OPTICAL ZOOM DEVICE
20210116682 · 2021-04-22
Assignee
Inventors
- Stephan Smolka (Zürich, CH)
- Michael Büeler (Vogelsang, CH)
- Manuel Aschwanden (Allenwinden, CH)
- Johannes Haase (Dietikon, CH)
- Frank Bose (Dietikon, CH)
Cpc classification
G02B15/00
PHYSICS
International classification
G02B13/00
PHYSICS
G02B15/14
PHYSICS
Abstract
The present invention relates to an optical zoom device (1), comprising: a first lens (31) having an adjustable focal length and comprising a container (41) filled with a transparent fluid (F), wherein the container (41) of the first lens (31) comprises an elastically deformable and transparent membrane (61) facing a transparent wall (21) of the container (41) of the first lens (31), a second lens (32) having an adjustable focal length, wherein the second lens (32) is arranged after the first lens (31) in an optical path (A) of the optical zoom device (1), wherein the second lens (32) comprises a container (42) filled with a transparent fluid (F), wherein the container (42) of the second lens (32) comprises an elastically deformable and transparent membrane (62) facing a transparent wall (22) of the container (42) of the second lens (32), and a light deflecting device (70) arranged in the optical path (A), wherein the second lens (32) is arranged after the light deflecting device (70) in the optical path (A).
Claims
1. Optical zoom device (1), comprising: a first lens (31) having an adjustable focal length and comprising a container (41) filled with a transparent fluid (F), wherein the container (41) of the first lens (31) comprises an elastically deformable and transparent membrane (61) facing a transparent wall (21) of the container (41) of the first lens (31), a second lens (32) having an adjustable focal length, wherein the second lens (32) is arranged after the first lens (31) in an optical path (A) of the optical zoom device (1), wherein the second lens (32) comprises a container (42) filled with a transparent fluid (F′), wherein the container (42) of the second lens (32) comprises an elastically deformable and transparent membrane (62) facing a transparent wall (22) of the container (42) of the second lens (32), and a light deflecting device (70) arranged in the optical path (A), wherein the second lens (32) is arranged after the light deflecting device (70) in the optical path (A).
2. Optical zoom device according to claim 1, characterized in that the first lens (31) is arranged in front of the light deflecting device (70) or after the light deflecting device (70) in the optical path (A).
3. Optical zoom device according to claim 1, characterized in that the optical zoom device (1) comprises a third lens (33) having an adjustable focal length, the third lens (33) comprising a container (43) filled with a transparent fluid (F″), wherein the container (43) of the third lens (33) comprises an elastically deformable and transparent membrane (63) facing a transparent wall (23) of the container (43) of the third lens (33).
4. Optical zoom device according to claim 3, characterized in that the third lens (33) is arranged after the light deflecting device (70) in the optical path (A).
5. Optical zoom device according to claim 3, characterized in that the third lens (33) is arranged after the second lens (32) in the optical path (A).
6. Optical zoom device according to claim 1, characterized in that the optical zoom device (1) comprises an aperture stop (80) arranged in the optical path (A).
7. Optical zoom device according to claim 6, characterized in that the aperture stop (80) is arranged after the light deflecting device (70) in the optical path (A).
8. Optical zoom device according to claim 6, characterized in that the aperture stop (80) is arranged between the first lens (31) and the second lens (32) in the optical path (A).
9. Optical zoom device according to claim 3, characterized in that the aperture stop (80) is arranged between the second lens (32) and the third lens (33) in the optical path (A).
10. Optical zoom device according to claim 1, characterized in that the optical zoom device (1) comprises a rigid lens (90) arranged in front of the light deflecting device (70) in the optical path (A).
11. Optical zoom device according to claim 1, characterized in that the optical zoom device (1) comprises at least one rigid lens (91) arranged after the light deflecting device (70) and/or after first lens (31) in the optical path (A).
12. Optical zoom device according to claim 1, characterized in that the optical zoom device (1) comprises an image sensor (100) arranged after the second lens (32) or after the third lens (33) in the optical path (A).
13. Optical zoom device according to claim 1, characterized in that for adjusting the focal length of the first lens (31), the membrane (61) of the first lens (31) is connected to a circumferential lens shaping element (71) of the first lens (31) for defining an area (61a) of the membrane (61) of the first lens (31) having an adjustable curvature; and/or wherein for adjusting the focal length of the second lens (32), the membrane (62) of the second lens (32) is connected to a circumferential lens shaping element (72) of the second lens (32) for defining an area (62a) of the membrane (62) of the second lens (32) having an adjustable curvature; and/or wherein for adjusting the focal length of the third lens (33), the membrane (63) of the third lens (33) is connected to a circumferential lens shaping element (73) of the third lens (33) for defining an area (63a) of the membrane (63) of the third lens (33) having an adjustable curvature.
14. Optical zoom device according to claim 1, characterized in that the container (41) of the first lens (31) encloses a lens volume (V1) filled with the fluid (F) and at least a first reservoir volume (R1) filled with the fluid (F) and connected to the lens volume (V1) of the container (41) of the first lens (31), wherein the container (41) of the first lens (31) comprises an elastically deformable first wall member (41a) adjacent the at least one first reservoir volume (R1) of the container (41) of the first lens (31); and/or wherein the container (42) of the second lens (32) encloses a lens volume (V2) filled with the fluid (F′) and at least a first reservoir volume (R2) filled with the fluid (F′) and connected to the lens volume (V2) of the container (42) of the second lens (32), wherein the container (42) of the second lens (32) comprises an elastically deformable first wall member (42a) adjacent the at least one first reservoir volume (R2) of the container (42) of the second lens (32); and/or wherein the container (43) of the third lens (33) encloses a lens volume (V3) filled with the fluid (F″) and at least a first reservoir volume (R3) filled with the fluid (F″) and connected to the lens volume (V3) of the container (43) of the third lens (33), wherein the container (43) of the third lens (33) comprises an elastically deformable first wall member (43a) adjacent the at least one first reservoir volume (R3) of the container (43) of the third lens (33).
15. Optical zoom device according to claim 14, characterized in that the elastically deformable first wall member (41a) of the container (41) of the first lens (31) is formed by the membrane (61) of the first lens (31); and/or wherein the elastically deformable first wall member (42a) of the container (42) of the second lens (32) is formed by the membrane (62) of the second lens (32); and/or wherein the elastically deformable first wall member (43a) of the container (43) of the third lens (33) is formed by the membrane (63) of the third lens (33).
16. Optical zoom device according to claim 14, characterized in that the at least one first reservoir volume (R1) of the container (41) of the first lens (31) is arranged laterally next to the lens volume (V1) of the container (41) of the first lens (31) in a direction perpendicular to the optical axis of the first lens (31); and/or wherein the at least one first reservoir volume (R2) of the container (42) of the second lens (32) is arranged laterally next to the lens volume (V2) of the container (42) of the second lens (32) in a direction perpendicular to the optical axis of the second lens (32); and/or wherein the at least one first reservoir volume (R3) of the container (43) of the third lens (33) is arranged laterally next to the lens volume (V3) of the container (43) of the third lens (33) in a direction perpendicular to the optical axis of the third lens (33).
17. Optical zoom device according to claim 14, characterized in that that the container (41) of the first lens (31) encloses a second reservoir volume (R12) connected to the lens volume (V1) of the container (41) of the first lens (31), wherein the container (41) of the first lens (31) comprises an elastically deformable second wall member (41b) adjacent the second reservoir volume (R12) of the container (41) of the first lens (31); and/or wherein the container (42) of the second lens (32) encloses a second reservoir volume (R22) connected to the lens volume (V2) of the container (42) of the second lens (32), wherein the container (42) of the second lens (32) comprises an elastically deformable second wall member (42b) adjacent the second reservoir volume (R22) of the container (42) of the second lens (32); and/or wherein the container (43) of the third lens (33) encloses a second reservoir volume (R32) connected to the lens volume (V3) of the container (43) of the third lens (33), wherein the container (43) of the third lens (33) comprises an elastically deformable second wall member (43b) adjacent the second reservoir volume (R32) of the container (43) of the third lens (33).
18. Optical zoom device according to claim 1, characterized in that the wall (21) of the container (41) of the first lens (31) comprises a step (301), particularly for increasing the at least one first reservoir volume (R1) of the first lens (31); and/or wherein the wall (22) of the container (42) of the second lens (32) comprises a step (302), particularly for increasing the at least one first reservoir volume (R2) of the second lens (32); and/or wherein the wall (23) of the container (43) of the third lens (33) comprises a step (303), particularly for increasing the at least one first reservoir volume (R3) of the third lens (33).
19. Optical zoom device according to claim 17, characterized in that the first and the second reservoir volume (R1, R12) of the container (41) of the first lens (31) face each other in a direction perpendicular to the optical axis of the first lens (31), and are arranged on the same side of the lens volume (V1) of the container (41) of the first lens (31) or are arranged on opposite sides of the lens volume (V1) of the container (41) of the first lens (31); and/or wherein the first and the second reservoir volume (R2, R22) of the container (42) of the second lens (32) face each other in a direction perpendicular to the optical axis of the second lens (32), and are arranged on the same side of the lens volume (V2) of the container (42) of the second lens (32) or are arranged on opposite sides of the lens volume (V2) of the container (42) of the second lens (32); and/or wherein the first and the second reservoir volume (R3, R32) of the container (43) of the third lens (33) face each other in a direction perpendicular to the optical axis of the third lens (33), and are arranged on the same side of the lens volume (V3) of the container (43) of the third lens (33) or are arranged on opposite sides of the lens volume (V3) of the container (43) of the third lens (33).
20. Optical zoom device according to claim 14, characterized in that the container (41) of the first lens (31) comprises a frame structure (51) forming a lateral wall of the container (41) of the first lens (31), wherein the frame structure (51) of the container (41) of the first lens (31) comprises a first recess (51a) forming the lens volume (V1) of the container (41) of the first lens (31) that is covered by the membrane (61) of the container (41) of the first lens (31) and particularly by the wall (21) of the container (41) of the first lens (31), and wherein the frame structure (51) of the container (41) of the first lens (31) comprises a second recess (51b) forming the at least one first reservoir volume (R1) of the container (41) of the first lens (31) that is covered by the first wall member (41a) of the container (41) of the first lens (31) and particularly by the wall (21) of the container (41) of the first lens (31); and/or wherein the container (42) of the second lens (32) comprises a frame structure (52) forming a lateral wall of the container (42) of the second lens (32), wherein the frame structure (52) of the container (42) of the second lens (32) comprises a first recess (52a) forming the lens volume (V2) of the container (42) of the second lens (32) that is covered by the membrane (62) of the container (42) of the second lens (32) and particularly by the wall (22) of the container (42) of the second lens (32), and wherein the frame structure (52) of the container (42) of the second lens (32) comprises a second recess (52b) forming the at least one first reservoir volume (R2) of the container (42) of the second lens (32) that is covered by the first wall member (42a) of the container (42) of the second lens (32) and particularly by the wall (22) of the container (42) of the second lens (32); and/or wherein the container (43) of the third lens (33) comprises a frame structure (53) forming a lateral wall of the container (43) of the third lens (33), wherein the frame structure (53) of the container (43) of the third lens (33) comprises a first recess (53a) forming the lens volume (V3) of the container (43) of the third lens (33) that is covered by the membrane (63) of the container (43) of the third lens (33) and particularly by the wall (23) of the container (43) of the third lens (33), and wherein the frame structure (53) of the container (43) of the third lens (33) comprises a second recess (53b) forming the at least one first reservoir volume (R3) of the container (43) of the third lens (33) that is covered by the first wall member (43a) of the container (43) of the third lens (33) and particularly by the wall (23) of the container (43) of the third lens (33).
21. Optical zoom device according to claim 20, characterized in that the frame structure (51) of the container (41) of the first lens (31) comprises a third recess (51c) forming the second reservoir volume (R12) of the container (41) of the first lens (31) that is covered by the second wall member (41b) of the container (41) of the first lens (31) and particularly by the wall (21) of the container (41) of the first lens (31); and/or wherein the frame structure (52) of the container (42) of the second lens (32) comprises a third recess (51c) forming the second reservoir volume (R22) of the container (42) of the second lens (32) that is covered by the second wall member (42b) of the container (42) of the second lens (32) and particularly by the wall (22) of the container (42) of the second lens (32); and/or wherein the frame structure (53) of the container (43) of the third lens (33) comprises a third recess (51c) forming the second reservoir volume (R32) of the container (43) of the third lens (33) that is covered by the second wall member (43b) of the container (43) of the third lens (33) and particularly by the wall (23) of the container (43) of the third lens (33).
22. Optical zoom device according to claim 21, characterized in that the first recess (51a) of the frame structure (51) of the first lens (31) comprises a circumferential edge (71) which forms the lens shaping element (71) of the first lens (31); and/or wherein the first recess (52a) of the frame structure (52) of the second lens (32) comprises a circumferential edge (72) which forms the lens shaping element (72) of the second lens (32); and/or wherein the first recess (53a) of the frame structure (53) of the third lens (33) comprises a circumferential edge (73) which forms the lens shaping element (73) of the third lens (33).
23. Optical zoom device according to claim 1, characterized in that the wall (21) of the container (41) of the first lens (31) is an elastically deformable and transparent further membrane (21); and/or wherein the wall (22) of the container (42) of the second lens (32) is an elastically deformable and transparent further membrane (22); and/or wherein the wall (23) of the container (43) of the third lens (33) is an elastically deformable and transparent further membrane (23).
24. Optical zoom device according to claim 23, characterized in that the further membrane (21) of the first lens (31) is connected to a circumferential further lens shaping element (171) of the first lens (31) for defining an area (61b) of the further membrane (21) of the first lens (31) having an adjustable curvature; and/or wherein the further membrane (22) of the second lens (32) is connected to a circumferential further lens shaping element (172) of the second lens (32) for defining an area (62b) of the further membrane (22) of the second lens (32) having an adjustable curvature; and/or wherein the further membrane (23) of the third lens (33) is connected to a circumferential further lens shaping element (173) of the third lens (33) for defining an area (63b) of the further membrane (23) of the third lens (33) having an adjustable curvature.
25. Optical zoom device according to claim 24, characterized in that the first recess (51a) of the frame structure (51) of the first lens (31) comprises a further circumferential edge (171) which forms the further lens shaping element (171) of the first lens (31); and/or wherein the first recess (52a) of the frame structure (52) of the second lens (32) comprises a further circumferential edge (172) which forms the further lens shaping element (172) of the second lens (32); and/or wherein the first recess (53a) of the frame structure (53) of the third lens (33) comprises a further circumferential edge (173) which forms the further lens shaping element (173) of the third lens (33).
26. Optical zoom device according to claim 14, characterized in that, the lens volume (V1) of the first lens (31) is separated by a transparent separation wall (75) into a first lens volume part (V11) and a second lens volume part (V12), wherein the first lens volume part (V11) of the first lens (31) is connected to the first reservoir volume (R1) of the first lens (31) and the second lens volume part (V12) of the first lens (31) is connected to the second reservoir volume (R12) of the first lens (31); and/or wherein the lens volume (V2) of the second lens (32) is separated by a transparent separation wall (76) into a first lens volume part (V21) and second lens volume part (V22), wherein the first lens volume part (V21) of the second lens (32) is connected to the first reservoir volume (R2) of the second lens (32) and the second lens volume part (V22) of the second lens (31) is connected to the second reservoir volume (R22) of the second lens (32); and/or wherein the lens volume (V3) of the third lens (33) is separated by a transparent separation wall (77) into a first lens volume part (V31) and second lens volume part (V32), wherein the first lens volume part (V31) of the third lens (33) is connected to the first reservoir volume (R3) of the third lens (33) and the second lens volume part (V32) of the third lens (33) is connected to the second reservoir volume (R32) of the third lens (33).
27. Optical zoom device according to claim 14, characterized in that the first lens (31) comprises an actuator (111) that is configured to act on the elastically deformable first wall member (41a) of the container (41) of the first lens (31) to pump fluid (F) from the at least one first reservoir volume (R1) of the first lens (31) into the lens volume (V1) of the first lens (31) or from the lens volume (V1) of the first lens (31) into the at least one first reservoir volume (R1) of the first lens (31) so as to change the curvature of said area (61a) of the membrane (61) of the first lens (31) and therewith the focal length of the first lens (31); and/or wherein the second lens (32) comprises an actuator (112) that is configured to act on the elastically deformable first wall member (42a) of the container (42) of the second lens (32) to pump fluid (F′) from the at least one first reservoir volume (R2) of the second lens (32) into the lens volume (V2) of the second lens (32) or from the lens volume (V2) of the second lens (32) into the at least one first reservoir volume (R2) of the second lens (32) so as to change the curvature of said area (62a) of the membrane (62) of the second lens (32) and therewith the focal length of the second lens (32); and/or wherein the third lens (33) comprises an actuator (113) that is configured to act on the elastically deformable first wall member (43a) of the container (43) of the third lens (33) to pump fluid (F″) from the at least one first reservoir volume (R3) of the third lens (33) into the lens volume (V3) of the third lens (33) or from the lens volume (V3) of the third lens (33) into the at least one first reservoir volume (R3) of the third lens (33) so as to change the curvature of said area (63a) of the membrane (63) of the third lens (33) and therewith the focal length of the third lens (33).
28. Optical zoom device according to claim 14, characterized in that the actuator (111) of the first lens (31) is further configured to act on the elastically deformable second wall member (41b) of the container (41) of the first lens (31) to pump fluid (F) from the second reservoir volume (R12) of the first lens (31) into the lens volume (V1) of the first lens (31) or from the lens volume (V1) of the first lens (31) into the second reservoir volume (R12) of the first lens (31) so as to change the curvature of said area (61a) of the membrane (61) of the first lens (31) and therewith the focal length of the first lens (31); and/or wherein the actuator (112) of the second lens (32) is further configured to act on the elastically deformable second wall member (42b) of the container (42) of the second lens (32) to pump fluid (F′) from the second reservoir volume (R22) of the second lens (32) into the lens volume (V2) of the second lens (32) or from the lens volume (V2) of the second lens (32) into the second reservoir volume (R22) of the second lens (32) so as to change the curvature of said area (62a) of the membrane (62) of the second lens (32) and therewith the focal length of the second lens (32); and/or wherein the actuator (113) of the third lens (33) is further configured to act on the elastically deformable second wall member (43b) of the container (43) of the third lens (33) to pump fluid (F″) from the second reservoir volume (R32) of the third lens (33) into the lens volume (V3) of the third lens (33) or from the lens volume (V3) of the third lens (33) into the second reservoir volume (R32) of the third lens (33) so as to change the curvature of said area (63a) of the membrane (63) of the third lens (33) and therewith the focal length of the third lens (33).
29. Optical zoom device according to claim 14, characterized in that the first lens (31) comprises an actuator (111) that is configured to act on the elastically deformable first wall member (41a) of the container (41) of the first lens (31) to pump fluid (F) from the first reservoir volume (R1) of the first lens (31) into the first lens volume part (V11) of the first lens (31) or from the first lens volume part (V11) of the first lens (31) into the first reservoir volume (R1) of the first lens (31) so as to change the curvature of said area (61a) of the membrane (61) of the first lens (31) and therewith the focal length of the first lens (31); and/or wherein the second lens (32) comprises an actuator (112) that is configured to act on the elastically deformable first wall member (42a) of the container (42) of the second lens (32) to pump fluid (F′) from the first reservoir volume (R2) of the second lens (32) into the first lens volume part (V21) of the second lens (32) or from the first lens volume part (V21) of the second lens (32) into the first reservoir volume (R2) of the second lens (32) so as to change the curvature of said area (62a) of the membrane (62) of the second lens (32) and therewith the focal length of the second lens (32); and/or wherein the third lens (33) comprises an actuator (113) that is configured to act on the elastically deformable first wall member (43a) of the container (43) of the third lens (33) to pump fluid (F″) from the first reservoir volume (R3) of the third lens (33) into the first lens volume part (V31) of the third lens (33) or from the first lens volume part (V31) of the third lens (33) into the first reservoir volume (R3) of the third lens (33) so as to change the curvature of said area (63a) of the membrane (63) of the third lens (33) and therewith the focal length of the third lens (33).
30. Optical zoom device according to claim 14, characterized in that the actuator (111) of the first lens (31) is further configured to act on the elastically deformable second wall member (41b) of the container (41) of the first lens (31) to pump fluid (F) from the second reservoir volume (R12) of the first lens (31) into the second lens volume part (V12) of the first lens (31) or from the second lens volume part (V12) of the first lens (31) into the second reservoir volume (R12) of the first lens (31) so as to change the curvature of said area (61b) of the further membrane (21) of the first lens (31) and therewith the focal length of the first lens (31); and/or the actuator (112) of the second lens (32) is further configured to act on the elastically deformable second wall member (42b) of the container (42) of the second lens (32) to pump fluid (F′) from the second reservoir volume (R22) of the second lens (32) into the second lens volume part (V22) of the second lens (32) or from the second lens volume part (V22) of the second lens (32) into the second reservoir volume (R22) of the second lens (32) so as to change the curvature of said area (62b) of the further membrane (22) of the second lens (32) and therewith the focal length of the second lens (32); and/or the actuator (113) of the third lens (33) is further configured to act on the elastically deformable second wall member (43b) of the container (43) of the third lens (33) to pump fluid (F″) from the second reservoir volume (R32) of the third lens (33) into the second lens volume part (V32) of the third lens (33) or from the second lens volume part (V32) of the third lens (33) into the second reservoir volume (R32) of the third lens (33) so as to change the curvature of said area (63b) of the further membrane (23) of the third lens (33) and therewith the focal length of the third lens (33).
31. Optical zoom device according to claim 27, characterized in that the actuator (111) of the first lens (31) comprises a piston structure (201) configured to push against or to pull on the elastically deformable first wall member (41a) of the container (41) of the first lens (31), and/or to push against or to pull on the elastically deformable second wall member (41b) of the container (41) of the first lens (31); and/or wherein the actuator (112) of the second lens (32) comprises a piston structure (202) configured to push against or to pull on the elastically deformable first wall member (42a) of the container (42) of the second lens (32), and/or to push against or to pull on the elastically deformable second wall member (42b) of the container (42) of the second lens (32); and/or wherein the actuator (113) of the third lens (33) comprises a piston structure (203) configured to push against or to pull on the elastically deformable first wall member (43a) of the container (43) of the third lens (33), and/or to push against or to pull on the elastically deformable second wall member (43b) of the container (43) of the third lens (33).
32. Optical zoom device according to claim 31, characterized in that the actuator (111) of the first lens (31) comprises an electrically conducting coil (211) that is connected to the piston structure (201) of the actuator (111) of the first lens (31) and is configured to interact with a magnet (221) of the actuator (111) of the first lens (31) so as to move the piston structure (201) of the actuator (111) of the first lens (31); and/or wherein the actuator (112) of the second lens (32) comprises an electrically conducting coil (212) that is connected to the piston structure (202) of the actuator (112) of the second lens (32) and is configured to interact with a magnet (222) of the actuator (112) of the second lens (32) so as to move the piston structure (202) of the actuator (112) of the second lens (32); and/or wherein the actuator (113) of the third lens (33) comprises an electrically conducting coil (213) that is connected to the piston structure (203) of the actuator (113) of the third lens (33) and is configured to interact with a magnet (223) of the actuator (113) of the third lens (33) so as to move the piston structure (203) of the actuator (113) of the third lens (33).
33. Optical zoom device according to claim 31, characterized in that the actuator (111) of the first lens (31) comprises a magnet (221) that is connected to the piston structure (201) of the actuator (111) of the first lens (31) and is configured to interact with an electrically conducting coil (211) of the actuator (111) of the first lens (31) so as to move the piston structure (201) of the actuator (111) of the first lens (31); and/or wherein the actuator (112) of the second lens (32) comprises a magnet (222) that is connected to the piston structure (202) of the actuator (112) of the second lens (32) and is configured to interact with an electrically conducting coil (212) of the actuator (112) of the second lens (32) so as to move the piston structure (202) of the actuator (112) of the second lens (32); and/or wherein the actuator (113) of the third lens (33) comprises a magnet (223) that is connected to the piston structure (203) of the actuator (113) of the third lens (33) and is configured to interact with an electrically conducting coil (213) of the actuator (113) of the third lens (33) so as to move the piston structure (203) of the actuator (113) of the third lens (33).
34. Optical zoom device according to claim 14, characterized in that the at least one first reservoir (R1) of the container (41) of the first lens (31) is filled such with said fluid (F) that the elastically deformable first wall member (41a) of the container (41) of the first lens (31) comprises a convex bulge; and/or wherein the at least one first reservoir (R2) of the container (42) of the second lens (32) is filled such with said fluid (F′) that the elastically deformable first wall member (42a) of the container (42) of the second lens (32) comprises a convex bulge; and/or wherein the at least one first reservoir (R3) of the container (43) of the third lens (33) is filled such with said fluid (F″) that the elastically deformable first wall member (43a) of the container (43) of the third lens (33) comprises a convex bulge.
35. Optical zoom device according to claim 17, characterized in that the second reservoir (R12) of the container (41) of the first lens (31) is filled such with said fluid (F) that the elastically deformable second wall member (41b) of the container (41) of the first lens (31) comprises a convex bulge; and/or wherein the second reservoir (R22) of the container (42) of the second lens (32) is filled such with said fluid (F′) that the elastically deformable second wall member (42b) of the container (42) of the second lens (32) comprises a convex bulge; and/or wherein the second reservoir (R32) of the container (43) of the third lens (33) is filled such with said fluid (F″) that the elastically deformable second wall member (43b) of the container (43) of the third lens (33) comprises a convex bulge.
36. Optical zoom device according to claim 1, characterized in that, the container (41) of the first lens (31) encloses a lens volume (V1) filled with the fluid (F), wherein the container (41) of the first lens (31) further comprises a deformable lateral wall (121) connected to the wall (21) of the container (41) of the first lens (31) for adjusting the curvature of the area (61a) of the membrane (61) of the first lens (31) and therewith the focal length of the first lens (31); and/or wherein the container (42) of the second lens (32) encloses a lens volume (V2) filled with the fluid (F′), wherein the container (42) of the second lens (32) further comprises a deformable lateral wall (122) connected to the wall (22) of the container (42) of the second lens (32) for adjusting the curvature of the area (62a) of the membrane (62) of the second lens (32) and therewith the focal length of the second lens (32); and/or wherein the container (43) of the third lens (33) encloses a lens volume (V3) filled with the fluid (F″), wherein the container (43) of the third lens (33) further comprises a deformable lateral wall (123) connected to the wall (23) of the container (43) of the third lens (33) for adjusting the curvature of the area (63a) of the membrane (63) of the third lens (33) and therewith the focal length of the third lens (33).
37. Optical zoom device according to claim 13, characterized in that the first lens (31) comprises an actuator (111) that is configured to adjust the curvature of said area (61a) of the membrane (61) of the first lens (31) and therewith the focal length of the first lens (31), wherein the actuator (111) of the first lens (31) is configured to act on the lens shaping element (71) of the first lens (31) or on the wall (21) of the container (41) of the first lens (31) to deform the lateral wall (121) of the container (41) of the first lens (31) and adjust the curvature of the area (61a) of the membrane (61) of the first lens (31); and/or wherein the second lens (32) comprises an actuator (112) that is configured to adjust the curvature of said area (62a) of the membrane (62) of the second lens (32) and therewith the focal length of the second lens (32), wherein the actuator (112) of the second lens (32) is configured to act on the lens shaping element (72) of the second lens (32) or on the wall (22) of the container (42) of the second lens (32) to deform the lateral wall (122) of the container (42) of the second lens (32) and adjust the curvature of the area (62a) of the membrane (62) of the second lens (32); and/or wherein the third lens (33) comprises an actuator (113) that is configured to adjust the curvature of said area (63a) of the membrane (63) of the third lens (33) and therewith the focal length of the second lens (33), wherein the actuator (113) of the third lens (33) is configured to act on the lens shaping element (73) of the third lens (33) or on the wall (23) of the container (43) of the third lens (33) to deform the lateral wall (123) of the container (43) of the third lens (33) and adjust the curvature of the area (63a) of the membrane (63) of the third lens (33).
38. Optical zoom device according to claim 1, characterized in that the light deflecting device (70) is one of: a folding prism (70), a mirror (70), a tiltable mirror (70).
39. Optical zoom device according to claim 1, characterized in that both the first lens (31) and the second lens (32) are arranged after the light deflecting device (70) with respect to the optical path (A).
Description
[0048] In the following, further features as well as embodiments of the present invention are described with reference to the Figures that are appended to the claims, wherein:
[0049]
[0050]
[0051]
[0052]
[0053]
[0054]
[0055]
[0056]
[0057]
[0058]
[0059]
[0060]
[0061]
[0062]
[0063]
[0064]
[0065] The present invention relates to optical zoom devices 1. Particularly, the optical zoom device 1 is a mechanical assembly of lens elements for which the focal length (and thus angle of view) can be varied.
[0066] According to the present invention (cf. e.g.
[0067] According to a first embodiment shown in
[0068] Thus, according to the embodiment shown in
[0069] Furthermore, the optical zoom device 1 shown in
[0070] Furthermore, the optical zoom device 1 according to
[0071] Particularly,
[0072]
[0073] As described in conjunction with
[0074] Particularly, also here,
[0075] Furthermore,
[0076] Also here, the optical zoom device 1 can comprise one or several rigid lenses 91 having a fixed focal length. The respective rigid lens 91 can e.g. be made from a plastic material or a glass. Further, the respective rigid lens 91 can have a spherical or an aspherical shape. For instance, in the example shown in
[0077] Furthermore, the optical zoom device 1 shown in
[0078] Particularly, the upper part (A) of
[0079] Further,
[0080] As shown in
[0081] Furthermore, the optical zoom device 1 shown in
[0082] Particularly, the upper part (A) of
[0083] Furthermore, particularly, the optical zoom device 1 according to the present invention forms a folded zoom module including liquid lenses. Particularly, the optical zoom device 1 according to the present invention can feature an optical image stabilization using (among others) e.g. one of: [0084] a liquid prism, preferably at the entrance of the optical zoom device 1 because the same compensation of the image movement due to a movement of the device 1 can be achieved with a lower mechanical stroke at the entrance of the module (refer to earlier patent on prism), [0085] tilting of the shaper (lens shaping element) of a liquid lens that imitates a liquid prism, [0086] shifting one of the rigid spherical optical elements in two dimensions (x and y), [0087] tilting the prism 70, [0088] shifting the optical zoom device 1 in x,y,z.
[0089] Furthermore, in all embodiments described herein, the prism 70 can be replaced with a mirror as shown in
[0090] In particular, in combination with liquid lenses when there is no optical element in front of the mirror 70 the field-of-view of the optical zoom device is narrow (e.g. smaller than 70°, preferably smaller than 30°.
[0091] Furthermore, the mirror size can be similar or smaller than the prism.
[0092] Furthermore, in contrast to the other optical image stabilization means listed above, tilting of the mirror 70 features a higher quality since no induction of errors in the image corners and no change of perspective occurs.
[0093] Particularly, the optical image stabilization is carried out in reflection which requires a much lower mechanical tilt to achieve the same optical tilt (the mechanical tilt corresponds to half the optical tilt while in transmission the mechanical tilt of a prism depends on the refractive index of the prism and is usually much larger (factor 2 to 10) than the optical tilt). As a consequence one can compensate much larger image errors for the same mechanical tilt
[0094] Particularly, the first, second and third lens 31, 32, 33 described above can e.g. each be designed as shown e.g. in
[0095] For adjusting the focal length of the respective lens 31, 32, 33, the membrane 61, 62, 63 of the respective lens 31, 32, 33 is connected to a circumferential lens shaping element 71, 72, 73 of the respective lens 31, 32, 33 for defining an area 61a, 62a, 63a of the membrane 61, 62, 63 that has an adjustable curvature. The curvature can be adjusted by pushing fluid F, F′, F″ against the membrane 61, 62, 63 or by reducing pressure of the fluid F, F′, F″ on the membrane 61, 62, 63.
[0096] To this end, the container 41, 42, 43 of the respective lens 31, 32, 33 encloses a lens volume V1 filled with the fluid F, F′, F″ and at least a first reservoir volume R1, R2, R3 filled with the fluid F, F′, F″ and connected to the lens volume V1, V2, V3 of the container 41, 42, 43 of the respective lens 31, 32, 33. Furthermore, the container 41, 42, 43 of the respective lens 31, 32, 33 comprises an elastically deformable first wall member 41a, 42a, 43a adjacent the at least one first reservoir volume R1, R2, R3 of the container 41, 42, 43 of the respective lens 31, 32, 33.
[0097] Furthermore, particularly, the elastically deformable first wall member 41a, 42a, 43a of the container 41, 42, 43 of the respective lens 31, 32, 33 can be formed by the membrane 61, 62, 63 of the respective lens 31, 32, 33.
[0098] Furthermore, as indicated in
[0099] Now, for increasing or reducing pressure of the fluid F, F′, F″ on the membrane 61, 62, 63 of the respective lens 31, 32, 33, the latter comprises an actuator 111, 112, 113 that is configured to act on the elastically deformable first wall member 41a, 42a, 43a of the container 41, 42, 43 of the respective lens 31, 32, 33 to pump fluid F, F′, F″ from the at least one first reservoir volume R1, R2, R3 into the lens volume V1, V2, V3 of the respective lens 31, 32, 33 or from the lens volume V1, V2, V3 into the at least one first reservoir volume R1, R2, R3 of the respective lens 31, 32, 33 so as to change the curvature of said area 61a, 62a, 63a of the membrane 61, 62, 63 of the respective lens 31, 32, 33 and therewith the focal length of the respective lens 31, 32, 33. This is due to the fact that pumping more fluid F, F′, F″ into the respective lens volume V1, V2, V3 will bulge the area 61a, 62a, 63a further outwards (dashed line in
[0100] Regarding the embodiment shown in
[0101] Furthermore, the lenses 31, 32, 33 described herein can feature at least one reservoir volume R1, R3, R3, but are not limited to one reservoir volume (see also below). Furthermore, the shape of the reservoir volume R1, R2, R3 and the shape of the fluid or liquid channel C1, C2, C3 can be adjusted such that they show the best performance.
[0102] Furthermore, according to the embodiment shown in
[0103] Furthermore, the frame structure 51, 52, 53 of the container 41, 42, 43 of the respective lens 31, 32, 33 comprises a second recess 51b, 52b, 53b forming the at least one first reservoir volume R1, R2, R3 of the container 41, 42, 43 of the respective lens 31, 32, 33 that is covered by the first wall member 41a, 42a, 43a and particularly by the wall 21, 22, 23 of the container 41, 42, 43 of the respective lens 31, 32, 33. Particularly, the wall member 41a, 42a, 43a of the respective lens 31, 32, 33 can be formed by the membrane 61, 62, 63 of the respective lens and does not have to be provided as a separate member. Particularly, pumping liquid into optical active area V1, V2, V3 by pushing into the wall member/membrane 41a, 42a, 43a or pumping liquid F, F′, F″ out of the optical area V1, V2, V3 by pulling on the member 41a, 42a, 43a can be done using a piston 201, 202, 203 that is moved by an actuator 111, 112, 113.
[0104] Particularly, the lens volume V1, V2, V3 of the respective lens 31, 32, 33 can be connected to the reservoir volume R1, R2, R3 of the respective lens 31, 32, 33 via a fluidic channel C1, C2, C3. The fluidic channel C1, C2, C3 can be a recess formed into the frame structure 51, 52, 53 of the respective lens 31, 32, 33.
[0105] Furthermore,
[0106] The second reservoir volume R12, R22, R32 can be actuated by the same actuator as the first reservoir volume R1, R2, R3 or by a further actuator. Particularly, using two reservoir volumes allows push/pull stroke reduction of the actuator(s).
[0107] Further, as indicated in
[0108] Furthermore, the lens shaping element 71, 72, 73 for defining said area 61a, 62a, 63a of the membrane 61, 62, 63 of the respective lens 31, 32, 33 can be placed on top of container 41, 42, 43 in form of a separate lens shaping element 71, 72, 73.
[0109] Furthermore, the actuator 111, 112, 113 of the first, second or third lens 31, 32, 33 can e.g. be formed according to the embodiments shown in
[0110]
[0111] The respective actuator 111, 112, 113 can comprise a return structure 401, 402, 403 connected to the fixed magnet 221, 222, 223 for guiding magnetic flux.
[0112]
[0113] Also in case of a moving magnet actuator 111, 112, 113, the respective actuator 111, 112, 113 can comprise a return structure 401, 402, 403 connected to the moving magnet 221, 222, 223 for guiding magnetic flux.
[0114]
[0115] Particularly, the further membrane 21, 22, 23 of the respective lens 31, 32, 33 is connected to a circumferential further lens shaping element 171, 172, 173 of the respective lens 31, 32, 33 for defining an area 61b, 62b, 63b of the further membrane 21, 22, 23 that comprises an adjustable curvature.
[0116] Particularly, in case the container 41, 42, 43 of the respective lens 31, 32, 33 comprises the frame structure 51, 52, 53 described above, the respective further lens shaping element 171, 172, 173 can be formed by a further circumferential edge 171, 172, 173 of the first recess 51a, 52a, 53a of the frame structure 51, 52, 53 of the respective lens 31, 32, 33. Also in this embodiment, the reservoir volume R1, R2, R3 can be actuated via a piston 201, 202, 203 that pushes against the elastically deformable wall member 41a, 42a, 43a or pulls on the latter to pump fluid F, F′, F″ back and forth between the reservoir volume R1, R2, R3 and the lens volume V1, V2, V3 to adjust the focal length of the respective lens 31, 32, 33 as described above.
[0117] Furthermore,
[0118] Particularly,
[0119] As indicated in
[0120] Particularly, the actuator 111, 112, 113 of the respective lens 31, 32, 33 is configured to act at the same time through the piston structure 201, 202, 203 on the elastically deformable first wall member 41a, 42a, 43a adjacent the first reservoir volume R1, R2, R3 and on the elastically deformable second wall member 41b, 42b, 43b adjacent the second reservoir volume R12, R22, R32 of the container 41, 42, 43 of the respective lens 31, 32, 33 to pump fluid F, F′, F″ from the first reservoir volume R1, R2, R3 of the respective lens 31, 32, 33 into the first lens volume part V11, V21, V31 of the respective lens 31, 32, 33 (piston structure 201, 202, 203 pushes against first wall members 41a, 42a, 43a) or vice versa (piston structure 201, 202, 203 pulls on first wall members 41a, 42a, 43a) and to pump fluid F, F′, F″ from the second reservoir volume R12, R22, R32 into the second lens volume part V12, V22, V32 of the respective lens 31, 32, 33 (piston structure 201, 202, 203 pushes against second wall members 41b, 42b, 43b) or vice versa (piston structure 201, 202, 203 pulls on second wall members 41b, 42b, 43b) so as to change the curvatures of said areas 61a, 62a, 63a, 61b, 61b, 61b of the two membranes 61, 62, 63, 21, 22, 23 and therewith the focal length of the respective lens 31, 32, 33.
[0121] Furthermore, as shown in
[0122] Furthermore, the first reservoir volume R1, R2, R3 can be connected by a fluidic channel C1, C2, C3 to the first lens volume part V11, V12, V13 of the respective lens 31, 32, 33, wherein this fluidic channel C1, C2, C3 extends under the lens shaping element 71, 72, 73 of the respective lens 31, 32, 33. Similarly, the second reservoir volume R12, R22, R32 can be connected by a further fluidic channel C12, C22, C32 to the second lens volume part V12, V22, V32 of the respective lens 31, 32, 33, wherein the further fluidic channel C12, C22, C32 extends under the further lens shaping element 71, 72, 73 of the respective lens 31, 32, 33.
[0123] Furthermore, regarding
[0124] Particularly, the respective first wall member 41a, 42a, 43a can comprise a bulge, particularly a convex bulge, particularly when the respective piston structure 201, 202, 203 is not pressing against the respective wall member 41a, 42a, 43a.
[0125] Particularly, with a slight liquid overfilling of the reservoir volumes R1, R2, R3 (and/or R12, R22, R32) one can increase the possible stroke for pushing into the respective reservoir volume (creation of a convex liquid lens).
[0126] Furthermore, by adjusting the free membrane (wall member 41a, 42, 43a) width and the width of the piston 201, 202, 203 the stroke and stroke force can be optimized.
[0127] By having different membrane stiffness of the reservoir membrane (wall member 41a, 42a, 43a), the force can be further optimized.
[0128] Furthermore, as demonstrated in
[0129]
[0130] Particularly, the deformable lateral wall 121, 122, 123 can be connected via a ring structure 131, 132, 133 of the respective lens 31, 32, 33 to the wall 21, 22, 23 (e.g. cover glass) of the container 41, 42, 43 of the respective lens 31, 32, 33 and via the circumferential lens shaping element 71, 72, 73 to the membrane 61, 62, 63 of the respective lens 31, 32, 33. The deformable lateral wall 121, 122, 123 allows adjusting the curvature of the area 61a, 62a, 63a of the membrane 61, 62, 63 of the respective lens 31, 32, 33 and therewith the focal length of the respective lens 31, 32, 33. Particularly, the deformable lateral wall 121, 122, 123 can be a bellows or a flexible membrane (e.g. thicker than membrane 61, 62, 63).
[0131] In order to actually deform the lateral wall 121, 122, 123 so as to tune the focal length of the respective lens 31, 32, 33, the latter comprises according to
[0132] Particularly, by pushing on the lens shaping element 71, 72, 73 the deflection of the deformable lateral wall(s) 121, 122, 123 of the respective lens 31, 32, 33 leads to a convex lens form. By pulling on the lens shaping element 71, 72, 73, the membrane shape in the optical active area 61a, 62a, 63a, leads to a concave form. By using non-symmetric forces on the lens shaping element 71, 72, 73, the respective lens 31, 32, 33 is tilted leading to a tilted lens form which can be used for optical image stabilization; alternatively, the lens shaping element 71, 72, 73 can be fixed to the optical system and the pusher (e.g. piston structure) can act on the wall 21, 22, 23 of the respective lens 31, 32, 33.