Optical connector having shutter mechanisms capable of effectively preventing entry of dust

US9022668B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9022668-B2
Application numberUS-201314141525-A
CountryUS
Kind codeB2
Filing dateDec 27, 2013
Priority dateMar 26, 2013
Publication dateMay 5, 2015
Grant dateMay 5, 2015

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

Each of a plug and a receptacle is provided with an optical contact and a shutter mechanism. The shutter mechanisms are linkaged with each other when connecting the plug and the receptacle to each other. At least one of the plug and the receptacle includes a movable member moved with being pushed by the other of the plug and the receptacle, an urging member constantly urging the movable member toward the other of the plug and the receptacle, and a cam mechanism causes the shutter mechanism to follow movement of the movable member. The shutter mechanism includes a shutter plate having an opening and movable between a first position where the opening does not face the optical contact and a second position where the opening faces the optical contact, and a projection adapted to be fitted into the opening when the shutter plate is in the first position.

First claim

Opening claim text (preview).

What is claimed is: 1. An optical connector comprising a plug and a receptacle adapted to be connected to each other in an axial direction, wherein each of the plug and the receptacle comprises: an optical contact; and a shutter mechanism for opening and closing a front of the optical contact in the axial direction, wherein the optical connector has linkage means for linking the shutter mechanism of the plug with the shutter mechanism of the receptacle when connecting the plug and the receptacle to each other, wherein at least one of the plug and the receptacle comprises: a movable member which is adapted to be moved with being pushed by the other of the plug and the receptacle when connecting the plug and the receptacle to each other; an urging member constantly urging the movable member toward the other of the plug and the receptacle in the axial direction; and a cam mechanism adapted to cause the shutter mechanism to follow movement of the movable member, wherein the shutter mechanism comprises: a shutter plate having an opening and movable between a first position where the opening does not face the optical contact in the axial direction and a second position where the opening faces the optical contact in the axial direction; and a projection adapted to be fitted into the opening when the shutter plate is in the first position, wherein the urging member and the cam mechanism are provided in only one of the plug and the receptacle, and wherein the shutter mechanism in the other of the plug and the receptacle is configured to be driven by the shutter mechanism in the one of the plug and the receptacle through the linkage means. 2. The optical connector according to claim 1 , wherein the other of the plug and the receptacle comprises: a push spring; and a cam member adapted to be pushed to move by the push spring, thereby moving the shutter plate in the rotational direction to close the shutter mechanism. 3. The optical connector according to claim 2 , wherein the other of the plug and the receptacle further comprises: a rotary shaft coupled to the shutter plate; and a convex portion provided at a periphery of the rotary shaft, and wherein the cam member has a cam surface which is in contact with the convex portion. 4. The optical connector according to claim 1 , wherein the plug and the receptacle respectively comprise barrels which are adapted to be fitted with each other when connecting the plug and the receptacle to each other, and wherein, with respect to the barrels, the shutter plate in the other of the plug and the receptacle is disposed more inward compared to the shutter plate in the one of the plug and the receptacle. 5. An optical connector comprising a plug and a receptacle adapted to be connected to each other in an axial direction, wherein each of the plug and the receptacle comprises: an optical contact; and a shutter mechanism for opening and closing a front of the optical contact in the axial direction, wherein the optical connector has linkage means for linking the shutter mechanism of the plug with the shutter mechanism of the receptacle when connecting the plug and the receptacle to each other, wherein at least one of the plug and the receptacle comprises: a movable member which is adapted to be moved with being pushed by the other of the plug and the receptacle when connecting the plug and the receptacle to each other; an urging member constantly urging the movable member toward the other of the plug and the receptacle in the axial direction; and a cam mechanism adapted to cause the shutter mechanism to follow movement of the movable member, wherein the shutter mechanism comprises: a shutter plate having an opening and movable between a first position where the opening does not face the optical contact in the axial direction and a second position where the opening faces the optical contact in the axial direction; and a projection adapted to be fitted into the opening when the shutter plate is in the first position, wherein the cam mechanism moves the movable member in a rotation direction in response to movement of the movable member in the axis direction, wherein the shutter plate is formed integral with the movable member, wherein each of the shutter mechanisms further comprises a window plate between the optical contact and the shutter plate, wherein the window plate is separated from the movable member and has an opening facing the optical contact in the axial direction, and wherein the projection is protruded from the window plate towards the shutter plate. 6. The optical connector according to claim 5 , wherein the projection is snugly fittable into the opening of the shutter plate. 7. The optical connector according to claim 5 , wherein each of the projection and the opening of the shutter plate is formed into a circular truncated cone shape. 8. The optical connector according to claim 5 , wherein the projection has a height substantially equal to a thickness of the shutter plate. 9. An optical connector comprising a plug and a receptacle adapted to be connected to each other in an axial direction, wherein each of the plug and the receptacle comprises: an optical contact; and a shutter mechanism for opening and closing a front of the optical contact in the axial direction, wherein the optical connector has linkage means for linking the shutter mechanism of the plug with the shutter mechanism of the receptacle when connecting the plug and the receptacle to each other, wherein at least one of the plug and the receptacle comprises: a movable member which is adapted to be moved with being pushed by the other of the plug and the receptacle when connecting the plug and the receptacle to each other; an urging member constantly urging the movable member toward the other of the plug and the receptacle in the axial direction; and a cam mechanism adapted to cause the shutter mechanism to follow movement of the movable member, wherein the shutter mechanism comprises: a shutter plate having an opening and movable between a first position where the opening does not face the optical contact in the axial direction and a second position where the opening faces the optical contact in the axial direction; and a projection adapted to be fitted into the opening when the shutter plate is in the first position, wherein the plug and the receptacle respectively comprise holding members each holding the optical contact, and wherein the holding members each have a stepped portion supporting the optical contact. 10. An optical connector comprising a plug and a receptacle adapted to be connected to each other in an axial direction, wherein each of the plug and the receptacle comprises: an optical contact; and a shutter mechanism for opening and closing a front of the optical contact in the axial direction, wherein the optical connector has linkage means for linking the shutter mechanism of the plug with the shutter mechanism of the receptacle when connecting the plug and the receptacle to each other, wherein at least one of the plug and the receptacle comprises: a movable member which is adapted to be moved with being pushed by the other of the plug and the receptacle when connecting the plug and the receptacle to each other; an urging member constantly urging the movable member toward the other of the plug and the receptacle in the axial direction; and a cam mechanism adapted to cause the shutter mechanism to follow movement of the movable member, wherein the shutter mechanism comprises: a shutter plate having an opening and movable between a first position where the opening does not face the optical contact in the axial direction

Assignees

Inventors

Classifications

  • comprising a plurality of ferrules, branching and break-out means · CPC title

  • using mechanical protective elements, e.g. caps, hoods, sealing membranes (G02B6/3816 takes precedence; provisionally see H01R13/44) · CPC title

  • G02B6/3893Primary

    Push-pull type, e.g. snap-in, push-on · CPC title

  • with axial spring biasing or loading means (G02B6/3847 takes precedence) · CPC title

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Frequently asked questions

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What does patent US9022668B2 cover?
Each of a plug and a receptacle is provided with an optical contact and a shutter mechanism. The shutter mechanisms are linkaged with each other when connecting the plug and the receptacle to each other. At least one of the plug and the receptacle includes a movable member moved with being pushed by the other of the plug and the receptacle, an urging member constantly urging the movable member …
Who is the assignee on this patent?
Japan Aviation Electron
What technology area does this patent fall under?
Primary CPC classification G02B6/3893. Mapped technology areas include Physics.
When was this patent published?
Publication date Tue May 05 2015 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).