Cablenet 10G SFP+ Direct Attach Cable 3m Juniper Compatible
This Juniper compatible 10G SFP+ Direct Attach Cable provides passive twinax connectivity for short-reach 10Gb Ethernet and 10G Fibre Channel links, eliminating separate transceivers for reduced power and cost. Available in 1m, 2m, 3m, and 5m lengths, it supports high-density rack interconnects with secure SFP+ latching and low-latency performance. Ideal for data centre, SAN, and virtualised server environments requiring reliable short-distance 10G connectivity.
- Juniper compatible 10G SFP+ DAC
- Passive twinax low-latency link
- Integrated SFP+ connectors
- 1m, 2m, 3m, 5m lengths
- Suitable for 10GbE and 10G FC
This Juniper compatible 10G SFP+ Direct Attach Cable delivers a high performance, cost-efficient interconnect for 10 Gigabit Ethernet and 10G Fibre Channel network deployments. Designed as a passive twinax assembly, it connects SFP+-equipped switches, servers, storage arrays, and network interface cards directly, eliminating the need for separate optical transceivers and reducing overall port power consumption. The cable provides low latency transmission for short-reach links within server racks or adjacent rack layouts, supporting dense network architectures with predictable electrical characteristics. Available in 1m, 2m, 3m, and 5m lengths, it provides installation flexibility for top-of-rack, end-of-row, and cabinet-to-cabinet patching, helping maintain clean routing and airflow integrity in high-density infrastructure.
Engineered to meet and exceed industry requirements for 10GbE and 10G Fibre Channel performance, this cable provides reliable signal integrity and stable throughput for demanding workloads. Integrated SFP+ module ends offer secure latching and support tool-free installation, simplifying moves, additions, and changes across live data centre environments. Suitable for virtualised compute clusters, SAN platforms, and performance-sensitive cloud deployments, the cable supports efficient utilisation of Juniper switching platforms while offering a proven alternative to short-reach optical links. It enables consistent operation, reduced power budget, and dependable service life, delivering practical high-bandwidth connectivity for modern switching fabrics and enterprise compute systems.









