Product Description
HPE Intel E810-CQDA2 Ethernet 100GB 2-Port QSFP28 OCP3 Adapter For HPE (P22767-B21) - PCI Express 4.0 x16 - 12.50 GB/s Data Transfer Rate - 2 Port(s) - Optical Fiber - 100GBase-X - QSFP28 - Plug-in Card
Is your data center constantly challenged to deliver increased security and reliability in a cost-effective and scalable solution for your network bandwidth?
The HPE Gen10 Plus Ethernet Adapters are 1Gb, 10Gb,
10/25Gb and 100Gb and 200 Gb Ethernet solutions that are scalable and compatible with HPE Gen10 Plus servers for hybrid cloud services, mobile data and streaming video applications. Your server is the foundation of your data center, but it doesn't work alone. When one link in your component chain slows down, so does the rest of your operation. Keep your network and data flowing with a seamless ecosystem of HPE servers, networking adapters, transceivers, cables, and switches.
FEATURES | Better Performance
HPE Gen10 Plus Ethernet Adapters are engineered for an assortment of bandwidths and latency sensitive applications.
Reduces CPU utilization with support for a variety of I/O offloads including RDMA and Tunneling.
Reliability and Security
HPE Gen10 Plus Ethernet Adapters authenticate updates for NICs that signed firmware is correct and trusted to reduce rogue firmware installation.
Protect applications, data, and server infrastructure by authenticating digitallysigned firmware via a root of trust architecture.
- With the 100GBase-X technology get up to 100Gbps data transfer rate over the supported network cable
- Supports optical fiber cable to span longer distances and provides data transmission rates par excellence between servers and network components
- This dual port 100gigabit ethernet card lets you add two network ports using a single expansion slot to a client, server or workstation
- The PCI Express 4.0 x16 interface provides smooth data transfer and outstanding performance
- 100Gigabit Ethernet Card effectively fulfills the requirement of high-performance computing and internet connectivity without increasing costs while also providing fast speed