UniFi Ethernet Patch Cable with Bendable Booted RJ45 Connectors
The UniFi Ethernet Patch Cable is purpose-built for organizations deploying UniFi infrastructure across enterprise networks, data centers, and distributed installations. This ultra-thin Cat6 patch cable with bendable booted RJ45 connectors solves the critical challenge of cable management in high-density rack environments where space is premium and routing flexibility is essential. Whether you're managing a campus network, expanding your UniFi deployment, or optimizing existing infrastructure, this certified Cat6 solution delivers reliable connectivity with superior cable routing capabilities.
Featuring a compact 3 mm outer diameter and TIA-568-B.2 Cat6 certification, the UniFi patch cable enables seamless integration into tight spaces without compromising performance. Available in lengths from 0.1 m to 8 m, it adapts to any network topology—from equipment interconnects to distributed access points and switch deployments.
Key Features
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Bendable Booted RJ45 Connectors — Flexible strain relief for superior cable routing in high-density racks and confined spaces
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Ultra-Thin 3 mm Diameter — Reduces cable bulk for cleaner installations and improved airflow in network closets
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Cat6 Certified — Meets TIA-568-B.2 channel test requirements for reliable Gigabit Ethernet performance
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Multiple Length Options — Available from 0.1 m to 8 m to support diverse network topologies and deployment scenarios
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UniFi Infrastructure Optimized — Engineered specifically for UniFi access points, switches, and controller deployments
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Enterprise-Grade Construction — Durable booted connectors protect against accidental disconnection and environmental stress
Technical Specifications
| Specification |
Details |
| Manufacturer |
Strategic Sourcing |
| Part Number |
U-CABLE-PATCH-RJ45-BL |
| Cable Type |
Cat6 Ethernet Patch Cable |
| Connector Type |
RJ45 (Bendable Booted) |
| Outer Diameter |
3 mm |
| Available Lengths |
0.1 m, 0.5 m, 1 m, 2 m, 3 m, 5 m, 8 m |
| Certification |
TIA-568-B.2 Cat6 Channel Test |
| Application |
UniFi Infrastructure, Enterprise Networks, Data Centers |
| Connector Boot |
Flexible, Strain-Relief Design |
Frequently Asked Questions
What is a bendable booted RJ45 connector and why does it matter?
Bendable booted RJ45 connectors feature flexible strain relief that allows the cable to bend at sharper angles without kinking or damaging internal conductors. This is critical in high-density rack environments where space constraints require cables to route around equipment, switches, and other infrastructure. The boot protects the connector from accidental disconnection and environmental stress, extending cable lifespan in demanding deployments.
Is this Cat6 patch cable compatible with all UniFi devices?
Yes, this UniFi Ethernet Patch Cable is compatible with all UniFi infrastructure components including access points, switches, controllers, and gateway devices. The Cat6 certification ensures reliable Gigabit Ethernet performance across your entire UniFi network topology, whether you're connecting equipment in a central location or distributing connectivity across a campus or multi-building deployment.
How does the 3 mm ultra-thin diameter improve network installations?
The ultra-thin 3 mm outer diameter reduces cable bulk significantly compared to standard patch cables, enabling cleaner cable management in confined spaces. This compact profile improves airflow in network closets and equipment racks, reduces clutter in cable trays, and makes it easier to route cables through conduit or existing infrastructure without exceeding bend radius limits.
What lengths are available and how do I choose the right one?
The UniFi Ethernet Patch Cable is available in seven lengths: 0.1 m (equipment interconnects), 0.5 m, 1 m, 2 m, 3 m, 5 m, and 8 m (distributed deployments). Choose the shortest length that reaches your destination to minimize cable slack, reduce clutter, and maintain optimal airflow. For access point deployments across multiple floors or buildings, the 5 m and 8 m options provide flexibility for distributed network topologies.