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Transition S4TEF1029-111-NA Mux SC Single RJ-48 T1/E1 Media Converter
- Media Converter
- Mux SC Connector (Single-Mode Fiber)
- RJ-48 Interface
- Supports T1/E1 Transmission
- Extends T1/E1 circuits over fiber
- Enables long-distance connectivity
- Designed for telecommunications and networking
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Product Overview
The Transition S4TEF1029-111-NA is a Mux SC media converter. It converts signals between a Single-Mode Fiber (SMF) SC connector and an RJ-48 interface, specifically designed for T1/E1 transmission lines. This device enables the extension of T1/E1 circuits over fiber optic networks.
Technical Information
| Product Type | Media Converter |
| Fiber Connector | SC (Single-Mode) |
| Copper Interface | RJ-48 |
Additional Specifications
| Supported Lines | T1/E1 |
| Brand | Transition |
| Model | S4TEF1029-111-NA |
Product Description
The Transition S4TEF1029-111-NA is a specialized media converter designed to bridge the gap between copper-based T1/E1 circuits and single-mode fiber optic networks. It features an SC connector for the fiber optic side, which is standard for single-mode fiber applications, allowing for long-distance transmission with minimal signal loss. On the copper side, it provides an RJ-48 interface, which is commonly used for terminating T1 (1.544 Mbps) and E1 (2.048 Mbps) digital signal lines. This device is crucial for extending the reach of these critical communication lines beyond the limitations of copper cabling. This media converter facilitates the multiplexing (Mux) of T1/E1 signals onto a fiber optic strand, enabling them to travel much greater distances than possible over traditional copper wiring. This is particularly valuable in scenarios where T1/E1 services need to be delivered across campuses, between buildings, or in environments with high electromagnetic interference where copper lines would be unreliable. The conversion process ensures that the integrity and timing of the digital signals are maintained throughout the transmission. The S4TEF1029-111-NA is built for reliability and performance in demanding network environments. It is often deployed in telecommunications infrastructure, enterprise networks, and service provider networks where robust and extended connectivity for T1/E1 services is required. By leveraging fiber optics, it offers immunity to electromagnetic interference and provides a secure, high-bandwidth pathway for critical data transmission.

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