Overview
The StarTech.com 30m (98.4ft) SC to SC Single Mode Simplex Fiber Optic Cable is a premium solution for extending your network over long distances. Designed to meet the rigorous demands of high-speed, 40G/100G networks, this cable features a low insertion loss and a high return loss, ensuring clear, uninterrupted signal transmission. Its bend insensitive nature and ceramic ferrule make it resilient against physical stress, while the Low Smoke Zero Halogen (LSZH) jacket material minimizes the release of toxic and corrosive gases in the event of a fire, making it a safer choice for your networking needs. With support for Coarse Wavelength Division Multiplexing (CWDM), this cable is not just a conduit for data but a robust tool for managing and optimizing your network's bandwidth. Whether you're setting up a new network or upgrading an existing one, the StarTech.com fiber optic cable is engineered to provide reliability, performance, and safety.
  • Supports up to 100 Gbps for high-speed data transfer
  • Low insertion loss and high return loss for efficient signal transmission
  • Bend insensitive design ensures durability and long-term performance
  • LSZH jacket for safer, low-toxicity environment
  • Bidirectional communication with CWDM support
High performance Experience seamless data transmission with the StarTech.com 30m SC to SC Single Mode Simplex Fiber Optic Cable, designed to support up to 100 Gbps. Its low insertion loss and high return loss ensure efficient signal transfer, making it suitable for high-demand applications. Durable design Built with a Low Smoke Zero Halogen (LSZH) jacket and a ceramic ferrule, this cable is not only bend insensitive with a bending radius of 10 mm but also prioritizes your safety by emitting less toxic and corrosive gas when exposed to high heat. Advanced technology Featuring Coarse Wavelength Division Multiplexing (CWDM) support and a wavelength range of 1260-1625 nm, this cable is engineered for bidirectional communication and is equipped to handle the demands of modern networks.