Claims
- 1. A zoom lens comprising, from front to rear, a first lens unit of positive refractive power, a second lens unit, a third lens unit of positive refractive power, and a fourth lens unit of negative refractive power, separations between said lens units being varied to effect zooming,
- wherein said zoom lens satisfies the following condition:
- M.sub.1 =M.sub.2 =1,
- where Mi is the number of lens elements in said i-th lens unit, wherein, for a cemented lens, its constituent elements are counted as if in broken contact, and
- wherein said first lens unit moves at the time of zooming.
- 2. A zoom lens according to claim 1, wherein said first lens unit includes at least one positive lens having a convex surface facing the object side, said third lens unit includes at least one negative lens and a positive lens having a convex surface facing the image side, and said fourth lens unit includes at least one positive lens having a convex surface facing the image side and a negative lens having a concave surface facing the object side.
- 3. A zoom lens according to claim 1, wherein said second lens unit has a negative refractive power and the following conditions are satisfied:
- 0<d.sub.2W /(f.sub.W .multidot.tan .omega..sub.W)<0.55
- 0.11<B.sub.3 /f.sub.W <0.61
- -2.51<((R.sub.2F +R.sub.2R)/(R.sub.2F -R.sub.2R)).multidot.(f.sub.W /.vertline.f.sub.2 .vertline.)<2.51
- where
- d.sub.2W : the separation between said second lens unit and said third lens unit in a wide-angle end;
- f.sub.W : the shortest focal length of the entire system;
- .omega..sub.W : the semi-angle of field coverage of the entire system in the wide-angle end;
- B.sub.3 : the axial length of said third lens unit;
- R.sub.2F : the radius of curvature of the frontmost surface in said second lens unit;
- R.sub.2R : the radius of curvature of the rearmost surface in said second lens unit; and
- f.sub.2 : the focal length of said second lens unit.
- 4. A zoom lens according to claim 1, wherein said first lens unit moves toward the object side at the time of zooming from a wide-angle end to a telephoto end.
- 5. A compact zoom lens comprising, from front to rear, a first lens unit including at least one positive lens and having a positive refractive power as a whole, a second lens unit including at least one negative lens and having a negative refractive power as a whole, a third lens unit including at least one positive lens and at least one negative lens, and a fourth lens unit including at least one positive lens and at least one negative lens, separations between said lens units being varied to effect zooming, and said zoom lens satisfying the following conditions:
- 0.49<f.sub.3 /(f.sub.W .multidot.tan .omega..sub.W)<3.05
- 0.49<.vertline.f.sub.4 .vertline./(f.sub.W .multidot.tan .omega..sub.W)<3.05
- 0<d.sub.2W /(f.sub.W .multidot.tan .omega..sub.W)<0.55
- -1.21<(d.sub.2T -d.sub.2W)/(d.sub.3T -d.sub.3W)<0.21
- 0.11<B.sub.3 /f.sub.W <0.61
- where
- f.sub.3 and f.sub.4 : the focal lengths of said third lens unit and said fourth lens unit, respectively;
- f.sub.W and f.sub.T : the shortest and longest focal lengths of the entire system, respectively;
- .omega..sub.W : the semi-angle of field coverage of the entire system in a wide-angle end;
- d.sub.2W and d.sub.2T : the separations between said second lens unit and said third lens unit in the wide-angle end and in a telephoto end, respectively;
- d.sub.3W and d.sub.3T : the separations between said third lens unit and said fourth lens unit in the wide-angle end and in the telephoto end, respectively; and
- B.sub.3 : the axial length of said third lens unit.
- 6. A compact zoom lens comprising, from front to rear, a first lens unit of positive refractive power, a second lens unit of positive refractive power, a third lens unit of positive refractive power and a fourth lens unit of negative refractive power, separations between said lens units being varied to effect zooming, wherein said first lens unit includes at least one positive lens having a convex surface facing the object side, said second lens unit is constructed with a single lens satisfying the following condition, said third lens unit includes at least one negative lens and a positive lens having a convex surface facing the image side, and said fourth lens unit includes at least one positive lens having a convex surface facing the image side and a negative lens having a concave surface facing the object side, said condition being:
- -0.09<(R.sub.2F +R.sub.2R)/(R.sub.2F -R.sub.2R).multidot.(f.sub.W /f.sub.2)<2.51
- where
- R.sub.2F and R.sub.2R : the radii of curvature of the front and rear lens surfaces of said second lens unit, respectively;
- f.sub.W : the shortest focal length of the entire system; and
- f.sub.2 : the focal length of said second lens unit.
- 7. A compact zoom lens comprising, from front to rear, a first lens unit of positive refractive power, a second lens unit of positive refractive power, a third lens unit of positive refractive power and a fourth lens unit including at least one positive lens and one negative lens and having a negative refractive power as a whole, separations between said lens units being varied to effect zooming, and said zoom lens satisfying the following conditions:
- 1.17<(.phi..sub.1 +.phi..sub.2 +.phi..sub.3)/.phi..sub.W <2.22
- 1.17<.vertline..phi..sub.4 .vertline./.phi..sub.W <2.22
- 0.23<(B.sub.1 +B.sub.2 +B.sub.3)/(f.sub.W .multidot.tan .omega..sub.W)<1.50
- 0.11<SK.sub.W /TD.sub.W <0.31
- 1.21<(TD.sub.W +SK.sub.W)/(f.sub.W .multidot.tan .omega..sub.W)<3.31
- where
- .phi.i: the refractive power of the i-th lens unit;
- .phi..sub.W and f.sub.W : the overall refractive power and overall focal length of the entire lens system in a wide-angle end, respectively;
- Bi: the axial length of the i-th lens unit;
- .omega..sub.W : the semi-angle of field coverage of the entire lens system in the wide-angle end; and
- SK.sub.W and TD.sub.W : the back focal distance and physical length of the entire lens system in the wide-angle end.
- 8. A zoom lens comprising, from front to rear, a positive first lens unit, a positive second lens unit, a positive third lens unit and a negative fourth lens unit, air separations between said lens units being varied to effect zooming, wherein said first lens unit has a frontmost surface of concave curvature and said fourth lens unit includes a positive meniscus lens convex toward an image side followed toward the image side by a negative lens.
- 9. A zoom lens comprising, from front to rear, a positive first lens unit, a positive second lens unit, a positive third lens unit and a negative fourth lens unit, air separations between said lens units being varied to effect zooming, and said zoom lens satisfying the following condition:
- 0<D.sub.2 /f.sub.W <0.05
- where D.sub.2 is the distance from the first lens surface to the last lens surface of said second lens unit, and f.sub.W is the shortest focal length of the entire system.
- 10. A zoom lens according to claim 9, wherein said fourth lens unit includes a meniscus lens convex toward the image side and a negative lens.
- 11. A zoom lens according to claim 9, wherein said first lens unit has its first lens surface of concave curvature facing an object side.
- 12. A zoom lens according to claim 9, wherein said third lens unit includes a negative lens having a concave surface facing an object side, a positive lens having a convex surface facing the object side, a negative lens and a bi-convex lens arranged in this order.
- 13. A zoom lens comprising, from front to rear, a positive first lens unit, a positive second lens unit, a positive third lens unit and a negative fourth lens unit, air separations between said lens units being varied to effect zooming, wherein said third lens unit includes a negative lens having a concave surface facing an object side, a positive lens having a convex surface facing the object side, a negative lens and a bi-convex lens arranged in this order, and said fourth lens unit includes a positive meniscus lens convex toward an image side followed toward the image side by a negative lens.
- 14. A zoom lens comprising, from front to rear, a positive first lens unit, a positive second lens unit, a positive third lens unit and a negative fourth lens unit, wherein said first lens unit includes negative and positive lenses, said second lens unit has a stop movable in unison with said second lens unit, and said fourth lens unit includes a positive lens and a negative lens in this order.
- 15. A zoom lens comprising, from front to rear, a positive first lens unit, a positive second lens unit, a positive third lens unit and a negative fourth lens unit, air separations between said first lens unit and said second lens unit, between said second lens unit and said third lens unit, and between said third lens unit and said fourth lens unit being varied to effect zooming, wherein said second lens unit comprises a positive meniscus lens convex toward an image side, and said fourth lens unit comprises positive and negative lenses, totaling two lenses.
- 16. A zoom lens comprising, from front to rear, a positive first lens unit, a positive second lens unit, a positive third lens unit and a negative fourth lens unit, air separations between said lens units being varied to effect zooming, wherein said fourth lens unit includes a positive meniscus lens convex toward an image side followed toward the image side by a negative lens and satisfies the following condition:
- 0.5<ra/rb<1
- where ra is the radius of curvature of a rear surface of said positive meniscus lens, and rb is the radius of curvature of a front surface of said negative lens.
- 17. A zoom lens having a stop and comprising, from front to rear, a first lens unit of positive refractive power, a second lens unit of relatively weak refractive power, a third lens unit of positive refractive power and a fourth lens unit of negative refractive power, wherein during zooming from a wide-angle end to a telephoto ends, a separation between said first lens unit and said second lens unit increases, a separation between said second lens unit and said third lens unit varies and a separation between said third lens unit and said fourth lens unit decreases, wherein at least one lens included in said second lens unit lies on an image side of said stop, and wherein said second lens unit and said third lens unit are moved forward to effect focusing from an infinitely distant object to shorter object distances.
- 18. A zoom lens according to claim 17, wherein said stop is stationary during focusing.
- 19. A zoom lens according to claim 17, wherein said second lens unit and said third lens unit are moved in unison to effect focusing.
- 20. A zoom lens according to claim 17, wherein either said second lens unit or said third lens unit, during zooming, moves in unison with said stop.
- 21. A zoom lens according to claim 17, wherein during zooming from the wide-angle end to the telephoto end, said first lens unit to said fourth lens unit are all moved forward.
- 22. A zoom lens according to claim 17, wherein said stop is located on an object side of said second lens unit.
- 23. A compact zoom lens comprising, from front to rear, a first lens unit of positive refractive power, a second lens unit, a third lens unit of positive refractive power and a fourth lens unit of negative refractive power, said lens units being moved along an optical axis to effect zooming, a stop being arranged on an object side of said third lens unit, and focusing being performed by moving said third lens unit.
- 24. A compact zoom lens according to claim 23, wherein said stop and said second lens unit are constructed in unified form.
- 25. A zoom lens according to claim 23 or 24, wherein a separation between said second lens unit and said third lens unit is wider in a telephoto end than in a wide-angle end.
- 26. A zoom lens according to claim 23, satisfying the following condition:
- 0.08<D/fW<0.45
- where D is the distance from a front vertex of said zoom lens to said stop, and fw is the shortest focal length of the entire system.
- 27. A zoom lens comprising, from front to rear, a first lens unit of positive refractive power, a second lens unit of positive refractive power, a third lens unit of positive refractive power and a fourth lens unit of negative refractive power, said first, said second, said third and said fourth lens units being moved along an optical axis in the same direction during zooming, and said zoom lens satisfying the following condition:
- 0<Bd/Fw<1.3
- where Bd is the entire length of said first lens unit, and FW is the shortest focal length of the entire system.
- 28. A zoom lens according to claim 27, wherein said second lens unit includes at least one negative lens and at least one positive lens, and has its first lens surface of concave curvature facing an object side and its last surface of convex curvature facing an image side.
- 29. A zoom lens according to claim 28, satisfying the following condition:
- 0.5<.vertline.fa.vertline./fb<1.5
- where fa is the focal length of the first lens surface of said second lens unit, and fb is the focal length of the last lens surface of said second lens unit.
- 30. A zoom lens according to claim 27 or 28, wherein said third lens unit includes at least one negative lens and at least one positive lens.
- 31. A zoom lens according to claim 30, wherein said third lens unit satisfies the following condition:
- 15<vp-vn
- wherein vp is the average of the Abbe numbers of positive lenses of said third lens unit, and vn is the average of the Abbe number of negative lenses of said third lens unit.
- 32. A zoom lens according to claim 27, wherein said fourth lens unit includes a positive meniscus lens having a concave surface facing said third lens unit, and, on an image side of said positive meniscus lens, a negative lens having a concave surface facing said third lens unit.
- 33. A zoom lens comprising, from front to rear, a first lens unit of positive refractive power, a second lens unit, a third lens unit of refractive power, and a fourth lens unit of negative refractive power, separations between said lens units being varied to effect zooming,
- wherein said zoom lens satisfies the following condition:
- 1.ltoreq.M.sub.2 <M.sub.1 .ltoreq.M.sub.4 <M.sub.3 .ltoreq.6
- where Mi is the number of lens elements in said i-th lens unit, and wherein, for a cemented lens, its constituent elements are counted as if in broken contact.
- 34. A zoom lens according to claim 33, wherein said first lens unit includes at least one positive lens having a convex surface facing the object side, said third lens unit includes at least one negative lens and a positive lens having a convex surface facing the image side, and said fourth lens unit includes at least one positive lens having a convex surface facing the image side and a negative lens having a concave surface facing the object side.
- 35. A zoom lens according to claim 33, wherein said second lens unit has a negative refractive power and the following conditions are satisfied:
- 0<d.sub.2W /(f.sub.W .multidot.tan .omega..sub.W)<0.55
- 0.11<B.sub.3 /f.sub.W <0.61
- -2.51<((R.sub.2F +R.sub.2R)/(R.sub.2F -R.sub.2R)).multidot.(f.sub.W /.vertline.f.sub.2 .vertline.)<2.51
- where
- d.sub.2W : the separation between said second lens unit and said third lens unit in a wide-angle end;
- f.sub.W : the shortest focal length of the entire system;
- .omega..sub.W : the semi-angle of field coverage of the entire system in the wide-angle end;
- B.sub.3 : the axial length of said third lens unit;
- R.sub.2F : the radius of curvature of the front most surface in said second lens unit;
- R.sub.2R : the radius of curvature of the rearmost surface in said second lens unit; and
- f.sub.2 : the focal length of said second lens unit.
Priority Claims (5)
Number |
Date |
Country |
Kind |
5-005021 |
Jan 1993 |
JPX |
|
5-005023 |
Jan 1993 |
JPX |
|
5-029922 |
Jan 1993 |
JPX |
|
5-035559 |
Feb 1993 |
JPX |
|
5-036588 |
Feb 1993 |
JPX |
|
Parent Case Info
This application is a continuation of application Ser. No. 08/177,603 filed Jan. 3, 1994, now abandoned.
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Continuations (1)
|
Number |
Date |
Country |
Parent |
177603 |
Jan 1994 |
|