IP Library › Granted Patent US 9,804,372
Granted Patent B2
US 9,804,372 · App. 15/132,989 · Granted Oct 31, 2017

Optical system and imaging apparatus including the same

Inventor: Makoto Nakahara (Utsonomiya, JP)
Assignee: Canon Kabushiki Kaisha
G02B15/22G02B9/10G02B13/04G02B13/18G02B13/24G02B15/00G02B15/08G02B15/161G02B15/24G02B15/26
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Quick Facts
Patent No.
US 9,804,372
App. No.
15/132,989
Granted
Oct 31, 2017
Kind
B2
Abstract

An optical system includes, in order from an object side toward an image side, a first lens unit having positive refractive power, and a second lens unit having negative refractive power. A distance between consecutive ones of the lens units changes when focusing is performed. The first lens unit is stationary during focusing. The second lens unit is moved toward the image side when focus is changed from an object at infinity to an object at a short distance. Lateral magnification β2 of the second lens unit when focusing on the object at infinity, focal length f1 of the first lens unit, and focal length f2 of the second lens unit are set appropriately to satisfy predetermined mathematical conditions.

Claims (117)

1. An optical system comprising, in order from an object side toward an image side:

a first lens unit having positive refractive power; and

a second lens unit having negative refractive power,

wherein a distance between consecutive ones of the lens units changes when focusing is performed,

wherein the first lens unit is stationary during focusing, and the second lens unit is moved toward the image side when focus is changed from an object at infinity to an object at a short distance, and

wherein the optical system satisfies the following conditional expressions:

3.00<|1−β2 2 |<8.00

0.20 <|f 1 /f 2|<0.59

0.010 <D 2 /DL< 0.090

where β2 denotes lateral magnification of the second lens unit when focusing on the object at infinity, f1 denotes focal length of the first lens unit, f2 denotes focal length of the second lens unit, D2 denotes thickness of the second lens unit on an optical axis, and DL denotes thickness of the optical system on the optical axis when focusing on the object at infinity,

where DL corresponds to a distance, on the optical axis, from a lens surface at the extreme end on the object side to a lens surface at the extreme end on the image side in the optical system.

2. The optical system according to claim 1 ,

wherein the second lens unit includes a negative lens, and

wherein the optical system satisfies the following conditional expression:

35.00 <νd 2 n< 100.00

where νd2n denotes Abbe number, for d-line, of a material forming the negative lens included in the second lens unit.

3. The optical system according to claim 1 , further comprising:

an aperture stop,

wherein the optical system satisfies the following conditional expression:

0.65 <|DSP/DL|< 0.95

where DSP denotes distance from the aperture stop to an image plane on an optical axis when focusing on the object at infinity.

4. The optical system according to claim 1 ,

wherein the optical system satisfies the following conditional expression:

0.20 <BF/f< 1.80

where BF denotes back focal length of the optical system when focusing on the object at infinity, and f denotes focal length of the optical system when focusing on the object at infinity.

5. The optical system according to claim 1 ,

wherein the optical system satisfies the following conditional expression:

1.00<|EXP/ f|< 4.00

where EXP denotes distance from an exit pupil of the optical system to an image plane on an optical axis when focusing on the object at infinity, and f denotes focal length of the optical system when focusing on the object at infinity.

6. The optical system according to claim 1 ,

wherein the optical system satisfies the following conditional expression:

0.50≦−β

where β denotes lateral magnification of the optical system when focusing on an object at a shortest distance.

7. The optical system according to claim 1 , wherein the first lens unit includes lens sub-unit that shifts an imaging position in a direction perpendicular to an optical axis by moving in a direction containing a component perpendicular to the optical axis.

8. The optical system according to claim 1 , consisting of, in order from the object side toward the image side:

the first lens unit having positive refractive power; and

the second lens unit having negative refractive power.

9. The optical system according to claim 1 , consisting of, in order from the object side toward the image side:

the first lens unit having positive refractive power;

the second lens unit having negative refractive power; and

a third lens unit having positive refractive power,

wherein the third lens unit is stationary during focusing.

10. The optical system according to claim 1 , consisting of, in order from the object side toward the image side:

the first lens unit having positive refractive power;

the second lens unit having negative refractive power; and

a third lens unit having negative refractive power,

wherein the third lens unit is stationary during focusing.

11. An optical system comprising, in order from an object side toward an image side:

a first lens unit having positive refractive power; and

a second lens unit having negative refractive power,

wherein a distance between consecutive ones of the lens units changes when focusing is performed,

wherein the first lens unit is stationary during focusing, and the second lens unit is moved toward the image side when focus is changed from an object at infinity to an object at a short distance, and

wherein the optical system satisfies the following conditional expressions:

3.00<|1−β2 2 |<8.00

0.20 <|f 1 /f 2|<0.59

0.65 <|DSP/DL|< 0.95

where β2 denotes lateral magnification of the second lens unit when focusing on the object at infinity, f1 denotes focal length of the first lens unit, f2 denotes focal length of the second lens unit, DSP denotes distance from the aperture stop to an image plane on an optical axis when focusing on the object at infinity, and DL denotes thickness of the optical system on the optical axis when focusing on the object at infinity,

where DL corresponds to a distance, on the optical axis, from a lens surface at the extreme end on the object side to a lens surface at the extreme end on the image side in the optical system.

12. An optical system comprising, in order from an object side toward an image side:

a first lens unit having positive refractive power; and

a second lens unit having negative refractive power,

wherein a distance between consecutive ones of the lens units changes when focusing is performed,

wherein the first lens unit is stationary during focusing, and the second lens unit is moved toward the image side when focus is changed from an object at infinity to an object at a short distance, and

wherein the optical system satisfies the following conditional expressions:

3.00<|1−β2 2 |<8.00

0.20 <|f 1 /f 2|<0.59

1.00<|EXP/ f |<4.00

where β2 denotes lateral magnification of the second lens unit when focusing on the object at infinity, f1 denotes focal length of the first lens unit, f2 denotes focal length of the second lens unit, EXP denotes distance from an exit pupil of the optical system to an image plane on an optical axis when focusing on the object at infinity, and f denotes focal length of the optical system when focusing on the object at infinity.

13. An optical system consisting of, in order from an object side toward an image side:

a first lens unit having positive refractive power; and

a second lens unit having negative refractive power,

wherein a distance between consecutive ones of the lens units changes when focusing is performed,

wherein the first lens unit is stationary during focusing, and the second lens unit is moved toward the image side when focus is changed from an object at infinity to an object at a short distance, and

wherein the optical system satisfies the following conditional expressions:

3.00<|1−β2 2 |<8.00

0.20 <|f 1 /f 2|<0.59

where β2 denotes lateral magnification of the second lens unit when focusing on the object at infinity, f1 denotes focal length of the first lens unit, and f2 denotes focal length of the second lens unit.

14. An optical system consisting of, in order from an object side toward an image side:

a first lens unit having positive refractive power;

a second lens unit having negative refractive power; and

a third lens unit having positive refractive power,

wherein a distance between consecutive ones of the lens units changes when focusing is performed,

wherein the third lens unit is stationary during focusing,

wherein the first lens unit is stationary during focusing, and the second lens unit is moved toward the image side when focus is changed from an object at infinity to an object at a short distance, and

wherein the optical system satisfies the following conditional expressions:

3.00<|1−β2 2 |<8.00

0.20 <|f 1 /f 2|<0.59

where β2 denotes lateral magnification of the second lens unit when focusing on the object at infinity, f1 denotes focal length of the first lens unit, f2 denotes focal length of the second lens unit.

15. An optical system consisting of, in order from an object side toward an image side:

a first lens unit having positive refractive power;

a second lens unit having negative refractive power; and

a third lens unit having negative refractive power,

wherein a distance between consecutive ones of the lens units changes when focusing is performed,

wherein the third lens unit is stationary during focusing,

wherein the first lens unit is stationary during focusing, and the second lens unit is moved toward the image side when focus is changed from an object at infinity to an object at a short distance, and

wherein the optical system satisfies the following conditional expressions:

3.00<|1−β2 2 |<8.00

0.20 <|f 1 /f 2|<0.59

where β2 denotes lateral magnification of the second lens unit when focusing on the object at infinity, f1 denotes focal length of the first lens unit, f2 denotes focal length of the second lens unit.

16. An imaging apparatus comprising:

an optical system according to claim 1 ; and

an imaging device configured to receive an image formed by the optical system.

17. An imaging apparatus comprising:

an optical system according to claim 11 ; and

an imaging device configured to receive an image formed by the optical system.

18. An imaging apparatus comprising:

an optical system according to claim 12 ; and

an imaging device configured to receive an image formed by the optical system.

19. An imaging apparatus comprising:

an optical system according to claim 13 ; and

an imaging device configured to receive an image formed by the optical system.

20. An imaging apparatus comprising:

an optical system according to claim 14 ; and

an imaging device configured to receive an image formed by the optical system.

21. An imaging apparatus comprising:

an optical system according to claim 15 ; and

an imaging device configured to receive an image formed by the optical system.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 28, 2016
From: NAKAHARA, MAKOTO
To: CANON KABUSHIKI KAISHA
Reel/Frame 039022/0744 →
Priority Claims (1)
JP 2015-089581 · Apr 24, 2015 · national
Continuity (1)
Related Publication 20160313543A1 · Oct 27, 2016