OPTICAL ELEMENT, OPTICAL SYSTEM, AND IMAGING DEVICE
20210041656 ยท 2021-02-11
Assignee
Inventors
Cpc classification
International classification
Abstract
An optical element includes: an optical function part; a flange disposed outside the optical function part; and a direction indication part in a part of the flange. A difference in level between the direction indication part and a flat surface of the flange is 2 m or less. The optical function part and a part of the flange may be covered with an antireflection film.
Claims
1. An optical element, comprising: an optical function part; a flange disposed outside the optical function part; and a direction indication part in a part of the flange, wherein a difference in level between the direction indication part and a flat surface of the flange is 2 m or less.
2. The optical element according to claim 1, wherein: the optical function part and a part of the flange are covered with an antireflection film; and the direction indication part is formed as a protruding portion of the antireflection film.
3. The optical element according to claim 1, wherein: the optical function part and a part of the flange are covered with an antireflection film; and the direction indication part is formed as a cutout of the antireflection film.
4. The optical element according to claim 1, wherein the direction indication part is a recess formed in the flange.
5. The optical element according to claim 1, wherein in a front side of the flange, a flat region of the flange accounts for 60% or more of an entire surface of the flange.
6. The optical element according to claim 2, wherein 60% or more of an entire surface of the flange is not covered with the antireflection film.
7. The optical element according to claim 3, wherein 60% or more of an entire surface of the flange is covered with the antireflection film.
8. The optical element according to claim 4, wherein a region of the flange that does not include the direction indication part accounts for 60% or more of an entire surface of the flange.
9. The optical element according to claim 1, being a lens element made of glass.
10. An optical system comprising the optical element according to claim 1.
11. An imaging device comprising the optical element according to claim 1.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
DESCRIPTION OF EMBODIMENTS
[0025] Embodiments of the present invention are explained below by reference to the drawings.
Embodiment 1
[0026]
[0027] The optical element 10 is a lens element made of glass. The optical element 10, in a central portion thereof, includes a first curved part (optical function part) 11 having a convex shape, and a second curved part (optical function part) 14, which faces the first curved part 11. A surface of the first curved part 11 is covered with an antireflection film 12. A surface of the second curved part 14 is covered with an antireflection film 15.
[0028] The optical element 10 includes a flange 13 disposed outside the optical function part. The antireflection film 12 also covers a part of the flange 13. The antireflection film 12 which covers a part of the flange 13 includes, in a part of the antireflection film 12, a direction indication part 16 which protrudes in the plan-view radial direction (has a quadrilateral shape in the example shown in
[0029] That is, the direction indication part 16 has been disposed such that the worker, when assembling a lens unit, can understand the position of the optical element 10 (attachment position along the direction of the circumference in which the optical axis is set as the center) which does not result in a deviation of the optical axis of the optical element 10 from the axis of the lens barrel.
[0030] In this embodiment, the antireflection film 12 is formed such that the proportion of a region of the surface of the flange 13 which is covered with the antireflection film 12 to the region (specifically, the area of the region) of the surface of the flange 13 (including both the portion covered with the antireflection film 12 and the portion not covered therewith) is 40% or less. Namely, the proportion of the region not covered with the antireflection film 12 is 60% or higher.
[0031] It is thought that in the case where the proportion of the region not covered with the antireflection film 12 is 60% or higher, flange-surface flatness can be maintained. In the case where the flatness decreases, the optical element 10 is likely to incline with respect to the proper attachment position in incorporating the optical element 10 into a lens barrel, for example. In the case where the optical element 10 inclines, the optical axis of the lens element deviates from the axis of the lens barrel.
[0032] It is preferable that the thickness of the direction indication part 16 is, for example, 2 m or less such that no tilt is caused in the flange surface even if the direction indication part 16 comes into contact with other members (e.g., the lens barrel, a surface of the flange of another lens element, and a spacer element) in assembling a lens unit. The flange 13 is formed such that the surface thereof is flat. In other words, it is hence preferable that the difference in surface level between the direction indication part 16 and the flat surface of the flange 13 (flange surface) is 2 m or less.
[0033] Although the direction indication part 16 shown as an example in
[0034]
[0035] The optical element 10 is to be positioned when the flange 13 comes into contact with the lens barrel 21, etc. The worker understands the circumferential-direction attachment position of the optical element 10 on the basis of the direction indication part 16. Since the flange surface has sufficient flatness in incorporating the optical element 10 into the lens barrel 21 as described above, the flange surface is inhibited from being tilted.
Embodiment 2
[0036]
[0037] The optical element 30 is a lens element made of glass. The optical element 30, in a central portion thereof, includes a first curved part (optical function part) 31 having a convex shape, and a second curved part (optical function part) 34, which faces the first curved part 31. A surface of the first curved part 31 is covered with an antireflection film 32. A surface of the second curved part 34 is covered with an antireflection film 35.
[0038] The optical element 30 includes a flange 33 disposed outside the optical function part. In the first embodiment, the flatness of the flange surface is enhanced by reducing the proportion of the region of the antireflection film 12 which covers the flange 13. Meanwhile, in the second embodiment, the flatness of the flange surface (in this embodiment, to be exact, the flange surface indicates a surface of the antireflection film 32 which lies on the flange 33) is enhanced by increasing the proportion of the region of the antireflection film 32 which covers the flange 33. In this embodiment, the region of the flange 33 which underlies the antireflection film 32 is referred to as covered region. The region of the flange 33 which is not covered with the antireflection film 32 is referred to as uncovered region.
[0039] In this embodiment, the proportion of the covered region to the surface of the flange 33 (including both the portion covered with the antireflection film 32 and the portion not covered therewith) is 60% or higher.
[0040] It is thought that in the case where the proportion of the covered region is 60% or higher, flange-surface flatness can be maintained. As described above, in the case where the flatness decreases, the optical element 30 is likely to incline with respect to the proper attachment position in incorporating the optical element 30 into a lens barrel, for example. In the case where the optical element 30 inclines, the optical axis of the lens element deviates from the axis of the lens barrel.
[0041] A cutout in a part of the doughnut-shaped region of the antireflection film 32 which covers the flange 33 constitutes a direction indication part 36.
[0042] It is preferable that the thickness of the direction indication part 36 is, for example, 2 m or less such that no tilt is caused in the flange surface even if the direction indication part 36 comes into contact with other members (e.g., the lens barrel, a surface of the flange of another lens element, and a spacer element) in assembling a lens unit. The flange 33 is formed such that the surface thereof is flat, and the antireflection film 32 is formed such that the antireflection film 32 having an even thickness covers the flange 33. Consequently, in other words, it is preferable that the difference in surface level between the direction indication part 36 (specifically, a top surface of the direction indication part 36) and the flat portion (flange surface) is 2 m or less.
[0043] Although the direction indication part 36 shown as an example in
[0044]
[0045] The optical element 30 is to be positioned when the flange 33 comes into contact with the lens barrel 41, etc. The worker understands the circumferential-direction attachment position of the optical element 30 on the basis of the direction indication part 46. Since the flange surface has sufficient flatness in incorporating the optical element 30 into the lens barrel 41 as described above, the flange surface is inhibited from being tilted.
Embodiment 3
[0046]
[0047] The optical element 50 is a lens element made of glass. The optical element 50, in a central portion thereof, includes a first curved part (optical function part) 51 having a convex shape, and a second curved part (optical function part) 54, which faces the first curved part 51. A surface of the first curved part 51 is covered with an antireflection film 52. A surface of the second curved part 54 is covered with an antireflection film 55.
[0048] The optical element 50 includes a flange 53 disposed outside the optical function part. The antireflection film 52 also covers a part of the flange 53. In this embodiment, the antireflection film 52 may not cover the flange 53. Furthermore, the antireflection film 52 lying on the flange 53 may be absent. In this embodiment, a direction indication part 56 is formed on the flange 53. In the example shown in
[0049] In this embodiment, in the surface of the flange 53 (including both the portion covered with the antireflection film 52 and the portion not covered therewith), the portion which is not covered with the antireflection film 52 includes a non-cutout portion and a cutout portion, i.e., a bottom surface 56a of the direction indication part 56. The direction indication part 56 is formed such that the region in the surface of the flange 53 which is not covered with the antireflection film 52 and which does not include the bottom surface 56a of the direction indication part 56 accounts for 60% or more of the surface of the flange 53. Although the direction indication part 56 shown in
[0050] It is thought that in the case where the proportion of the region is 60% or higher, flange-surface flatness can be maintained. It is preferable that the thickness (depth) of the direction indication part 56 is, for example, 2 m or less such that no tilt is caused in the flange surface even if the direction indication part 56 comes into contact with other members (e.g., the lens barrel, a surface of the flange of another lens element, and a spacer element) in assembling a lens unit. The flange 53 is formed such that the surface thereof is flat. In other words, it is hence preferable that the difference in surface level between the direction indication part 56 (specifically, the bottom surface 56a of the direction indication part 56) and the flat portion (flange surface) is 2 m or less.
[0051] Although the direction indication part 56 shown as an example in
[0052]
[0053] The optical element 50 is to be positioned when the flange 53 comes into contact with the lens barrel 61, etc. The worker understands the circumferential-direction attachment position of the optical element 50 on the basis of the direction indication part 56. Since the flange surface has sufficient flatness in incorporating the optical element 50 into the lens barrel 61 as described above, the flange surface is inhibited from being tilted.
[0054] The optical elements 10, 30, and 50 shown above as examples in the first to the third embodiments include second curved parts 14, 34, and 54 having a convex shape toward an outer side. However, the second curved parts 14, 34, and 54 may be flat or recessed.
[0055] Embodiments and examples of the optical element were explained above, and the optical elements shown as the embodiments and examples can be applied to (for example, incorporated into) various optical systems.
[0056] Examples of the optical systems include lenses which cooperate with the optical element, optical filters such as antireflection films and bandpass filters, cover glasses, and diaphragms. However, these are merely examples, and applications in which the optical element is usable are not limited to those examples.
[0057] The optical element described above is supposed to be applied to imaging devices, e.g., cameras.
[0058] While the invention has been described in detail and with reference to specific embodiments thereof, it will be apparent to one skilled in the art that various changes and modifications can be made therein without departing from the spirit and scope thereof.
[0059] This application is based on Japanese patent application No. 2018-083225 filed on Apr. 24, 2018, the contents thereof being incorporated herein by reference.
INDUSTRIAL APPLICABILITY
[0060] The optical element in the present invention is inhibited from decreasing in flange-surface flatness even when the optical element comes into contact with other members. The present invention, which has this effect, is useful with respect to optical elements, optical systems, and imaging devices.
REFERENCE SIGNS LIST
[0061] 10, 30, 50 Optical element [0062] 11, 31, 51 First curved part [0063] 12, 32, 52 Antireflection film [0064] 13, 33, 53 Flange [0065] 14, 34, 54 Second curved part [0066] 15, 35, 55 Antireflection film [0067] 16, 36, 56 Direction indication part [0068] 20, 40, 60 Lens unit [0069] 21, 41, 61 Lens barrel [0070] 22, 42, 62 Another lens [0071] 23, 43, 63 Spacer [0072] 24, 44, 64 Fastener