The invention relates to a console for a distribution device for optical waveguide cables.
Optical waveguide cables generally comprise a central element as the supporting structure and a large number of bundle cores. The optical waveguide cable may be subjected to external forces, the central element generally absorbing all longitudinal forces. A bundle core in turn comprises a number of optical waveguide fibers having a common sheathing. Optical waveguide fibers have a certain degree of sensitivity to moisture, which changes the transmission response of the fibers. Plastics are only capable to a restricted extent of suppressing the diffusion of moisture. Optical waveguide cables are therefore known which have a metal foil, preferably an aluminum foil, as diffusion protection against moisture beneath the outer cable sheathing. This metal or aluminum foil may be at an unspecified electrical potential owing to external electromagnetic fields and therefore needs to be grounded.
The invention is therefore based on a technical problem of providing a console for a distribution device for optical waveguide cables, by means of which a flexible mechanical and, if necessary, electrical connection of the metallic sheathing of an optical waveguide cable is made possible.
The technical problem is solved by the subject matter having the features of claim 1. Further advantageous configurations of the invention are given in the dependent claims.
In this regard, the console for a distribution device for optical waveguide cables which consists of plastic comprises an upper side, a lower side and side faces, at least one angled sheet-metal part being arranged on a side face. Then, an optical waveguide cable can be connected mechanically, for example by means of a clip, via this angled sheet-metal part in a simple manner.
An arrangement on a side face is therefore also not to be understood as it bearing completely against the side face, but the angled sheet-metal part being spaced apart from the side face at least at one point.
In a preferred embodiment, the angled sheet-metal part is screwed to the upper side of the console.
In a preferred embodiment, the angled sheet-metal part is connected to the ground plate, which is arranged on the upper side of the console. The angled sheet-metal part can in this case be designed to be integral with the ground plate or else can be connected to it via a screw connection, for example. The ground plate preferably covers the upper side of the console completely.
In a further preferred embodiment, the angled sheet-metal part is designed with a desire bending point which is preferably realized via a taper. The desired bending point is in this case further preferably arranged in the direct vicinity of the upper side of the console in order to achieve a maximum bending distance. Owing to the desired bending point, the mechanically fixed optical waveguide cable can be bent back outwards in a defined manner, for example in order to replace defective lower parts of a housing.
In a further preferred embodiment, a fixing element for fixing a central element of an optical waveguide cable is arranged on the angled sheet-metal part. Preferably, the fixing element comprises a jaw having an indentation or notch and a plate which can be screwed.
In a further preferred embodiment, pedestal feet, which have holes, are arranged on the lower side of the console. As a result, the console can be screwed detachably to a housing lower part by means of a screw connection, which also makes it possible to replace defective housing lower parts in addition to a modular design.
In a further preferred embodiment, a ground strip is fixed to the upper side of the console, which ground strip is used for the electrical connection to an aluminum foil of an optical waveguide cable. Preferably, in this case the ground strip is screwed to the angled sheet-metal part and the console. Further preferably, the ground strip is in this case bent such that it bears against the optical waveguide cable on the side opposite the angled sheet-metal part.
In a further preferred embodiment, the upper side of the console has a round central region, from which rests protrude in the form of a star. Owing to the rests, the angled sheet-metal part is supported on the upper side of the console and has a distance from the side faces of the console, with the result that fixing between the optical waveguide cable and the angled sheet-metal part is simplified. The number of rests in this case corresponds to the number of optical waveguide cables to be fixed.
In a further preferred embodiment, a fixing limb, which is used for connection to a carrier system, is arranged on the upper side of the console. In this case, the fixing limb is preferably screwed to the ground plate and console.
Application fields of the console according to the invention are distribution devices for optical waveguide cables, such as sleeves, cable splitters or sealing ends, for example.
The invention will be explained in more detail below with reference to a preferred exemplary embodiment. In the figures:
First, the manner in which the optical waveguide cables 2 are connected will be explained with reference to
The bundle core guide 90 comprises a central web 91, which splits an outer edge 92 into two guides 93, 94 (see
Number | Date | Country | Kind |
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10 2007 010 854.2 | Mar 2007 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP08/01154 | 2/15/2008 | WO | 00 | 8/26/2009 |