Brief: Watch as we walk through the full process, from initial setup to real-world testing of the PCCA Copper SFP+ to SFP+ Passive Cable. This video demonstrates how this 10Gbps cable provides a cost-effective connectivity solution for networking equipment from major brands like Cisco, HP, and H3C. You'll see its compatibility, installation steps, and applications in data centers and enterprise networks.
Related Product Features:
Provides a 10 Gbps data transfer speed for high-performance networking applications.
Features a passive copper cable design for reliable and cost-effective connectivity.
Constructed with a 30 AWG wire diameter for optimal signal integrity over short distances.
Offers a standard 3-meter cable length suitable for intra-rack and adjacent rack connections.
Compatible with major switch brands including Cisco, HP, H3C, Juniper, and Huawei.
Supports 10 Gigabit Ethernet, 10 Fibre Channel, and other industry-standard protocols.
Includes a 3-year warranty for long-term reliability and peace of mind.
Available with OEM/ODM services for custom branding on product labels and packaging.
FAQs:
What types of equipment is this SFP+ cable compatible with?
This cable is compatible with a wide range of major switch brands, including Cisco, HP, H3C, Juniper, Huawei, IBM, and Linksys. It is designed for use with 10Gb/s host systems in networking, storage, and telecommunications applications.
What is the maximum data speed and supported applications for this cable?
The cable supports a data speed of 10 Gbps and is suitable for 1-8G Fibre Channel and 1-10G Gigabit Ethernet applications. It is ideal for use in hubs, switches, routers, servers, and network interface cards (NICs).
What is the advantage of using a passive copper SFP+ cable over optical transceivers?
Passive copper SFP+ cables offer a highly cost-effective solution for very short-distance connections within and between adjacent racks. They provide reliable performance at a lower cost compared to optical transceivers, making them ideal for budget-conscious deployments without sacrificing speed.