Abstract:
A cable manager includes a trough, defining a footprint, and a door. At least one side of the trough is formed from a plurality of finger-like projections extending forwardly from a support member. At least two of the projections include a hinge boss disposed at an outer end thereof and extending inwardly. At least one edge of the door has a hinge structure disposed therealong that includes an outer arm and an inner arm defining a hinge channel therebetween. The hinge bosses are disposed within the hinge channel such that the door is rotatably attached along at least one of its longitudinal edges to the trough. The door is rotatable to an open state without extending beyond the footprint of the trough.
Abstract:
System for distributing cabling. In an embodiment, a unit comprises two levels. Each level comprises openings, on two opposing surfaces, arranged in a row parallel to a first axis, with each opening opposite to one opening on the opposing surface. Each level comprises parallel main conduits between the surfaces. Each main conduit is angled relative to a second axis, intersecting the surfaces and orthogonal to the first axis, such that each main conduit connects an opening on one surface to an opening on the other surface that is offset by one opening from its opposing opening on the other surface. A divergent conduit connects openings on one of the two surfaces to an opening on a third surface, and an articulated conduit, angled relative to a third axis that is orthogonal to the first and second axes, connects an opening on one level to an opening on the other level.
Abstract:
A rack system includes one or more racks each configured to receive at least one distribution module. Each rack includes management sections located at the front of the rack; troughs located at the rear of the rack; horizontal channels extending between the management sections and the trough; a storage area located at a first of opposing sides of the rack; a front vertical channel that connects to the storage area and at least some of the management sections; and a travel channel at the rear of the first rack that connects the storage area to the troughs.
Abstract:
In a system having a cluster of system components interconnected by a cluster interconnect fabric, the system components include out-of-band management network interfaces to an out-of-band management network. The system is configured to use the cluster interconnect fabric and the out-of-band management network interfaces to determine the overall connectivity and status of the cluster.
Abstract:
A cable management system for cable management in an equipment rack includes a support bracket having a body extending between a mounting end and a distal end. The mounting end is configured to attach to the equipment rack, and the body has a tie down slot configured to receive a cable tie down. A cable bar is coupled to the distal end of the support bracket, wherein the cable bar has a tie down slot configured to receive a cable tie down.
Abstract:
A wall mount cabinet is disclosed. The wall mount cabinet includes a rear section having a first end and a second end, and a front section hingedly connected to the rear section at a pivot point. The rear section has a cutout area adjacent the first end, and the cutout area allows access for cables to enter the cabinet. The pivot point is adjacent the cutout area and the first end of the rear section. The cutout area allows cables to rotate about the pivot point when the cabinet is moved from a closed position to an open position.
Abstract:
A telecommunications system including a frame to which telecommunications equipment is mounted. The frame defines a patch panel region and an active equipment region. Patch cords are interconnected between the patch panel region and the active equipment region. The system further includes a slack storage panel that stores patch cord slack. The slack storage panel defines a single cable routing pathway. The patch cords are routed through the slack storage panel such that no portion of the length of each patch cord overlaps itself. In systems including both copper and fiber cables, the copper cables are routed separately from the fiber cables.
Abstract:
A telecommunications system including a frame to which telecommunications equipment is mounted. Fiber cables exiting the equipment are routed upward along each of the right and left sides of the frame. The fiber cables routed along the right and left sides merge within a horizontal trough section of a cable exit assembly. The cable exit assembly is located adjacent to the top of the frame and defines a single common exit point at which the merged fiber cables exit the frame.
Abstract:
A cable manager provides horizontal cable management of adjacent patch panels or network equipment on network distribution racks. The cable manager includes a central section and a front cable routing section and is mountable on a network rack, such as an EIA rack. The central section has a longitudinal width sized to fit within the network rack, a front side, a rear side, and rack mounting holes provided on opposite longitudinal ends of the central section. The front cable routing section extends from the front side of the central section and includes a plurality of spaced fingers having an arcuate surface that provides bend radius control. A slit provides flexibility to the fingers. Ears extend laterally from the fingers. The cable manager can also include a rear cable routing section that includes a second plurality of spaced fingers. One or more passthrough openings can be provided in the central section to allow routing of cabling from the front section to the rear section. Either or both of the front and rear sections can include a removable cover. The cover may be hingedly connected.
Abstract:
A cable slack manager apparatus for use in a zone box comprises a base plate and two or more cable slack management members. The cable slack management members may be releasably secured to the base plate and may comprise at least two straight portions and a rounded portion positioned therebetween. The management members may be angled relative to a front edge of the base plate. A distance between slack management members and opposing sidewalls of the base plate may be progressively smaller for slack management members positioned closer to the front edge of the base plate. Various configurations are possible.