All-in-one solution: Includes an ICC 5-foot cable ladder rack, a wall mount and relay rack bracket, J-bolts, and protective end caps to secure horizontal cable runs from an open frame server rack to the wall
High-Capacity Cable Management: Supports 500 lb load capacity at 50% fill across a 12-inch wide runway, ideal for data centers, telecom closets, and network environments. Prevents sagging and cable strain, while enabling a clean, structured transition between equipment racks and wall-mounted paths
Easy Installation: Relay bracket rests flat on top of the rack frame and fastens using 3/8" J-bolts. Multiple hole patterns allow the ladder rack to be mounted parallel or perpendicular. Wall bracket and hardware included to reduce on-site assembly time
Built to Last: ICC Ladder Racks are made in the USA using high-strength 16 Gauge cold-rolled steel with a black powder-coated finish that resists scratches, moisture, and corrosion. Compliant with Section 889 for use in U.S. government installations
Scalable for Growing Networks: Easily expandable with additional ICC runway sections and fittings as part of a complete system - supports evolving infrastructure needs and maintaining compliance with TIA cable routing standards
وصف
The ICC Ladder Rack 5-Foot Cable Runway Rack-to-Wall Mount Kit offers a complete solution for horizontally routing and securing network cables between racks and walls in data centers, telecommunications rooms, and IT environments. This all-in-one kit includes a 5-foot straight ladder rack, a wall mount bracket, a relay rack bracket, a pair of end caps, and all necessary rack-top mounting hardware—streamlining the installation process and ensuring long-term cable support. Constructed from 16 Gauge cold-rolled tubular steel with a black powder-coated finish, the ladder rack supports cable pathways, making it ideal for managing large cable bundles in structured cabling systems. ICC's kit is designed to integrate flawlessly with its existing ladder rack components, delivering a professional appearance while supporting TIA-compliant cable pathways and reducing mechanical stress on cables.