IP Library › Granted Patent US 7,177,095
Granted Patent B2
US 7,177,095 · App. 11/250,016 · Granted Feb 13, 2007

Zoom lens and imaging apparatus having the same

Assignee: Canon Kabushiki Kaisha
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Quick Facts
Patent No.
US 7,177,095
App. No.
11/250,016
Granted
Feb 13, 2007
Kind
B2
Abstract

A zoom lens comprises, from the object side to the image side, a first lens group, a second lens group, and a rear group including one or more lens groups, where the first and second lens groups can move at the time of zooming, and wherein the first lens group comprises, from the object side to the image side, a first lens of negative refractive power, and a second lens of positive refractive power.

Claims (75)

1. A zoom lens, comprising in order from the object side to the image side:

a first lens group of negative refractive power;

a second lens group of positive refractive power; and

a third lens group,

wherein the first lens group and the second lens group move at the time of zooming,

and wherein the first lens group consists, in order from the object side to the image side,

a first lens of negative refractive power, and

a second lens of positive refractive power,

wherein said first lens group moves to the image side so as to draw a convex locus at the time of zooming from the wide-angle end to the telephoto end, and said second lens group moves to the object side, and

wherein, with the focal distance of the first lens group as f 1 , the focal distance of the second lens group as f 2 , the focal distance of the entire system at the wide-angle end as fw, and the focal distance of the entire system at the telephoto end as ft, the following conditions are satisfied:

1.5 ≦ft/fw; and

1.75< |f 1/ |f 2<2.5.

2. The zoom lens according to claim 1 , wherein the third lens group has a positive refractive power.

3. The zoom lens according to claim 1 , wherein the number of lenses in the entire system is less than eight.

4. The zoom lens according to claim 1 , wherein back focus at the wide-angle end is less than 2.5 mm.

5. The zoom lens according to claim 1 , wherein the distance from the first lens surface on the object side to the image surface is less than 17 mm.

6. An imaging apparatus comprising:

the zoom lens according to claim 1 ; and

a solid state imaging device for receiving an image formed by said zoom lens.

7. A zoom lens, comprising in order from the object side to the image side:

a first lens group of negative refractive power;

a second lens group of positive refractive power;

a third lens group of negative refractive power; and

a fourth lens group of positive refractive power,

wherein the first lens group and the second lens group move at the time of zooming,

and wherein the first lens group consists, in order from the object side to the image side,

a first lens of negative refractive power, and

a second lens of positive refractive power,

wherein, with the focal distance of the first lens group as f 1 , the focal distance of the second lens group as f 2 , the focal distance of the entire system at the wide-angle end as fw, and the focal distance of the entire system at the telephoto end as ft, the following conditions are satisfied:

1.5≦ ft/fw; and

1.75< |f 1/ |f 2<2.5.

8. The zoom lens according to claim 7 , wherein said first lens group moves to the image side so as to draw a convex locus at the time of zooming from the wide-angle end to the telephoto end, and said second lens group moves to the object side.

9. The zoom lens according to claim 7 , wherein the first lens is a lens of negative refractive power of which the surface on the object side is a convex meniscus shape, and the second lens is a lens of positive refractive power of which the surface on the object side is a convex meniscus shape, and

wherein, with the curvature radii on the object side and on the image side of the first lens as R 11 and R 12 respectively, and the curvature radii on the object side and on the image side of the second lens as R 13 and R 14 respectively, the following conditions are satisfied:

1.5<| R 11/ R 12|; and

| R 13/ R 14|<1.2.

10. The zoom lens according to claim 9 , wherein with the Abbe numbers of the materials of the first lens and the second lens as v 11 and v 12 respectively, the following condition is satisfied:

1.0<ν11/ν12.

11. The zoom lens according to claim 7 , wherein the number of lenses in the entire system is less than eight.

12. The zoom lens according to claim 7 , wherein back focus at the wide-angle end is less than 2.5 mm.

13. The zoom lens according to claim 7 , wherein the distance from the first lens surface on the object side to the image surface is less than 17 mm.

14. An imaging apparatus comprising:

the zoom lens according to claim 7 ; and

a solid state imaging device configured to receive an image formed by the zoom lens.

15. A zoom lens, comprising in order from the object side to the image side:

a first lens group of negative refractive power;

a second lens group of positive refractive power;

a third lens group of positive refractive power; and

a fourth lens group of negative refractive power,

wherein the firs lens group and the second lens group move at the time of zooming,

and wherein the first lens group consists, in order from the object side to the image side,

a first lens of negative refractive power, and

a second lens of positive refractive power,

wherein, with the focal distance of the first lens group as f 1 , the focal distance of the second lens group as f 2 , the focal distance of the entire system at the wide-angle end as fw, and the focal distance of the entire system at the telephoto end as ft, the following conditions are satisfied:

1.5≦ ft/fw; and

1.75< |f 1 |/f 2<2.5.

16. The zoom lens according to claim 1 , wherein the eleventh first lens is a lens of negative refractive power of which the surface on the object side is a convex meniscus shape, and the second lens is a lens of positive refractive power of which the surface on the object side is a convex meniscus shape;

and wherein, with the curvature radii on the object side and on the image side of the first lens as R 11 and R 12 respectively, and the curvature radii on the object side and on the image side of the second lens as R 13 and R 14 respectively, the following conditions are satisfied:

1.5< |R 11/ R 12|; and

| R 13/ R 14|<1.2.

17. The zoom lens according to claim 16 , wherein with the Abbe numbers of the materials of the first lens and the second lens as v 11 and v 12 respectively, the following condition is satisfied:

1.0< v 11/ v 12.

18. The zoom lens according to claim 15 , wherein the first lens is a lens of negative refractive power of which the surface on the object side is a convex meniscus shape, and

the second lens is a lens of positive refractive power of which the surface on the object side is a convex meniscus shape, and

wherein, with the curvature radii on the object side and on the image side of the first lens as R 11 and R 12 respectively, and the curvature radii on the object side and on the image side of the second lens as R 13 and R 14 respectively, the following conditions are satisfied:

1.5<| R 11/ R 12|; and

| R 13/ R 14|<1.2.

19. The zoom lens according to claim 18 , wherein with the Abbe numbers of the materials of the first lens and the second lens as v 11 and v 12 respectively, the following condition is satisfied:

1.0<ν11/ν12.

20. The zoom lens according to claim 15 , wherein the number of lenses in the entire system is less than eight.

21. The zoom lens according to claim 15 , wherein back focus at the wide-angle end is less than 2.5 mm.

22. The zoom lens according to claim 15 , wherein the distance from the first lens surface on the object side to the image surface is less than 17 mm.

23. An imaging apparatus comprising:

the zoom lens according to claim 15 ; and

a solid state imaging device configured to receive an image formed by the zoom lens.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 12, 2005
From: SUGIYAMA, TAKAYUKI; TOCHIGI, NOBUYUKI; FUKASAWA, MOTOMU; KONDO, KAZUYUKI
To: CANON KABUSHIKI KAISHA
Reel/Frame 017112/0040 →
Priority Claims (1)
JP 2004-304217 · Oct 19, 2004 · national
Continuity (1)
Related Publication 20060082900A1 · Apr 20, 2006