Cisco DPX50/X90 Pluggable 8x10G NIC Module | Enterprise Network Adapter — RD95-8X10GNIC3Y
Add high-density 10 GbE connectivity to Cisco DPX50/X90 platforms without redesigning the network edge. This pluggable NIC module delivers 8 x 10 GbE ports in a compact form factor, giving infrastructure teams a straightforward path to increase server or appliance connectivity where port density matters more than rack space. For enterprise environments, the value is in the fit: a purpose-built module for DPX50/X90 systems that keeps expansion aligned with the platform architecture. That means fewer compatibility questions, less time spent on adapter selection, and a cleaner deployment path for teams standardizing on Cisco hardware. The 3-year coverage term adds procurement clarity for refresh planning and support alignment. It is a practical choice for organizations that want to extend platform life while maintaining a consistent service window across networked systems. When the requirement is reliable 10 GbE expansion with Cisco integration, this module keeps the decision simple and the deployment controlled. Ideal For Adding 10 GbE uplinks to DPX50/X90 appliances Expanding port density in enterprise edge deployments Standardizing network adapter selection across Cisco-based infrastructure Supporting refresh projects that require a defined 3-year service window Why This Product 1 8 x 10 GbE ports for higher connection density 2 Pluggable module design for platform-specific integration 3 3-year coverage term for planning certainty 4 Built for Cisco DPX50/X90 environments
- Device Supported: Cisco DPX50/X90
- Warranty Years: 3 years
- Host Interface: Pluggable module
- Port Count: 8 ports
- Network Technology: Ethernet
- Ethernet Technology: 10 Gigabit Ethernet
- Key Feature 1: 8 x 10 GbE network ports
- Key Feature 2: Pluggable NIC module form factor
- Key Feature 3: Cisco DPX50/X90 platform compatibility
- Key Feature 4: Enterprise network adapter class
- Key Feature 5: 3-year coverage term
- Key Feature 6: Designed for high-density connectivity expansion
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