Optical connector and plug
US-2024385386-A1 · Nov 21, 2024 · US
US2024393541A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2024393541-A1 |
| Application number | US-202218695365-A |
| Country | US |
| Kind code | A1 |
| Filing date | Aug 1, 2022 |
| Priority date | Oct 1, 2021 |
| Publication date | Nov 28, 2024 |
| Grant date | — |
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Provided is a rotary joint including a body-side fiber holding portion in which one end of the faces of light reception fibers are disposed in a first circular area and one end of the faces of light projection fibers are disposed in a first annular area outside of the first circular area, a probe-side fiber holding portion in which one end of the faces of light reception fibers are disposed in a second circular area and a light projection fiber is disposed in a second annular area outside of the second circular area, a rotation support portion that relatively and rotatably supports the body-side fiber holding portion and the probe-side fiber holding portion, and a light separating tube that is provided between the body-side fiber holding portion and the probe-side fiber holding portion.
Opening claim text (preview).
The invention claimed is: 1 . A rotary joint comprising: a first fiber holding portion that holds a plurality of optical fibers included in a first optical cable such that a first end face of a first inner optical fiber included in the first optical cable is disposed in a first circular area and a second end face of a group of first outer optical fibers included in the first optical cable is disposed in a first annular area that is concentric with the first circular area and has an inner diameter larger than a diameter of the first circular area; a second fiber holding portion that holds a plurality of optical fibers included in a second optical cable such that a first end face of a second inner optical fiber included in the second optical cable is disposed in a second circular area and a second end face of a group of second outer optical fibers included in a second annular area that is concentric with the second circular area and has an inner diameter larger than a diameter of the second circular area; a rotation support portion that relatively and rotatably supports the first fiber holding portion and the second fiber holding portion such that the first circular area and the second circular area are separated from and opposed to each other and the first annular area and the second annular area are separated from and opposed to each other; and a light separating portion that is provided between the first fiber holding portion and the second fiber holding portion and inhibits passage of light between a columnar space and a cylindrical space, the columnar space being provided between the first circular area and the second circular area, the cylindrical space being provided between the first annular area and the second annular area. 2 . The rotary joint according to claim 1 , wherein the first circular area and the second circular area are coaxially disposed, and the first annular area and the second annular area are coaxially disposed. 3 . The rotary joint according to claim 1 , wherein the light separating portion includes a first tube member disposed between the columnar space and the cylindrical space. 4 . The rotary joint according to claim 3 , wherein an inner surface of the first tube member is formed into a mirror surface. 5 . The rotary joint according to claim 3 , wherein an outer surface of the first tube member is formed into a mirror surface. 6 . The rotary joint according to claim 1 , wherein the light separating portion includes a second tube member that surrounds the cylindrical space and has an inner surface that is formed into a mirror surface. 7 . The rotary joint according to claim 1 , wherein the light separating portion includes a translucent columnar member disposed in the columnar space and a translucent cylindrical member disposed in the cylindrical space, the columnar member being inserted into the cylindrical space. 8 . An optical measurement device comprising the rotary joint including: a first fiber holding portion that holds a plurality of optical fibers included in a first optical cable such that a first end face of a first inner optical fiber included in the first optical cable is disposed in a first circular area and a second end face of a group of first outer optical fibers included in the first optical cable is disposed in a first annular area that is concentric with the first circular area and has an inner diameter larger than a diameter of the first circular area; a second fiber holding portion that holds a plurality of optical fibers included in a second optical cable such that a first end face of a second inner optical fiber included in the second optical cable is disposed in a second circular area and a second end face of a group of second outer optical fibers included in a second annular area that is concentric with the second circular area and has an inner diameter larger than a diameter of the second circular area; a rotation support portion that relatively and rotatably supports the first fiber holding portion and the second fiber holding portion such that the first circular area and the second circular area are separated from and opposed to each other and the first annular area and the second annular area are separated from and opposed to each other; and a light separating portion that is provided between the first fiber holding portion and the second fiber holding portion and inhibits passage of light between a columnar space and a cylindrical space, the columnar space being provided between the first circular area and the second circular area, the cylindrical space being provided between the first annular area and the second annular area.
having fibre bundle mating means · CPC title
Optical coupling means (G02B6/36, G02B6/42 take precedence) · CPC title
formed by bundles of fibres (G02B6/24 takes precedence) · CPC title
Rotary joints allowing relative rotational movement between opposing fibre or fibre bundle ends · CPC title
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