IP Library Granted Patent US 8,488,254
Granted Patent B2
US 8,488,254 · App. 13/241,349 · Granted Jul 16, 2013

Zoom lens optical system and image pickup apparatus having the same

Inventor: Jin-seon Seo (Suwon-si, KR)
Assignee: Samsung Electronics Co., Ltd.
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Quick Facts
Patent No.
US 8,488,254
App. No.
13/241,349
Granted
Jul 16, 2013
Kind
B2
Abstract

A zoom lens optical system includes a first lens unit having a positive refractive index, a second lens unit which is arranged behind the first lens unit and has a negative refractive index, a third lens unit which is arranged behind the second lens unit and has a positive refractive index, and a fourth lens unit which is arranged behind the third lens unit and has a positive refractive index. An aperture is arranged within the third lens unit to prevent reduction of shutter speed due to large diameter of the zoom lens optical system.

Claims (50)

1. A zoom lens optical system comprising:

a first lens unit having a positive refractive index;

a second lens unit which is arranged behind the first lens unit and has a negative refractive index;

a third lens unit which is arranged behind the second lens unit and has a positive refractive index; and

a fourth lens unit which is arranged behind the third lens unit and has a positive refractive index,

wherein an aperture is arranged at a location where a principal ray has a minimum height from an optical axis within the third lens unit.

2. The zoom lens optical system of claim 1 , wherein the third lens unit comprises:

a first lens having a positive refractive index;

a first doublet lens which is disposed between the first lens and the aperture and is formed by junction of a second lens having a positive refractive index and a third lens having a negative refractive index; and

a second doublet lens which is disposed behind the aperture and is formed by junction of a fourth lens having a negative refractive index and a fifth lens having a positive refractive index.

3. The zoom lens optical system of claim 2 , wherein the first lens comprises an aspherical lens.

4. The zoom lens optical system of claim 2 , wherein an object-side lens surface of the fourth lens is aspheric.

5. The zoom lens optical system of claim 1 , wherein the aperture moves with the third lens unit during zooming operation of the zoom lens optical system.

6. The zoom lens optical system of claim 1 , wherein

a focal length f t of the zoom lens optical system at a telephoto end, a focal length f w of the zoom lens optical system at a wide-angle end, and a focal length f 2 of the second lens unit satisfy a formula

0.23

<

f

t

/

f

w

f

2

<

0.35

.

7. The zoom lens optical system of claim 1 , wherein a distance L w between a first object side lens surface of the first lens unit and an image forming surface at a wide-angle end, a distance L t between the first object side lens surface of the first lens unit and the image forming surface at a telephoto end, a focal length f w of the zoom lens optical system at the wide-angle end, and a focal length f t of the zoom lens optical system at the telephoto end satisfy a formula

11.5<(L w /f w )+(L t /f t )<13.5.

8. The zoom lens optical system of claim 1 , wherein Abbe's number (V d ) of at least one lens of the second lens unit satisfies a formula of 70≦V d .

9. The zoom lens optical system of claim 1 , wherein while a focal length of the zoom lens optical system changes according to a zooming operation changing from a wide-angle end to a telephoto end, the first, second, third, and fourth lens units move along the optical axis so that an interval between the first lens unit and the second lens unit is increased, an interval between the second lens unit and the third lens unit is decreased, and an interval between the third lens unit and the fourth lens unit is increased.

10. The zoom lens optical system of claim 1 , wherein the first lens unit comprises a first doublet lens formed by junction of a first lens having a negative refractive index and a second lens having a positive refractive index.

11. The zoom lens optical system of claim 10 , wherein the first lens unit further comprises a third lens which is arranged behind the first doublet lens and has a positive refractive index.

12. The zoom lens optical system of claim 1 , wherein the second lens unit comprises;

a first lens of meniscus having a negative refractive index;

a second lens which is arranged behind the first lens, has a negative refractive index, and is a biconcave lens; and

a third lens which is arranged behind the second lens, has a negative refractive index and is a meniscus lens.

13. The zoom lens optical system of claim 12 , wherein at least one lens among the first, second and third lenses comprises an aspherical lens.

14. The zoom lens optical system of claim 1 , wherein the fourth lens unit comprises a first lens having a positive refractive index.

15. The zoom lens optical system of claim 14 , wherein the first lens comprises an aspherical lens.

16. The zoom lens optical system of claim 1 , wherein an F number of the zoom lens optical system is 1.2 at a wide-angle end.

17. An image pickup apparatus comprising:

a zoom lens optical system comprising:

a first lens unit having a positive refractive index;

a second lens unit which is arranged behind the first lens unit and has a negative refractive index;

a third lens unit which is arranged behind the second lens unit and has a positive refractive index; and

a fourth lens unit which is arranged behind the third lens unit and has a positive refractive index,

wherein an aperture is arranged at a location where a principal ray has a minimum height from an optical axis within the third lens unit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 23, 2011
From: SEO, JIN-SEON
To: SAMSUNG ELECTRONICS CO., LTD.
Reel/Frame 026954/0310 →
Priority Claims (1)
KR 2010-0093279 · Sep 27, 2010 · national
Continuity (1)
Related Publication 20120075718A1 · Mar 29, 2012