Overview The C2G 15160 is a 20-foot Cat5e Ethernet patch cable designed to provide reliable voice, data, and video connectivity for office, classroom, and home network environments. It supports Gigabit Ethernet speeds over distances up to 328 feet, ensuring smooth file transfers and clear communication. The cable’s unshielded twisted pair (UTP) design offers flexibility for easy installation while maintaining signal integrity through bonded pairs that reduce interference. Key features Unshielded twisted pair construction that keeps the cable flexible for routing in tight spaces and behind equipment Bonded pair design maintains consistent twist spacing to minimize near end crosstalk and improve signal quality Meets TIA/EIA Cat5e standards to support dependable transmission of voice, data, and video signals Blue jacket color simplifies cable identification in environments with multiple network connections Length of 20 feet provides a practical balance between reach and cable management for desktop and rack setups Key specs Cable type: Cat5e Ethernet patch cable Length: 20 feet Data rate: Supports Gigabit Ethernet speeds Maximum run length: Up to 328 feet for Gigabit Ethernet Construction: Unshielded twisted pair (UTP) with bonded pairs Standards compliance: TIA/EIA Cat5e Color: Blue Connectivity and compatibility This cable is compatible with any device or network equipment that supports Cat5e Ethernet connections, including desktop computers, switches, routers, patch panels, and VoIP phones. Its standard RJ45 connectors ensure easy integration into existing network infrastructures without requiring adapters or special tools. Ideal uses and environments The 20-foot length and flexible design make this cable well suited for connecting desktops to wall outlets, linking patch panels to nearby switches, or extending network connections in classrooms and small office setups. Its ability to maintain signal quality at Gigabit speeds supports demanding applications such as video streaming, large file transfers, and voice communications in busy network environments.