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Product Overview |
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The HP 5m 10GBase-CU SFP+ Passive Twinax Direct Attach Cable is a straightforward solution for short-range 10 Gigabit Ethernet connections. It plugs directly into compatible SFP+ ports on HP networking gear, providing a stable copper link without requiring external transceivers. This cable fits well in data center environments where minimizing power use and maximizing signal integrity over short distances matters most. |
General Information |
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| Brand | HP |
| Part Number | 537965-001 |
Technical Information |
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| Data Rate | 10 Gbps |
| Cable Length | 5 m |
| Compatibility | HP/HPE switches and servers with SFP+ (10GBase-CU) ports |
Physical Characteristics |
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| Weight | 5.00 |
| Condition | Refurbished |
Product Description |
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This HP 5m 10GBase-CU SFP+ passive twinax cable is designed to connect high-speed networking devices with direct attach connectivity. It is often found in data centers and enterprise server rooms where short-range, high-bandwidth connections are needed between switches, routers, or storage units. Built for IT professionals and network administrators, this cable provides a reliable and cost-effective solution for 10 Gigabit Ethernet links without the need for additional transceivers. Key Features
You'll typically see these cables deployed inside data centers connecting servers and switches within the same rack or neighboring racks. They help maintain fast, low-latency connections essential for applications like storage area networks or high-performance computing clusters. |
Use Cases |
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The HP 5m 10GBase-CU SFP+ Passive Twinax Direct Attach Cable is typically deployed in data center environments and enterprise IT infrastructure where short-range, high-speed connectivity is essential. It is ideal for networking professionals managing server-to-switch or switch-to-switch connections that demand low latency and minimal power consumption. How It's Used:
This cable supports operational efficiency by providing direct copper connectivity that minimizes power usage and signal degradation. Its integration in critical network segments helps maintain scalability and performance in environments where rapid data exchange is vital. |