
Safe Checkout
Secure Payments
Fast Delivery
Order Today
Free Shipping
Across the US
Easy Returns
Hassle-Free
Intel E810CQDA1BLK 1-Port 100GbE QSFP28 PCIe Optical Fiber Adapter
- 1 x 100GbE QSFP28 Port
- PCI Express 4.0 x16 Interface
- Supports 100 Gigabit Ethernet
- Intel E810 Controller
- High Throughput and Low Latency
- Designed for Data Center and Cloud environments
Click on Inquire to get latest price
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 Intel E810CQDA1BLK is a single-port 100 Gigabit Ethernet adapter designed for high-performance servers. It utilizes a QSFP28 port for ultra-fast optical network connectivity.
Technical Information
| Port Count | 1 |
| Port Type | 100GbE QSFP28 |
| Interface | PCIe 4.0 x16 |
Additional Specifications
| Form Factor | Standard |
| Chipset | Intel E810-CQDA1 |
| Operating Systems Supported | Linux, Windows Server |
Product Description
The Intel E810CQDA1BLK is a high-performance network adapter engineered for the most demanding data center and cloud computing environments. It features a single 100 Gigabit Ethernet (100GbE) port utilizing a QSFP28 connector, providing exceptional bandwidth for data-intensive applications. Built with the Intel E810 controller, this adapter is designed to deliver high throughput and low latency, essential for workloads such as artificial intelligence, machine learning, high-performance computing, and large-scale data analytics. The PCI Express 4.0 x16 interface ensures that the adapter has sufficient bandwidth to communicate efficiently with the host system, preventing bottlenecks and maximizing network performance. The E810CQDA1BLK supports advanced networking features and is optimized for performance and efficiency in modern server infrastructure. Its single-port design is ideal for specific high-bandwidth needs where multiple ports are not required, allowing for efficient use of PCIe lanes.
