IP Library › Granted Patent US 8,570,671
Granted Patent B2
US 8,570,671 · App. 13/556,444 · Granted Oct 29, 2013

Single focus lens system and photographing apparatus including the same

Inventor: Tae-kun Lee (Suwon-si, KR)
Assignee: Samsung Electronics Co., Ltd.
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Quick Facts
Patent No.
US 8,570,671
App. No.
13/556,444
Granted
Oct 29, 2013
Kind
B2
Abstract

A single focus lens system and a photographing apparatus including the single focus lens system are disclosed. A single focus lens system is provided that includes a first lens group having a negative refractive power, a stop, and a second lens group having a positive refractive power, sequentially arranged in order from an object side, wherein the first lens group comprises first and second air lenses having a negative refractive power, a meniscus shape and a convex surface toward the object side, and the second lens group comprises a lens that has a positive refractive power, is disposed closest to the object side, and has a convex surface toward the object side.

Claims (64)

1. A single focus lens system comprising a first lens group having a negative refractive power, a stop, and a second lens group having a positive refractive power, sequentially arranged in order from an object side,

wherein the first lens group comprises first and second air lenses having a negative refractive power, a meniscus shape and a convex surface toward the object side, and the second lens group comprises a lens that has a positive refractive power, is disposed closest to the object side, and has a convex surface toward the object side,

wherein the single focus lens system satisfies the following expressions,

−10 <F air1 /F<− 2.5

−6 <F air2 /F<− 1

0.6 <Fp 2 /F< 1.5,

where F denotes an overall focal length, Fair 1 denotes a focal length of the first air lens of the first lens group, Fair 2 denotes a focal length of the second air lens of the first lens group, and Fp 2 denotes a focal length of the lens of the second lens group.

2. The single focus lens system of claim 1 , wherein the first lens group comprises at least one first lens having a negative refractive power,

wherein the at least one first lens satisfies the following expressions,

Ndn 1<1.65

Vdn 1>55,

where Ndn 1 denotes a refractive index of the at least one first lens, and Vdn 1 denotes an Abbe number of the at least one first lens.

3. The single focus lens system of claim 2 , wherein the first lens group comprises a second lens having a positive refractive power,

wherein the second lens satisfies the following expression,

Ndp 1<1.75,

where Ndp 1 denotes a refractive index of the second lens.

4. The single focus lens system of claim 3 , wherein the single focus lens system satisfies the following expression,

0.4 <Fp 1 /F< 2.0,

wherein F denotes an overall focal length of the single focus lens system, and Fp 1 denotes a focal length of the second lens.

5. The single focus lens system of claim 1 , wherein the first and second air lenses of the first lens group comprise at least one aspherical surface and satisfy the following expression,

1.5 <Haph*F/ID< 4.0,

wherein Haph denotes a distance from a point where a ray passing through a center of an aperture among light fluxes, which are formed as an image at the highest image height of a diagonal line of an image plane, meets the aspherical surface to an optical axis, F denotes an overall focal length, and ID denotes a diagonal length of the image plane.

6. The single focus lens system of claim 1 , wherein the first lens group satisfies the following expressions,

−0.5<( R 1air1 −R 2air1)/( R 1air1 +R 2air1)<−0.1

−1.0<( R 1air2 −R 2air2)/( R 1air2 +R 2air2)<−0.3,

where R 1 air 1 denotes a curvature radius of the first air lens at the object side, R 2 air 1 denotes a curvature radius of the first air lens at an image side, R 1 air 2 denotes a curvature radius of the second air lens at the object side, and R 2 air 2 denotes a curvature radius of the second air lens at the image side.

7. The single focus lens system of claim 1 , wherein the single focus lens system satisfies the following expressions,

−8.0 <F 1 /F<− 1.0

0.8 <F 2 /F< 1.4,

wherein F denotes an overall focal length of the single focus lens system, F 1 denotes a focal length of the first lens group, and F 2 denotes a focal length of the second lens group.

8. The single focus lens system of claim 1 , wherein the second lens group further comprises a third lens having a negative refractive power and a fourth lens having a positive refractive power, arranged in order from the lens that is closest to the object side toward an image side.

9. The single focus lens system of claim 8 , wherein the fourth lens has a convex, aspherical surface toward the image side.

10. The single focus lens system of claim 1 , wherein the lens of the second lens group that is closest to the object side has an aspherical surface.

11. The single focus lens system of claim 1 , wherein the second lens group comprises a positive-negative doublet lens or a negative-positive doublet lens disposed closest to an image side.

12. The single focus lens system of claim 1 , wherein the first lens group and the second lens group move in parallel along an optical axis to perform focusing.

13. The single focus lens system of claim 1 , wherein the first lens group and the second lens group move in parallel with respect to an optical axis with different loci to perform focusing.

14. The single focus lens system of claim 1 , wherein the lens of the second lens group closest to the object side performs focusing.

15. The single focus lens system of claim 1 , wherein a half-viewing angle of the single focus lens system is in a range from 40 to 45 degrees.

16. The single focus lens system of claim 1 , wherein an F-number of the single focus lens system is in a range from 2 to 2.8.

17. A photographing apparatus comprising:

a single focus lens system; and

an imaging device receiving an image formed by the single focus lens system,

wherein the single focus lens system comprises a first lens group having a negative refractive power, a stop, and a second lens group having a positive refractive power, sequentially arranged in order from an object side,

wherein the first lens group comprises first and second air lenses having a negative refractive power, a meniscus shape and a convex surface toward the object side, and the second lens group comprises a lens that has a positive refractive power, is disposed closest to the object side, and has a convex surface toward the object side,

wherein the single focus lens system satisfies the following expression,

−10 <F air1 /F<− 2.5

−6 <F air2 /F<− 1

0.6 <Fp 2 /F< 1.5,

where F denotes an overall focal length, Fair 1 denotes a focal length of the first air lens of the first lens group, Fair 2 denotes a focal length of the second air lens of the first lens group, and Fp 2 denotes a focal length of the lens of the second lens group.

18. The photographing apparatus of claim 17 , wherein the first lens group comprises at least one first lens having a negative refractive power,

wherein the at least one first lens satisfies the following expressions,

Ndn 1<1.65

Vdn 1>55,

where Ndn 1 denotes a refractive index of the at least one first lens, and Vdn 1 denotes an Abbe number of the at least one first lens.

19. The photographing apparatus of claim 18 , wherein the first lens group comprises a second lens having a positive refractive power,

wherein the second lens satisfies the following expression,

Ndp 1<1.75,

where Ndp 1 denotes a refractive index of the second lens.

20. The photographing apparatus of claim 19 , wherein the single focus lens system satisfies the following expression,

0.4 <Fp 1 /F< 2.0,

wherein F denotes an overall focal length of the single focus lens system, and Fp 1 denotes a focal length of the second lens.

21. The photographing apparatus of claim 17 , wherein the first and second air lenses of the first lens group comprise at least one aspherical surface and satisfy the following expression,

1.5< Haph*F/ID< 4.0,

wherein Haph denotes a distance from a point where a ray passing through a center of an aperture among light fluxes, which are formed as an image at the highest image height of a diagonal line of an image plane, meets the aspherical surface to an optical axis, F denotes an overall focal length, and ID denotes a diagonal length of the image plane.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 24, 2012
From: LEE, TAE-KUN
To: SAMSUNG ELECTRONICS CO., LTD.
Reel/Frame 028623/0097 →
Priority Claims (1)
KR 10-2011-0089254 · Sep 2, 2011 · national
Continuity (1)
Related Publication 20130057972A1 · Mar 7, 2013