Cablenet 10G SFP+ Direct Attach Cable 2m Cisco Compatible
This Cisco compatible 10G SFP+ Direct Attach Cable provides passive twinax connectivity for 10Gb Ethernet and 10G Fibre Channel devices, delivering low latency links without separate transceivers. Available in 1m, 2m, 3m, and 5m lengths, it supports high port density, low power operation, and reliable rack level interconnects in data centre and enterprise environments. It delivers secure latching, simplified installation, and dependable signal integrity for clustered compute, storage fabrics, and virtualised workloads in structured rack environments.
- Cisco compatible 10G SFP+ DAC
- Passive twinax, low latency
- Integrated SFP+ connectors
- 1m, 2m, 3m, 5m lengths
- Suited to 10GbE and 10G FC
This Cisco compatible 10G SFP+ Direct Attach Cable provides a high performance, cost effective interconnect for 10 Gigabit Ethernet and 10G Fibre Channel deployments in data centre, enterprise, and storage environments. As a passive SFP+ copper assembly, it enables direct connection between SFP+ equipped switches, servers, and storage systems without the need for separate optical transceivers, reducing power consumption and overall deployment cost. The twinax copper design delivers low latency operation for short reach links within racks or between adjacent racks, supporting high port density and flexible equipment configuration. Available in 1m, 2m, 3m, and 5m variants, it provides installation versatility for top of rack, end of row, and equipment shelf layouts, helping maintain neat cable routing and airflow management in high density architectures.
Engineered to meet and exceed industry standards for 10 Gigabit Ethernet and 10G Fibre Channel, this cable supports reliable signal integrity and consistent throughput across critical workloads. The integrated SFP+ connectors offer secure latching and fast tool free deployment, delivering repeatable connectivity for frequent equipment changes and server refresh cycles. This solution is suited to virtualised compute clusters, cloud platforms, SAN environments, and high throughput application stacks where predictable, low latency performance and operational efficiency are required. It provides a proven alternative to optical links for short distance connections, supporting efficient cabling, simplified maintenance, and dependable infrastructure performance across modern networked systems.









