IP Library › Granted Patent US 8,867,143
Granted Patent B2
US 8,867,143 · App. 13/676,301 · Granted Oct 21, 2014

Zoom lens and image pickup apparatus including the same

Inventor: Yoshiyuki Taki (Utsunomiya, JP)
Assignee: Canon Kabushiki Kaisha
G02B15/14G02B15/16H04N5/225G02B15/20
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Quick Facts
Patent No.
US 8,867,143
App. No.
13/676,301
Granted
Oct 21, 2014
Kind
B2
Abstract

A zoom lens includes a negative lens unit having a negative refractive power and a positive lens unit having a positive refractive power arranged in order from an object side to an image side. For focusing from infinity to a closest distance, the negative lens unit moves towards the image side and the positive lens unit moves towards the object side. Predetermined mathematical conditions are satisfied to obtain high optical performance over the entire focusing range.

Claims (76)

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

a front lens group including a plurality of lens units configured to move for zooming;

an aperture stop; and

a rear lens group including a plurality of lens units configured to move for focusing,

wherein the rear lens group includes a negative lens unit having a negative refractive power and a positive lens unit having a positive refractive power arranged in order from the object side to the image side, and

wherein, for focusing from infinity to a closest distance, the negative lens unit included in the rear lens group moves towards the image side, and the positive lens unit included in the rear lens group moves towards the object side.

2. The zoom lens according to claim 1 , wherein the following conditional expressions are satisfied:

−10.0 <F N <0.0

2.0 <F P <10.0

where F N and F P respectively represent focus sensitivities of the negative lens unit and the positive lens unit when focusing at infinity with the zoom lens at a telephoto end.

3. The zoom lens according to claim 1 ,

wherein the following conditional expressions are satisfied:

0.08<|dfN/fR|<0.30

0.08<|dfP/fR|<0.30

where dfN and dfP represent moving amounts of the negative lens unit and the positive lens unit during focusing from infinity to the closest distance at a telephoto end, and fR represents a focal length of the rear lens group when focusing at infinity with the zoom lens at a wide angle end.

4. The zoom lens according to claim 1 , wherein the following conditional expression is satisfied:

0.8<|dfN/dfP|<1.5

where dfN and dfP represent moving amounts of the negative lens unit and the positive lens unit during focusing from infinity to the closest distance at a telephoto end.

5. The zoom lens according to claim 1 ,

wherein the following conditional expression is satisfied:

0.2<|β Rtinf −β Rtmod |<1.0

where β Rtinf and β Rtmod respectively represent lateral magnifications of the rear lens group when focusing at infinity and at the closest distance at a telephoto end.

6. The zoom lens according to claim 1 ,

wherein the following conditional expression is satisfied:

| O 1 R /fR|<0.5

where O1R represents a distance from an object-side lens surface of the rear lens group to a front-side principal point position of the rear lens group when focusing at infinity at a wide angle end, and fR represents a focal length of the rear lens group when focusing at infinity at the wide angle end.

7. The zoom lens according to claim 1 ,

wherein the zoom lens includes, in order from the object side to the image side, a first lens unit having a positive refractive power, a second lens unit having a negative refractive power, a third lens unit having a positive refractive power, a fourth lens unit having a positive refractive power, a fifth lens unit having a negative refractive power, a sixth lens unit having a positive refractive power, and a seventh lens unit having a negative refractive power, and

wherein, for zooming from a wide angle end to a telephoto end, the second lens unit moves to the image side and the third lens unit moves along a locus convex towards the image side, and

wherein, for focusing from infinity to the closest distance, the fifth lens unit moves towards the image side and the sixth lens unit moves towards the object side.

8. The zoom lens according to claim 1 ,

wherein the zoom lens includes, in order from the object side to the image side, a first lens unit having a positive refractive power, a second lens unit having a negative refractive power, a third lens unit having a positive refractive power, a fourth lens unit having a positive refractive power, a fifth lens unit having a negative refractive power, a sixth lens unit having a positive refractive power, and a seventh lens unit having a negative refractive power,

wherein, for zooming from a wide angle end to a telephoto end, the first lens unit moves to the object side, the second lens unit moves along a locus convex towards the image side, the third lens unit moves to the object side, and the fourth to seventh lens units move together to the object side, and

wherein, for focusing from infinity to the closest distance, the fifth lens unit moves towards the image side, and the sixth lens unit moves towards the object side.

9. The zoom lens according to claim 1 ,

wherein the zoom lens includes, in order from the object side to the image side, a first lens unit having a positive refractive power, a second lens unit having a negative refractive power, a third lens unit having a positive refractive power, a fourth lens unit having a positive refractive power, a fifth lens unit having a negative refractive power, a sixth lens unit having a positive refractive power, and a seventh lens unit having a negative refractive power,

wherein, for zooming from a wide angle end to a telephoto end, the first lens unit and the third to seventh lens units move towards the object side along different loci, and the second lens unit moves along a locus convex towards the image side, and

wherein, for focusing from infinity to the closest distance, the fifth lens unit moves towards the image side, and the sixth lens unit moves towards the object side.

10. The zoom lens according to claim 1 ,

wherein the following conditional expressions are satisfied:

0.3<|fRN/fR|<0.8

0.3<|fRP/fR|<0.8

where fR represents a focal length of the rear lens group when focusing at infinity at a wide angle end, and fRN and fRP represent focal lengths of the negative lens unit and the positive lens unit.

11. The zoom lens according to claim 1 ,

wherein the zoom lens includes, in order from the object side to the image side, a first lens unit having a positive refractive power, a second lens unit having a negative refractive power, a third lens unit having a positive refractive power, a fourth lens unit having a positive refractive power, a fifth lens unit having a negative refractive power, a sixth lens unit having a positive refractive power, a seventh lens unit having a positive refractive power, and an eighth lens unit having a negative refractive power,

wherein, for zooming from a wide angle end to a telephoto end, the second lens unit moves to the image side and the third lens unit moves along a locus convex towards the image side, and

wherein, for focusing from infinity to the closest distance, the fifth lens unit moves towards the image side and the seventh lens unit moves towards the object side.

12. The zoom lens according to claim 11 , wherein the fourth to eighth lens units move together to the object side for zooming from the wide angle end to the telephoto end.

13. An image pickup apparatus comprising:

a zoom lens; and

a solid-state image pickup element configured to receive an optical image formed by the zoom lens,

the zoom lens comprising in order from object side to image side:

a front lens group including a plurality of lens units configured to move for zooming;

an aperture stop; and

a rear lens group including a plurality of lens units configured to move for focusing,

wherein the rear lens group includes a negative lens unit having a negative refractive power and a positive lens unit having a positive refractive power arranged in order from the object side to the image side, and

wherein, for focusing from infinity to a closest distance, the negative lens unit included in the rear lens group moves towards the image side, and the positive lens unit included in the rear lens group moves towards the object side.

14. A zoom lens comprising:

a negative lens unit and a positive lens unit arranged in order from an object side to an image side,

wherein the negative lens unit has a negative refractive power and the positive lens unit has a positive refractive power,

wherein, for focusing from infinity to a closest distance, the negative lens unit moves towards the image side and the positive lens unit moves towards the object side, and

wherein the following conditional expressions are satisfied:

−10.0 <F N <0.0

2.0 <F P <10.0

where F N and F P respectively represent focus sensitivities of the negative lens unit and the positive lens unit when focusing at infinity with the zoom lens at a telephoto end.

15. An image pickup apparatus comprising:

a zoom lens; and

a solid-state image pickup element configured to receive an optical image formed by the zoom lens,

the zoom lens comprising:

a negative lens unit and a positive lens unit arranged in order from an object side to an image side,

wherein the negative lens unit has a negative refractive power and the positive lens unit has a positive refractive power,

wherein, for focusing from infinity to a closest distance, the negative lens unit moves towards the image side and the positive lens unit moves towards the object side, and

wherein the following conditional expressions are satisfied:

−10.0 <F N <0.0

2.0 <F P <10.0

where F N and F P respectively represent focus sensitivities of the negative lens unit and the positive lens unit when focusing at infinity with the zoom lens at a telephoto end.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 27, 2013
From: TAKI, YOSHIYUKI
To: CANON KABUSHIKI KAISHA
Reel/Frame 029881/0364 →
Priority Claims (2)
JP 2011-250498 · Nov 16, 2011 · national
JP 2011-251498 · Nov 17, 2011 · national
Continuity (1)
Related Publication 20130120640A1 · May 16, 2013