Claims
- 1. A compact zoom lens comprising, from front to rear, a first lens unit of negative power, a second lens unit of positive power, and a third lens unit of negative power, said first lens unit being fixed, said second lens unit and said third lens unit being moved while an axial space therebetween is changed to effect the zooming, said second and third lens units being made to move to perform variation of the image magnification, and said zoom lens satisfying the following condition:
- 0.5f.sub.W <.vertline.f.sub.3 .vertline.<4f.sub.T
- where f.sub.3 is the focal length of said third lens units, and f.sub.W and f.sub.T are respectively the shortest and longest focal lengths of the entire lens system.
- 2. A zoom lens according to claim 1, satisfying the following conditions:
- 0.5<f.sub.2 /f.sub.W <2
- 0.5f.sub.W <.vertline.f.sub.1 .vertline.<4f.sub.T
- 0.25<f.sub.3 /f.sub.1 <4
- 0<e.sub.1T /f.sub.T <0.3
- where f.sub.1 and f.sub.2 are the focal lengths of said first and said second lens units respectively and e.sub.1T is the interval between the principal points of said first and said second lens units in the zooming position for the longest focal length.
- 3. A zoom lens according to claim 2, wherein said first lens unit includes at least one negative lens having its rear surface concave toward the rear, and at least one positive lens having its front surface convex toward the front.
- 4. A zoom lens according to claim 1, satisfying the following conditions:
- 0.5<.vertline.f.sub.1 .vertline./f.sub.23W <8
- 0.3<f.sub.12T /.vertline.f.sub.3 .vertline.<4
- 0<e.sub.2W /e.sub.1W <3
- 0<e.sub.1T /e.sub.2T <0.8
- where f.sub.23W is the overall focal length of said second and said third lens units in the wide angle end, e.sub.1W and e.sub.2W are the principal point intervals between said first and said second lens units and between said second and said third lens units respectively, f.sub.12T is the overall focal length of said first and said second lens units in the telephoto end and e.sub.2T is the principal point interval between said second and said third lens units in the telephoto end.
- 5. A zoom lens according to claim 1, satisfying the following conditions:
- 0.01<.vertline.M.sub.2 .vertline./(Z.f.sub.T)<0.3
- 0.01<.vertline.M.sub.3 .vertline./(Z.f.sub.T)<0.3
- .vertline.M.sub.2 -M.sub.3 .vertline./(Z.f.sub.T)<0.1
- where Mi is the movement of the i-th lens unit counting from front when zooming from the wide angle end to the telephoto end and Z is the zoom ratio.
- 6. A compact zoom lens comprising, from front to rear,
- a first lens unit of negative refractive power;
- a second lens unit of positive refractive power; and
- a third lens unit of negative refractive power, wherein variation of the image magnification is performed by varying the unit space between said first lens unit and said second lens unit and the unit space between said second lens unit and said third lens unit, and the following conditions are satisfied:
- 0.25<E1w/E2w<0.95
- 0.3<.vertline.f3.vertline./FT<0.8
- where E1w and E2w are the principal point intervals between said first and said second lens units and between said second and said third lens units in the wide angle end respectively, and f3 and FT are respectively the focal lengths of said third lens unit and the entire lens system in the telephoto end.
- 7. A compact zoom lens according to claim 6, wherein when zooming from the wide angle to the telephoto end, said second and said third lens units are moved axially forward in such relation that the amount of movement of said third lens unit is larger than that of movement of said second lens unit.
- 8. A compact zoom lens according to claim 7, satisfying the following condition:
- 0.6<s/t<0.9
- where s and t are the total zooming movements of said second and said third lens units respectively.
- 9. A compact zoom lens according to claim 6, satisfying the following conditions:
- 0.5<Lw/FT<1.15
- 0.4<.vertline.f1.vertline./FT<1.1
- where f1 is the focal length of said first lens unit and Lw is the distance from the frontmost lens surface to an image plane.
- 10. A compact zoom lens comprising, from front to rear,
- a first lens unit of negative refractive power;
- a second lens unit of positive refractive power; and
- a third lens unit of negative refractive power,
- wherein variation of the image magnification is performed by varying the unit space between said first and said second lens units and the unit space between said second and said third lens units, and the following conditions are satisfied:
- 0.25<E1w/E2w<2
- 0.3<.vertline.f3.vertline./FT<0.8
- where E1w and E2w are the principal point interval distances between said first and said second lens units and between said second and said third lens units in the wide angle end respectively, and f3 and FT are the focal lengths of said third lens unit and the entire lens system in the telephoto end respectively.
- 11. A compact zoom lens according to claim 10, wherein when zooming from the wide angle to the telephoto end, said second and said third lens units are made to move axially forward in such relation that the amount of movement of said third lens unit is larger than that of movement of said second lens unit.
- 12. A compact zoom lens according to claim 11, satisfying the following condition:
- 0.6<s/t<0.9
- where s and t are the total zooming movements of said second and said third lens units respectively.
- 13. A compact zoom lens according to claim 10, satisfying the following conditions:
- 0.5<Lw/FT<1.15
- 0.4<.vertline.f1.vertline./FT<1.1
- where f1 is the focal length of said first lens unit, and Lw is the distance from the frontmost lens surface to an image plane.
- 14. A compact zoom lens comprising, from front to rear,
- a first lens unit of negative refractive power;
- a second lens unit of positive refractive power; and
- a third lens unit of negative refractive power,
- wherein when zooming from the wide angle to the telephoto end, all said units are moved axially forward in such relation as to satisfy the following conditions:
- 0.27Z<M1/M3<0.5Z
- 0.3Z<M2/M3<0.47Z
- where Z is the zoom ratio and Mi is the total zooming movement of the i-the lens unit, and wherein a unit space between said first lens unit and said second lens unit and a unit space between said second lens unit and said third lens unit are each smaller at the wide angle end than at the telephoto end.
- 15. A compact zoom lens according to claim 14, satisfying the following condition:
- 1.8<e1W/e1T<11.0
- where e1W and e1T are the principal point intervals between said first and said second lens units in the wide angle and telephoto ends respectively.
- 16. A compact zoom lens according to claim 15, satisfying the following conditions:
- 0.018.vertline.f1.vertline.<(e1W-e1T)/Z<0.166.vertline.f1.vertline.
- 0.3<f2/fw<0.66
- 0.6<.vertline.f3/fw.vertline.<2.0
- where fi is the focal length of said i-th lens unit, and fw is the shortest focal length of the entire lens system.
- 17. A compact zoom lens according to claim 14, satisfying the following condition:
- 1.05<.beta.2T/.beta.2W<1.8
- where .beta.2W and .beta.2T are the image magnifications of said second lens unit in the wide angle and telephoto ends respectively.
- 18. A compact zoom lens according to claim 17, satisfying the following condition:
- 1.05<.beta.3T/.beta.3W<2.7
- where .beta.3W and .beta.3T are the image magnifications of said third lens unit in the wide angle and telephoto ends respectively.
- 19. A compact zoom lens comprising, from front to rear,
- a first lens unit of negative refractive power;
- a second lens unit of positive refractive power; and
- a third lens unit of negative refractive power,
- wherein when zooming from the wide angle to the telephoto end, all said units are moved axially forward in such relation as to satisfy the following conditions:
- 0.27Z<M1/M3<0.5Z
- where Z is the zoom ratio and Mi is the total zooming movement of the i-the lens unit, and i is the value 1, 2 or 3, and wherein a unit interval distance between said first lens unit and said second lens unit and a unit interval distance between said second lens unit and said third lens unit are each smaller at the wide angle end than at the telephoto end.
- 20. A compact zoom lens according to claim 19, which satisfies the condition:
- 0.3Z<M2/M3<0.47Z
- wherein M2 is the movement amount of said second lens unit from the wide angle end to the telephoto end.
- 21. A compact zoom lens according to claim 20, satisfying the following conditions:
- 1.8<e1W/e1T<11.0
- where e1W and e1T are the principal point intervals between said first and said second lens units in the wide angle and telephoto ends respectively.
- 22. A compact zoom lens according to claim 21, satisfying the following conditions:
- 0.018.vertline.f1.vertline.<(e1W-e1T)/Z<0.166.vertline.f1.vertline.
- 0.3<.vertline.f2/fw.vertline.<0.66
- 0.6<.vertline.f3/fw.vertline.<2.0
- where fi is the focal length of said i-th lens unit, and f2 is the shortest focal length of the entire lens system.
- 23. A compact zoom lens according to claim 19, satisfying the following condition:
- 1.05<.beta.2T/.beta.2W<1.8
- where .beta.2W and .beta.2T are the magnifications of said second lens unit in the wide angle and telephoto ends respectively.
- 24. A compact zoom lens according to claim 23, satisfying the following condition:
- 1.05<.beta.3T/.beta.3W<2.7
- where .beta.3W and .beta.3T are the image magnification of said third lens unit in the wide angle and telephoto ends respectively.
- 25. A compact zoom lens comprising, from front to rear,
- a first lens unit of negative refractive power;
- a second lens unit of positive refractive power; and
- a third lens unit of negative refractive power,
- wherein when zooming from the wide angle to the telephoto end, all said units are moved axially forward in such relation as to satisfy the following conditions:
- 0.3Z<M2/M3<0.47Z
- where Z is the zoom ratio and Mi is the total zooming movement of the i-th lens unit, and i has the value 1, 2 or 3.
- 26. A compact zoom lens according to claim 25, which satisfies the condition:
- 0.27Z.ltoreq.M1/M3<0.5Z.
- 27. A compact zoom lens according to claim 26, satisfying the following condition:
- 1.8<e1W/e1T<11.0
- where e1W and e1T are the principal point interval distances between said first and said second lens units in the wide angle and telephoto ends respectively.
- 28. A compact zoom lens according to claim 27, satisfying the following conditions:
- 0.018.vertline.f1.vertline.<(e1W-e1T)/Z<0.166.vertline.f1.vertline.
- 0.3<.vertline.f2/fw.vertline.<0.66
- 0.6<.vertline.f3/fw.vertline.<2.0
- where fi is the focal length of said i-th lens unit, and f2 is the shortest focal length of the entire lens system.
- 29. A compact zoom lens according to claim 26, satisfying the following condition:
- 1.05<.beta.2T/.beta.2W<1.8
- where .beta.2W and .beta.2T are the image magnifications of said second lens unit in the wide angle and telephoto ends respectively.
- 30. A compact zoom lens according to claim 29, satisfying the following conditions:
- 1.05<.beta.3T/.beta.3W<2.7
- where .beta.3W and .beta.3T are the image magnifications of said third lens unit in the wide angle and telephoto ends respectively.
- 31. A compact zoom lens according to claim 25, satisfying the following conditions:
- 0.5<f.sub.2 /f.sub.W <2
- 0.5f.sub.W <.vertline.f.sub.1 .vertline.<4f.sub.T
- 0.25<f.sub.3 /f.sub.1 <4
- 0<e.sub.1T /f.sub.T <0.3
- where f.sub.1 and f.sub.2 are the focal lengths of said first and said second lens units respectively and e.sub.1T is the interval distance between the principal points of said first and said second lens units in the zooming position for the longest focal length.
- 32. A compact zoom lens according to claim 31, wherein said first lens unit includes at least one negative lens having its rear surface concave toward the rear, and at least one positive lens having its front surface convex toward the front.
- 33. A compact zoom lens according to claim 25, satisfying the following conditions:
- 0.5<.vertline.f.sub.1 .vertline./f.sub.23W <8
- 0.3<f.sub.12T /.vertline.f3.vertline.<4
- 0<e.sub.2W /e1W<3
- 0<e.sub.1T /e.sub.2T <0.8
- where f.sub.23W is the overall focal length of said second and said third lens units in the wide angle end, e.sub.1W and e.sub.2W are the principal point interval distances between said first and said second lens units and between said second and said third lens units respectively, f.sub.12T is the overall focal length of said first and said second lens units in the telephoto end and e.sub.2T is the principal point interval distance between said second and said third lens units in the telephoto end.
- 34. A compact zoom lens according to claim 25, satisfying the following conditions:
- 0.01<.vertline.M.sub.2 .vertline./(Z.f.sub.T)<0.3
- 0.01<.vertline.M.sub.3 .vertline./(Z.f.sub.T)<0.3
- .vertline.M.sub.2 -M.sub.3 .vertline./(Z.f.sub.T)<0.1
- where Mi is the movement of the i-th lens units counting from front when zooming from the wide angle end to the telephoto end, Z is the zoom ratio and i has the value 1, 2 or 3.
- 35. A compact zoom lens comprising, from front to rear,
- a first lens unit of negative refractive power;
- a second lens unit of positive refractive power; and
- a third lens unit of negative refractive power,
- wherein variation of the magnification is performed by varying the unit space between said first and said second lens units and the unit space between said second and said third lens units, and the following conditions are satisfied:
- 0.3<.vertline.f3.vertline./FT<0.8
- wherein f3 and T are the focal lengths of said third lens unit and the entire lens system in the telephoto end respectively, and wherein a unit space between said first lens unit and said second lens unit and a unit space between said second lens unit and said third lens unit are each smaller at the wide angle end than at the telephoto end.
- 36. A compact zoom lens according to claim 35 which satisfies the condition:
- 0.25<E1w/E2w<2
- wherein E1w and E2w are the principal point interval distances between said first and said second lens units and between said second and said third lens units in the wide angle end respectively.
- 37. A compact zoom lens according to claim 36, wherein when zooming from the wide angle to the telephoto end, said second and said third lens units are made to move axially forward in such relation that the amount of movement of said third lens unit is larger than that of movement of said second lens unit.
- 38. A compact zoom lens according to claim 37, satisfying the following conditions:
- 0.5<Lw/FT<1.15
- 0.4<.vertline.f1.vertline./FT<1.1
- where f1 is the focal length of said first lens unit, and Lw is the distance from the frontmost lens surface to an image plane.
- 39. A compact zoom lens according to claim 36, satisfying the following conditions:
- 0.5<Lw/FT<1.15
- 0.4<.vertline.f1.vertline./FT<1.1
- where f1 is the focal length of said first lens unit, and Lw is the distance from the frontmost lens surface to an image plane.
- 40. A compact zoom lens according to claim 35, satisfying the following conditions:
- 0.5<f.sub.2 /f.sub.W <2
- 0.5f.sub.W <.vertline.f.sub.1 .vertline.<4f.sub.T
- 0.25<f.sub.3 /f.sub.1 <4
- 0<e.sub.1T /f.sub.T <0.3
- where f.sub.1 and f.sub.2 are the focal lengths of said first and said second lens units respectively and e.sub.1T is the interval between the principal points of said first and said second lens units in the zooming position for the longest focal length.
- 41. A compact zoom lens according to claim 40, wherein said first lens unit includes at least one negative lens having its rear surface concave toward the rear, and at least one positive lens having its front surface convex toward the front.
- 42. A compact zoom lens according to claim 35, satisfying the following conditions:
- 0.5<.vertline.f.sub.1 .vertline./f.sub.23W <8
- 0.3<f.sub.12T /.vertline.f3.vertline.<4
- 0<e.sub.2W /e1W<3
- 0<e.sub.1T /e.sub.2T <0.8
- where f.sub.23W is the overall focal length of said second and said third lens units in the wide angle end, e.sub.1W and e.sub.2W are the principal point intervals between said first and said second lens units and between said second and said third lens units respectively, f.sub.12T is the overall focal length of said first and said second lens units in the telephoto end and e.sub.2T is the principal point interval distance between said second and said third lens units in the telephoto end.
- 43. A compact zoom lens according to claim 35, satisfying the following conditions:
- 0.01<.vertline.M.sub.2 .vertline./(Z.multidot.f.sub.T)<0.3
- 0.01<.vertline.M.sub.3 .vertline./(Z.multidot.f.sub.T)<0.3
- .vertline.M.sub.2 -M.sub.3 .vertline./(Z.multidot.f.sub.T)<0.1
- where Mi is the movement of the i-th lens unit counting from front when zooming from the wide angle end to the telephoto end, Z is the zoom ratio and i has the value 1, 2 or 3.
- 44. A compact zoom lens comprising, from front to rear, a first lens unit of negative power, a second lens unit of positive power, and a third lens unit of negative power, said first lend unit being fixed, said second lens unit and said third lens unit being moved while an axial space therebetween is changed to effect the zooming, said second and third lens units being made to move to perform variation of the image magnification, and said zoom lens satisfying the following condition:
- 0.5f.sub.W <.vertline.f.sub.3 .vertline.<4f.sub.T
- where f.sub.3 is the focal length of said third lens units, f.sub.W and f.sub.T are respectively the shortest and longest focal lengths of the entire lens system, and each of the lens units is composed of a plurality of lenses and the second lens unit has the smallest effective diameter.
- 45. A compact zoom lens according to claim 44, satisfying the following conditions:
- 0.5<f.sub.2 /f.sub.W <2
- 0.5f.sub.W <.vertline.f.sub.1 .vertline.<4f.sub.T
- 0.25<f.sub.3 /f.sub.1 <4
- 0<e.sub.1T /f.sub.T <0.3
- where f.sub.1 and f.sub.2 are the focal lengths of said first and said second lens units respectively and e.sub.1T is the interval between the principal points of said first and said second lens units in the zooming position for the longest focal length.
- 46. A compact zoom lens according to claim 45, wherein said first lens unit includes at least one negative lens having its rear surface concave toward the rear, and at least one positive lens having its front surface convex toward the front.
- 47. A compact zoom lens according to claim 44 satisfying the following conditions:
- 0.5<.vertline.f.sub.1 .vertline./f.sub.23W <8
- 0.3<f.sub.12T /.vertline.f3.vertline.<4
- 0<e.sub.2W /e1W<3
- 0<e.sub.1T /e.sub.2T <0.8
- where f.sub.23W is the overall focal length of said second and said third lens units in the wide angle end, e.sub.1W and e.sub.2W are the principal point interval distances between said first and said second lens units and between said second and said third lens units respectively, f.sub.12T is the overall focal length of said first and said second lens units in the telephoto end and e.sub.2T is the principal point interval between said second and said third lens units in the telephoto end.
- 48. A compact zoom lens according to claim 44, satisfying the following conditions:
- 0.01<.vertline.M.sub.2 .vertline./(Z.multidot.f.sub.T)<0.3
- 0.01<.vertline.M.sub.3 .vertline./(Z.multidot.f.sub.T)<0.3
- .vertline.M.sub.2 -M.sub.3 .vertline./(Z.multidot.f.sub.T)<0.1
- where Mi is the movement of the i-th lens units counting from front when zooming from the wide angle end to the telephoto end and Z is the zoom ratio, and i has the value 1, 2 or 3.
- 49. A compact zoom lens according to claim 44, which satisfies the condition:
- 0.25<E1w/E2w<2
- wherein E1w and E2w are the principal point interval distances between said first and said second lens units and between said second and said third lens units in the wide angle end respectively.
- 50. A compact zoom lens according to claim 49, satisfying the following conditions:
- 0.5<Lw/FT<1.15
- 0.4<.vertline.f1.vertline./FT<1.1
- where f1 is the focal length of said first lens unit, and Lw is the distance from the frontmost lens surface to an image plane.
- 51. A compact zoom lens according to claim 50, satisfying the following condition:
- 0.6<s/t<0.9
- where s and t are the total zooming movements of said second and said third lens units respectively.
- 52. A compact zoom lens comprising, from front to rear,
- a first lens unit of negative refractive power;
- a second lens unit of positive refractive power; and
- a third lens unit of negative refractive power, having a negative lens on the farthest image side;
- wherein variation of the image magnification is performed by varying the unit space between said first lens unit and said second lens unit and the unit space between said second lens unit and said third lens unit, and the following conditions are satisfied:
- 0.25<f3/f1<4
- wherein f1 and f3 are respectively a focal length of said first lens unit and said third lens unit.
- 53. A compact zoom lens according to claim 52, wherein said negative lens is of meniscus shape having a convex surface of the image side.
- 54. A magnification varying lens, comprising, from front to rear:
- a first lens unit of negative refractive power;
- a second lens unit of positive refractive power; and a third lens unit of negative refractive power, wherein variation of the image magnification is performed by varying a unit space between said first and said second lens units and a unit space between said second and said third lens units, and the following conditions are satisfied:
- 0.25<E1w/E2w<0.95
- where E1w represents a principal point interval between said first lens unit and said second lens unit at a wide angle end of the whole system, and E2w represents a principal point interval between said second lens unit and said third lens unit at a wide angle end of the whole system.
- 55. A magnification varying lens according to claim 54, which further satisfies the condition:
- 0.5<Lw/Ft<1.15
- wherein Lw represents the distance from a front most lens surface at the wide angle end to an image plane, and Ft represents a focal length at a telephoto end of the whole system.
- 56. A magnification varying lens according to claim 54, which further satisfies the condition:
- 0.1<s/t<0.9
- wherein s and t represent respectively a movement amount of said second lens unit and said third lens unit with magnification variation from the wide angle end to the telephoto end.
- 57. A magnification varying lens according to claim 54, wherein a unit interval between said first lens unit and said second lens unit and a unit interval between said second lens unit and said third lens unit are each smaller at the wide angle end than at the telephoto end.
- 58. A magnification varying lens according to claim 57, wherein said first, second and third lens units each move forward when shifting from the wide angle end to the telephoto end.
- 59. A magnification varying lens comprising, from front to rear,
- a first lens unit of negative refractive power;
- a second lens unit of positive refractive power;
- and a third lens unit of negative refractive power,
- wherein variation of the image magnification is performed by varying a unit space between said first and said second lens units and a unit space between said second and said third lens units, and the following conditions are satisfied:
- 0.5<Lw/FT<1.15
- 0.6<.vertline.f3/Fw.vertline.<2.0
- wherein Lw represents a distance from a front-most lens surface at a wide angle end to an image plane, Fw, and FT represent respectively a focal length at the wide angle end and at the telephoto end, and f3 represents a focal length of said third lens unit.
- 60. A magnification varying lens unit according to claim 59, which further satisfies the condition:
- 1.05<.beta.2T/.beta.2W<1.8
- wherein .beta.2W and .beta.2T represent an image magnification of said second lens unit respectively at the wide angle end and at telephoto end.
- 61. A magnification varying lens unit according to claim 60, which further satisfies the condition:
- 1.05<.beta.3T/.beta.3W<2.7
- wherein .beta.3W and .beta.3T represent an image magnification of said third lens unit respectively at the wide angle end and at the telephoto end.
- 62. A magnification varying lens according to claim 59, wherein a unit interval between said first lens unit and said second lens unit and a unit interval between said second lens unit and said third lens unit are each smaller at the wide angle end than at the telephoto end.
- 63. A magnification varying lens according to claim 62, wherein said first, second and third lens unit each move forward when shifting from the wide angle end to the telephoto end.
- 64. A magnification varying lens comprising, from front to rear;
- a first lens unit of negative refractive power,
- a second lens unit of positive refractive power, and
- a third lens unit of negative refractive power, wherein the magnification variation from a wide angle end to a telephoto end is effected by reducing a unit interval between said first lens unit and said second lens unit and a unit interval between said second lens unit and said third lens unit, and the following condition is satisfied:
- 0.6<.vertline.f.sub.3 /Fw.vertline.<2
- wherein Fw represents a focal length of the whole system at the wide angle end, and f3 represents a focal length of said third lens unit.
- 65. A magnification varying lens according to claim 64, wherein all of said lens units are located in a more forward position at the telephoto end than at the wide angle end.
- 66. A magnification varying lens according to claim 65, which further satisfies the condition:
- 0.5<Lw/Ft<1.15
- wherein Lw represents the distance from a front most lens surface at the wide angle end to an image plane, and Ft represents a focal length at a telephoto end of the whole system.
- 67. A magnification varying lens according to claim 64, wherein a unit interval between said first lens unit and said second lens unit and a unit interval between said second lens unit and said third lens unit are each smaller at the wide angle end than at the telephoto end.
- 68. A zoom lens, comprising in the order from the object side;
- a first lens unit having a negative refractive power and consisting of a negative lens and a positive lens arranged from the object side,
- a second lens unit having a positive refractive power and consisting of a positive lens, a positive lens, a negative lens and a positive lens arranged from the object side, and
- a third lens unit having a negative refractive power and consisting of a positive lens and a negative lens arranged from the object side,
- wherein zooming from a wide angle side to a telephoto side is performed by moving at least the second and third lens units.
- 69. A zoom lens according to claim 68, wherein the
- negative lens of the first lens is of bi-concave shape and the positive lens of the first lens unit is of meniscus shape with a convex surface on the object side.
- 70. A zoom lens according to claim 68, wherein the negative lens of the first lens unit is of meniscus shape with a convex surface on the object side, and the positive lens of the first lens unit is of meniscus shape with a convex surface on the object side.
- 71. A zoom lens, comprising in the order from the object side:
- a first lens unit having a negative refractive power and consisting of a negative lens and a positive lens arranged from the object side,
- a second lens unit having a positive refractive power and consisting of a positive lens, a positive lens, a negative lens and a positive lens arranged from the object side, and
- a third lens unit having a negative refractive power, and consisting of a positive lens, a negative lens and a negative lens arranged from the object side, wherein zooming from a wide angle side to a telephoto side is performed by at least the second and third lens units.
- 72. A zoom lens according to claim 71, wherein the negative lens of the first lens unit is of bi-concave shape and the positive lens of the first lens unit is of meniscus shape with a convex surface on the object side.
- 73. A zoom lens according to claim 71, wherein the negative lens of the first lens unit is of meniscus shape with a convex surface on the object side and the positive lens of the second lens unit is of meniscus shape with a convex surface on the object side.
- 74. A zoom lens, comprising in the order from the object side:
- a first lens unit having a negative refractive power,
- a second lens unit having a positive refractive power, and the smallest effective diameter of the lens units comprising the zoom lens, and
- a third lens unit having a negative refractive power,
- wherein zooming is performed by moving all of the lens units.
- 75. A zoom lens according to claim 74, wherein the first lens unit comprises a negative lens that is of biconcave shape and a positive lens that is of meniscus shape with a convex surface on the object side.
- 76. A zoom lens according to claim 74, wherein the rearmost lens, from the object side, of the third lens unit has a negative refractive power.
- 77. A zoom lens, comprising in the order from the object side:
- a first lens unit having a negative refractive power, and comprising a negative lens and a positive lens arranged from the object side, and
- a second lens unit having a positive refractive power and the smallest effective diameter of the lens units comprising the zoom lens, and
- a third lens unit having a negative refractive power and comprising a negative lens and a positive lens arranged from the image side,
- wherein zooming is performed by moving all of the lens units.
Priority Claims (3)
Number |
Date |
Country |
Kind |
61-169382 |
Jul 1986 |
JPX |
|
62-105644 |
Apr 1987 |
JPX |
|
62-227734 |
Sep 1987 |
JPX |
|
Parent Case Info
This application is a continuation of application Ser. No. 07/580,351, filed Sep. 7, 1990, now abandoned, which is a continuation of Ser. No. 07/187,277, filed Apr. 28, 1988, now abandoned, which is a continuation-in-part of Ser. No. 07/073,688, filed Jul. 15, 1987, now abandoned.
US Referenced Citations (14)
Continuations (2)
|
Number |
Date |
Country |
Parent |
580351 |
Sep 1990 |
|
Parent |
187277 |
Apr 1988 |
|
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
73688 |
Jul 1987 |
|