
Safe Checkout
Secure Payments
Fast Delivery
Order Today
Free Shipping
Across the US
Easy Returns
Hassle-Free
Dell WG89F XXV710-DA2 2 x Ports 25GbE SFP28 PCIe Adapter
- Controller: Intel XXV710-DA2
- Ports: 2 x 25GbE SFP28
- Interface: PCIe Gen3 x8
- Network Speed: 25 Gigabit Ethernet
- Connector Type: SFP28
- Designed for high-performance networking and data center applications
Free U.S. Ground Shipping
Typically 1-2 handling + 3-7 transit days
Purchase orders accepted
For government, enterprise, data center, and small business customers.
Bulk Purchase Inquiry
Volume pricing and availability
Product Overview
The Dell WG89F is a dual-port 25GbE SFP28 PCIe Network Adapter. It provides high-speed network connectivity for servers and workstations, utilizing the XXV710-DA2 controller.
Technical Information
| Controller | Intel XXV710-DA2 |
| Ports | 2 x 25GbE SFP28 |
| Interface | PCIe Gen3 x8 |
Additional Specifications
| Network Speed | 25GbE |
| Product Type | Network Adapter |
Product Description
The Dell WG89F network adapter, powered by the Intel XXV710-DA2 controller, is engineered to deliver high-throughput, low-latency network connectivity. Featuring two 25 Gigabit Ethernet (25GbE) SFP28 ports, this adapter is designed for demanding environments such as data centers, high-performance computing clusters, and enterprise networks that require significant bandwidth. Installed via a PCIe Gen3 x8 interface, the adapter ensures a robust connection to the host system, capable of handling the high data rates offered by the 25GbE ports. The SFP28 form factor supports flexible fiber optic cabling, allowing for various deployment distances and configurations. This makes it suitable for connecting servers to high-speed switches or for inter-server communication. This adapter is an ideal solution for applications that benefit from increased network speed, including storage area networks (SANs), high-frequency trading platforms, big data analytics, and cloud computing infrastructure. Its dual-port design also offers redundancy and increased aggregate bandwidth capabilities.
