Zoom dual-aperture camera with folded lens
US-2024280792-A1 · Aug 22, 2024 · US
US9316818B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9316818-B2 |
| Application number | US-201414173409-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 5, 2014 |
| Priority date | Aug 29, 2011 |
| Publication date | Apr 19, 2016 |
| Grant date | Apr 19, 2016 |
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In a zoom lens in which a first lens group having a negative refractive power and a second lens group having a positive refractive power are disposed in order from the object side and zooming is performed by moving the first and the second lens groups, the first lens group is formed of a first lens having a negative refractive power, a second lens, a third lens having a negative refractive power, and a fourth lens having a positive refractive power. Then, when the focal length of the second lens, the focal length of the entire system at the wide angle end, the focal length of the first lens group, and the focal length of the second lens group are taken as f G12 , fw, f 1 , and f 2 respectively, the zoom lens is configured to satisfy conditional expressions give below: 0.00< fw/f 2 <0.50 (1-1); and −0.19< f 1 /f G12 <0.16 (2-1).
Opening claim text (preview).
What is claimed is: 1. A zoom lens consisting of a first lens group having a negative refractive power and a second lens group having a positive refractive power, disposed in order from the object side, wherein: zooming is performed by moving the first lens group and the second lens group; the first lens group consists of a first lens having a negative refractive power, a second lens, a third lens having a negative refractive power, and a fourth lens having a positive refractive power; the second lens group consists of four lenses; and when the focal length of the second lens from the object side in the first lens group is taken as f G12 , the focal length of the entire system at the wide angle end is taken as fw, the focal length of the first lens group is taken as f 1 , and the focal length of the second lens group is taken as f 2 , the zoom lens satisfies conditional expressions given below: 0.00< fw/f 2 <0.50 (1-1); and −0.09< f 1 /f G12 <0.16 (2-1). 2. The zoom lens of claim 1 , wherein the zoom lens satisfies at least either one of conditional expressions given below with respect to the focal lengths f G12 , fw, f 1 and f 2 : 0.20< fw/f 2 <0.43 (1-2); and −0.15< f 1 /f G12 <0.10 (2-2). 3. The zoom lens of claim 1 , wherein the zoom lens satisfies a conditional expression given below with respect to the focal lengths fw and f 2 : 0.31< fw/f 2 <0.35 (1-3). 4. The zoom lens of claim 1 , wherein, when the second lens from the object side in the first lens group is taken as f G12 and the focal length of the entire system at the wide angle end is taken as fw, the zoom lens satisfies a conditional expression given below: −0.11< fw/f< 0.12 (3). 5. The zoom lens of claim 4 , wherein the zoom lens satisfies a conditional expression given below: −0.01< fw/f G12 <0.06 (3′). 6. The zoom lens of claim 1 , wherein, when the focal length of the first lens group is taken as f 1 and the focal length of the second lens group is taken as f 2 , the zoom lens satisfies a conditional expression given below: 0.56<| f 1 /f 2 |<1.04 (4). 7. The zoom lens of claim 6 , wherein the zoom lens satisfies a conditional expression given below: 0.70<| f 1 /f 2 |<0.80 (4′). 8. The zoom lens of claim 1 , wherein, when the focal length of the entire system at the wide angle end is taken as fw and the focal length of the first lens group is taken as f 1 , the zoom lens satisfies a conditional expression given below: 0.00<| fw/f 1 |<0.63 (5). 9. The zoom lens of claim 8 , wherein the zoom lens satisfies a conditional expression given below: 0.20<| fw/f 1 |<0.50 (5′). 10. The zoom lens of claim 1 , wherein, when the maximum effective radius of the object side surface of the second lens from the object side in the first lens group is taken as H G12F , the radius of curvature of a spherical surface passing through the center of the object side surface of the second lens and a point on the object side surface at a height of H G12F from the optical axis with the center of the object side surface as the apex of the spherical surface is taken as r′ G12F , and the radius of curvature of a spherical surface passing through the center of the object side surface of the second lens and a point on the object side surface at a height of H G12F ×0.5 from the optical axis with the center of the object side surface as the apex of the spherical surface is taken as r″ G12F , the zoom lens satisfies a conditional expression given below: 0.20< H G12F ×{(1/ r′ G12F )−(1/ r″ G12F )} (6). 11. The zoom lens of claim 1 , wherein, when the paraxial radius of curvature of the object side surface of the second lens from the object side in the first lens group is taken as r G12F and the paraxial radius of curvature of the image side surface of the second lens from the object side in the first lens group is taken as r G12R , the zoom lens satisfies a conditional expression given below: 2.0<( r G12F +r G12R )/( r G12F −r G12R )<30.0 (7). 12. The zoom lens of claim 1 , wherein, when the paraxial radius of curvature of the object side surface of the first lens from the object side in the first lens group is taken as r G11F and the paraxial radius of curvature of the image side surface of the first lens from the object side in the first lens group is taken as r G11R , the zoom lens satisfies a conditional expression given below: 2.5<( r G11F +r G11R )/( r G11F −r G11R )<10.0 (8). 13. The zoom lens of claim 1 , wherein, when the focal length of the first lens from the object side in the second lens group is taken as f G21 and the focal length of the second lens from the object side in the second lens group G 2 is taken as f G22 , the zoom lens satisfies a conditional expression given below: 1.3< f G21 /f G22 <3.0 (9). 14. An imaging apparatus, comprising the zoom lens of claim 1 . 15. A zoom lens consisting of a first lens group having a negative refractive power and a second lens group having a positive refractive power, disposed in order from the object side, wherein: zooming is performed by moving the first lens group and the second lens group; the first lens group consists of a first lens having a negative refractive power, a second lens, a third lens having a negative refractive power, and a fourth lens having a positive refractive power; the second lens group consists of four lenses; and when the focal length of the second lens from the object side in the first lens group is taken as f G12 , the focal length of the entire system at the wide angle end is taken as fw, the focal length of the first lens group is taken as f 1 , and the focal length of the second lens group is taken as f 2 , the zoom lens satisfies conditional expressions given below: 0.00< fw/f 2 <0.43 (1-4); and −1.00< f 1 /f G12 <0.16 (2-3). 16. The zoom lens of claim 15 , wherein the zoom lens satisfies at least either one of conditional expressions given below with respect to f G12 , fw, f 1 , and f 2 : 0.20< fw/f 2 <0.43 (1-2); and −0.50< f 1 /f G12 <0.10 (2-4). 17. The zoom lens of claim 15 , wherein the zoom lens satisfies at least either one of conditional expressions given below with respect to f G12 , fw, f 1 , and f 2 : 0.31< fw/f 2 <0.35 (1-3); and −0.15< f 1 /f G12 <0 0.10 (2-2). 18. An imaging apparatus, comprising the zoom lens of claim 15 .
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