In today's rapidly evolving digital landscape, network performance has become critical for businesses across all sectors. Data transmission delays or connectivity interruptions can result in significant operational disruptions, missed opportunities, and compromised user experiences.
The latest OM4 LC/LC duplex fiber optic patch cables represent a significant leap forward in network infrastructure technology. These cables are specifically engineered to support 100Gbps transmission speeds, meeting the demands of modern high-performance computing environments.
The cables utilize Corning® optical fiber, known for its low-loss characteristics and high bandwidth capabilities. At 850nm wavelength, the fiber provides 3500MHz-km bandwidth, while at 1300nm wavelength, it delivers 4700MHz-km bandwidth.
Transmission distance capabilities vary by protocol:
The cables feature a durable low-smoke zero-halogen (LSZH) jacket suitable for both indoor and outdoor deployment. With a 2.0mm outer diameter, they maintain flexibility while ensuring robust protection for the optical fibers.
Available lengths range from 0.5 meters to 300 meters, with longer cables provided on spools for convenient deployment. The LC duplex connectors incorporate secure latching mechanisms to prevent accidental disconnection.
Facilitating high-density server interconnections and storage area networks, supporting cloud computing and big data applications.
Enabling high-bandwidth applications such as video conferencing and large file transfers across corporate networks.
Suitable for backbone connections in core networks and access networks, supporting current and next-generation communication technologies.
Providing low-latency interconnects for computing clusters used in scientific research, financial modeling, and engineering simulations.
Withstanding harsh environmental conditions while maintaining reliable data transmission for automated control systems.
Manufacturing processes adhere to ANSI/TIA/EIA-455-171-A-2001 attenuation standards. Each cable undergoes rigorous testing and is supplied with complete performance documentation.
In today's rapidly evolving digital landscape, network performance has become critical for businesses across all sectors. Data transmission delays or connectivity interruptions can result in significant operational disruptions, missed opportunities, and compromised user experiences.
The latest OM4 LC/LC duplex fiber optic patch cables represent a significant leap forward in network infrastructure technology. These cables are specifically engineered to support 100Gbps transmission speeds, meeting the demands of modern high-performance computing environments.
The cables utilize Corning® optical fiber, known for its low-loss characteristics and high bandwidth capabilities. At 850nm wavelength, the fiber provides 3500MHz-km bandwidth, while at 1300nm wavelength, it delivers 4700MHz-km bandwidth.
Transmission distance capabilities vary by protocol:
The cables feature a durable low-smoke zero-halogen (LSZH) jacket suitable for both indoor and outdoor deployment. With a 2.0mm outer diameter, they maintain flexibility while ensuring robust protection for the optical fibers.
Available lengths range from 0.5 meters to 300 meters, with longer cables provided on spools for convenient deployment. The LC duplex connectors incorporate secure latching mechanisms to prevent accidental disconnection.
Facilitating high-density server interconnections and storage area networks, supporting cloud computing and big data applications.
Enabling high-bandwidth applications such as video conferencing and large file transfers across corporate networks.
Suitable for backbone connections in core networks and access networks, supporting current and next-generation communication technologies.
Providing low-latency interconnects for computing clusters used in scientific research, financial modeling, and engineering simulations.
Withstanding harsh environmental conditions while maintaining reliable data transmission for automated control systems.
Manufacturing processes adhere to ANSI/TIA/EIA-455-171-A-2001 attenuation standards. Each cable undergoes rigorous testing and is supplied with complete performance documentation.