Testing device, testing method, and non-transitory storage medium storing testing program
US-2024142495-A1 · May 2, 2024 · US
US2020355493A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2020355493-A1 |
| Application number | US-202016939168-A |
| Country | US |
| Kind code | A1 |
| Filing date | Jul 27, 2020 |
| Priority date | Jun 28, 2018 |
| Publication date | Nov 12, 2020 |
| Grant date | — |
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A light emitting element array includes: a light emitting element group that includes plural light emitting elements; and plural lenses that are provided, corresponding to the plural light emitting elements, on a light emitting surface side of the plural light emitting elements, and that deflects light emitted from the plural light emitting elements according to a positional relation with the plural light emitting elements. Distances between central axes of light emission of the plural light emitting elements and central axes of the plural lenses corresponding to the plural light emitting elements increase from a center side of the light emitting element group toward an end side of the light emitting element group, and a degree of change in the distances decreases from the center side of the light emitting element group toward the end side of the light emitting element group.
Opening claim text (preview).
1 . A light emitting element array comprising: a light emitting element group that includes a plurality of light emitting elements; and a plurality of lenses that is provided, corresponding to the plurality of light emitting elements, on a light emitting surface side of the plurality of light emitting elements, and that deflects light emitted from the plurality of light emitting elements according to a positional relation with the plurality of light emitting elements, wherein distances between central axes of light emission of the plurality of light emitting elements and central axes of the plurality of lenses corresponding to the plurality of light emitting elements increase from a center side of the light emitting element group toward an end side of the light emitting element group, and a degree of change in the distances decreases from the center side of the light emitting element group toward the end side of the light emitting element group. 2 . The light emitting element array according to claim 1 , wherein the plurality of light emitting elements in the light emitting element group are arranged at predetermined intervals. 3 . The light emitting element array according to claim 1 , wherein the plurality of lenses provided corresponding to the plurality of light emitting elements are arranged at predetermined intervals. 4 . The light emitting element array according to claim 1 , wherein the plurality of light emitting elements in the light emitting element group are arranged two-dimensionally. 5 . The light emitting element array according to claim 2 , wherein the plurality of light emitting elements in the light emitting element group are arranged two-dimensionally. 6 . The light emitting element array according to claim 3 , wherein the plurality of light emitting elements in the light emitting element group are arranged two-dimensionally. 7 . The light emitting element array according to claim 4 , wherein the degree of change in the distances between the central axes of light emission of the plurality of light emitting elements and the central axes of the plurality of lenses corresponding to the plurality of light emitting elements varies depending on a first arrangement direction of the plurality of light emitting elements arranged two-dimensionally, and a second arrangement direction crossing the first arrangement direction. 8 . The light emitting element array according to claim 5 , wherein the degree of change in the distances between the central axes of light emission of the plurality of light emitting elements and the central axes of the plurality of lenses corresponding to the plurality of light emitting elements varies depending on a first arrangement direction of the plurality of light emitting elements arranged two-dimensionally, and a second arrangement direction crossing the first arrangement direction. 9 . The light emitting element array according to claim 6 , wherein the degree of change in the distances between the central axes of light emission of the plurality of light emitting elements and the central axes of the plurality of lenses corresponding to the plurality of light emitting elements varies depending on a first arrangement direction of the plurality of light emitting elements arranged two-dimensionally, and a second arrangement direction crossing the first arrangement direction. 10 . A light emitting element array comprising: a light emitting element group that includes a plurality of light emitting elements; and a plurality of lenses that is provided, corresponding to the plurality of light emitting elements, on a light emitting surface side of the plurality of light emitting elements, and that deflects light emitted from the plurality of light emitting elements according to a positional relation with the plurality of light emitting elements, wherein the plurality of light emitting elements and the plurality of lenses are arranged such that distances between central axes of light emission of the plurality of light emitting elements and central axes of the plurality of lenses corresponding to the plurality of light emitting elements increase from a center side of the light emitting element group toward an end side of the light emitting element group and such that an amount of light at the end side of the light emitting element group increases and an amount of light at the center side of the light emitting element group decreases as compared to a case where the degree of change in the distances changes linearly from the center side toward the end side of the light emitting element group. 11 . The light emitting element array according to claim 1 , wherein the plurality of lenses are provided on the light emitting surfaces of the plurality of light emitting elements respectively so as to be adjacent to the light emitting surfaces. 12 . The light emitting element array according to claim 10 , wherein the plurality of lenses are provided on the light emitting surfaces of the plurality of light emitting elements respectively so as to be adjacent to the light emitting surfaces. 13 . An optical measuring system comprising: the light emitting element array according to claim 1 ; a light receiving element that receives reflected light from an object irradiated with light emitted from the light emitting element array; and a processor configured to determine a distance from the light emitting element array to the object or a shape of the object based on information on the reflected light received by the light receiving element. 14 . An optical measuring system comprising: a light emitting element array comprising: a light emitting element group that includes a plurality of light emitting elements; and a plurality of lenses that is provided, corresponding to the plurality of light emitting elements, on a light emitting surface side of the plurality of light emitting elements, and that deflects light emitted from the plurality of light emitting elements according to a positional relation with the plurality of light emitting elements, wherein the plurality of light emitting elements and the plurality of lenses are arranged such that distances between central axes of light emission of the plurality of light emitting elements and central axes of the plurality of lenses corresponding to the plurality of light emitting elements increase from a center side of the light emitting element group toward an end side of the light emitting element group and such that an amount of light at the end side of the light emitting element group increases and an amount of light at the center side of the light emitting element group decreases as compared to a case where the degree of change in the distances changes linearly from the center side toward the end side of the light emitting element group; the light emitting element array according to claim 1 ; a light receiving element that receives reflected light from an object irradiated with light emitted from the light emitting element array; and a processor configured to determine a distance from the light emitting element array to the object or a shape of the object based on information on the reflected light received by the light receiving element.
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