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Product Overview |
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The JC530-61001 - HP FlexFabric 5820 4-Ports SFP+ Network Module enhances network capacity by adding four high-speed 10GbE ports to compatible switches. It fits into enterprise and data center networking setups where flexible, scalable connectivity is key, providing solid performance without complexity. |
General Information |
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| Brand | HP |
Technical Information |
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| Ports | 4 |
| Compatibility | HP FlexFabric 5820 Switch Series,HP 5820 |
| Data Transfer Rate | 10 Gbps |
| Connector Type | SFP+ |
Physical Characteristics |
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| Weight | 3.00 |
| Condition | Refurbished |
Miscellaneous |
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| Assembly Required | No |
| Compliance Standards | WEEE, RoHS, CE, FCC, UL, cULus |
Product Description |
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The JC530-61001 is a network module designed to expand the connectivity options of HP FlexFabric 5820 series switches. Built for environments requiring high-speed data transfer, this module offers four 10 Gigabit SFP+ ports, enabling robust and flexible network configurations. Often found in data centers and enterprise networks, it supports seamless integration with existing infrastructure. IT professionals and network administrators benefit from its straightforward deployment and consistent performance. Key Features
This module plays a crucial role in maintaining high network throughput and stability. Its compatibility with the FlexFabric series allows for scalable network expansion without compromising on reliability. With consistent performance and straightforward integration, it offers practical value for maintaining efficient and resilient network operations. |
Use Cases |
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This network module is typically deployed in enterprise IT environments and data centers where expanding 10 Gigabit Ethernet capacity is necessary. It suits organizations needing scalable, high-throughput connectivity to support virtualization, storage, and intensive data workloads. How It's Used:
By enabling seamless expansion of network interfaces, this module helps maintain operational efficiency and supports evolving network demands. Its stable performance contributes to a dependable infrastructure capable of handling intensive workloads. |