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Product Overview |
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The Nvidia 980-9I149-00CS00 100Gb/s QSFP28 Optical Transceiver provides fast and reliable optical connectivity tailored for demanding data center environments. It fits seamlessly into systems that require high-density and high-speed data transmission, supporting modern network infrastructures with efficient and long-range optical links. |
General Information |
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| Brand | Nvidia |
| Part Number | 980-9I149-00CS00 |
Technical Information |
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| Form Factor | QSFP28 |
| Protocols | 100GbE |
Physical Characteristics |
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| Weight | 5.00 |
| Condition | Refurbished |
Product Description |
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This 100Gb/s QSFP28 Optical Transceiver is built for high-bandwidth connectivity in data centers and enterprise networks. It is commonly used in environments where rapid data exchange and low latency are essential, such as cloud infrastructure and high-performance computing clusters. Networking professionals and system integrators often rely on devices like this to upgrade or maintain robust communication links. Key Features
In practice, this transceiver is usually deployed in backbone connections and aggregation layers within data centers. It helps maintain high-speed communication between switches and servers, playing a crucial role in managing growing data traffic. Its optical design ensures stable and scalable network performance without the limitations of copper cabling. |
Use Cases |
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The Nvidia 980-9I149-00CS00 100Gb/s QSFP28 Optical Transceiver is primarily utilized in large-scale data center environments where high-throughput and low-latency optical connections are critical. IT professionals managing cloud infrastructure or hyperscale deployments benefit from its compact design and robust performance for long-distance data transfer. How It's Used:
This transceiver supports scalable network growth by delivering consistent high-speed optical links that reduce bottlenecks in demanding workloads. Its compatibility with various fiber types and compact QSFP28 form factor make it a practical choice for enhancing operational efficiency and maintaining performance in complex networking infrastructures. |