Axiom
AXC763-10000S-AX
10G SFP+ Passive Twinax DAC Cable – 3 Meter
The Axiom AXC763-10000S-AX is a 3-meter SFP+ to SFP+ passive twinax DAC cable engineered for seamless 10 Gigabit Ethernet connectivity. Tailored to be fully compatible with Brocade and other MSA-compliant network devices, this plug-and-play cable is ideal for short-range, high-bandwidth applications in enterprise and SMB environments.
Features
Designed for top-of-rack and intra-rack connections, the AXC763-10000S-AX enables high-speed, low-latency communication between switches, servers, and storage appliances. This 10G passive DAC cable is a cost-effective alternative to optical transceivers and fiber optic cabling, making it a smart choice for data centers looking to balance performance and affordability.
Advanced Options
Fully compliant with SFF-8431 and SFF-8472 MSA standards, this cable provides broad compatibility across vendors and systems. Its passive construction means there are no internal electronics—offering simplicity, energy efficiency, and reduced potential points of failure.
Product Key Features
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High-speed 10G SFP+ to SFP+ connectivity
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3-meter length ideal for short-distance links
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Passive design eliminates need for external power
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MSA-compliant for multi-vendor compatibility
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Fully compatible with Brocade 10G SFP+ ports
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Hot-swappable and optimized for rack-to-rack environments
Reliability & Performance
Built with durable twinax copper and precision-molded SFP+ connectors, the Axiom AXC763-10000S-AX ensures high signal integrity and dependable performance in mission-critical network infrastructures. Its hot-swappable design allows for easy installation and maintenance without disrupting active systems, supporting agile and scalable deployment strategies.
Key Features (Bullet List)
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10Gbps data rate with passive twinax design
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3-meter cable for flexible, short-range connectivity
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SFP+ to SFP+ form factor for seamless interconnectivity
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Fully compatible with Brocade and MSA-compliant devices
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Plug-and-play hot-swappable deployment
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Low power consumption and minimal heat generation





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