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Product Overview |
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The Cisco 32Gb/s Fibre Channel Multi-mode Fiber SFP+ Transceiver Module is a compact device designed to provide high-speed fiber channel connectivity over short distances. It fits into Cisco switches and storage devices, enabling fast data transfers within data centers and enterprise storage environments without adding complexity. |
General Information |
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| Brand | Cisco |
| Part Number | 10-3206-01 |
Technical Information |
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| Form Factor | SFP+ |
| Media | MMF |
| Type | VCSEL |
| Protocols | 32Gb/s Fibre Channel |
| Connector | LC Duplex |
Physical Characteristics |
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| Weight | 3.00 |
| Condition | Refurbished |
Product Description |
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This Cisco SFP+ transceiver module enables fast and efficient data transfer over multi-mode fiber, operating at 32Gb/s speeds. It is built for short-range fiber channel applications, commonly found in data centers and enterprise storage networks where quick and reliable connectivity is essential. Designed for IT professionals managing SANs and high-throughput storage systems, this module fits into existing Cisco hardware to boost performance and maintain network stability. Key Features
This module is typically deployed within data centers where storage arrays and servers require fast and dependable fiber channel links. Its role is crucial in minimizing bottlenecks and maintaining continuous data flow in storage applications. |
Use Cases |
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The Cisco 32Gb/s Fibre Channel Multi-mode Fiber SFP+ Transceiver Module is primarily deployed in data center environments where high-speed, short-reach fiber connectivity is crucial. IT administrators and storage network engineers benefit from its ability to support intensive storage workloads and maintain low latency between servers and storage arrays in consolidated rack or cluster configurations. How It's Used:
This transceiver module enables streamlined connectivity in complex storage networks by delivering consistent performance and scalability. Its compatibility with multi-mode fiber and short-reach design helps optimize data paths within dense hardware environments, reducing downtime and improving overall network agility. |