Claims
- 1. A zoom lens comprising from the object end to the image end a first positive group, said first group comprising a doublet component and a singlet component, said first group being axially movable to focus the lens, a second negative group, said first and second groups being axially movable in predetermined relation to vary the equivalent focal length of the lens; and a third stationary positive group, the zoom lens satisfying the following relations,
- 0.2<F.sub.1 /F.sub.L <0.6
- 0.2<K.sub.D /K.sub.S <1.6
- where F.sub.1 is the equivalent focal length of the first groups, F.sub.L is the longest equivalent focal length of the zoom lens, K.sub.D is the optical power of the doublet component of the first group, and K.sub.S is the optical power of the singlet component of the first group.
- 2. A lens according to claim 1, wherein said second group consists of a negative singlet followed by a negative doublet.
- 3. A lens according to claim 1 wherein said second group consists of a negative doublet followed by a negative singlet.
- 4. A lens according to claim 1 wherein said third group comprises a positive subgroup at the object side widely spaced from a negative subgroup and the positive subgroup consists of a singlet followed by a doublet.
- 5. A lens according to claim 1 wherein said third group comprises a positive subgroup at the object side widely spaced from a negative subgroup and the positive subgroup consists of a doublet followed by a singlet.
- 6. A lens according to claim 1 wherein said third group comprises a positive subgroup at the object side widely spaced from a negative subgroup and the positive subgroup consists of a singlet followed by a doublet followed by a singlet.
- 7. A lens according to claim 1 wherein said third group comprises a positive subgroup at the object side widely spaced from a negative subgroup and the positive subgroup consists of two singlets.
- 8. A lens according to claim 1 wherein said third group comprises a positive subgroup at the object side widely spaced from a negative subgroup and the positive subgroup consists of a doublet.
- 9. A lens according to claim 1 scaled to an EFL of 72.0 mm to 195.8 mm substantially as described:
- ______________________________________ Axial Distance Index of Between Refrac- AbbeEle- Radius of Surfaces tion No.ment Curvature (mm) (mm) N.sub.d V.sub.d______________________________________ R1 = 100.61L1 6.50 1.500 66.4 R2 = -208.00 .20 R3 = 108.10L2 8.10 1.534 62.0 R4 = -130.00L3 3.50 1.797 25.8 R5 = 965.06 Z1 R6 = -608.86L4 2.30 1.794 48.2 R7 = 21.02L5 5.10 1.847 23.9 R8 = 47.40 3.81 R9 = -61.93L6 2.00 1.815 44.9 R10 = -717.67 Z2 R11 = 58.55L7 3.70 1.742 49.1 R12 = -206.21 .20 R13 = 27.13L8 6.80 1.487 68.4 R14 = -73.05 .59 R15 = -74.44L9 3.00 R16 = 83.46 36.59 R17 = -16.48L10 2.00 1.843 38.7 R18 = -31.29 .20 R19 = 144.41L11 3.40 1.796 25.5 R20 = -79.57______________________________________EFL (mm) Z.sub.1 (mm) Z.sub.2 (mm) FVD (mm)______________________________________72.0 1.50 41.00 169.47134.9 25.84 21.49 174.25195.8 34.46 2.55 163.89______________________________________
- where the lens comprises lens elements L1 to L11 having surfaces R1 to R20, the index of refraction is given by N.sub.d, the dispersion is measured by the Abbe No. as given by V.sub.d, Z.sub.1 and Z.sub.2 are the variable air spacings at the indicated equivalent focal length (EFL), and FVD is the front vertex distance, the distance between the front surface of L1 and the image plane, and all distances are given in millimeters (mm).
- 10. A lens according to claim 1 scaled to an EFL of 70.0 mm to 199.9 mm substantially as described:
- ______________________________________ Axial Index of Distance Refrac- AbbeEle- Radius of Between Sur- tion No.ment Curvature (mm) faces (mm) N.sub.d V.sub.d______________________________________ R1 = 78.89L1 3.50 1.805 25.5 R2 = 42.10L2 9.00 1.665 51.7 R3 = 6349.49 .35 R4 = 74.28L3 6.00 1.482 71.1 R5 = -2197.53 Z1 R6 = -277.73L4 2.00 1.785 48.5 R7 = 48.38 4.80 R8 = -100.61L5 2.00 1.745 48.5 R9 = 28.54L6 4.00 1.817 25.0 R10 = 201.69 Z2 R11 = 80.69L7 3.50 1.487 70.4 R12 = -195.77 .20 R13 = 32.44L8 6.50 1.487 70.4 R14 = -90.94L9 1.50 1.793 26.0 R15 = 212.82 32.94 R16 = 225.23L10 5.00 1.805 25.5 R17 = -131.05 8.02 R18 = -24.27L11 2.00 1.809 40.4 R19 = -55.49______________________________________EFL (mm) Z.sub.1 (mm) Z.sub.2 (mm) FVD (mm)______________________________________70.0 .50 71.45 212.94135.0 15.31 35.97 192.27199.9 20.50 .50 161.95______________________________________
- where the lens comprises lens elements L1 to L11 having surfaces R1 to R19, the index of refraction is given by N.sub.d, the dispersion is measured by the Abbe No. as given by V.sub.d, Z.sub.1 and Z.sub.2 are the variable air spacings at the indicated equivalent focal length (EFL), and FVD is the front vertex distance, the distance between the front surface of L1 and the image plane, and all distances are given in millimeters (mm).
- 11. A lens according to claim 1 scaled to an EFL of 72.2 mm to 193.7 mm substantially as described:
- ______________________________________ Axial Distance Index of Between Refrac- AbbeEle- Radius of Surfaces tion No.ment Curvature (mm) (mm) N.sub.d V.sub.d______________________________________ R1 = 117.60L1 3.00 1.785 26.1 R2 = 60.14L2 8.10 1.517 64.2 R3 = -343.26 .10 R4 = 75.57L3 6.00 1.517 64.2 R5 = -960.00 Z1 R6 = -773.48L4 2.00 1.720 50.3 R7 = 55.15 3.85 R8 = -78.38L5 2.00 1.743 49.2 R9 = 32.58L6 5.05 1.805 25.5 R10 = 219.88 Z2 R11 = 45.80L7 5.10 1.667 48.3 R12 = -160.00 .20 R13 = 36.25L8 5.40 1.517 64.2 R14 = -188.96L9 1.50 1.805 25.5 R15 = 101.76 3.22 R16 = -169.64L10 2.00 1.805 25.5 R17 = 270.68 42.53 R18 = -18.37L11 2.00 1.743 49.2 R19 = -38.30 .20 R20 = 117.60L12 3.90 1.626 35.7 R21 = -76.42______________________________________EFL (mm) Z.sub.1 (mm) Z.sub.2 (mm) FVD (mm)______________________________________72.2 1.46 59.14 195.79135.2 21.38 29.25 185.81193.7 28.26 1.45 164.89______________________________________
- where the lens comprises lens elements L1 to L12 having surfaces R1 to R21, the index of refraction is given by N.sub.d, the dispersion is measured by the Abbe No. as given by V.sub.d, Z.sub.1 and Z.sub.2 are the variable air spacings at the indicated equivalent focal length (EFL), the FVD is the front vertex distance, the distance between the front surface of L1 and the image plane, and all distances are given in millimeters (mm).
- 12. A lens according to claim 1 scaled to an EFL of 70.0 mm to 199.9 mm substantially as described:
- ______________________________________ Axial Index of Distance Refrac- AbbeEle- Radius of Between Sur- tion No.ment Curvature (mm) faces (mm) N.sub.d V.sub.d______________________________________ R1 = 60.78L1 3.50 1.837 23.6 R2 = 35.72L2 9.00 15.54 59.5 R3 = -1501.55 .35 R4 = 37.45L3 7.00 1.485 68.5 R5 = -807.56 Z1 R6 = -260.37L4 2.00 1.728 54.7 R7 = 28.81 4.00 R8 = -61.32L5 1.80 1.788 43.4 R9 = 21.60L6 4.50 1.854 23.1 R10 = 151.89 Z2 R11 = 50.66L7 8.50 1.492 65.4 R12 = -27.43L8 1.50 1.849 23.1 R13 = -66.89 9.99 R14 = 91.86L9 5.00 1.794 34.7 R15 = -84.59 25.25 R16 = -29.20L10 2.00 1.860 42.5 R17 = 42.78L11 4.00 1.634 49.8 R18 = -34.10______________________________________EFL (mm) Z.sub.1 (mm) Z.sub.2 (mm) FVD (mm)______________________________________70.0 .88 46.23 202.87135.0 10.12 23.36 189.23199.9 13.36 .50 169.56______________________________________
- where the lens comprises lens elements L1 to L11 having surfaces R1 to R18, the index of refraction is given by N.sub.d, the dispersion is measured by the Abbe No. as given by V.sub.d, Z.sub.1 and Z.sub.2 are the variable air spacings at the indicated equivalent focal length (EFL), and FVD is the front vertex distance, the distance between the front surface of L1 and the image plane, and all distances are given in millimeters (mm).
- 13. A lens according to claim 1 scaled to an EFL of 71.0 mm to 197.0 mm substantially as described:
- ______________________________________ Axial Distance Index of Between Refrac- AbbeEle- Radius of Surfaces tion No.ment Curvature (mm) (mm) N.sub.d V.sub.d______________________________________ R1 = 81.68L1 3.50 1.805 25.5 R2 = 42.51L2 9.50 1.658 50.9 R3 = -676.67 .35 R4 = 77.45L3 5.50 1.487 70.4 R5 = 1302.78 Z1 R6 = -470.54L4 2.00 1.743 49.2 R7 = 47.24 4.80 R8 = -80.37L5 2.00 1.743 49.2 R9 = 28.12L6 5.00 1.805 25.5 R10 = 186.79 Z2 R11 = 60.07L7 3.50 1.487 70.4 R12 = -184.06 .20 R13 = 34.35L8 6.50 1.487 70.4 R14 = -75.82L9 1.50 1.728 28.3 R15 = 192.84 48.78 R16 = -19.45L10 2.00 1.806 40.7 R17 = -42.98 .30 R18 = 186.54L11 4.00 1.717 29.5 R19 = -75.15______________________________________EFL (mm) Z.sub.1 (mm) Z.sub.2 (mm) FVD (mm)______________________________________71.0 1.50 66.39 207.32135.0 15.96 33.69 189.08197.97 21.07 1.50 161.98______________________________________
- where the lens comprises lens elements L1 to L11 having surfaces R1 to R19, the index of refraction is given by N.sub.d, the dispersion is measured by the Abbe No. as given by V.sub.d, Z.sub.1 and Z.sub.2 are the variable air spacings at the indicated equivalent focal length (EFL), and FVD is the front vertex distance, the distance between the front surface of L1 and the image plane, and all distances are given in millimeters (mm).
- 14. A lens according to claim 1 scaled to an EFL of 72.0 mm to 196.1 mm substantially as described:
- ______________________________________ Axial Distance Index of Between Refrac- AbbeEle- Radius of Surfaces tion No.ment Curvature (mm) (mm) N.sub.d V.sub.d______________________________________ R1 = 96.76L1 6.50 1.517 64.2 R2 = -187.65 .20 R3 = 93.47L2 8.10 1.517 64.2 R4 = -116.67L3 3.50 1.755 27.5 R5 = 589.22 Z1 R6 = 557.43L4 2.00 1.691 54.7 R7 = 41.20 4.00 R8 = -49.37L5 2.00 1.640 60.2 R9 = 25.90L6 5.35 1.679 30.8 R10 = 522.41 Z2 R11 = 52.43L7 3.70 1.565 48.2 R12 = -126.28 .20 R13 = 32.66L8 6.80 1.517 64.2 R14 = -71.33L9 2.73 1.785 25.7 R15 = 99.30 43.53 R16 = -18.06L10 2.00 1.744 44.9 R17 = -38.92 .20 R18 = 151.19L11 3.40 1.663 32.8 R19 = -66.42______________________________________EFL (mm) Z.sub.1 (mm) Z.sub.2 (mm) FVD (mm)______________________________________72.0 1.50 45.48 183.21135.0 22.74 23.14 182.105196.1 30.29 1.50 168.03______________________________________
- where the lens comprises lens elements L1 to L11 having surfaces R1 to R19, the index of refraction is given by N.sub.d, the dispersion is measured by the Abbe No. as given by V.sub.d, Z.sub.1 and Z.sub.2 are the variable air spacings at the indicated equivalent focal length (EFL), and FVD is the front vertex distance, the distance between the front surface of L1 and the image plane, and all distances are given in millimeters (mm).
- 15. A lens according to claim 1 scaled to an EFL of 70.0 mm to 200.1 mm substantially as described:
- ______________________________________ Axial Index of Distance Refrac- AbbeEle- Radius of Between Sur- tion No.ment Curvature (mm) faces (mm) N.sub.d V.sub.d______________________________________ R1 = 62.78L1 3.50 1.837 23.6 R2 = 39.20L2 8.00 1.585 56.1 R3 = 1101.93 .35 R4 = 59.82L3 5.00 1.469 71.0 R5 = -965.01 Z1 R6 = -1904.32L4 4.50 1.849 23.2 R7 = -55.47L5 1.80 1.697 63.2 R8 = 41.13 4.00 R9 = -52.09L6 2.00 1.670 58.6 R10 = 121.67 Z2 R11 = 43.19L7 8.50 1.492 65.4 R12 = -27.18L8 1.50 1.849 23.1 R13 = -79.28 16.06 R14 = 112.81L9 5.00 1.839 30.6 R15 = -63.60 17.00 R16 = -29.31L10 2.00 1.744 48.8 R17 = 47.23L11 4.00 1.491 76.1 R18 = -45.85______________________________________EFL (mm) Z.sub.1 (mm) Z.sub.2 (mm) FVD (mm)______________________________________70.0 .50 60.85 210.27135.0 13.15 30.67 192.67200.1 17.57 .50 167.05______________________________________
- where the lens comprises lens elements L1 to L11 having surfaces R1 to R18, the index of refraction is given by N.sub.d, the dispersion is measured by the Abbe No. as given by V.sub.d, Z.sub.1 and Z.sub.2 are the variable air spacings at the indicated equivalent focal length (EFL), and FVD is the front vertex distance, the distance between the front surface of L1 and the image plane, and all distances are given in millimeters (mm).
- 16. A lens according to claim 1 scaled to an EFL of 60.0 mm to 172.0 mm substantially as described:
- ______________________________________ Axial Distance Radius of Between SurfacesElement Curvature (mm) (mm) N.sub.d V.sub.d______________________________________ R1 = 67.35L1 2.18 1.785 26.1 R2 = 41.97L2 4.79 1.487 70.4 R3 = -410.49 .07 R4 = 68.06L3 3.63 1.487 70.4 R5 = -582.10 Z1 R6 = -459.30L4 1.45 1.773 49.6 R7 = 59.03 3.30 R8 = -91.54L5 Z2 R9 = 23.13L6 2.97 1.805 25.5 R10 = 84.79 .15 R11 = 47.33L7 3.63 1.521 49.0 R12 = -118.13 .15 R13 = 43.69L8 3.63 1.486 68.2 R14 = -61.11L9 1.09 1.805 25.5 R15 = 120.59 1.96Aperture 42.21 R16 = -17.52L10 1.45 1.773 49.6 R17 = -29.49 .08 R18 = 99.77L11 2.18 1.706 30.6 R19 = -207.96______________________________________Zoom Spacing 60.0 mm 100.0 mm 172.0 mm______________________________________Z1 1.8 mm 10.9 mm 16.5 mmZ2 47.3 mm 30.8 mm .96 mmFVD 162.5 mm 155.1 mm 130.9 mm______________________________________
- where the lens comprises lens elements L1 to L11 having surfaces R1 to R19, the index of refraction is given by N.sub.d, the dispersion is measured by the Abbe No. as given by V.sub.d, Z.sub.1 and Z.sub.2 are the variable air spacings at the indicated equivalent focal length (EFL).
- 17. A lens according to claim 1 scaled to an EFL of 80.27 mm to 230.1 mm. substantially as described:
- ______________________________________ Surface Radius Axial DistanceLens (mm) Between Surfaces N.sub.d V.sub.d______________________________________ R1 = 67.35L1 3.00 1.785 26.1 R2 = 41.97L2 6.60 1.487 70.4 R3 = -410.49 .10 R4 = 68.06L3 5.00 1.487 70.4 R5 = -582.10 Z1 R6 = -459.30L4 2.00 1.773 49.6 R7 = 59.03 2.47 R8 = -91.54L5 2.00 R9 = 23.13L6 4.55 1.743 49.2 R10 = 84.79 Z2 1.805 25.5 R11 = 47.33L7 4.10 1.633 47.4 R12 = -118.13 .20 R13 = 43.69L8 5.00 1.517 64.2 R14 = -611.11L9 1.50 1.486 68.2 R15 = 120.59 2.69Aperture 56.01 R16 = -21.05L10 2.00 1.773 49.6 R17 = -46.95 .12 R18 = 87.94L11 3.00 1.766 27.3 R19 = -590.13______________________________________Zoom SpacingEFL mm Z.sub.1 (mm) Z.sub.2 (mm) FVD (mm)______________________________________82.7 2.95 64.29 206.62135.0 14.35 41.93 195.66230.1 21.79 1.32 162.51______________________________________
- where the lens comprises lens elements L1 to L11 having surfaces R1 to R19, the index of refraction is given by N.sub.d, the dispersion is measured by the Abbe No. as given by V.sub.d, Z.sub.1 and Z.sub.2 are the variable air spacings at the indicated focal length (EFL), and FVD is the front vertex distance, the distance between the front surface of L1 and the image plane, and all distances are given in millimeters (mm).
- 18. A lens according to claim 1 scaled to an EFL of 82.7 mm to 193.7 mm substantially as described:
- ______________________________________ Axial Distance Radius of Between SurfacesElement Curvature (mm) (mm) N.sub.d V.sub.d______________________________________ R1 = 66.44L1 3.00 1.785 26.1 R2 = 43.22L2 8.10 1.517 64.2 R3 = 203.20 .10 R4 = 80.51L3 6.00 1.517 64.2 R5 = -580.67 Z1 R6 = 114.92L4 2.00 1.773 49.6 R7 = 58.85 3.02 R8 = -78.60L5 2.00 R9 = 23.35L6 5.05 1.805 25.5 R10 = 66.13 Z2 R11 = 29.27L7 8.50 1.569 56.0 R12 = -27.35L8 1.50 1.785 25.7 R13 = -205.30 1.00Aperture 14.40 R14 = 225.27 1.805 25.5L9 3.60 R15 = -36.08 4.93 R16 = -21.59L10 1.50 1.699 30.1 R17 = -313.89______________________________________Zoom Spacing 82.7 mm 135.2 mm 193.7 mm______________________________________Z1 8.26 22.7 29.6Z2 53.4 28.5 .687FVD 196.2 185.8 164.8______________________________________
- wherein the lens comprises lens elements L1 to L10 having surfaces R1 to R7, the index of refraction is given by N.sub.d, the dispersion is measured by the Abbe No. as given by V.sub.d, Z.sub.1 and Z.sub.2 are the variable air spacings at the indicated equivalent focal length (EFL).
- 19. A lens according to claim 1 scaled to an EFL of 82.7 to 193.7 substantially as described:
- TABLE XI______________________________________ Axial Distance Radius of Between SurfacesElement Curvature (mm) (mm) N.sub.d V.sub.d______________________________________ R1 = 61.9L1 3.00 1.785 26.1 R2 = 39.40L2 8.10 1.517 64.2 R3 = 143.15 .10 R4 = 69.85L3 6.00 1.517 64.2 R5 = -366.91 Z1 R6 = 125.63L4 2.00 1.834 37.3 R7 = 65.49 3.85 R8 = -79.89L5 2.00 1.756 48.3 R9 = 22.26L6 5.05 R10 = 66.31 Z2Aperture .50 R11 = 27.73L7 5.00 1.537 61.1 R12 = -78.71 .15 R13 = 23.40L8 3.90 1.489 74.9 R14 = 67.23 1.30 R15 = -98.07L9 2.40 1.660 33.4 R16 = 20.17 4.50 R17 = 222.67L10 3.50 1.796 25.6 R18 = -134.85______________________________________Zoom Spacing 82.6 mm 135.1 mm 193.6 mm______________________________________Z1 2.2 16.6 23.5Z2 53.4 28.4 .7FVD 196.2 185.7 164.8______________________________________
- wherein the lens comprises lens elements L1 to L10 having surfaces R1 to R18, the index of refraction is given by N.sub.d, the dispersion is measured by the Abbe No. as given by V.sub.d, Z.sub.1 and Z.sub.2 are the variable air spacings at the indicated equivalent focal length (EFL).
- 20. A zoom lens comprising from the object end a first positive group, a second negative group and a third positive group, said first and second groups being axially movable in predetermined relation to vary the equivalent focal length of said lens, said first group being axially movable for focusing, said third group being stationary during change in equivalent focal length, and
- 2.0>K.sub.1 /K.sub.M >1.0
- -6.0>K.sub.2 /K.sub.M >-3.0
- 3.0>K.sub.3 /K.sub.M >2.0
- where K.sub.1, K.sub.2, and K.sub.3 are the optical powers expressed as the reciprocal of the equivalent focal lengths in millimeters of the first, second and third groups, respectively, and K.sub.M is the geometric mean power of the lens.
- 21. The lens of claim 20 where said first group comprises a positive doublet and a positive singlet and
- 0.6>F.sub.1 /F.sub.L >0.2
- 1.6>K.sub.D /K.sub.S >0.2
- where F.sub.1 is the equivalent focal length of the first group; F.sub.L is the maximum equivalent focal length of the lens; K.sub.D is the optical power of the doublet; and K.sub.S is the optical power of the singlet.
- 22. The lens of claim 20 where the telephoto ratio of the third group is less than 1.4.
- 23. A zoom lens comprising from the object end a first positive group, a second negative group, and a third positive group, said first group being axially movable to focus the lens, said first and second groups being axially movable in predetermined relationship to vary the equivalent focal length of the lens, said third lens group being stationary, said first, second, and third groups having optical powers K.sub.1, K.sub.2, and K.sub.3, respectively, and
- 2.0>K.sub.1 /K.sub.M >1.0
- -6.0>K.sub.2 /K.sub.M >-3.0
- 3.0>K.sub.3 /K.sub.M >2.0
- where K.sub.M is the geometrical means of the extreme equivalent focal lengths of the lens, and
- 0.6>F.sub.1 /F.sub.L >0.2
- where F.sub.1 is the equivalent focal length of the first group, and F.sub.L is the longest equivalent focal length of the lens.
- 24. The lens of claims 1, 20, or 23, where the telephoto ratio of the third group of said lens is less than 1.3.
- 25. The lens of claim 23 wherein the first group consists of a positive doublet and a positive singlet, and
- 1.6>K.sub.D /K.sub.S >0.2
- where K.sub.D is the optical power of the doublet and K.sub.S is the optical power of the singlet.
- 26. A lens according to claim 23 wherein said third group comprises a positive subgroup at the object side widely spaced from a negative subgroup and the positive subgroup consists of a singlet followed by a doublet.
- 27. A lens according to claim 23 wherein said third group comprises a positive subgroup at the object side widely spaced from a negative subgroup and the positive subgroup consists of a doublet followed by a singlet.
- 28. A lens according to claim 23 wherein said third group comprises a positive subgroup at the object side widely spaced from a negative subgroup and the positive subgroup consists of a singlet followed by a doublet followed by a singlet.
- 29. A lens according to claim 23 wherein said third group comprises a positive subgroup at the object side widely spaced from a negative subgroup and the positive subgroup consists of two singlets.
- 30. A lens according to claim 23 wherein said third group comprises a positive subgroup at the object side widely spaced from a negative subgroup and the positive subgroup consists of a doublet.
RELATED APPLICATIONS
This application is a continuation-in-part of application Ser. No. 334,151 filed Dec. 28, 1981.
US Referenced Citations (7)
Foreign Referenced Citations (8)
Number |
Date |
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222910 |
Aug 1962 |
ATX |
732860 |
Apr 1966 |
CAX |
1148776 |
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DEX |
2556964 |
Dec 1975 |
DEX |
1439207 |
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GBX |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
335151 |
Dec 1981 |
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