IP Library › Granted Patent US 11,474,333
Granted Patent B2
US 11,474,333 · App. 16/345,034 · Granted Oct 18, 2022

Zoom optical system, optical apparatus and imaging apparatus using the zoom optical system, and method for manufacturing the zoom optical system

Inventor: Kosuke Machida (Tokyo, JP)
Assignee: NIKON CORPORATION
G02B15/145121G02B15/1451G02B15/145105G02B15/20G02B27/646G02B15/1441G02B15/144105
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Quick Facts
Patent No.
US 11,474,333
App. No.
16/345,034
Granted
Oct 18, 2022
Kind
B2
Abstract

A zoom optical system (ZL) comprises, in order from an object: a first lens group (G 1 ) having a positive refractive power; a second lens group (G 2 ) having a negative refractive power; a third lens group (G 3 ) having a positive refractive power; and a subsequent lens group (GR), wherein upon zooming, a distance between the first lens group (G 1 ) and the second lens group (G 2 ) changes, a distance between the second lens group (G 2 ) and the third lens group (G 3 ) changes, and a distance between the third lens group (G 3 ) and the subsequent lens group (GR) changes, the subsequent lens group (GR) comprises a focusing lens group that moves upon focusing, and following conditional expressions are satisfied, 3.70<f1/(−f2)<5.00, 3.20<f1/f3<5.00, where f1: a focal length of the first lens group (G 1 ), f2: a focal length of the second lens group (G 2 ), and f3: a focal length of the third lens group (G 3 ).

Claims (73)

1. A zoom optical system comprising, in order from an object:

a first lens group having a positive refractive power;

a second lens group having a negative refractive power;

a third lens group having a positive refractive power; and

a subsequent lens group, wherein

the subsequent lens group comprises, in order from the object, a fourth lens group having a negative refractive power and a fifth lens group having a positive refractive power,

upon zooming, the first to the fifth lens groups each move along an optical axis, a distance between the first lens group and the second lens group changes, a distance between the second lens group and the third lens group changes, and a distance between the third lens group and the subsequent lens group changes,

the subsequent lens group comprises a focusing lens group that moves upon focusing, the focusing lens group being the most object side lens group in the subsequent lens group, and

following conditional expressions are satisfied,

3.70<f1/(−f2)<4.80

3.20<f1/f3<4.60

where f1: a focal length of the first lens group,

f2: a focal length of the second lens group, and

f3: a focal length of the third lens group.

2. The zoom optical system according to claim 1 , wherein

a following conditional expression is satisfied,

0.18<(−fF) /f1<0.30

where fF: a focal length of the focusing lens group.

3. The zoom optical system according to claim 1 , wherein

a following conditional expression is satisfied,

0.84<(−f2)/f3<1.20.

4. The zoom optical system according to claim 1 , wherein

upon zooming from a wide-angle end state to a telephoto end state, the first lens group moves toward the object.

5. The zoom optical system according to claim 1 , wherein

the focusing lens group comprises:

at least one lens having a positive refractive power; and

at least one lens having a negative refractive power.

6. The zoom optical system according to claim 1 , wherein

the second lens group comprises a vibration-proof lens group movable so as to have a displacement component in a direction perpendicular to an optical axis in order to correct an image blur.

7. The zoom optical system according to claim 6 , wherein

the vibration-proof lens group consists of, in order from the object:

a lens having a negative refractive power; and

a lens having a positive refractive power.

8. The zoom optical system according to claim 7 , wherein

a following conditional expression is satisfied,

0.80<nN/nP <1.00

where nN: a refractive index of the lens having the negative refractive power in the vibration-proof lens group, and

nP: a refractive index of the lens having the positive refractive power in the vibration-proof lens group.

9. The zoom optical system according to claim 7 , wherein

a following conditional expression is satisfied,

1.20<vN/vP<2.40

where vN: an Abbe number of the lens having the negative refractive power in the vibration-proof lens group, and

vP: an Abbe number of the lens having the positive refractive power in the vibration-proof lens group.

10. The zoom optical system according to claim 1 , wherein

the subsequent lens group comprises:

a lens that is disposed to the image side of the focusing lens group, and has a negative refractive power; and

a lens that is disposed to the image side of the lens having the negative refractive power, and has a positive refractive power.

11. The zoom optical system according to claim 10 , wherein

a following conditional expression is satisfied,

0.70<(−fN)/fP<2.00

where fN: a focal length of the lens that is disposed to the image side of the focusing lens group and has the negative refractive power, and

fP: a focal length of the lens that is disposed to the image side of the lens having the negative refractive power, and has the positive refractive power.

12. An optical apparatus comprising:

the zoom optical system according to claim 1 ; and

a lens barrel holding the zoom optical system.

13. An imaging apparatus comprising:

the zoom optical system according to claim 1 ; and

an imaging unit that takes an image formed by the zoom optical system.

14. A method for manufacturing a zoom optical system comprising, in order from an object:

a first lens group having a positive refractive power;

a second lens group having a negative refractive power;

a third lens group having a positive refractive power; and

a subsequent lens group, wherein the method comprises:

arranging the lens groups in a lens barrel such that, upon zooming, a distance between the first lens group and the second lens group changes, a distance between the second lens group and the third lens group changes, and a distance between the third lens group and the subsequent lens group changes, and

configuring the subsequent lens group to include a focusing lens group that moves upon focusing, the focusing lens group being the most object side lens group in the subsequent lens group,

the method further comprises:

configuring the subsequent lens group to include, in order from the object, a fourth lens group having a negative refractive power and a fifth lens group having a positive refractive power,

arranging the lens groups in the lens barrel such that, upon zooming, the first to the fifth lens groups each move along an optical axis, and satisfying following conditional expressions,

3.70<f1/(−f2)<4.80

3.20<f1/f3<60

where f1: a focal length of the first lens group,

f2: a focal length of the second lens group, and

f3: a focal length of the third lens group.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 2, 2019
From: MACHIDA, KOSUKE
To: NIKON CORPORATION
Reel/Frame 049946/0091 →
Continuity (1)
Related Publication 20190361210A1 · Nov 28, 2019