Multicore Fiber and Manufacturing Device Therefor
20210041622 ยท 2021-02-11
Inventors
Cpc classification
G02B6/02395
PHYSICS
G02B6/2551
PHYSICS
C03C25/12
CHEMISTRY; METALLURGY
International classification
Abstract
Provided are a multi-core fiber that enables complete automation of alignment in fusion splicing of multi-core fibers and an apparatus for manufacturing the multi-core fiber. A glass cladding of the multi-core fiber has a coating. A coating marker is drawn on the coating at a position that is determined by a predetermined rule that prescribes a positional relation with the core, for example, the coating marker is drawn on the coating near a specific core number. During fusion splicing of the multi-core fibers, two multi-core fibers are installed such that positions of the coating markers are substantially aligned. After the installation of the multi-core fibers, the coating markers of the two multi-core fibers are subjected to automatic rotational alignment by a fusion splicer to achieve a predetermined positional relation, and thus rotational positions between the two multi-core fibers are aligned.
Claims
1. A multi-core fiber comprising: a cladding, a plurality of cores being arranged in the same cladding; and a coating, a marker being drawn on the coating.
2. The multi-core fiber according to claim 1, wherein the marker is drawn linearly in a longitudinal direction of the multi-core fiber.
3. The multi-core fiber according to claim 1, wherein the coating is a double coating including an inner coating and an outer coating, and the marker is drawn on the inner coating.
4. An apparatus for manufacturing a multi-core fiber, comprising: a heating furnace; a fiber diameter monitor; a coating resin film forming unit; a coating resin UV curing unit; and a winding unit, the apparatus further comprising a unit configured to draw a coating marker on a coating formed by the coating resin film forming unit.
5. The apparatus for manufacturing a multi-core fiber according to claim 4, wherein the unit configured to draw the coating marker includes two coating marker capstans arranged to face each other so as to sandwich the multi-core fiber, and a coating material is applied to an outer peripheral surface of at least one of the coating marker capstans to draw the coating marker.
6. The apparatus for manufacturing a multi-core fiber according to claim 4, wherein the coating resin film forming unit includes a first coating resin film forming unit and a second coating resin film forming unit, the coating resin UV curing unit includes a first coating resin UV curing unit and a second coating resin UV curing unit, and the unit configured to draw the coating marker is arranged between a set of the first coating resin film forming unit and the first coating resin UV curing unit and a set of the second coating resin film forming unit and the second coating resin UV curing unit.
7. The apparatus for manufacturing a multi-core fiber according to claim 5, wherein the coating resin film forming unit includes a first coating resin film forming unit and a second coating resin film forming unit, the coating resin UV curing unit includes a first coating resin UV curing unit and a second coating resin UV curing unit, and the unit configured to draw the coating marker is arranged between a set of the first coating resin film forming unit and the first coating resin UV curing unit and a set of the second coating resin film forming unit and the second coating resin UV curing unit.
8. The multi-core fiber according to claim 2, wherein the coating is a double coating including an inner coating and an outer coating, and the marker is drawn on the inner coating.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
DESCRIPTION OF EMBODIMENTS
[0023] Embodiments of the present invention will be described below.
First Embodiment
[0024]
[0025] The coating marker 10 may be drawn at a position determined by a predetermined rule that prescribes a positional relation with the core; for example, the coating marker is drawn on the coating near a specific core number (for example, a core #1 in
[0026] First, as shown in
[0027]
[0028]
[0029] Since the coating marker drawing unit 110 only needs to be able to draw a marker at a predetermined position with respect to each of cores arranged around the central axis of the multi-core fiber 202, a brush or an inkjet for spraying a coating material may be used instead of the capstan 112 to which a coating material is applied.
[0030] An example of the coating material of the coating marker 10 may include an oil-based acrylic resin coating material that does not easily peel off after being applied to the coating.
Second Embodiment
[0031]
[0032] A coating marker 10 is a coating marker which is a feature of the present invention and is drawn on the coating, and is drawn on the inner coating 2. In
[0033] The outer coating 3 is made of a material that becomes transparent after UV curing. Thereby, the coating marker 10 drawn on the inner coating 2 is made visible.
[0034] With such double coatings, a cladding mode is effectively eliminated using a member with a higher refractive index than that of the glass cladding 1 for the inner coating 2 that is in contact with the glass cladding 1, and desired optical transmission characteristics can be realized. On the other hand, the member having the higher refractive index than that of the glass cladding is hard to obtain sufficient mechanical strength as a fiber. Therefore, a fiber having desired optical transmission characteristics and practical strength can be prepared by the double coatings using a member having a higher refractive index for the inner coating 2 and using a member having mechanical strength necessary for the outer coating 3.
[0035] Similarly to the first embodiment, during fusion splicing of the multi-core fibers of the present embodiment, two multi-core fibers are installed such that positions of the coating markers 10 are substantially aligned, and thus complete automation alignment can be performed with the coating marker 10 as a reference using a fusion splicer.
[0036]
REFERENCE SIGNS LIST
[0037] 1 Glass cladding
[0038] 2, 3 Coating
[0039] 10 Coating marker
[0040] 101 Heating furnace
[0041] 102 Fiber diameter monitor
[0042] 103 Coating resin film forming unit
[0043] 104 Coating resin UV curing unit
[0044] 105, 111, 112 Capstan
[0045] 106 Winding unit
[0046] 110 Coating marker drawing unit
[0047] 201 Multi-core fiber preform
[0048] 202 Multi-core fiber
[0049] 901 Cladding
[0050] 902 Core
[0051] 903 Marker