuration.
Front-drive inference & media node
- 2 × Xeon Gold 6448Y (Sapphire Rapids)
- 256 GB DDR5 across 8 DIMMs
- 4 × NVIDIA L40S 48 GB dual-width
- 24 × 3.5" SATA drives + 2 × M.2 boot
- 2 × OCP 25 GbE · 4 × 2000 W Titanium
Compact four-card training build
- 2 × Xeon Platinum 8468
- 512 GB DDR5 across 16 DIMMs
- 4 × NVIDIA H100 / A100-class dual-width
- 4 × NVMe SSD + 8 × 3.5" drives
- 2 × OCP 100 GbE · 4 × 2000 W PSU
Ten-card single-width serving node
- 2 × Xeon Gold 6442Y
- 512 GB DDR5 across 16 DIMMs
- 10 × single-width inference GPUs
- 4 × NVMe SSD + 2 × M.2 boot
- 2 × OCP 25 GbE · 4 × 2000 W PSU
Rack deployment, power and delivery
Dense 4U GPU nodes need more than the server itself; we help plan the rack, power and cooling envelope and handle export logistics so the equipment arrives ready to install.
Rack and airflow planning
We confirm rack depth and clearance for the 798 mm chassis, provide L-shaped or adjustable guide rails, and verify hot-aisle/cold-aisle airflow for 5–35°C operation. Each node uses standard front-to-back cooling, so it fits conventional data-centre containment without a rear-door heat exchanger.
Power and circuit sizing
Depending on the GPU build we specify the 1500 W or 2000 W Platinum/Titanium configuration in paired redundancy, and advise on total rack power, PDU and circuit requirements so the installation has headroom for all nodes under simultaneous load.
Export delivery and documentation
Quotations are normally returned within one working day. We arrange export packaging, commercial and shipping documents, and can configure BIOS, BMC, RAID and firmware to a common baseline before dispatch so a batch arrives identically configured.
How to choose the right G5200 V7 configuration
Four dual-width GPUs
Choose the FHFL dual-width riser when a small number of high-performance accelerators must hold large models and run training or heavy inference.
Up to ten single-width GPUs
Choose the single-width layout for high-throughput serving and video processing where many lower-power cards beat a few large ones.
Storage-first build
Prioritize the 28-bay front backplane when the workload reads a large local data set, and add NVMe for the hottest data and M.2 for boot.
Every G5200 V7 is checked before it ships
Independent quality assurance signs the build only after every stage passes. The same checklist runs on every order whether it is one unit or a batch deployment, so the systems arriving in your data centre match the configuration and performance you were quoted.
Configuration verification
We check every CPU, GPU, memory module, drive, RAID controller and network adapter against the BOM and the agreed firmware levels before assembly.
Assembly and cable management
Components are seated and torqued to spec, power and signal cables routed for the front-to-back airflow path, and GPU retention and power cabling double-checked.
Full POST and firmware checks
The complete configuration boots through POST; CPU, memory and all accelerators are enumerated, and BIOS/BMC and RAID firmware versions are confirmed.
Extended burn-in under load
The server runs a high-utilization compute and GPU stress test to surface thermal, power or memory faults long before it reaches your rack.
Storage and RAID validation
RAID arrays are built and verified, hot-swap behaviour tested, and boot volumes confirmed independent of data drives.
Final independent QC sign-off
A second engineer reviews the test record and configuration, then signs off and seals the unit for export packaging and shipment.
Tested, documented, warranted. A test record accompanies every build and the 3-year warranty starts only after the unit passes final QC. Our team supports remote diagnosis and replacement parts through the warranty terms.
Backed by warranty, tested and export-ready
Warranty on a new server
Every G5200 V7 we ship is a brand-new system covered by a 3-year warranty, configured and burn-in tested before dispatch.
Front drives in a GPU node
Up to 28 hot-swap drives plus 4 dual-width or 10 single-width GPUs put data and acceleration in one 4U enclosure.
Fast quotation, export experience
Tell us the workload and quantity and we normally return a configured quote within one working day, with export documentation and logistics arranged.
Configure your xFusion FusionServer G5200 V7
Send us your CPU, GPU, memory and storage requirements — or simply describe the workload — and we will come back with a tested build and a channel price.
xFusion FusionServer G5200 V7 questions
What is the FusionServer G5200 V7?
It is xFusion’s 4U, two-socket, storage-rich accelerator server powered by 4th/5th-Generation Intel Xeon Scalable processors, with 32 DDR5 DIMMs, up to 28 front drives and a choice of 4 dual-width or up to 10 single-width GPUs for inference, training, video analysis and HPC.
How many GPUs can the G5200 V7 hold?
The official configuration is either 4 full-height full-length dual-width GPU cards or up to 10 single-width cards, depending on the riser and power configuration. It is not a 10-dual-width chassis; choose the G5500 if you need that many large cards.
Which NVIDIA accelerators can I configure?
The platform supports dual-width cards such as NVIDIA L40S and H100/A100-class accelerators, and single-width cards for dense serving. Final card selection depends on the riser, power and thermal configuration, which we confirm against the official compatibility list before build.
Is it air-cooled or liquid-cooled?
It is fully air-cooled, using Extended Volume Air Cooling (EVAC), eight hot-swap counter-rotating fans in N+1 redundancy and paired 1+1 Platinum/Titanium PSUs. No liquid-cooling infrastructure or rear-door heat exchanger is required.
What storage and RAID options are available?
The front bay supports up to 28 3.5-inch SAS/SATA drives, up to 4 NVMe SSDs and 2 M.2 SSDs, with hardware RAID 0/1/10/1E/5/50/6/60 and supercapacitor cache protection.
How does the G5200 V7 compare with the G5500 V7?
The G5200 is storage-first, with up to 28 front drives and 4 dual-width or 10 single-width GPUs on a direct pass-through path. The G5500 V7 is GPU-first, accepting up to 10 dual-width accelerators for large-model training. Choose the G5200 for data-heavy inference and media, and the G5500 for dense training.
What is a typical starting configuration?
A common build uses two Xeon Gold processors, 256-512 GB of DDR5, four NVIDIA L40S dual-width GPUs, a large front drive array with M.2 boot and two OCP NICs. We provide exact configurations for your workload and batch size.
How do you test each G5200 V7 before shipment?
Every build goes through component verification, assembly and cable checks, full POST and firmware diagnostics, an extended high-utilization compute and GPU burn-in, storage and RAID validation, and a final independent QC sign-off. A test record accompanies the order and the 3-year warranty starts only after the unit passes, so no system ships untested.
What warranty, lead time and condition apply?
We supply the G5200 V7 as a brand-new server with a 3-year warranty, configured and burn-in tested before shipment. Quotations are normally provided within one working day and lead time depends on the CPU and GPU selected; export packaging and documentation are arranged for international orders. Read more on our warranty page.
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