GB2112173A - Movable closure for optical elements - Google Patents

Movable closure for optical elements Download PDF

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Publication number
GB2112173A
GB2112173A GB08236211A GB8236211A GB2112173A GB 2112173 A GB2112173 A GB 2112173A GB 08236211 A GB08236211 A GB 08236211A GB 8236211 A GB8236211 A GB 8236211A GB 2112173 A GB2112173 A GB 2112173A
Authority
GB
United Kingdom
Prior art keywords
shroud
housing
optical
aperture
optical element
Prior art date
Legal status (The legal status 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 status listed.)
Granted
Application number
GB08236211A
Other versions
GB2112173B (en
Inventor
Maurus C Logan
Francis Sladen
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
ABB Installation Products Inc
Original Assignee
Thomas and Betts Corp
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 Thomas and Betts Corp filed Critical Thomas and Betts Corp
Publication of GB2112173A publication Critical patent/GB2112173A/en
Application granted granted Critical
Publication of GB2112173B publication Critical patent/GB2112173B/en
Expired legal-status Critical Current

Links

Classifications

    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B6/00Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
    • G02B6/24Coupling light guides
    • G02B6/36Mechanical coupling means
    • G02B6/38Mechanical coupling means having fibre to fibre mating means
    • G02B6/3807Dismountable connectors, i.e. comprising plugs
    • G02B6/3833Details of mounting fibres in ferrules; Assembly methods; Manufacture
    • G02B6/3847Details of mounting fibres in ferrules; Assembly methods; Manufacture with means preventing fibre end damage, e.g. recessed fibre surfaces
    • G02B6/3849Details of mounting fibres in ferrules; Assembly methods; Manufacture with means preventing fibre end damage, e.g. recessed fibre surfaces using mechanical protective elements, e.g. caps, hoods, sealing membranes
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B6/00Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
    • G02B6/24Coupling light guides
    • G02B6/36Mechanical coupling means
    • G02B6/38Mechanical coupling means having fibre to fibre mating means
    • G02B6/3807Dismountable connectors, i.e. comprising plugs
    • G02B6/3869Mounting ferrules to connector body, i.e. plugs
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B6/00Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
    • G02B6/24Coupling light guides
    • G02B6/36Mechanical coupling means
    • G02B6/38Mechanical coupling means having fibre to fibre mating means
    • G02B6/3807Dismountable connectors, i.e. comprising plugs
    • G02B6/3887Anchoring optical cables to connector housings, e.g. strain relief features
    • G02B6/3888Protection from over-extension or over-compression

Landscapes

  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Mechanical Coupling Of Light Guides (AREA)

Abstract

A closure (10) for optical element terminations, which alternately covers and uncovers the exposed optical element (12) (shown here as an optic fibre). The closure includes a shroud (50) which covers the housing (30) containing the optical element. The shroud (50) is movable between position opening and closing the optical element (12), in response to the connection and disconnection of housing (30) with a mating body (60 - Fig.2 - not shown). In another embodiment, the shroud may be provided with an aperture which is not aligned with the element in a first position, but is aligned with said element upon connection with a mating body. <IMAGE>

Description

SPECIFICATION Movable closure for optical elements FIELD OF THE INVENTION This invention relates to closures for optical element terminations, and more particularly to the removable closure of the end of an optical fiber in an optical fiber connection.
BACKGROUND OF THE INVENTION In the coupling of optical elements, an end face thereof is typically exposed so as to be coupled with an end face of a second optical element. In particular with optical fiber connectors, such end faces are commonly formed by cleaving the end of the optical elements. In the ultimate connection of the elements, a protective sleeve forming a portion of the connector is often provided, such sleeve insulating and protecting the fibers from exposure to the environment. However, when the connectors are not mated, e.g., prior to actual connection or when a change in connection is desired, the cleaved ends are usuallly exposed.
Foreign matter such as dirt, dust or the like can enter the connector, covering or at least partially blocking the end face of optical fiber. This blockage can severly affect the optical transmission capabi!ities of the connector.
Prior attempts have been made to provide a cover or cap for optical fiber ends for use in a wide variety of applications. These prior devices include shutter-type mechanisms which are activated by external means. While such shutter-type mechanisms effectively serve to block optical transmission between end-to-end optical elements, they provide little protection from outside particles and contaminants. Further, these prior devices are actuated in a separate step apart from that of the connection of the elements. This results in exposure of the optical element prior to connection.
Accordingly, the prior devices, while providing an end cover or shutter for cutting off optical transmission, do not sufficiently cover the end of the fiber so as to protect it from outside contaminants and debris. Further, these known devices do not engage automatically upon disconnection of the optical elements.
SUMMARY OF THE INVENTION It is an object of the present invention to provide an improved closure for optical element terminations.
It is a further, more particular object to provide a closure for the cleaved end of an optical fiber in a connector, which closes upon disconnection.
These and other objects and features are found in the present invention which looks toward providing a closure for optical element terminations, more particularly in a shroud for an optical fiber connector housing. The shroud is mounted to the connector housing and is movable between two positions: a first position wherein the shroud blocks or covers the optical fiber end; and a second position wherein the shroud uncovers the optical fiber end. The shroud movement is responsive to the interconnection of the connector with a further optical element. The position of the shroud is such that when the connector is connected to a second optical element, say another connector, the fiber end is uncovered for complete optical transmission.Upon disengagement, the shroud moves to a position covering the fiber end, not only blocking optical transmission, but also shielding the fiber end from outside contaminents.
Further embodiments of the shroud are contemplated, including a shroud having an aperture. In covered position the aperture is in non-alignment with the fiber end and in uncovered position, the fiber end and aperture are aligned.
Other objects and features of the invention will be evident from the following detailed description of the accompanying drawings.
BRIEF DESCRIPTION OF THE DRAWING Figure 1 is a longitudinal cross-sectional view of an optical cable connector, including the shroud of the present invention shown in the normally covering position.
Figure 2 is a partially fragmented view of the Figure 1 connector shown connected to a further optical element housing with the shroud in the open position.
Figure 3 is a longitudinal cross-sectional view of an optical cable connector including another embodiment of the shroud of the present invention, such shroud being shown in covering position.
Figure 4 shows a partially fragmented view of the connector of Fig. 3 being connected to a further optical element housing, the shroud being shown in the open position.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS Referring to Fig. 1 , there is shown an optical fiber cable connector 20, useful in securing the terminal end of an optical cable 10 for connection with a similar end of a second optical cable, held in a mating connector, not shown.
Cable connectors are disclosed as being preferred examples of practising the present invention. Notwithstanding the preferred environment, the invention disclosed herein is not limited for use with the presently disclosed connector or with any conventional connectors alone, but may be employed with various optical element termination devices. For simplification of description and ease in understanding, the present invention is being described in connection with fiber optic cable connectors such as the type shown and described in pending U.S. patent application, Serial No. 126,887, filed March 3, 1 980, and assigned to the assignee of the instant application.
Connector 20 is a fiber optic cable connector which terminates a conventional cable 10 including optical fiber 12 for connection with a second optical fibers The connector 20 includes an outer housing 30 which contains a retainer ring 22, and a surrounding ferrule 1 8 for accommodating the cable and fiber. An end cap 24 secures the retaining ring and ferrule in place in the housing. A fiber guide 44, also contained in housing 30, accepts the extending fiber 12, securing relative longitudinal orientation. The fiber guide 44 is spring-loaded under the bias of spring 46 situated between fiber guide 44 and retaining ring 22, so as to permit exposure of the fiber end face 11 through end aperture 44a.An internally screw-threaded coupler 34 is rotatably secured to the housing, longitudinally projecting therefrom to form a female receptacle for a second connectortype termination (not shown). Ring 38 secures coupler 34 in a fixed rotative position.
In preferable form, the longitudinal extent (tip 44b) of fiber guide 44 is tapered and terminates at aperture 44a.This permits fiber guide 44 to serve as an insertion-type element to project fiber end face 11 into the desired mating connector.
In accordance with the invention, slidably secured to the outer surface of fiber guide 44 is shroud 50. The shroud 50 is formed of strong, resilient material, preferably beryllium copper or other suitable material that is formed to the shape of the tapered tip 44b of fiber guide 44. In order to conform more readily to the shape of the tapered tip 44b, shroud 50 may be slightly arcuate along its transverse axis. Shroud 50 is secured to the housing so as to have a positional bias. For example, the shroud 50 may be mounted by a spring 53 which would position the shroud normally, as shown in Fig.1, wherein the outer edge 51 extends over and covers aperture 44a, across the transverse extent of fiber guide 44. It is contemplated that any well-known biasing means may be employed, spring biasing being disclosed only by way of example.A further example would be to form shroud 50 of material having natural biasing tendencies so that the shroud would resiliently recover to the position shown in Fig. 1 upon removal of external forces.
The inner extent (oppositely directed from the outer edge 51) of shroud 50 includes an upwardly depending shoulder 52 which is constructed to abut the outer extent of a second connector housing as described hereinafter.
Fig. 2 shows the connector of Fig. 1 engaged with and connected to a second optical housing.
In the present example, central housing 60 is shown, which can be any simple connector-type termination apparatus for connecting two optical fibers.
Central housing 60 includes a central opening 60a defining an outer annular surface 61 for insertion into the female receptacle formed by coupler 34. Central opening 61 thereby accepts fiber guide 44. The external edge of central housing 60 is screw-threaded for screw-type connection with internally threaded coupler 34 of housing 20.
Having herein described the structure of the present invention, its operation will now be described.
With shroud member 50 in its normal position so that outer edge 51 closes aperture 44a of fiber guide 44, central housing 60 may be inserted into the chamber defined by the coupler 34. Rotation of coupler 34 will force central housing 60 inwardly due to the threaded relation between the members. This inward movement will force outer annular surface 61 to abut shoulder 52 of shroud 50. Further rotation of coupler 34 will impart further inward movement of central housing 60, thereby driving in shoulder 52 and moving shroud 50 from its normal position to a position as shown in Fig. 2, wherein aperture 44a is now exposed.
Fiber 1 2 now is in the connected position.
As can be seen, aperture 44a will remain covered and protected by shroud 50 until ultimate connection takes place. Similarly, upon disconnection, by removal of central housing 60 from coupler 34 and thereby removing the resistance to the biasing tendencies of shroud 50, shroud 50 will return to its normal position .covering aperture 44a under the influence of the spring bias 53.
Fig. 3 shows an alternative embodiment of the present invention. The connector, fiber guide, housing etc., are all substantially similar to those described with reference to Figs. 1 and 2. For simplification of description, with respect to Figs.
3 and 4, those elements having similar characteristics will be denoted by similar reference numerals by the addition of 100 to the reference numerals of Figs. 1 and 2. As an example, fiber guide 144 of Figs. 3 and 4 is similar to Fiber guide 44 of Figs. 1 and 2.
Shroud member 1 50 in accordance with this embodiment of the invention as shown in Fig. 3, is substantially "L"-shaped, having a longitudinal portion 1 53 and a transverse portion 1 57 extending from the outer edge of longitudinal portion 1 53. As with shroud 50 of Figs. 1 and 2, shroud 1 50 can be arcuate across its transverse length so as to conform to fiber guide 144.
Centrally located in transverse portion 1 57 is an aperture 157a, having an opening which is at least as large as aperture 144a of fiber guide 144.
Shroud 1 50 is pivotally secured at its longitudinal edge opposite from the transverse portion to the outer surface of fiber guide 144. The longitudinal portion 1 53 extends substantially along the length of the fiber guide 144 and transverse portion 1 57 extends transversely across tip 144b. Shroud 1 50 can be attached to the outer surface of fiber guide 144 by any well known securement means, such as, for example, a spot weld, or solder.
In order to provide the resilient qualities desired, shroud 1 50 is constructed of material which is known to have natural longitudinal resilience, or the ability to recover its original shape after external pressure is released. As an example, a material such as beryllium copper can be employed which, after being flexed about the pivot point, will return to its original position.
In normal position, shroud 1 50 is positioned so that the longitudinal member 1 53 secured at pivot point 1 53a extends up at an angle as measured from the longitudinal axis of fiber guide 144.
Transverse member 1 57 will then extend down so that the lower edge 1 57a will cover aperture 1 44a of fiber guide 144. Thus, aperture 1 44a and aperture 1 57a will be non-aligned.
Fig. 4 shows connector 120 connected to central housing 1 60. Shroud 150, urged downward by central housing 1 60 is in open position with aperture 1 57a being aligned with aperture 144a.
With reference to Figs.3 and 4, the present modification operates as foilows: Shroud 1 50 being in normal position as above described, is engaged by the central housing 1 60 to be connected. The inside wall of central housing 160 abuts the longitudinal extent of shroud 1 50 and urges the shroud downwardly against the fiber guide 144 upon inward movement of the central housing, occasioned by rotation of coupler 1 34. When the central housing has been tightly connected to the connector 120, longitudinal portion 1 53 of shroud 1 50 will lie relatively flat along the outer surface of fiber guide 144. The corresponding movement of transverse member 1 57 will cause alignment of aperture 1 44a and aperture 157a, exposing optical fiber 112 for connection.
Similarly, upon disconnection, i.e., removing the central housing 160, which is holding shroud 1 50 against fiber guide 144, the resilient tendencies of shroud 1 50 will return it to its normal position, thereby covering aperture 1 44a as it is no longer aligned with aperture 157a.
The particularly described embodiments are disclosed by way of example and illustration and are not intended to limit the scope of the invention. The scope of the invention is set forth in the appending claims.

Claims (11)

1. An apparatus for terminating an optical element comprising: a housing for supporting said optical element, said housing having an aperture for exposing said optical element, and means for terminating said optical element; a shroud member movably secured to said housing, movable between a first position covering said housing aperture and a second position uncovering said aperture; and means responsive to said terminating means for moving said shroud member from one of said first or second positions to the other of said first or second positions.
2. The combination in accordance with claim 1, wherein said shroud is constructed of resilient material and wherein said moving means includes the resiliency of said shroud material.
3. The combination in accordance with claim 1 or claim 2, wherein said moving means includes a spring attached at one end to said housing and at the other end to said shroud and wherein said spring is biased to move said shroud between said first and second positions.
4. The combination in accordance with claim 1 or claim 2 or claim 3, wherein said terminating means includes a second optical element for connection with the first said optical element and wherein said moving means is responsive to the connection and disconnection of said first and second optical elements.
5. The combination in accordance with claim 4, wherein said first and second optical elements are optical fibers and said housing includes an optical fiber connector.
6. The combination in accordance with claim 1, wherein said shroud further comprises: an elongate portion secured at one end to the outer surface of said housing; a lateral portion depending from the other end of said elongate portion, across said housing aperture, said lateral portion including a shroud aperture disposed to be in non-alignment with said housing aperture in said first position and aligned with said housing aperture in said second position.
7. The combination in accordance with claim 6, wherein said shroud is flexibly mounted at a pivot point at said one end of said elongate portion and said moving means includes the flexible tendencies of said mounted shroud.
8. The combination in accordance with claim 6 or claim 7, wherein said optical element includes an optical fiber contained in a cable and said housing includes an optical cable connector; and wherein said terminating means includes a second optical fiber contained in a cable and connector for connection with the first said optical fiber, said moving means being responsive to the connection and disconnection of said first and second optical connectors.
9. The combination in accordance with claim 4, wherein said shroud is movable to said first position upon connection of said optical elements and movable to said second position upon disconnection of said optical elements.
10. The combination in accordance with claim 8, wherein said shroud is movable to said first position upon connection of said first and second optical fibers and movable to said second position upon disconnection of said optical fibers.
11. Apparatus for terminating an optical element substantially as hereinbefore described with reference to and as shown in Figures 1 and 2 or in Figures 3 and 4 of the accompanying drawings.
GB08236211A 1981-12-21 1982-12-20 Movable closure for optical elements Expired GB2112173B (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US33271681A 1981-12-21 1981-12-21

Publications (2)

Publication Number Publication Date
GB2112173A true GB2112173A (en) 1983-07-13
GB2112173B GB2112173B (en) 1985-08-14

Family

ID=23299546

Family Applications (1)

Application Number Title Priority Date Filing Date
GB08236211A Expired GB2112173B (en) 1981-12-21 1982-12-20 Movable closure for optical elements

Country Status (6)

Country Link
JP (1) JPS58122511A (en)
CA (1) CA1235319A (en)
DE (2) DE3246401A1 (en)
FR (1) FR2518762B1 (en)
GB (1) GB2112173B (en)
HK (1) HK61790A (en)

Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2533711A1 (en) * 1982-09-23 1984-03-30 Int Standard Electric Corp Optical transmission cable plug connector
GB2154333A (en) * 1984-01-25 1985-09-04 Int Standard Electric Corp Connector coupling for optical waveguides
EP0570652A2 (en) * 1992-05-20 1993-11-24 Diamond S.A. Connector for optical fibres
US5348487A (en) * 1992-05-20 1994-09-20 Diamond Sa Plug connector for optical fibers
WO1997033348A1 (en) * 1996-03-07 1997-09-12 Ocean Design, Inc. Underwater connector
EP0838702A1 (en) * 1996-10-28 1998-04-29 Diamond SA Connector for an optical connection
WO2000016145A1 (en) * 1998-09-14 2000-03-23 Adc Telecommunications, Inc. Fiber connector and adapter
WO2002071122A1 (en) * 2001-03-01 2002-09-12 Huber+Suhner Ag Fiber-optical connector system
EP1413906A1 (en) * 2002-10-24 2004-04-28 Japan Aviation Electronics Industry, Limited Fiber optic connection adapter with shutter
US9057864B2 (en) 2013-08-02 2015-06-16 Teledyne Instruments, Inc. Harsh environment connector with seal closure assisting device

Families Citing this family (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2538156B2 (en) * 1991-12-11 1996-09-25 本田技研工業株式会社 Work pallet clamp device for machine tools
DE4229511C2 (en) * 1992-09-04 1995-03-30 Siemens Ag Shading device for fiber optic connectors
DE4237499C1 (en) * 1992-11-06 1994-04-28 Telegaertner Geraetebau Gmbh Connector for releasable coupling of optical fibres - comprises base element with outer collar and sleeve element with cooperating inner projection
US5883995A (en) 1997-05-20 1999-03-16 Adc Telecommunications, Inc. Fiber connector and adapter
DE10108782A1 (en) * 2001-02-23 2002-09-05 Delphi Tech Inc Plug connector for light conductor has divided protective flap that is spring-loaded in closed position and movable relative to first connector part over defined region
DE10108783A1 (en) * 2001-02-23 2002-09-05 Delphi Tech Inc Plug connector for light conductor has part with protective cap for protecting ferrule that is spring-loaded in closed position and movable over defined region to expose light conductor end
JP3987078B2 (en) * 2005-08-31 2007-10-03 日本電信電話株式会社 Optical connector

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE2734522A1 (en) * 1977-07-30 1979-02-15 Bosch Gmbh Robert Optical light radiation protection - is for optical plug device in glass fibre transfer sections and acts automatically on photoconductive side of plug
US4162119A (en) * 1977-11-18 1979-07-24 International Telephone And Telegraph Corporation Fiber optic position indicator
US4218113A (en) * 1978-08-21 1980-08-19 International Business Machines Corporation Optical fiber connector apparatus
DE2845420C2 (en) * 1978-10-18 1984-11-08 Bunker Ramo Corp., Oak Brook, Ill. Fiber optic plug connection
JPS5659212A (en) * 1979-10-19 1981-05-22 Olympus Optical Co Ltd Optical connector for laser apparatus
US4378145A (en) * 1980-03-03 1983-03-29 Thomas & Betts Corporation Method and apparatus for joining optical elements
JPS56151909A (en) * 1980-04-25 1981-11-25 Fujitsu Ltd Optical connector

Cited By (14)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2533711A1 (en) * 1982-09-23 1984-03-30 Int Standard Electric Corp Optical transmission cable plug connector
GB2154333A (en) * 1984-01-25 1985-09-04 Int Standard Electric Corp Connector coupling for optical waveguides
EP0570652A2 (en) * 1992-05-20 1993-11-24 Diamond S.A. Connector for optical fibres
EP0570652A3 (en) * 1992-05-20 1993-12-01 Diamond S.A. Connector for optical fibres
US5348487A (en) * 1992-05-20 1994-09-20 Diamond Sa Plug connector for optical fibers
AU658999B2 (en) * 1992-05-20 1995-05-04 Diamond S.A. Plug connector for optical fibers
WO1997033348A1 (en) * 1996-03-07 1997-09-12 Ocean Design, Inc. Underwater connector
EP0838702A1 (en) * 1996-10-28 1998-04-29 Diamond SA Connector for an optical connection
US6142676A (en) * 1997-05-20 2000-11-07 Adc Telecommunications, Inc. Fiber connector and adaptor
WO2000016145A1 (en) * 1998-09-14 2000-03-23 Adc Telecommunications, Inc. Fiber connector and adapter
WO2002071122A1 (en) * 2001-03-01 2002-09-12 Huber+Suhner Ag Fiber-optical connector system
US6821023B2 (en) 2001-03-01 2004-11-23 Huber+Suhner Ag Fiber-optical connector system
EP1413906A1 (en) * 2002-10-24 2004-04-28 Japan Aviation Electronics Industry, Limited Fiber optic connection adapter with shutter
US9057864B2 (en) 2013-08-02 2015-06-16 Teledyne Instruments, Inc. Harsh environment connector with seal closure assisting device

Also Published As

Publication number Publication date
FR2518762B1 (en) 1987-12-24
FR2518762A1 (en) 1983-06-24
JPS58122511A (en) 1983-07-21
CA1235319A (en) 1988-04-19
DE3246401C2 (en) 1987-04-23
JPH0381128B2 (en) 1991-12-27
DE3246401A1 (en) 1983-07-07
HK61790A (en) 1990-08-17
GB2112173B (en) 1985-08-14
DE8235227U1 (en) 1983-06-09

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PCNP Patent ceased through non-payment of renewal fee

Effective date: 19931220