Eaton N320-405 Tripp Lite 405 ft Multimode Fiber Cable
Overview :
The Eaton N320-405 is a high-performance Tripp Lite Series duplex multimode fiber optic patch cable, specifically designed to ensure fast and clear signal transmission within local area networks. This cable is an ideal solution for connecting fiber optic hardware and network interface cards (NICs) that require multimode duplex connectivity with LC connectors. It addresses the critical need for reliable, high-bandwidth data transfer in diverse IT environments, supporting a range of applications from enterprise campus networks to data centers. Engineered for optimal network performance, the N320-405 features 62.5/125 micron duplex zipcord fiber made from high-quality glass, ensuring superior data integrity over its 405-foot length. The cable incorporates robust LC male connectors on both ends, which are thoroughly tested for stringent insertion loss standards and feature beveled edges to facilitate secure, hassle-free connections. Its low-smoke zero-halogen (LSZH) jacket is a crucial safety feature, minimizing toxic smoke emissions in the event of a fire, making it suitable for installations in poorly ventilated areas or environments with strict safety regulations. This patch cable is designed for straightforward integration into existing or new fiber infrastructures. Its orange LSZH jacket not only provides a visual distinction from singlemode cables but also contributes to its OFNR (Optical Fiber Nonconductive Riser) rating, making it safe for vertical runs within buildings. The N320-405 is compliant with RoHS specifications and undergoes individual insertion loss testing for consistent performance, providing a dependable solution for connecting network switches, servers, and storage devices.
Key Features
- Duplex 62.5/125 micron multimode fiber construction.
- LC Male connectors with secure beveled edges.
- Low-Smoke Zero-Halogen (LSZH) safety jacket.
- OFNR (Optical Fiber Nonconductive Riser) rated.
- Individually tested for minimal signal insertion loss.


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