Surplus-length box for an optical fibre.
Abstract
The invention relates to a receiving device for a supply length of an optical line, with a flat storage space in which the supply length is wound at a radial distance around a central core and the ends are led out through peripheral openings, of which a free end can be pulled out while reducing the winding diameter. with lateral guide walls orthogonal to the central core and with outer peripheral walls to limit the winding diameter. In order to enable an end of an optical line to be pulled out and pushed back without jamming in the case of an extremely flat construction, it is provided that the distance between the guide walls (6 to 10 or 11 to 16) is slightly larger than the width of the optical line (1 to 5) and smaller than 1.3 times this width, that the turns of the optical line run spirally in one plane, that the extractable end (32) from the radially outer turn is formed, and that the other fixed end outside the wall plane leads over the outer turns to the innermost turn.

Term
Term ended
Projected expiry passed 9 September 2006, 20 years ago.
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13 claims: 13 independent, 0 dependent
- 1Receiving device for a supply length of an optical line, with a flat storage space, in which the supply length is wound at a radial distance around a central core and the ends are led out through circumferential openings, of which a free end can be pulled out while reducing the diameter of the winding, with lateral, for central core orthogonal guide walls as well as with outer circumferenceGwalls to limit the winding diameter, characterized in that the distance between the guide walls (6 to 10 or 11 to 16) larger than the width of the optical line (1 to 5) and smaller than 1.3 times this width, that the turns of the optical line run spirally in one plane, that the extractable end (32) from the radial outer turn is formed, and that the other fixed end outside the wall plane leads over the outer turns to the innermost turn. 1. Aufnahmeeinrichtung für eine Vorratslänge einer optischen Leitung, mit einem flachen Speicherraum, in welchem die Vorratslänge mit radialem Abstand um einen zentralen Kern gewunden und mit den Enden durch Umfangsöffnungen herausgeführt ist, von denen ein freies Ende unter Verkleinerung des Windungsdurchmessers herausziehbar ist, mit seitlichen, zum zentralen Kern orthogonalen Führungswandungen sowie mit äußeren Umfanggwandungen zur Begrenzung des Windungsdurchmessers, dadurch gekennzeichnet, daß der Abstand zwischen den Führungswandungen (6 bis 10 bzw. 11 bis 16) größer als die Breite der optischen Leitung (1 bis 5) und kleiner als das 1,3-fache dieser Breite ist, daß die Windungen der optischen Leitung spiralförmig in einer Ebene verlaufen, daß das herausziehbare Ende (32) von der radial außen liegenden Windung gebildet ist, und daß das andere fest verlegte Ende außerhalb der Wandungsebene über die äußeren Windungen hinweg zur innersten Windung führt.
- 2Anordnung nach Anspruch 1, dadurch gekennzeichnet, daß der Durchmesser d des Kerns (17 bis 21) größer als 40 mm ist. 2nd Arrangement according to claim 1, characterized in that the diameter d of the core (17 to 21) is greater than 40 mm.
- 3Anordnung nach Anspruch 1 oder 2, dadurch gekennzeichnet, daß die Anzahl n Windungen n = k · beträgt, mitd = Durchmesser des KernsD = maximaler Durchmesser der äußersten Windungdo= Breite der optischen Leitung0,2 < k < 0,3, insbesondere k = 0,25. 3rd Arrangement according to claim 1 or 2, characterized in that the number n turnsn = k is withd = diameter of the coreD = maximum diameter of the outermost turndO= Width of the optical line0.2 <k <0.3, in particular k = 0.25.
- 5Arrangement according to one of claims 1 to 4, characterized in that the optical line is a ribbon cable (1 to 5) with firmly connected optical fibers or round wires arranged side by side. 5. Anordnung nach einen der Ansprüche 1 bis 4, dadurch gekennzeichnt, daß die optische Leitung eine Bandleitung (1 bis 5) mit festverbunden nebeneinander angeordneten Lichtwellenleitern oder Rundadern besteht.
- 6Arrangement according to one of claims 1 to 5, characterized in that the permanently installed end (32) of the optical line runs obliquely from a plane outside the winding plane and radially outside beginning at least approximately to the circumferential surface of the core in a guide channel (groove 34, 35). 6. Anordnung nach einem der Ansprüche 1 bis 5, dadurch gekennzeichnet, daß das fest verlegte Ende (32) der optischen Leitung von einer Ebene außerhalb der Windungsebene und radial außen beginnend schräg bis zumindest annähernd zur Umfangsfläche des Kerns hin in einem Führungskanal (Rinne 34, 35) verläuft.
- 7Arrangement according to claim 6, characterized in that the guide channel (grooves 34, 35) is at least partially open to one of the flat sides of the receiving device. 7. Anordnung nach Anspruch 6, dadurch gekennzeichnet, daß der Führungskanal (Rinnen 34, 35) zumindest teilweise zu einer der Flachseiten der Aufnahmeeinrichtung hin geöffnet ist.
- 8Anordnung nach einem der Ansprüche 5 bis 7, dadurch gekennzeichnet, daß der Kanal rechteckig entsprechend den Querschnittsabmessungen einer Bandleitung (2) gestaltet ist und in der Weise geschränkt verläuft, daß sich seine breitere Seite radial außen parallel zur Richtung der Windungsebene und radial innen (Stelle 33) parallel zur Mantelfläche des Kerns (18) und dieser benachbart erstreckt. 8th. Arrangement according to one of claims 5 to 7, characterized in that the channel is rectangular in accordance with the cross-sectional dimensions of a ribbon cable (2) and is set in such a way that its wider side extends radially outside parallel to the direction of the winding plane and radially inside (point 33) parallel to the outer surface of the core (18) and extending adjacent.
- 9Arrangement according to one of claims 1 to 8, characterized in that the conductors of the pull-out end of the optical line (5) are connected to plug elements (41) which are arranged together with the receiving device in an end termination housing. 9. Anordnung nach einem der Ansprüche 1 bis 8, dadurch gekennzeichnet, daß die Leiter des herausziehbaren Endes der optischen Leitung (5) mit Steckerelementen (41) verbunden sind, welche gemeinsam mit der Aufnahmeeinrichtung in einem Endabschlußgehäuse angeordnet sind.
- 10Anordnung nach einem der Ansprüche 1 bis 9, dadurch gekennzeichnet, daß mindestens zwei Aufnahmeeinrichtungen koaxial übereinander angeordnet sind (Figur 7). 10th Arrangement according to one of claims 1 to 9, characterized in that at least two receiving devices are arranged coaxially one above the other (Figure 7).
- 11Arrangement according to claim 10, characterized in that the receiving devices are connected to one another by means of interlocking and possibly latching elements. 11. Anordnung nach Anspruch 10, dadurch gekennzeichnet, daß die Aufnahmeeinrichtungen mittels formschlüssig und gegebenenfalls rastend ineinandergreifender Elemente miteinander verbunden sind.
- 12Anordnung nach einem der Ansprüche 1 bis 11, dadurch gekennzeichnet, daß die Führungswandungen zumindest einseitig aus mindestens drei sich radial erstreckenden Führungsspeichen (11 bis 16) bestehen, welche im mittleren Bereich durch Einführungsschlitze (27, 31) getrennt sind. 12th Arrangement according to one of claims 1 to 11, characterized in that the guide walls consist at least on one side of at least three radially extending guide spokes (11 to 16) which are separated in the central region by insertion slots (27, 31).
- 13Arrangement according to claim 12, characterized in that the insertion slots (27, 31) run obliquely to the tangent of the turns of the optical line (1 to 5). 13. Anordnung nach Anspruch 12, dadurch gekennzeichnet, daß die Einfü'hrungsschlitze (27, 31) schräg zur Tangente der Windungen der optischen Leitung (1 bis 5) verlaufen.
Independent claims13
24 paragraphs, as filed
The invention relates to a receiving device for a supply length of an optical line, with a flat storage space, in which the supply length is wound at a radial distance around a central core and the ends are led out through circumferential openings, one end of which can be pulled out while reducing the winding diameter with side guide walls orthogonal to the central core and with outer circumferential walls to limit the winding diameter.
Such an arrangement is known from DE-OS 32 48 003. Optical fibers are placed in loops with several turns. When one end is pulled out, there is a risk of the turns becoming jammed with one another, so that it is no longer possible to push them back in. The storage of ribbon cables, which consist of several firmly connected optical fibers, would also require high storage containers in accordance with the number of turns to be laid next to each other.
The invention has for its object to design the receiving device of the type mentioned in such a way that a jam-free pulling out and reinserting one end of an optical line, which can optionally be a ribbon line, is possible with an extremely flat construction.
The solution is achieved in that the distance between the guide walls is greater than the width of the optical line and less than 1.3 times this width, that the turns of the optical line are spiral in one plane, that the extractable end of the radial outer turn is formed, and that the other fixed end outside the turn plane leads over the outer turns to the inner turn.
The spiral laying of the turns radially one above the other results in extremely flat containers. The turns are guided in a defined order. One end can be pulled out or pushed back in easily and jamming is impossible if the pull-out end is formed by the radially outer turn. Therefore, a large number of turns can be wrapped without problems. Even with small radial dimensions of the receiving device according to the invention, large storage lengths can be accommodated therein.
The diameter of the core should advantageously be greater than 40 mm, in particular greater than 50 mm, so that one end of the optical line does not fall below the permissible minimum bending radius even when the end of the optical line is completely pulled out.
The storage space is optimally used if the number n of turns n = k. D - d with do<ul id="ul0001" list-style="none"><li>d = diameter of the core,</li><li>D = maximum diameter of the outermost turn</li><li>d<sub>O</sub>= Width of the optical line</li><li>0.2 <k <0.3, in particular k = 0.25.</li></ul>
The change in diameter of the turns caused by pulling out or pushing in one end of the optical line is not impeded by the fixed end of the optical line which is to be led in from outside, if the fixed end of the optical line is from a plane outside the winding plane and radially outside starting obliquely to at least approximately to the peripheral surface of the core in a guide channel.
Such a guide channel is advantageously at least partially open to one of the flat sides of the receiving device, so that it can be manufactured easily and the end of the optical line can be inserted easily.
A preferred embodiment for inserting a ribbon cable is characterized in that the channel is rectangular in accordance with the cross-sectional dimensions of a ribbon cable and is set so that its wider side radially outside parallel to the direction of the winding plane and radially inside parallel to the outer surface of the core and this extends adjacent. This ensures that practically no increase in the receiving device is required for the permanently installed end, because this runs flat in the space required for the guide wall anyway. In addition, sharp bends are avoided. A subsequent turn is not already in the setting area of the fixed end, but only when it runs in parallel to the outer surface of the core.
Several of the receiving devices according to the invention can be arranged coaxially one above the other and can be connected by means of interlocking, possibly latching elements.
It is not necessary for the lateral guide walls to be designed as closed flange surfaces. A preferred embodiment is characterized in that the guide walls consist, at least on one side, of at least 3 radially extending guide spokes which are separated in the middle area by insertion slots. The turns of the optical lines can be inserted through the slots. If these run obliquely to the tangent of the turns of the optical line, later accidental sliding out is prevented.
A further advantageous embodiment is characterized in that it has a central winding part which can be detachably inserted into an outer part which forms the outer peripheral walls and radially outer partial sections of the lateral guide walls.
The invention is explained in more detail with reference to the description of exemplary embodiments shown in the drawing.<ul id="ul0002" list-style="none"><li>Figure 1 shows a two-part receiving device according to the invention for storing several turns of a ribbon-shaped optical line</li><li>FIG. 2 shows a cross section along line AB through the embodiment according to FIG. 1</li><li>Figure 3 shows a one-story design similar to Figure 1, but with an insertion channel for the fixed end of the optical line</li><li>Figure 4 shows a cross section along the line CD of Figure 3</li><li>Figure 5 shows a typical application example for recording devices according to the invention</li><li>FIG. 6 shows a cross section through the arrangement according to FIG. 5</li><li>FIG. 7 shows a cross section through two receiving devices stacked one above the other</li><li>FIG. 8 shows a further application example for the use of a receiving device according to the invention.</li></ul>
In the exemplary embodiments, receiving devices according to the invention are each shown for receiving flat band-shaped optical lines 1 to 5. Such ribbon cables consist of several individual optical fibers connected flat next to each other. The free height between the lateral guide walls, namely the closed rear walls 6 to 10 on the one hand and the front walls consisting of radial spokes 11 to 16 on the other hand, is then to be selected slightly larger than the width of the ribbon cables measured in the flat plane. It should not exceed 1.3 times this width, so that a smooth and orderly spiral guide is ensured.
However, if the receiving device according to the invention is to be used for storing round wires or individual optical fibers, the free height is slightly more than the diameter of the wires or lines.
The diameter of the cores 17 to 21 is 50 mm. In the case of direct contact with the core, the minimum bending radii of the innermost turn are certainly larger than the minimum permissible value for optical fibers.
The diameter D of the outer guide walls 22 to 26 is preferably 1.8 to 2.2 times the core diameter d. This ratio results in a good absorption capacity with relatively small external dimensions. The outer guide walls do not necessarily have to be cylindrical, but they can also consist of planar elements that abut one another at an angle, to which the outermost turn lies at points.
Given values for D and d as well as for the diameter do of a round core or an optical waveguide or the thickness of a ribbon cable (smaller cross-sectional side), there is a maximum extendable length if the number n of turns is approximately n = k. D - d is chosen with k = 0.25. However, values of do 0.2 L k <0.3 also lead to practical results.
In the embodiment shown in FIGS. 1 and 2, only 3 windings of the optical ribbon cable 1 are drawn for better illustration, which can be threaded through the insertion slots 27, which, as in the other figures, run obliquely to the tangential direction of the windings, so that an inadvertent sliding out of the inserted turns is prevented. However, if, as in the exemplary embodiment, the receiving device consists of detachably intermeshed parts, the winding part 28 and the outer part 29, the windings can also be wound around the core 17 of the winding part 28 in a simple manner before the two parts are joined together. The fixed part of the ribbon cable 1 leading to the inner turn is freely guided between the contact on the circumference of the core 17 and the radially outer holder 30. In this area, the cross-sectional plane of the ribbon cable 1 twists by 90<sup>0</sup> from a position directed flat to the plane of the guide walls into a position parallel to the peripheral surface 17. It cannot be completely ruled out that the section of the ribbon cable 1 guided freely over the windings lies against the windings underneath and hinders their sliding. If, as in the exemplary embodiments, radial spokes 11 serve as guide walls, between which large areas remain open, so that the windings are accessible, any jams can be easily released.
In particular, if several of the receiving devices according to the invention according to FIG. 7 are to be stacked on one another, an embodiment according to FIGS. 3 and 4 is recommended. The ribbon cable 2 is introduced through the oblique slots 31 of the spoke-like guide walls 12. In contrast to the embodiment, which is similar in principle, according to FIGS. 1 and 2, the fixed end 32 of the ribbon cable 2 is guided in an insertion channel up to the exit point 33. It initially runs flat through a downwardly open channel 34 of the guide wall 7 and enters near the circumferential surface of the core 18 into the receiving space between the guide walls 7 and 12. It then runs steadily up to the angle of 90<sup>0</sup> rotating at the point 33, through a groove 35 in the core 18 which is open towards the side of the walls 12. Therefore, the end 32 cannot obstruct the spiral windings, since it is through walls of the insertion channel consisting of the grooves 34 and 35 against contact with the following Is shielded. When shaping the channel 35, care must be taken that the minimum permissible bending radius of the optical waveguide is not exceeded at any point. The course of the setting is determined in a predetermined manner.
A typical area of application for receiving devices according to the invention is a connecting sleeve according to FIG. 5, of which only one housing plate 36 is designated. The reserve length of the first ribbon cable 3 is accommodated in the receiving device 37, that of the ribbon cable 4 in the similar recording device 38. For the convenient production of the splices 39, the stored reserve lengths can first be pulled out and pushed back into the receiving device after the splices have been completed.
In FIG. 7, in the event that instead of a ribbon cable 4 fewer optical fibers containing and accordingly narrower ribbon cables are fed, two stacked receiving devices are shown, each with receiving spaces adapted to the narrower widths of the individual ribbon cables.
FIG. 8 shows an end termination for a ribbon cable 5. The reserve lengths required for making the connections of the individual optical fibers 40 with plug-in elements 41 are stored in the receiving device 43.
4 sheets
Sheet 1 Sheet 2 Sheet 3 Sheet 4
Every citation, both ways
| Document | Relation | Office | Cited during |
|---|---|---|---|
| US10973094B2 | Cited by | United States of America | Applicant |
| US10966295B2 | Cited by | United States of America | Applicant |
| WO2008149016A1 | Cited by | World Intellectual Property Organization (WIPO) | International search |
| EP1975660A3 | Cited by | European Patent Office (EPO) | Search report |
| US10571115B2 | Cited by | United States of America | Applicant |
| US10713915B2 | Cited by | United States of America | Applicant |
| DE202016101234U1 | Cited by | Germany | Applicant |
| US10932339B2 | Cited by | United States of America | Applicant |
| US6014713A | Cited by | United States of America | Search report |
| US11028972B2 | Cited by | United States of America | Applicant |
| US7809236B2 | Cited by | United States of America | Applicant |
| EP0519210A3 | Cited by | European Patent Office (EPO) | Search report |
| US11428370B2 | Cited by | United States of America | Applicant |
| US10560992B2 | Cited by | United States of America | Applicant |
| FR2916282A1 | Cited by | France | Search report |
| US10690296B2 | Cited by | United States of America | Applicant |
| US11333308B2 | Cited by | United States of America | Applicant |
| EP1975660A2 | Cited by | European Patent Office (EPO) | Search report |
| US11073275B2 | Cited by | United States of America | Applicant |
| EP0519210A2 | Cited by | European Patent Office (EPO) | Search report |
| EP0106192A1 | Cites | European Patent Office (EPO) | Search report |
| DE2721300A1 | Cites | Germany | Search report |
| US3773987A | Cites | United States of America | Examiner |
| JPS57148704A | Cites | Japan | Examiner |
8 members in 4 offices
Priority claims5
| Document | Office | Kind | Date |
|---|---|---|---|
| 3532314 | Germany | A | |
| 3532314 | Germany | A | |
| 3532314 | Germany | – | |
| 3532314 | – | – | – |
| DE19853532314 | – | – | – |
Members8
| Document | Office | Kind | |
|---|---|---|---|
| DE3532314A1 | Germany | A1 | |
| EP0214701A2This record | European Patent Office (EPO) | A2 | |
| JPS6265884A | Japan | A | |
| EP0214701A3 | European Patent Office (EPO) | A3 | |
| US4765708A | United States of America | A | |
| EP0214701B1 | European Patent Office (EPO) | B1 | |
| DE3684063D1 | Germany | D1 | |
| JP2593851B2 | Japan | B2 |
27 legal events, as 3 offices reported them to INPADOC
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| Gb: european patent ceased through non-payment of renewal feeCeasedGBPC | GBPC | EP | |
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Numbers
- Publication
- 0214701
- Publication, DOCDB
- 0214701
- Publication, EPODOC
- EP0214701
- Application
- 86201546
- Application, DOCDB
- 86201546
- Application, EPODOC
- EP19860201546
Titles3
- German
- Aufnahmeeinrichtung für eine Vorratslänge einer optischen Leitung
- English
- Surplus-length box for an optical fibre
- French
- Boucle de surlongueur pour une fibre optique
Classification
- CPC, 4
- G02B6/4453
- G02B6/4452
- G02B6/44528
- G02B6/44524
- IPC, 7
- G02B6 00
- B65H51 20
- B65H54 10
- B65H75 12
- B65H75 38
- G02B6 24
- G02B6 44
Designated states3
- Contracting states, 3
- Germany
- France
- United Kingdom