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HP R0P77A 24x 25GBase-X 4x QSFP28 Layer-3 AirFLow Half width Switch
- 24 x 25GbE SFP28 ports
- 4 x QSFP28 ports (supporting 100GbE or 4x25GbE)
- Layer 3 routing capabilities
- AirFlow design for efficient cooling
- Half-width form factor for high density deployments
- Low latency switching
- Support for advanced features like VXLAN and EVPN
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Product Overview
The HP R0P77A is a high-performance Layer 3 switch featuring 24 x 25GbE SFP28 ports and 4 x QSFP28 ports. Designed for demanding data center and enterprise environments, it offers high throughput and low latency.
Technical Information
| Product Type | Layer 3 Switch |
| Model | R0P77A |
| Ports | 24 x 25GbE SFP28, 4 x QSFP28 |
Additional Specifications
| Switching Capacity | TBD |
| Forwarding Rate | TBD |
| Form Factor | Half-width |
Product Description
The HP R0P77A is a cutting-edge Layer 3 switch engineered to meet the stringent demands of modern data centers and high-performance computing environments. It boasts 24 high-speed 25GbE SFP28 ports, providing ample connectivity for servers and storage devices requiring significant bandwidth. The inclusion of 4 QSFP28 ports further enhances its versatility, allowing for uplinks to aggregation layers or spine switches at speeds of up to 100GbE, or can be broken out into multiple 25GbE connections. This switch is built for performance, offering low latency and high throughput essential for applications such as big data analytics, AI/ML workloads, and cloud computing. Its Layer 3 capabilities enable advanced routing protocols and network segmentation, facilitating efficient traffic management and scalability. The AirFlow design ensures optimal thermal performance, crucial for dense deployments where heat dissipation is a critical concern. The R0P77A's half-width form factor is a key design element, enabling higher port density within a standard rack unit. This is particularly beneficial in environments where space is at a premium. The switch supports advanced networking features, including VXLAN and EVPN, which are vital for building flexible and scalable virtualized network infrastructures.



