Source: https://patents.google.com/patent/GB2166262A/en
Timestamp: 2019-12-11 23:30:28
Document Index: 81123645

Matched Legal Cases: ['art 42', 'art 44', 'art 44', 'arts 46', 'arts 42', 'arts 46', 'arts 58', 'arts 58', 'art 73', 'arts 75', 'arts 46', 'art 73']

GB2166262A - Optical cable terminating cabinet - Google Patents
Optical cable terminating cabinet Download PDF
GB2166262A
GB2166262A GB08521448A GB8521448A GB2166262A GB 2166262 A GB2166262 A GB 2166262A GB 08521448 A GB08521448 A GB 08521448A GB 8521448 A GB8521448 A GB 8521448A GB 2166262 A GB2166262 A GB 2166262A
GB08521448A
GB8521448D0 (en
GB2166262B (en
James Dundas Pue-Gilchrist
1984-10-25 Priority to CA000466325A priority Critical patent/CA1249741A/en
1985-08-29 Application filed by Northern Telecom Ltd filed Critical Northern Telecom Ltd
1985-10-02 Publication of GB8521448D0 publication Critical patent/GB8521448D0/en
1986-04-30 Publication of GB2166262A publication Critical patent/GB2166262A/en
1988-09-14 Publication of GB2166262B publication Critical patent/GB2166262B/en
1 GB 2166262 A 1
Optical cable terminating equipment This invention relates to an optical waveguide ter minating assembly for use where optical cables enter or leave a central office or an external cable access location.
Prior optical cable terminating arrangements for use in a central office environment are generally mounted for access from both front and rear. In such arrangements, removal of a front panel ex poses a series of connectors which are connected from one side via optical waveguides to light sources or detectors. Pigtail fibers extending from the remote side of the connectors are spliced to the waveguides of incoming optical cables and mounted within a splice organizing tray, several of which are stacked and secured at the rear of the cabinet so as to be exposed when a cabinet rear panel is removed.
In a more recent implementation of a fiber optic test access and patch cabinet produced by Western Electric, access is only possible from the front sur face of the cabinet but the area of the cabinet against a rear supporting well is comparatively large since a connector array is located vertically above a series of stacked organizing trays so that once the panel is removed either one of the trays or the connectors is easily accessed.
In order to save space within the central office or outside plant location, an optical cable terminating equipment according to the present invention com prises a cabinet, a removable cover at the front of the cabinet, an array of optical connectors 100 mounted within the cabinet, a stack of optical splice organizing trays mounted within the cabinet and cable entry and cable exit means in opposed sides of the cabinet, wherein the connectors are mounted on a panel pivotable about a vertical axis to permit the removal of the connectors from the cabinet interior so as to expose the stack of organ izing trays, the trays mounted at the rear of the cabinet and being readily removable from the front of the cabinet.
The panel can be mounted on a hinge having a vertical axis, the panel mounted to the hinge by an angled mounting arrangement whereby the panel can be pivotted so as to fully expose the interior of the cabinet. The panel preferably has optical wave guide organizing channels attached thereto for guiding optical waveguide pigtail fibers extending from opposed parts of the connectors around a ra dius sufficiently large to maintain stress on the fi ber of an acceptably low level. The channels can have apertures therethrough to receive flexible ca ble and waveguide clamps. The arrangement can have a hinge support portion mounted to the cabi net at one side of the opening and a corresponding hinged portion attached to the panel. The cabinet can have a further hinge support portion on the other side of the opening so that the hinged panel can be inverted to transfer the hinge locations from one side of the opening to the other to permit the panel to be pivotted out of the opening on 130 either the right- or left-hand side. To take account of the cable guiding requirement, the channels can be removable from the panel for fixture at an opposed edge thereof when the hinged panel is transferred from one hinge support portion to the other.
The cabinet preferably has cable chutes or ducts attached to the outside of the cabinet side walls, the cabinet side walls also having apertures therein adjacent a lower end of the chutes to permit the cables to be guided into the cabinet interior. Preferably the fiber lengths within the cabinet are such that cabled fiber entering at one side of the cabinet extends via cable clips to the other side of the cab- inet and then enters input ends of the optical splice organizing trays. Similarly fibers from the output sides of the trays can be directed fowardly and pass close to said other side of the cabinet and then be directed towards said one side of the cabi- net before entering one of the guiding channels.
By guiding fiber in this way sharp bends in the fiber which would cause untenable stresses are avoided. The connectors preferably include at least one part having a flange buttable against the panel, aligned holes being formed within the flange and the panel to receive snap rivets. The stacked trays can be clipped together by engaging means associated with each tray. The lowest of the stacked trays can be clipped to an upstanding por- tion on a support bracket integral with a rear wall of the cabinet. A plurality of cable clips can be attached to a floor of the cabinet adjacent the rear surface of the cabinet. The front cover can include a plurality of angled tabs whereby the front cover can rest in a partially open position, the tabs being removable from slots within a floor of the cabinet to allow total withdrawal of the front cover.
An embodiment of the invention will now be described by way of example with reference to the accompanying drawings in which:- Figure 1 is a perspective view part cut away of a cable terminating equipment of the present invention; Figure 2 is a schematic plan view showing the interior of the Figure 1 cabinet with optical connectors and splice organizing trays mounted within the cabinet; and Figure 3 is a schematic plan view corresponding to Figure 2 but showing a connector array and a stack of splice organizing trays removed from the interior of the cabinet to allow test or repair ac cess.
Referring in detail to Figure 1, there is shown a parallelopiped cabinet 10 having a series of splice organizing trays 12 mounted on a bracket 14 at the rear of the cabinet and an array of optical connec tors 16 mounted on a panel 18 at the front of the cabinet.
The panel 18 is hinged to the cabinet 10 at one side of the front opening and can be pivotted from a position shown in Figure 2 to the position shown in Figure 3 to expose the interior of the cabinet. The stack of splice organizing trays 12 can then be detached from the bracket 14 and removed from the position shown in Figure 2 to that shown in 2 GB 2 166 262 A 2 Figure 3 whereby both the connectors and the splice organizing trays are readily accessible for re pair, replacement or testing.
The cabinet can stand alone or several can be mounted in a vertical array. Each cabinet has brackets 20 attached to the outside surface of op posed sides, the brackets 20 in a vertically ordered array of cabinets forming vertical guides for guid ing input cables 22 and output cables 24. For ease of reference, the cables and fibers are shown only in Figures 2 and 3. The input cables 22 extend through an aperture 26 in one side wall 28 and the output cables 24 extend through an aperture 30 in opposed side wall 32. The fibers of the input cable are exposed back to a point adjacent to the aper ture 26. Plastic support tubes 34 are threaded onto the exposed fibers and the tube end portions are strapped into grooves of an exposed portion of ca ble core. The tubes are retained by resilient plastic clips (not shown) attached to the floor of the cabi net, the clips acting to guide the supported wave guides laterally underneath the stacked trays 12.
The tubes 34 containing waveguides are bundled by plastic retaining devices (not shown) and the bundle bends round towards trays 12 where indi vidual waveguides are divided out and enter ap propriate trays. The trays 12 can be of the type described in our co-pending United States patent application serial number 560,541, filed 12 Decem ber 1983, each tray having a series of grooves 36 or holders each of which can hold an optical splice package such as that described in our co-pending patent application. Within each splice package a fi ber of the input cable 22 is attached to a pigtail fi ber 40 which extends back to one part 42 of a connector 16. The pigtail fibers 40 are accommo dated within a channel section part 44 which is screw attached to the panel 18. Part 44 has a num ber of apertures (not shown) at which flexible ties can be mounted to anchor the pigtail fibers in a bundle. On the remote side of the panel 18 are op tical fiber connector parts 46 which engage respec tive connector parts 42. Ths two parts of each connector together with pigtail fibers 40 and 48 can be purchased as a single unit from Dorran.
Each of the connector parts 46 has a flange 50 through which extend bores aligned with corre sponding bores within the panel 18. The connec tors are fixed into apertures 52 within the panel by driving plastic snap rivets into the aligned bores.
Suitable rivets can be obtained from Richco under the specification number SR530. The pigtail fibers
48 extend from the cabinet to corresponding con nectors at opticallelectrical conversion equipment (not shown).
The panel has top and bottom rails 54 and 56 in tegral with angled parts 58. Aligned apertures ex tend through the angled parts 58. Screws 62 extend through respective apertures and locate within bushes 64 to mount the panel between studs 66 integral with the cabinet top and bottom walls.
The lower bush 64 is sufficiently long to allow clearance for a double channel member 68. As pre viously discussed, the member 68 has a first chan-130 nel 44 which guides pigtail fibers from the splice trays to the connector parts at the rear surface of the panel 18. A second channel 70 provides support for pigtail fibers 48 on the front side of the panel which extend as a bundle through the aperture 30 and. are guided up the associated bracket 20 to the optical/electrical conversion equipment. The channel 70 is sufficiently wide that fibers are not curved more tightly than the required radius of curvature for acceptable waveguide stress.
As previously indicated, the splice trays 12 are, for example, of the design described in our copending patent application mentioned previously. The lower tray extends between upstanding tabs 72 and has a lip which engages underneath the upstanding part 73 to clamp the lowest tray. Because the trays are clipped together at retaining parts 75 the whole stack of trays is clamped in position against a back wall 74 of the cabinet.
The unit is particularly adapted for ready access to both the front and back connector parts 46 and 42 respectively and the splice organizing trays 12. To gain complete access, front cover 76 is removed by pushing the cover to disengage spring clips 78 from retention flanges (not shown). The cover 76 is then removed from the cabinet by lifting to extract tabs 82 from slots 84. The panel 18 is then pivotted on the hinge from the position shown in plan view in Figure 2 to the position shown in plan view in Figure 3. At this point if the fault or test target is one of the splice trays 12, the stack of trays is removed by lifting the stack to dis engage the lip on the bottom tray from the upstanding part 73. The stack of trays 12 together with the jacketed fibers interconnecting the connector panel 18 to the trays can then be bought forward out of the cabinet to allow easier working or testing. Before extracting the wiring, the cable or sheathed fiber must first be extracted from ca- ble and fiber retaining clamps (not shown) within the cabinet.
Depending on the location of the cabinet, the panel can be made to hinge either to the left as shown in Figures 1 to 3 or to the right. To change the direction in which the panel pivots, the hinge hardware is moved from the left-hand side of the opening to engage with corresponding studs at the right-hand side of the opening and the panel is inverted so that the top bracket 58 becomes the bottom bracket.
1. An optical cable terminating equipment comprising a cabinet, a removable cover at the front of the cabinet, an array of optical connectors and a stack of optical splice organizing trays mounted within the cabinet, and cable entry and cable exit means in opposed sides of the cabinet, characterized in that the connectors are mounted on a panel pivotable about a vertical axis to permit removal of 3 GB 2 166 262 A 3 the connectors from the cabinet interior to expose the stack of splice organizing trays, the trays mounted at the rear of the cabinet then being readily removable from the front of the cabinet.
2. Equipment as claimed in claim 1 further characterized in that the panel is mounted on a hinge having a vertical axis, the hinge axis located at one side of the front of the cabinet.
3. Equipment as claimed in claim 1 further characterized in that the panel is mounted to the hinge by angled mounting brackets whereby the panel can be pivotted so as to fully expose the interior of the cabinet.
4. Equipment as claimed in claim 1 further characterized in that the panel has optical waveguide organizing channels attached thereto for guiding optical waveguides from the input and output cables around a radius greater than a predetermined magnitude.
5. Equipment as claimed in claim 4 further characterized in that the channels have apertures therethrough to receive flexible cable and waveguide clamps.
6. Equipment as claimed in claim 2 further characterized in that the cabinet has hinge support portions mounted to the cabinet at opposite sides thereof and a corresponding hinge supported portion attached to the panel the two hinge support portions enabling the panel to be mounted to either side of the cabinet to permit left- or righthand opening.
7. Equipment as claimed in claim 1 further characterized in that the cabinet has cable guides attached to outside cabinet side walls, the cabinet side walls having apertures therein adjacent lower ends of the guides to permit the cables to be guided into the cabinet interior.
8. Equipment as claimed in claim 1 further characterized in that cable fixture means are an- chored to the cabinet interior, the fixture means functioning: (1) to guide an input cable from an entry position at one side wall across to the opposing wall, adjacent to which opposing wall fibers fan out to the stack of splice organizing trays; (ii) to guide an output cable from an entry position at the opposed side wail across to said one side wall where fibers fan out to connector parts on one face of the panel, and; (iii) to guide an internal fiber bundle in a serpentine disposition from connector parts at the reverse face of the panel towards one of the cabinet sides across to the opposed cabinet side to a fan out at the splice organizing trays.
Printed in the UK for HMSO, D8818935, 3186, 7102. Published by The Patent Office, 25 Southampton Buildings, London, WC2A IlAY, from which copies may be obtained.
GB08521448A 1984-10-25 1985-08-29 Optical cable terminating equipment Expired GB2166262B (en)
CA000466325A CA1249741A (en) 1984-10-25 1984-10-25 Optical cable terminating equipment
GB8521448D0 GB8521448D0 (en) 1985-10-02
GB2166262A true GB2166262A (en) 1986-04-30
GB2166262B GB2166262B (en) 1988-09-14
GB08521448A Expired GB2166262B (en) 1984-10-25 1985-08-29 Optical cable terminating equipment
DE4107228A1 (en) * 1990-03-20 1991-09-26 Loh Kg Rittal Werk Optical cable splice-box - includes termination manifold chassis with telescopic and hinged system for optimum access
FR2660077A1 (en) * 1990-03-20 1991-09-27 Loh Rittal Werk Gmbh Co Connecting housing for optical fibers.
FR2682488A1 (en) * 1991-10-15 1993-04-16 Capelle Bruno Optical fiber modular cables head of high capacity.
SG50504A1 (en) * 1993-09-10 1998-07-20 British Telecomm Splice tray
JP4524436B2 (en) * 2001-04-25 2010-08-18 ネッツエスアイ東洋株式会社 Extra length optical cable processing structure
1984-10-25 CA CA000466325A patent/CA1249741A/en not_active Expired
1984-10-29 US US06/665,636 patent/US4708430A/en not_active Expired - Lifetime
1985-08-29 GB GB08521448A patent/GB2166262B/en not_active Expired
1985-10-18 JP JP60231428A patent/JPS61103108A/en active Pending
EP0341027A3 (en) * 1988-05-02 1989-12-27 Gte Products Corporation Fiber distribution panel
EP0349290B1 (en) * 1988-06-29 1993-08-11 BRITISH TELECOMMUNICATIONS public limited company Patch panel
EP0356942A3 (en) * 1988-08-29 1991-03-13 Gte Control Devices Of Puerto Rico Incorporated 1550nm fiber distribution panel
ES2545032R1 (en) * 2011-12-22 2015-09-22 Tyco Electronics Raychem Bvba Region for isolated joints, with removable wall
CA1249741A1 (en)
GB8521448D0 (en) 1985-10-02
US4708430A (en) 1987-11-24
GB2166262B (en) 1988-09-14
JPS61103108A (en) 1986-05-21
CA1249741A (en) 1989-02-07