NexaGPU
The FusionServer 2288H V6 is a 2U 2-socket rack server designed with flexible configurations, making it an ideal choice for cloud computing, virtualization, database management, and big data workloads.
Engineered for performance, the 2288H V6 supports 3rd Gen Intel® Xeon® Scalable processors, 32 DDR4 RAM slots, and up to 14 PCIe expansion slots. It integrates patented technologies including DEMT (intelligent power management) and FDM (fault management) to optimize ROI and reduce operational costs.
| Server Model | FusionServer 2288H V6 |
| Form Factor | 2U rack server |
| Processors | One or two 3rd Gen Intel® Xeon® Scalable processors (8300/6300/5300/4300 series), TDP up to 270 W |
| Local Storage |
Supports various hot swappable drive configurations: • 8-31 x 2.5-inch SAS/SATA/SSD • 12-20 x 3.5-inch SAS/SATA • Up to 24 NVMe SSDs • Dual M.2 SSDs for boot |
| RAID Support | RAID 0, 1, 10, 1E, 5, 50, 6, 60; Optional supercapacitor for cache protection; Drive roaming and self-diagnosis. |
| Network | OCP 3.0 NICs supported; Two FlexIO card slots for network adapters; Hot-swappable function supported. |
| PCIe Expansion | Maximum of 14 PCIe 4.0 slots (including dedicated RAID and FlexIO slots). |
| Management | iBMC chip with dedicated GE port; Supports Redfish, SNMP, IPMI 2.0, HTML5/VNC KVM; Optional FusionDirector management software. |
| Operating Systems | Microsoft Windows Server, SUSE Linux Enterprise Server, VMware ESXi, Red Hat Enterprise Linux, CentOS, Oracle, Ubuntu, Debian. |
| Security Features | TPM 2.0, Secure boot, Power-on password, Administrator password, Security panel, Cover opening detection. |
| Dimensions | 86.1 mm x 447 mm x 790 mm (3.39 in. x 17.60 in. x 31.10 in.) |
| Power Supply | Dual hot-swappable PSUs (1+1 redundancy). Options: 900W, 1200W, 1500W, 2000W, 3000W (Platinum/Titanium/HVDC). |
To better ensure the safety of your goods, professional, environmentally friendly, convenient and efficient packaging services are provided. We use reinforced materials to protect sensitive server components during transit.