Overview The C2G 4133 is a 7ft Cat6 UTP Ethernet network patch cable designed to deliver fast and reliable connections for Ethernet and Gigabit networks. It supports 10 Gigabit Ethernet speeds up to 180 feet and 1 Gigabit speeds up to 328 feet, making it suitable for high-bandwidth applications such as data, voice, and video distribution. Its unshielded twisted pair construction reduces electromagnetic interference, ensuring a stable and clear signal for both home and office network setups. Key features Cat6 TIA/EIA standard compliance guarantees consistent high performance for network connections Unshielded twisted pair design minimizes electromagnetic and radio frequency interference for cleaner data transmission High-quality copper conductors reduce impedance and structural return loss, lowering Near-End Crosstalk (NEXT) 7ft length provides flexibility for connecting devices without excess cable clutter Distinctive green color allows easy identification in complex network environments Supports 10 Gigabit Ethernet speeds up to 180 feet, ideal for demanding network applications Key specs Cable length: 7 feet Cable type: Cat6 unshielded twisted pair (UTP) Standards: Meets Cat6 TIA/EIA specifications Speed support: 10 Gigabit Ethernet up to 180 feet, 1 Gigabit Ethernet up to 328 feet Conductor material: High-quality copper Color: Green Connectivity and compatibility This cable is compatible with a wide range of Ethernet-enabled devices including routers, switches, hubs, and network adapters. Its Cat6 rating ensures it works well with modern Gigabit and 10 Gigabit Ethernet networks, making it a versatile choice for upgrading or expanding existing network infrastructure. Ideal uses and environments The 7ft length and interference-resistant design make this cable well suited for home offices, small business networks, and data centers where reliable high-speed connections are essential. Its clear signal transmission supports smooth streaming, fast file transfers, and stable voice communications, fitting well in setups that demand consistent network performance without signal degradation.