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Product Overview |
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The AFBR-57G5MZ-QL1 is a 32GB Fibre Channel SFP+ transceiver optimized for short-wavelength, multimode fiber links. It fits into standard SFP+ ports and is used extensively in storage and server networks for fast, reliable data transmission over short distances. |
General Information |
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| Brand | Avago Technologies |
| Part Number | AFBR-57G5MZ-QL1 |
Technical Information |
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| Form Factor | SFP+ |
| Media | MMF |
| Type | VCSEL |
| Protocols | 32G Fibre Channel |
| Connector | LC Duplex |
Physical Characteristics |
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| Weight | 3.00 |
| Condition | Refurbished |
Product Description |
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The AFBR-57G5MZ-QL1 is a high-speed optical transceiver designed to transmit data over multimode fiber with a short wavelength of 850nm. It delivers 32Gbps Fibre Channel connectivity, ideal for storage area networks and data center environments requiring fast, reliable links. Often found in enterprise storage and server setups, this transceiver ensures low-latency and high-bandwidth communication between switches, servers, and storage arrays. It's built for IT professionals and network engineers managing fibre channel SANs who need consistent performance and easy integration. Key Features
This transceiver is typically deployed in data centers and enterprise storage networks where short-reach, high-speed communication is essential. Its reliable performance helps maintain data integrity and speeds up access to critical storage resources without interruptions. |
Use Cases |
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The AFBR-57G5MZ-QL1 SFP+ transceiver is commonly deployed in data center storage networks and enterprise IT infrastructures where high-speed short-distance connectivity is critical. It benefits environments requiring efficient multimode fiber communication within rack or adjacent rack setups, such as storage clusters and virtualized server environments. How It's Used:
This transceiver supports operational efficiency by delivering reliable high-speed data transfer over multimode fiber, reducing latency and bottlenecks in storage and compute environments. It facilitates scalable network architectures that can adapt to growing data demands without extensive infrastructure changes. |