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Product Overview |
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The 869485-001 HP InfiniBand Enhanced Data Rate V2 36-Port Un 1U Switch facilitates high-speed, low-latency connectivity in compact rack configurations. It fits into data center environments requiring dense port availability and efficient space utilization, delivering performance suited for scalable computing networks. |
General Information |
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| Brand | HP |
| Condition | Refurbished |
Technical Information |
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| Switch Type | Managed Switch |
| Form Factor | Rack-Mountable |
| Mount Type | 1U Rack |
| Switch Ports | 36 |
| Number of Ports | 36-Ports |
| Port Type | 100G QSFP28 |
| Port Speed | 100 Gbps |
| POE Support | No |
| Switching Capacity | 3.6 Tbps (7.2 Tbps full-duplex) |
| Switch Forwarding Rate | 7,031,250,000 pps (approx. 7.03 billion pps) |
| VLAN Support | No |
| Stackable | No |
| Connector Type | QSFP28 |
Management and Configuration |
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| Remote Protocols | Yes |
| Management Interfaces | CLI,SNMP,Web UI |
| Remote Management Protocol | SSH,HTTPS,SNMP |
Physical Characteristics |
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| Weight | 3.00 |
Miscellaneous |
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| Assembly Required | No |
| Compliance Standards | WEEE, RoHS, CE, FCC |
Product Description |
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The 869485-001 HP InfiniBand Enhanced Data Rate V2 36-Port Un 1U Switch provides robust high-speed interconnect capabilities tailored for demanding computing environments. It is commonly found in data centers and high performance computing clusters, where rapid data transfer and minimal latency are essential. Built for IT professionals managing complex networks, this switch enables efficient communication between servers and storage systems. Key Features
This switch plays a practical role in maintaining network performance and reliability within scalable computing setups. Its combination of speed and port density ensures consistent operation without bottlenecks, supporting demanding workloads with stable data flow. |
Use Cases |
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This switch is typically deployed in environments where high throughput and minimal latency are key, such as research institutions, enterprise data centers, and high performance computing clusters. Network administrators and infrastructure engineers rely on it to support fast inter-server communication in demanding setups. How It's Used:
Its deployment supports operational efficiency by minimizing network delays and maximizing throughput, thereby enabling scalable and reliable infrastructure performance in complex computing environments. |