
Subscribe To Our Newsletter!
Subscribe to the newsletter to stay up to date with the latest news and most useful
Newsletter
↑
Back to Top
| Product Overview |
|---|
The HP Mellanox InfiniBand FDR Fabric Board is a high-speed networking component designed to deliver low latency and high bandwidth within HP server environments. It fits into InfiniBand fabric networks to support demanding data transfer needs commonly seen in large-scale computing and storage deployments. |
| General Information | |
|---|---|
| Brand | Mellanox |
| Part Number | 687094-001 |
| Technical Information | |
|---|---|
| Chipset/Controller | Mellanox ConnectX-3 (InfiniBand FDR HCA) |
| Virtualization Support | SR-IOV |
| Data Rate (Speed) | 40GbE |
| Data Center Bridging | No |
| Number of Ports | 2-Port (Dual) |
| OS Compatibility | Windows Server 2022, RHEL, VMware ESXi |
| Network Management | SNMP |
| Offload Support | RDMA, PXE Boot, Jumbo Frames |
| Connectivity & Physical | |
|---|---|
| Form Factor | Mezzanine Card |
| Port Type | QSFP+ |
| Cabling Type | Fiber Optic (MMF) |
| Weight | 3.00 |
| Condition | Refurbished |
| Miscellaneous | |
|---|---|
| Assembly Required | Yes |
| Eco Friendly | Yes |
| Compliance Standards | RoHS, CE, FCC |
| Product Description |
|---|
The HP Mellanox InfiniBand FDR Fabric Board provides a robust solution for building high-performance network fabrics. It is often found in data centers where fast, reliable interconnects are crucial for workloads like HPC, storage, and virtualization. Built for IT professionals and system architects who need to maximize data throughput and minimize communication delays, this board integrates seamlessly into existing HP InfiniBand infrastructures. Key Features
This fabric board is typically deployed in enterprise-grade data centers, particularly where InfiniBand fabrics form the backbone of high-speed computing clusters. Its role is crucial in enabling efficient communication between servers, storage devices, and computing nodes, making it a key component in setups aiming for performance and reliability without adding unnecessary complexity. |