Optical imaging system
US-2020088972-A1 · Mar 19, 2020 · US
US12164170B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12164170-B2 |
| Application number | US-202117149034-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 14, 2021 |
| Priority date | Mar 25, 2020 |
| Publication date | Dec 10, 2024 |
| Grant date | Dec 10, 2024 |
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A spacer includes: an opening through which light passes; an inner side surface forming the opening; and a protruding portion including a plurality of protrusions protruding from the inner side surface. Lengths of the plurality of protrusions vary in a circumferential direction of the protruding portion.
Opening claim text (preview).
What is claimed is: 1. A spacer, comprising: an opening through which light passes; an inner side surface forming the opening; and a protruding portion including a plurality of protrusions protruding from the inner side surface, wherein lengths of the plurality of protrusions vary in a circumferential direction of the protruding portion, and wherein a region in which lengths of protrusions, among the plurality of protrusions, increase in the circumferential direction and another region in which lengths of other protrusions, among the plurality of protrusions, decrease in the circumferential direction are alternately and repeatedly disposed along the circumferential direction. 2. The spacer of claim 1 , wherein the opening includes a first region, a second region, a third region and a fourth region separated by a first axis and a second axis that intersect on a center of the opening and are disposed perpendicular to each other, wherein the first region and the third region are located opposite to each other based on the center of the opening, wherein the second region and the fourth region are located opposite to each other based on the center of the opening, wherein lengths of protrusions, among the plurality of protrusions, disposed in the first region and the third region, increase in the circumferential direction, and wherein lengths of protrusions, among the plurality of protrusions, disposed in the second region and the fourth region decrease in the circumferential direction. 3. The spacer of claim 1 , wherein the protruding portion further includes a first protruding portion disposed on one side of a first axis and a second protruding portion disposed on another side of the first axis, the first axis intersecting a central axis of the opening and being perpendicular to the central axis of the opening, and wherein lengths of protrusions, among the plurality of protrusions, included in the first protruding portion and lengths of protrusions, among the plurality of protrusions, included in the second protruding portion increase and then decrease in the circumferential direction. 4. The spacer of claim 3 , wherein a center of a first circle having an arc as a curve connecting vertices of the protrusions included in the first protruding portion, and a center of a second circle having an arc as a curve connecting vertices of the protrusions included in the second protruding portion, are spaced apart from each other. 5. The spacer of claim 4 , wherein a center of the opening is disposed between the center of the first circle and the center of the second circle. 6. The spacer of claim 4 , wherein the first circle and the second circle have an intersection point, wherein the first protruding portion is disposed in a space between an outer side of the first circle and an inner side of the second circle, and wherein the second protruding portion is disposed in a space between an inner side of the first circle and an outer side of the second circle. 7. The spacer of claim 4 , wherein a diameter of the first circle and a diameter of the second circle are equal. 8. The spacer of claim 1 , wherein each protrusion among the plurality of protrusions includes a convex curved surface or a concave curved surface. 9. The spacer of claim 1 , wherein the protruding portion further includes a first protruding portion, a second protruding portion, a third protruding portion, and a fourth protruding portion disposed in a sequence in the circumferential direction, and wherein lengths of protrusions, among the plurality of protrusions, included in each of the first to fourth protruding portions increase and then decrease in the circumferential direction. 10. The spacer of claim 9 , wherein the first protruding portion and the third protruding portion are located opposite to each other with respect to a center of the opening, and the second protruding portion and the fourth protruding portion are located opposite to each other with respect to the center of the opening, and wherein a center of a first circle having an arc as a curve connecting vertices of the protrusions included in the first protruding portion, and a center of a second circle having an arc as a curve connecting vertices of the protrusions included in the third protrusion, are spaced apart from each other. 11. The spacer of claim 10 , wherein a center of a third circle having an arc as a curve connecting vertices of the protrusions included in the second protruding portion, and a center of a fourth circle having an arc as a curve connecting vertices of the protrusions included in the fourth protruding portion, are spaced apart from each other. 12. The spacer of claim 11 , wherein the center of the opening is disposed at a position inside of positions of the center of the first circle, the center of the second circle, the center of the third circle, and the center of the fourth circle. 13. The spacer of claim 11 , wherein the first circle and the second circle have an intersection point, wherein the first protruding portion is disposed in a space between an outer side of the first circle and an inner side of the second circle, and wherein the third protruding portion is disposed in a space between an inner side of the first circle and an outer side of the second circle. 14. The spacer of claim 11 , wherein the third circle and the fourth circle have an intersection point, wherein the second protruding portion is disposed in a space between an outer side of the third circle and an inner side of the fourth circle, and wherein the fourth protruding portion is disposed in a space between an inner side of the third circle and an outer side of the fourth circle. 15. A lens assembly, comprising: a lens barrel; a first lens and a second lens disposed along an optical axis inside of the lens barrel; and a spacer disposed between the first lens and the second lens, and having an opening, wherein a protruding portion including a plurality of protrusions protruding toward a center of the opening is disposed on an inner side surface of the spacer forming the opening, wherein lengths of the plurality of protrusions vary in a circumferential direction of the protruding portion, and wherein a region in which lengths of protrusions, among the plurality of protrusions, increase in the circumferential direction and another region in which lengths of other protrusions, among the plurality of protrusions, decrease in the circumferential direction are alternately and repeatedly disposed along the circumferential direction. 16. A lens assembly, comprising: a first lens disposed in a lens barrel; a second lens disposed in the lens barrel and stacked on the first lens in an optical axis direction; and a spacer disposed between the first lens and the second lens in the optical axis direction, wherein the spacer comprises: a ring-shaped body having an inner side surface bounding an opening configured to allow light to pass through the spacer in the optical axis direction; and a plurality of protrusions extending toward a center of the opening in a plane perpendicular to the optical axis direction, wherein lengths of the plurality of protrusions in directions toward the center of the opening vary, and wherein a region in which lengths of protrusions, among the plurality of protrusions, increase in a circumferential direction and another region in which lengths of other protrusions, among the plurality of protrusions, decrease in the circumferential direction are alternately and repeatedly disposed along the circumferential direction.
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