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Product Overview |
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The TN-SFP-LX3 from Transition Networks is a compact SFP transceiver designed to extend Gigabit Ethernet links via single-mode fiber. It fits into standard SFP ports on network devices and supports up to 30km transmission using a 1310nm wavelength, making it suitable for connecting distant network segments without sacrificing speed or reliability. |
General Information |
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| Part Number | TN-SFP-LX3 |
Technical Information |
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| Form Factor | SFP |
| Media | SMF |
| Type | LX |
| Protocols | 1000Base-LX |
| Connector | LC Duplex |
Physical Characteristics |
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| Weight | 5.00 |
| Condition | Refurbished |
Product Description |
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This SFP transceiver module provides a reliable solution for extending Gigabit Ethernet connections over single-mode fiber. Built for long-distance communication, it supports data transfer rates of 1.25Gb/s and can reach distances up to 30 kilometers using a 1310nm wavelength. Often found in enterprise networks, data centers, and service provider infrastructure, the module allows seamless fiber connectivity where copper cabling falls short. Network administrators and IT professionals benefit from its straightforward deployment and compatibility with various networking equipment. Key Features
This module is commonly deployed in environments where long-range fiber optic links are required, such as campus backbones and metropolitan networks. Its use simplifies network expansion and helps maintain consistent performance across dispersed locations. |
Use Cases |
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The TN-SFP-LX3 transceiver is ideal for environments requiring reliable long-distance network links over single-mode fiber. It is best suited for enterprises, data centers, and service providers needing to connect dispersed network segments with minimal latency and high stability. How It's Used:
This transceiver supports network scalability by enabling efficient fiber connections across substantial distances without compromising throughput. Its compatibility with standard SFP ports ensures seamless integration into existing network architectures, facilitating operational continuity in complex deployments. |