- Brand: Vention
- Model: IPGW0-5
- Type: RJ45 Cat6 UTP Keystone Coupler
- Color: Black
- Quantity: 5 Pieces per Pack
- Interface: RJ45 Female to RJ45 Female
- Category: Cat6 (Backward compatible with Cat5e/Cat5)
- Shielding Type: UTP (Unshielded Twisted Pair)
- Contact Material: Phosphor Bronze with Gold Plating
- Housing Material: ABS (Flame Retardant)
- Transmission Bandwidth: 250MHz
- Transmission Speed: 1Gbps
- Dimensions: Standard Keystone Form Factor
- Packaging: Retail Poly Bag (5 Units)
CABLES & CONNECTORS, NETWORKING, Plugs & Adaptors
Vention NETWORK Keystone Jack CAT6 UTP Coupler Black IPGW0-5 (5-pack)
16,00 €
The Vention Cat6 UTP Keystone Coupler 5-Pack offers a professional-grade solution for high-density networking environments and bulk installations. These female-to-female RJ45 inserts allow for the immediate extension of Ethernet cables through wall plates or patch panels without the time-consuming process of wire stripping or punching down. Finished in a sleek black, these couplers provide a clean, professional aesthetic while maintaining the rigorous performance standards required for Gigabit Ethernet. This multi-pack is specifically curated for resellers and contractors who require consistent quality and value for larger residential or commercial projects.
- Efficient Bulk Solution: Convenient 5-pack ensures you have the necessary components for multi-room installations or full patch panel setups.
- Seamless Plug-and-Play: Connects two pre-terminated Cat6 patch cords instantly, reducing installation time and labor costs.
- Reliable Data Flow: Optimized for Cat6 specifications, supporting high-speed data transfer up to 1Gbps with minimal signal loss.
- Enhanced Connectivity: Gold-plated phosphor bronze contacts ensure maximum conductivity and long-term resistance to corrosion.
- Secure Snap-In Design: Built to the international standard keystone dimension for a perfect, secure fit into any compatible faceplate or blank panel.
- Robust Build Quality: High-impact ABS housing provides excellent heat resistance and physical durability for demanding network environments.
















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