Special order — estimated OEM lead time 3–8 weeks. Order today and we expect to receive stock between Oct 5 and Nov 9, then process your delivery right after.
Genuine Innovation First International through authorized distribution — NDAA §889 screened before checkout. TAA verified on request.
SKU
Category
Cable Management
Country of origin
China
Country of origin is manufacturer-reported and can vary by production lot. Where TAA applies to your purchase, we verify the shipping unit's origin on request.
Overview
High Density Cable Managers feature a wider T-Finger duct, allowing for higher density cable management between each finger. It features a hinged cover that is easily removed and attached with its plastic clips.
Large pass-through holes make it easy for large bundles of cables to be routed into the duct from the other side of the cable manager. The Horizontal High Density Cable Manager comes in 1U and 2U sizes.
Plastic Double-Sided Horizontal Cable Managers are perfect for organizing a large amount of cables on both sides of the server rack within the same U-Space. Both sides of the cable manager feature a finger duct design with cable pass-through holes that allow cables to be routed into each duct.
The removable plastic cover easily slides on and off on both sides, making it easy to re-work cabling or make changes. Fingers on each side of the cable manager separate cables being fed through the duct, making it easier to identify them.
Standard Horizontal Cable Managers are used to organize and secure cables for all types of equipment and an ideal accessory for organizing patch cables. This cable manager comes with a plastic cover that can slide on and off easily.
The finger duct design allows cables coming from patch panels and cables to be separated and easily organized. Rear pass-through holes allow cables to easily be routed into the duct from the back.
Highlights
For exceptional quality, upright compatibility and reliability use this cable manager type
Cable Duct cable manager type allows you to effectively utilize most of the space available with maximum dependability