ENET
SFC2-NGQL-1M-ENC
10GBASE-CU SFP+ Direct Attach Copper Cable ? 1 Meter Passive DAC
The ENET SFC2-NGQL-1M-ENC?is a 10GBASE-CU SFP+ Direct Attach Copper (DAC) Cable designed for rapid, reliable connectivity in high-performance networking environments. Ideal for IT professionals, data center managers, and enterprise networks, this 1-meter passive DAC cable delivers a cost-effective, energy-saving solution for connecting SFP+ ports.
Features
Purpose-built for high-bandwidth applications, the ENET?SFC2-NGQL-1M-ENC simplifies intra-rack and short-distance switch-to-server connections without the need for additional transceivers. Fully MSA-compliant and tested for QLogic and other OEM compatibility, it ensures seamless integration into existing infrastructures.
Advanced Options
With robust copper construction and a passive signal design, this cable minimizes latency and energy usage while providing a reliable 10Gbps connection. Whether you’re linking top-of-rack switches or scaling network clusters, this DAC offers superior signal integrity and plug-and-play functionality.
Product Key Features
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?High-speed 10Gbps passive SFP+ connectivity
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?1-meter cable for short-range server-to-switch links
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?MSA-compliant and fully hot-swappable
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?Compatible with QLogic and multiple OEMs
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?Plug-and-play installation?no transceivers required
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?Energy-efficient, low-latency data transfers
Reliability & Performance
Engineered for long-term performance in enterprise and cloud environments, the ENET?SFC2-NGQL-1M-ENC ensures durability through high-grade shielding and EMI resistance. Its passive design means no additional power is required, making it not only efficient but also cooler and more reliable in dense rack setups. Hot-swappable features support zero-downtime replacements or upgrades, ensuring business continuity.
Key Features (Bullet List)
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10Gbps SFP+ to SFP+ high-speed connectivity
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1-meter passive copper cable
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Compatible with QLogic and OEM platforms
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MSA-compliant and hot-swappable
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Plug-and-play operation with no transceivers
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Low power usage, ideal for dense data environments





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