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Product Overview |
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The HPE P45693-B21 InfiniBand NDR transceiver provides a reliable connection for 2x400Gb data streams over single-mode fiber up to 100 meters. It fits into OSFP slots designed for high-bandwidth applications, making it a solid choice in data centers and HPC clusters that require fast, low-latency communication across longer distances without compromising signal quality. |
General Information |
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| Brand | HPE |
| Part Number | P45693-B21 |
Technical Information |
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| Media | SMF |
| Protocols | InfiniBand NDR |
Physical Characteristics |
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| Weight | 5.00 |
| Condition | Refurbished |
Product Description |
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This HPE P45693-B21 InfiniBand transceiver is built to deliver ultra-fast data transfer speeds over long distances within data center environments. It's commonly found in high-performance computing setups where rapid communication between nodes is essential. IT professionals managing storage clusters or supercomputing networks often rely on this transceiver for stable and efficient connectivity. Key Features
It's typically deployed in large-scale computing centers, research facilities, or enterprise environments where data flow speed and reliability are top priorities. Using this transceiver helps ensure seamless connectivity between powerful servers and storage nodes, facilitating efficient workload distribution and data access. |
Use Cases |
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The HPE InfiniBand NDR 2x400Gb OSFP Single-mode 100m Transceiver is primarily utilized in high-performance computing environments and large-scale data centers requiring ultra-fast data transfer over extended distances. Organizations managing complex virtualization workloads or large storage clusters benefit from its low latency and high throughput capabilities. How It's Used:
This transceiver enhances operational efficiency by providing a scalable solution for demanding network topologies, allowing enterprises to maintain high performance as infrastructure grows. Its compatibility with single-mode fiber ensures flexibility in deployment distances without compromising signal integrity or throughput. |