Acconet CAT6 0.5m UTP Flylead (Patch Lead) Grey | CAT6-FLY-0.5

R13,57

Upgrade your network performance with the Acconet CAT6 0.5m UTP Flylead, engineered for lightning-fast 10Gbps data transmission. Featuring durable stranded copper and snag-free moulded boots, this compact patch lead guarantees a reliable, interference-free connection for your critical server and networking setups.

Out of stock

SKU: CAT6-FLY-0.5

Description

The Acconet CAT6 0.5m UTP Flylead (CAT6-FLY-0.5) is engineered to meet the demanding requirements of modern high-speed networks. Designed for short-distance patching in server racks, patch panels, and switch stacks, this 50cm cable minimizes clutter while delivering maximum throughput. Built with high-grade stranded copper conductors, it ensures optimal signal integrity and flexibility, making it easy to route in tight spaces without compromising performance.

  • Supports data transmission speeds of 10/100/1000/10,000 Mbps (10Gbps)
  • 0.5-meter length ideal for high-density rack and server cable management
  • Equipped with durable moulded boots to prevent snagging and protect locking tabs
  • Unshielded Twisted Pair (UTP) design suitable for standard indoor structured cabling

Frequently Asked Questions (FAQ)

Is this cable suitable for Power over Ethernet (PoE) applications?

Yes, this CAT6 flylead fully supports PoE, PoE+, and IEEE 802.3af/at standards, making it ideal for powering IP cameras, VoIP phones, and wireless access points directly from your switch.

What is the difference between solid and stranded copper used in patch leads?

This patch lead uses stranded copper conductors, which provide greater flexibility and resistance to metal fatigue from repeated bending, making it the correct choice for patch panels and equipment connections.

Will this cable achieve full 10Gbps speeds over the 0.5m length?

Absolutely. CAT6 cabling is fully rated to support 10-Gigabit Ethernet over distances up to 55 meters, meaning this 0.5m length will easily deliver maximum potential bandwidth and minimal latency.

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