WO1997022826A1 - Cable retractor - Google Patents

Cable retractor Download PDF

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Publication number
WO1997022826A1
WO1997022826A1 PCT/US1996/020349 US9620349W WO9722826A1 WO 1997022826 A1 WO1997022826 A1 WO 1997022826A1 US 9620349 W US9620349 W US 9620349W WO 9722826 A1 WO9722826 A1 WO 9722826A1
Authority
WO
WIPO (PCT)
Prior art keywords
cable
web
end plate
restrainer
retractor
Prior art date
Application number
PCT/US1996/020349
Other languages
French (fr)
Inventor
Donald F. Willmann
Original Assignee
Raytheon E-Systems, Inc.
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Raytheon E-Systems, Inc. filed Critical Raytheon E-Systems, Inc.
Priority to AU13395/97A priority Critical patent/AU1339597A/en
Priority to JP09523001A priority patent/JP2000502557A/en
Priority to EP96944904A priority patent/EP0868622A1/en
Publication of WO1997022826A1 publication Critical patent/WO1997022826A1/en

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Classifications

    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02GINSTALLATION OF ELECTRIC CABLES OR LINES, OR OF COMBINED OPTICAL AND ELECTRIC CABLES OR LINES
    • H02G3/00Installations of electric cables or lines or protective tubing therefor in or on buildings, equivalent structures or vehicles
    • H02G3/02Details
    • H02G3/04Protective tubing or conduits, e.g. cable ladders or cable troughs
    • H02G3/0462Tubings, i.e. having a closed section
    • H02G3/0475Tubings, i.e. having a closed section formed by a succession of articulated units
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B6/00Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
    • G02B6/44Mechanical structures for providing tensile strength and external protection for fibres, e.g. optical transmission cables
    • G02B6/4439Auxiliary devices
    • G02B6/4459Ducts; Conduits; Hollow tubes for air blown fibres
    • G02B6/4461Articulated
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B6/00Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
    • G02B6/46Processes or apparatus adapted for installing or repairing optical fibres or optical cables
    • G02B6/50Underground or underwater installation; Installation through tubing, conduits or ducts

Definitions

  • This invention relates to cable management and, more particularly, to an apparatus providing for a constant path length, preventing buckling for a fiber optic or electronic cable when the apparatus is folded from an extended position to a collapsed position.
  • the cable retractor of the present invention comprises a plurality of restrainer segments, typically of molded plastic, attached end-to-end by pivot pins, such that the entire cable retractor may be folded into a small space
  • a fiber optic cable is attached to the restrainer segments m a manner such that the total path length of the fiber optic cable does not substantially change as the retractor is unfolded to an extended position from a folded position
  • Each rigid restrainer segment includes a right end plate and a complementary left end plate connected by a web.
  • the end plates each have an interior side disposed toward the web and an exterior section disposed away from the web and a generally rectangular shape with a head end
  • the web has a longitudinal cross section with a straight section integral with an arcuate section
  • the web is disposed between the end plates with the arcuate section adjacent to the head section of each end plate.
  • the radius of curvature of the arcuate section is equal to or greater than the minimum permissible bend radius of a cable .
  • the cable rests longitudinally on the web and a plurality of openings in the web receive conventional cable ties to secure the cable to the web.
  • Restrainer segment ⁇ are interconnected head to tail by means of pivot pms .
  • FIGURE 1 is a perspective view illustrating a cable retractor m a collapsed position
  • FIGURE 2 is a perspective view of the cable retractor m an extended position
  • FIGURE 3 is a perspective view of a restrainer element of the cable retractor
  • FIGURE 4 is a front view of the restrainer
  • FIGURE 5 is a back view of the restrainer
  • FIGURE 6 is an end view illustrating a longitudinal cross section of the restrainer taken at section 6-6 m FIGURE 4 ;
  • FIGURE 7 is an end view of the restrainer illustrating an end plate of the restrainer
  • FIGURE 8 is a top view illustrating a lateral cross section of the restrainer taken at section 8-8 of FIGURE 4;
  • FIGURE 9 is a side view illustrating a longitudinal cross section of the cable retractor m a folded position taken at section 9-9 of FIGURE 3
  • FIGURE 10 is a side view illustrating a longitudinal cross section of the cable retractor in an expanded position taken at section 10-10 of FIGURE 2;
  • FIGURE 11 is a front view illustrating the rotation of a second restrainer segment with respect to a first restrainer segmen .
  • the fiber optic cable 100 is fixed to the restrainer segments 30 and strung around the restrainer segments 30 in such a manner that the total path length for the fiber optic cable 100 ("cable") is not changed as the retractor is folded and unfolded.
  • FIGURE 3 therein is shown a perspective view of a restrainer segment 30 having a right end plate 40 and a complimentary left end plate 50. Between the end plates 40 and 50 is a web 60.
  • FIGURES 3 and 7 illustrate the right end plate 40 as having a generally rectangular shape with a head end 42 and a tail end 44. An opening 48 is located in tail end 44 to receive a pivot pin, as will be explained.
  • the head end 42 has a generally rounded configuration having a radius of curvature greater than the minimum bend radius of a cable 100 attached to the retractor.
  • the right end plate 40 has an interior side disposed toward the web 60 and an exterior side disposed away from the web 60.
  • a pivot pin 46 is affixed to the exterior side of right end plate 40 at the head end 42.
  • the tail end 44 has a thicker cross section 49 to accommodate a recess 47 on the interior side.
  • the recess 47 is sized to receive the head section of an adjacent restrainer segment 30.
  • the complimentary left end plate 50 incorporates a head end 52 having a pivot pin 56 attached thereto, a tail end 54 having an opening 58 and a thicker cross section 59 with a recess 57.
  • Each part of the left end plate 50 is located in a position corresponding to those previously described for the corresponding part of right end plate 40.
  • the web 60 is disposed between end plates 40 and 50 and includes openings 90
  • the web 60 has a first web section 62 and a stepped down second web section 64.
  • web sections 62 and 64 have longitudinal cross sections shaped like a candy cane; i.e., having a lower straight portion and an arcuate upper portion.
  • the radius of curvature "R" of the arcuate portion is determined by the minimum bend radius of the cable 100.
  • the minimum bend radius of a cable is a function of the diameter of the cable and of the material from which the cable is formed. For fiber optic cable, a minimum bend radius less than 1 inch is not recommended.
  • the radius of curvature "R 61 " of the arcuate portion of web section 64 is slightly smaller than the radius of curvature "R 62 " for web section 62.
  • the difference in the radius of curvature provides a constant cable retractor mean bend radius allowing the retractor to function for cable of differing diameters.
  • the web 60 may have a continuous cross section with one radius of curvature or multiple cross sections, each with a different radius of curvature in order to allow concurrent use of the retractor for multiple cables of differing diameters.
  • FIGURES 9 and 10 wherein is illustrated a side cross section of a series of four interconnected restrainer segments 30 forming a cable retractor 10.
  • FIGURE 10 illustrates the cable retractor 10 in a expanded position
  • FIGURE 9 illustrates the cable retractor 10 in a folded position
  • Restrainer segments 30 are interconnected head to tail by means of the pivot pins 46 and 56.
  • pivot pins 46 and 56 located at the head end 42 and 52 of plates 40 and 50 respectively, of the first restrainer segment are inserted into openings 48 and 58 located in the tail end 44 and 54 of the second restrainer segment 30
  • the head of the second restrainer segment 30 is connected to the tail of the third segment and the head of the third segment is connected to the tail of the fourth segment all in a similar manner.
  • pivot pins 46 and 56 are molded integrally with end plates 40 and 50, however, alternatively, openings and conventional fasteners may be used as a method of connection
  • the cable 100 is fixed to the web 60 by the cable tie 92 and passes along the web around the curved portion of the web and onto the web of the second restrainer segment 30 and so on to the third and fourth restrainer segments.
  • the path length for the cable 100 does not expand or contract as the retractor 10 is lengthened or shortened.
  • the cable retractor 10 provides a rolling action similar to the action of the involute curve of a gear tooth This action is a smooth, continuous, rolling action with a minimum of slippage between the cable 100 and the cable retractor 10
  • the positional relationship of pivot point 80 and R 64 results m providing this action
  • Each restrainer segment 30 is connected to an adjacent, substantially identical restrainer segment 30 at pivot point 80.
  • Phantom lines illustrate the smooth continuous movement of adjacent restrainer segments 30.
  • Cable 100 is fixed to the restrainer segments 30 at fixed points 110 by conventional cable ties 92 passing through openings 90 (see FIGURE 4) .
  • the Greek letter THETA “ ⁇ ” used in Figure 11 represents the angular arc created as a restrainer segment 30 unfolds with respect to an adjacent restrainer segment 30.
  • the distance " 1 represents the length of cable 100 between the fixed point 110 on web 60 of a restrainer segment 30 and the tangent point ("T 1 ") where the cable touches the web 60 on an adjacent restrainer segment 30 when the retractor 10 is in a folded position.
  • the distance L 2 is the tangential ("T 2 ") length of the cable at angle ⁇ as the retractor is expanded.
  • cable retractor 100 is not expanded to a ⁇ angle over 120 degrees. Stop point 51 (shown in FIGURE 2 ⁇ prevents over expansion. When the cable retractor is fully retracted, ⁇ is 0, therefore

Abstract

A cable retractor (10) comprising interconnected restrainer segments (30) attached end-to-end by pivot pins (46, 56), such that the entire structure is foldable into a small space. A fiber optic cable (100) is attached to restrainer segments (30) in a manner such that the total path length of the fiber optic cable (100) does not substantially change as the retractor (10) is unfolded to an extended position from a folded position.

Description

CABLE RETRACTOR
TECHNICAL FIELD
This invention relates to cable management and, more particularly, to an apparatus providing for a constant path length, preventing buckling for a fiber optic or electronic cable when the apparatus is folded from an extended position to a collapsed position.
BACKGROUND OF THE INVENTION
In the telecommunications field it is necessary to organize transmission cable in an efficient manner. Failure to efficiently manage cable routing may lead to excessive wear and premature failure Special care must be taken with fiber optic cable to insure that a bend radius is kept above a certain minimum If the radius is below the minimum required for the particular type of fiber optic cable, transmission may be impaired or the cable may kink or break.
Prior art devices such as those disclosed m United States Patent Nos 5,093,997 and 5,142,606 have concentrated on maintaining the cable above a minimum bend radius but have not successfully implemented a constant path length for expanding and contracting a cable holder. SUMMARY OF THE INVENTION
The cable retractor of the present invention comprises a plurality of restrainer segments, typically of molded plastic, attached end-to-end by pivot pins, such that the entire cable retractor may be folded into a small space A fiber optic cable is attached to the restrainer segments m a manner such that the total path length of the fiber optic cable does not substantially change as the retractor is unfolded to an extended position from a folded position
Each rigid restrainer segment includes a right end plate and a complementary left end plate connected by a web. The end plates each have an interior side disposed toward the web and an exterior section disposed away from the web and a generally rectangular shape with a head end
Figure imgf000004_0001
The web has a longitudinal cross section with a straight section integral with an arcuate section The web is disposed between the end plates with the arcuate section adjacent to the head section of each end plate. The radius of curvature of the arcuate section is equal to or greater than the minimum permissible bend radius of a cable .
The cable rests longitudinally on the web and a plurality of openings in the web receive conventional cable ties to secure the cable to the web. Restrainer segmentε are interconnected head to tail by means of pivot pms .
BRIEF DESCRIPTION OF THE DRAWINGS
A more complete understanding of the present invention may be had by reference to the following Detailed Description when taken in conjunction with the accompanying drawings wherein:
FIGURE 1 is a perspective view illustrating a cable retractor m a collapsed position; FIGURE 2 is a perspective view of the cable retractor m an extended position;
FIGURE 3 is a perspective view of a restrainer element of the cable retractor,
FIGURE 4 is a front view of the restrainer, FIGURE 5 is a back view of the restrainer;
FIGURE 6 is an end view illustrating a longitudinal cross section of the restrainer taken at section 6-6 m FIGURE 4 ;
FIGURE 7 is an end view of the restrainer illustrating an end plate of the restrainer;
FIGURE 8 is a top view illustrating a lateral cross section of the restrainer taken at section 8-8 of FIGURE 4;
FIGURE 9 is a side view illustrating a longitudinal cross section of the cable retractor m a folded position taken at section 9-9 of FIGURE 3, FIGURE 10 is a side view illustrating a longitudinal cross section of the cable retractor in an expanded position taken at section 10-10 of FIGURE 2; and
FIGURE 11 is a front view illustrating the rotation of a second restrainer segment with respect to a first restrainer segmen .
DETAILED DESCRIPTION OF THE INVENTION
Reference is now made to the Drawings wherein like reference characters denote like or similar parts throughout the eleven figures. Referring to FIGURES 1 and 2, the cable retractor 10 ("retractor") of the present invention comprises four rigid restrainer segments 30, preferably of molded plastic, attached end- to-end by pivot p ns 46 and 56 such that the entire cable retractor may be folded into a small space. The fiber optic cable 100 is fixed to the restrainer segments 30 and strung around the restrainer segments 30 in such a manner that the total path length for the fiber optic cable 100 ("cable") is not changed as the retractor is folded and unfolded.
Referring to FIGURE 3, therein is shown a perspective view of a restrainer segment 30 having a right end plate 40 and a complimentary left end plate 50. Between the end plates 40 and 50 is a web 60. FIGURES 3 and 7 illustrate the right end plate 40 as having a generally rectangular shape with a head end 42 and a tail end 44. An opening 48 is located in tail end 44 to receive a pivot pin, as will be explained. The head end 42 has a generally rounded configuration having a radius of curvature greater than the minimum bend radius of a cable 100 attached to the retractor. The right end plate 40 has an interior side disposed toward the web 60 and an exterior side disposed away from the web 60. A pivot pin 46 is affixed to the exterior side of right end plate 40 at the head end 42. Referring to FIGURES 4 and 5, the tail end 44 has a thicker cross section 49 to accommodate a recess 47 on the interior side. The recess 47 is sized to receive the head section of an adjacent restrainer segment 30. As illustrated in FIGURES 3-6, the complimentary left end plate 50 incorporates a head end 52 having a pivot pin 56 attached thereto, a tail end 54 having an opening 58 and a thicker cross section 59 with a recess 57. Each part of the left end plate 50 is located in a position corresponding to those previously described for the corresponding part of right end plate 40.
Referring to FIGURES 3-5, the web 60 is disposed between end plates 40 and 50 and includes openings 90
(See Figure 4) for use in conjunction with conventional plastic cable ties 92 to secure the cable 100 to a restrainer segment 30. As illustrated in FIGURE 8, the web 60 has a first web section 62 and a stepped down second web section 64. As illustrated in FIGURE 6, web sections 62 and 64 have longitudinal cross sections shaped like a candy cane; i.e., having a lower straight portion and an arcuate upper portion. The radius of curvature "R" of the arcuate portion is determined by the minimum bend radius of the cable 100. The minimum bend radius of a cable is a function of the diameter of the cable and of the material from which the cable is formed. For fiber optic cable, a minimum bend radius less than 1 inch is not recommended. The radius of curvature "R61" of the arcuate portion of web section 64 is slightly smaller than the radius of curvature "R62" for web section 62. The difference in the radius of curvature provides a constant cable retractor mean bend radius allowing the retractor to function for cable of differing diameters. The web 60 may have a continuous cross section with one radius of curvature or multiple cross sections, each with a different radius of curvature in order to allow concurrent use of the retractor for multiple cables of differing diameters. Turning now to FIGURES 9 and 10, wherein is illustrated a side cross section of a series of four interconnected restrainer segments 30 forming a cable retractor 10. FIGURE 10 illustrates the cable retractor 10 in a expanded position and FIGURE 9 illustrates the cable retractor 10 in a folded position. Restrainer segments 30 are interconnected head to tail by means of the pivot pins 46 and 56. Referring to FIGURES 1 and 2 pivot pins 46 and 56 located at the head end 42 and 52 of plates 40 and 50 respectively, of the first restrainer segment are inserted into openings 48 and 58 located in the tail end 44 and 54 of the second restrainer segment 30 The head of the second restrainer segment 30 is connected to the tail of the third segment and the head of the third segment is connected to the tail of the fourth segment all in a similar manner. In the preferred embodiment, pivot pins 46 and 56 are molded integrally with end plates 40 and 50, however, alternatively, openings and conventional fasteners may be used as a method of connection
As illustrated in FIGURE 4, the cable 100 is fixed to the web 60 by the cable tie 92 and passes along the web around the curved portion of the web and onto the web of the second restrainer segment 30 and so on to the third and fourth restrainer segments. The path length for the cable 100 does not expand or contract as the retractor 10 is lengthened or shortened. Turning to FIGURE 11, the cable retractor 10 provides a rolling action similar to the action of the involute curve of a gear tooth This action is a smooth, continuous, rolling action with a minimum of slippage between the cable 100 and the cable retractor 10 The positional relationship of pivot point 80 and R64 (shown m FIGURE 6) results m providing this action Each restrainer segment 30 is connected to an adjacent, substantially identical restrainer segment 30 at pivot point 80. Phantom lines illustrate the smooth continuous movement of adjacent restrainer segments 30. Cable 100 is fixed to the restrainer segments 30 at fixed points 110 by conventional cable ties 92 passing through openings 90 (see FIGURE 4) . The Greek letter THETA "θ" used in Figure 11 represents the angular arc created as a restrainer segment 30 unfolds with respect to an adjacent restrainer segment 30. The distance " 1 represents the length of cable 100 between the fixed point 110 on web 60 of a restrainer segment 30 and the tangent point ("T1") where the cable touches the web 60 on an adjacent restrainer segment 30 when the retractor 10 is in a folded position. "L" changes by the relationship L2 = L, + 2π x (mean cable bend radius) x (θ/360) . The distance L2 is the tangential ("T2") length of the cable at angle θ as the retractor is expanded. Optimally, cable retractor 100 is not expanded to a θ angle over 120 degrees. Stop point 51 (shown in FIGURE 2} prevents over expansion. When the cable retractor is fully retracted, θ is 0, therefore
Although a preferred embodiment of the invention has been illustrated in the accompanying Drawings and described in the foregoing Detailed Description, it will be understood that the invention is not limited to the embodiment disclosed but is capable of numerous modifications without departing from the scope of the invention as claimed.

Claims

CLAIMSI Claim:
1. A rolling action, foldable cable retractor, comprising: at least two substantially similar adjacent and interconnected restrainer segments, each restraining segment comprising: a right end plate having a longitudinal axis and a head end and a tail end; a complimentary left end plate having a longitudinal axis and a head end and a tail end; a web having a longitudinal cross section including a substantially linear portion integral with an arcuate portion, the arcuate portion having a radius of curvature equal to or greater than the minimum bend radius of a cable attached to said web, said web attached on one side to the right end plate and on the opposite side to the complimentary left end plate with the arcuate portion at the head end of each end plate; pivot means at the head end of each end plate, said pivot means displaced from the longitudinal axis of the end plate; and pivot means in the tail end of each end plate for coupling with the pivot means of the adjacent restrainer segment, whereby the position in the pivot means in the head end and the pivot means in the tail end enable a rolling foldable action between adjacent interconnected restrainer segments.
2. The rolling action, foldable cable retractor of Claim 1 wherein the end plates further include: a wider cross section in the tail end sufficient to accommodate a corresponding recess in an interior side of the end plate, said recess sized to receive the head end of the adjacent restrainer segment.
3. A rolling action, foldable cable retractor as in Claim 1 including means for securing a cable to the web.
4. The rolling action, foldable cable retractor of Claim 1 wherein the means for connecting the cable to the web comprises a plurality of openings in the web for receiving conventional cable ties.
5. The rolling action, foldable cable retractor of Claim 1 wherein the pivot means for connecting the head end of a restrainer segment to the tail end of an adjacent restrainer segment comprises: a pivot pin affixed to the head end of each end plate, and an opening in the tail end of each end plate for receiving the pivot pin of the adjacent restrainer segment .
6. A rolling action, foldable cable retractor as in Claim 1 including a stop point on each tail end to limit over expansion between adjoining restrainer segments
7 A rolling action, foldable cable retractor as m Claim 1 wherein each web includes a plurality of longitudinal cross sections where the arcuate portion of each cross section has a radius of curvature selected to allow concurrent use of the retractor for multiple cables of differing diameters
8. A rolling action, foldable cable retractor, as set forth m Claim 6 wherein the radius of curvature of each arcuate portion of a web varies as a function of the diameter of the cable attached to the retractor and the cable material .
9. A rolling action, foldable cable retractor is set forth m Claim 5, wherein said stop point is positioned on each tail end to limit expansion of the cable retractor to not more than 120 degrees.
10. A rolling action, foldable cable retractor for maintaining a substantially fixed path length for a cable affixed thereto, comprising: at least two substantially similar restrainer segments attached end-to-end by pivot pins wherein each restrainer segment includes : a right end plate having a longitudinal axis and a head end and a tail end; a complimentary left end plate having a longitudinal axis and a head end and a tail end; a web between the right end plate and the left end plate, said web having a longitudinal cross section with a straight portion integral with an arcuate portion; each end plate having an interior side disposed toward the web and an exterior side disposed away from the web; said web attached to and between the end plates with the arcuate portion adjacent to the head end of each end plate, said arcuate portion of the web having a radius of curvature equal to or greater than the minimum bend radius of the cable longitudinally attached to the web; a recess on the interior side of each tail end of an end plate, said recess sized to receive the head end of the adjacent restrainer segment; and a pivot pin affixed to the exterior side of the head end of each end plate displaced from the longitudinal axis of the end plate, and an opening in the tail end of each end plate substantially along the longitudinal axis of the end plate for receiving the pivot pin of the adjacent restrainer segment, whereby the position of the pivot pin in the head end and the opening in the tail end enable a rolling, foldable action between adjacent interconnected restraining segments.
11. A rolling action, foldable cable retractor as in Claim 10 including a stop point on each tail end to limit over expansion between adjoining restraining segments.
12. A rolling action, foldable cable retractor as in Claim 10 wherein each web includes a plurality of longitudinal cross sections where the arcuate portion of each cross section has a radius of curvature selected to allow concurrent use of the retractor for multiple cables of differing diameters.
13. A rolling action, foldable cable retractor as set forth in Claim 11, wherein said stop point is positioned on each tail end to limit expansion of the cable retractor to not more than 120 degrees.
14. A rolling action, foldable cable retractor as in Claim 10 including means for securing a cable to the web.
PCT/US1996/020349 1995-12-21 1996-12-20 Cable retractor WO1997022826A1 (en)

Priority Applications (3)

Application Number Priority Date Filing Date Title
AU13395/97A AU1339597A (en) 1995-12-21 1996-12-20 Cable retractor
JP09523001A JP2000502557A (en) 1995-12-21 1996-12-20 Cable retractor
EP96944904A EP0868622A1 (en) 1995-12-21 1996-12-20 Cable retractor

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US57634295A 1995-12-21 1995-12-21
US08/576,342 1995-12-21

Publications (1)

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WO1997022826A1 true WO1997022826A1 (en) 1997-06-26

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JP (1) JP2000502557A (en)
AU (1) AU1339597A (en)
WO (1) WO1997022826A1 (en)

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WO2008135395A3 (en) * 2007-05-04 2009-05-28 Kabelschlepp Gmbh Strain relief unit, particularly for cables, lines or hoses
CN103022834A (en) * 2011-09-27 2013-04-03 鸿富锦精密工业(深圳)有限公司 Cable arranging device
EP2962148A4 (en) * 2013-02-27 2016-10-19 Adc Telecommunications Inc Slidable fiber optic connection module with cable slack management
US10359733B2 (en) 2015-10-09 2019-07-23 Sharp Kabushiki Kaisha Support member connection mechanism and electrical apparatus including the same

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JP2004255829A (en) * 2003-02-27 2004-09-16 Ricoh Co Ltd Harness guide and image forming device
JP2007118678A (en) * 2005-10-26 2007-05-17 Fujikura Ltd Sliding door power power feeder device and cable guide mounting method of flat cable
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EP2962148A4 (en) * 2013-02-27 2016-10-19 Adc Telecommunications Inc Slidable fiber optic connection module with cable slack management
US9958629B2 (en) 2013-02-27 2018-05-01 Commscope Technologies Llc Slidable fiber optic connection module with cable slack management
US10684435B2 (en) 2013-02-27 2020-06-16 Commscope Technologies Llc Slidable fiber optic connection module with cable slack management
US11131818B2 (en) 2013-02-27 2021-09-28 Commscope Technologies Llc Slidable fiber optic connection module with cable slack management
US11662538B2 (en) 2013-02-27 2023-05-30 Commscope Technologies Llc Slidable fiber optic connection module with cable slack management
US10359733B2 (en) 2015-10-09 2019-07-23 Sharp Kabushiki Kaisha Support member connection mechanism and electrical apparatus including the same

Also Published As

Publication number Publication date
EP0868622A1 (en) 1998-10-07
JP2000502557A (en) 2000-02-29
AU1339597A (en) 1997-07-14

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