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Product Overview |
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The MMS4X00-NL InfiniBand NDR transceiver offers a solid solution for connecting high-speed data environments over single-mode fiber. It fits into OSFP slots and supports 2x400GB rates, making it well-suited for setups where long-reach and high throughput are key. This module plays a vital role in maintaining efficient, low-latency links in advanced computing and storage networks. |
General Information |
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| Brand | Nvidia |
| Part Number | MMS4X00-NL |
Technical Information |
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| Media | SMF |
| Protocols | InfiniBand NDR, 2x400Gb |
Physical Characteristics |
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| Weight | 5.00 |
| Condition | Refurbished |
Product Description |
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The MMS4X00-NL is a high-performance InfiniBand transceiver built to handle ultra-fast data transfer in modern data centers. It’s commonly used in environments where large-scale computing and low-latency communication are priorities, such as HPC clusters and enterprise server farms. Professionals managing mission-critical networks or high-throughput systems often rely on devices like this to maintain efficient data flow. Key Features
This transceiver is typically found in large data centers and computing facilities where fast, stable links are essential. It helps reduce bottlenecks and keeps massive data streams moving smoothly, which is crucial for scientific computing, cloud services, and AI workloads. |
Use Cases |
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The MMS4X00-NL Nvidia InfiniBand NDR transceiver is primarily deployed in high-performance computing (HPC) clusters and hyperscale data centers where ultra-low latency and high throughput are critical. Organizations running advanced AI training workloads, large-scale simulations, or real-time data analytics benefit from its ability to deliver consistent, high-bandwidth connectivity over extended distances. How It's Used:
This transceiver supports operational efficiency by providing reliable, scalable bandwidth for complex workloads that demand both speed and distance. Its compatibility with OSFP interfaces and single-mode fiber makes it a practical choice for evolving data center topologies and growth in high-speed networking requirements. |