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Product Overview |
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The Cisco Meraki MA-SFP-1GB-SX is a fiber transceiver module that plugs into Meraki switches to enable 1 Gigabit short-range fiber connections. It fits into SFP slots and is commonly used to extend network links over multimode fiber within buildings or campus networks, offering a reliable and straightforward way to manage network expansion and connectivity. |
General Information |
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| Brand | Cisco |
| Part Number | MA-SFP-1GB-SX |
Technical Information |
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| Form Factor | SFP |
| Media | MMF |
| Type | VCSEL |
| Protocols | 1000BASE-SX (Gigabit Ethernet) |
| Connector | LC Duplex |
Physical Characteristics |
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| Weight | 5.00 |
| Condition | Refurbished |
Product Description |
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The Cisco Meraki MA-SFP-1GB-SX is a 1 GbE small form-factor pluggable (SFP) transceiver designed for short-distance fiber connections. It is often found in local area networks where reliable and fast data transfer over multimode fiber is needed. Network administrators and IT professionals commonly use this module to extend network reach while maintaining high performance. Key Features
This transceiver is typically deployed in enterprise networks, data centers, and campus environments where short-range fiber links are essential. It helps connect switches and other network devices over fiber, ensuring consistent speeds and reducing interference compared to copper connections. |
Use Cases |
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The Cisco MA-SFP-1GB-SX transceiver is commonly deployed in campus and enterprise networks where short-range, high-speed fiber connections are necessary. IT teams managing network infrastructure in educational institutions, corporate offices, and data centers will find it effective for extending Gigabit Ethernet links over multimode fiber within buildings or between nearby facilities. How It's Used:
This transceiver supports operational efficiency by simplifying network expansion and maintenance through hot-swappable design. It allows organizations to scale their fiber-based connections without significant downtime, ensuring consistent performance in environments demanding resilient and manageable network architectures. |