Description
Intel X520-DA2 EX520DA2G2P5 10Gbps Dual Port Network Adapter 913120
The Intel X520-DA2 EX520DA2G2P5 is a high-performance 10Gbps Dual Port Network Adapter, designed to meet the rigorous demands of data centers and enterprise networks. It offers flexible, high-speed Ethernet connectivity with exceptional throughput, ensuring superior performance for bandwidth-intensive applications such as virtualization, storage, and cloud computing.
Key Features:
- 10Gbps Ethernet Connectivity: Delivers lightning-fast network speeds, ideal for high-performance workloads in virtualized environments and cloud data centers.
- Dual-Port Design: Provides load balancing and failover capabilities for enhanced network reliability and uninterrupted data flow.
- PCIe 2.0 Interface: Supports PCI Express 2.0 x8, offering high throughput and low-latency data transfers.
- Direct Attach Copper (DAC) Support: Compatible with low-cost, short-range DAC cables, providing cost-effective connectivity for data center environments.
Specifications:
- Host Interface: PCI Express 2.0 x8
- Ports: 2 x 10Gbps Ethernet (SFP+)
- Form Factor: Low Profile
- Data Transfer Rate: 10Gbps per port
- Supported Cables: Direct Attach Copper (DAC), optical modules
- Supported Protocols: Ethernet, iSCSI, and FCoE
- Operating Temperature: 0°C to 55°C
- Part Number: 913120
Benefits:
- High Bandwidth: Enables rapid data transfers for high-performance applications, reducing latency and improving efficiency.
- Enhanced Resilience: The dual-port design supports redundancy and load balancing, ensuring consistent performance even in critical environments.
- Cost-Effective Connectivity: Supports DAC cables, offering a budget-friendly solution for short-range network connections in data centers.
The Intel X520-DA2 EX520DA2G2P5 10Gbps Dual Port Network Adapter is a robust solution for enterprises looking to boost their network infrastructure. With its dual-port design, flexible connectivity, and reliable performance, this adapter is perfect for data centers and enterprise-grade applications.