IP Library › Granted Patent US 11,391,915
Granted Patent B2
US 11,391,915 · App. 16/739,233 · Granted Jul 19, 2022

Optical imaging system

Inventor: Tae Youn Lee (Suwon-si, KR)
Assignee: Samsung Electro-Mechanics Co., Ltd.
G02B9/64G02B5/005G02B5/208G02B7/04G02B13/0045G02B13/04G02B13/18
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Quick Facts
Patent No.
US 11,391,915
App. No.
16/739,233
Granted
Jul 19, 2022
Kind
B2
Abstract

An optical imaging system includes a first lens group and a second lens group. The first lens group includes a first lens and a second lens. The second lens group includes a third lens, a fourth lens, a fifth lens, a sixth lens, and a seventh lens. The first to seventh lenses are sequentially disposed from an object side toward an imaging plane. The optical imaging system satisfies TTL/2Y<1.3, where TTL is a distance from an object-side surface of the first lens to the imaging plane, and 2Y is a diagonal length of the imaging plane.

Claims (41)

1. An optical imaging system comprising:

a first lens group comprising a first lens and a second lens; and

a second lens group comprising a third lens, a fourth lens, a fifth lens, a sixth lens, and a seventh lens,

wherein the first to seventh lenses are sequentially disposed from an object side toward an imaging plane,

wherein TTL/2Y<1.3 is satisfied, where TTL is a distance from an object-side surface of the first lens to the imaging plane, and 2Y is a diagonal length of the imaging plane,

wherein the third lens has a convex image-side surface,

wherein the fifth lens has a convex object-side surface, and

wherein the seventh lens has a convex object-side surface.

2. The optical imaging system of claim 1 , wherein the second lens group is movable in an optical axis direction.

3. The optical imaging system of claim 1 , wherein the first lens has a negative refractive power.

4. The optical imaging system of claim 1 , wherein the second lens has a positive refractive power.

5. The optical imaging system of claim 1 , wherein the third lens has a negative refractive power.

6. The optical imaging system of claim 1 , wherein the fourth lens has a positive refractive power.

7. The optical imaging system of claim 1 , wherein the fifth lens has a positive refractive power.

8. The optical imaging system of claim 1 , wherein the sixth lens has a negative refractive power.

9. The optical imaging system of claim 1 , wherein the seventh lens has a positive refractive power.

10. The optical imaging system of claim 1 , wherein −80<{(1/f)*(Y/tan θ)−1}*100<−20 is satisfied, where f is an overall focal length of the optical imaging system, Y is ½ of a diagonal length of the imaging plane, and θ is a half of a field of view of the optical imaging system.

11. The optical imaging system of claim 1 , wherein 1.0<tan θ<4.0 is satisfied, where θ is a half of a field of view of the optical imaging system.

12. The optical imaging system of claim 1 , wherein 0.4<R2/f<1.5 is satisfied, where f is an overall focal length of the optical imaging system, and R2 is a radius of curvature of an image-side surface of the first lens.

13. The optical imaging system of claim 1 , wherein −1.5<f/f1<−0.05 is satisfied, where f is an overall focal length of the optical imaging system, and f1 is a focal length of the first lens.

14. The optical imaging system of claim 1 , wherein 0.3<f/f2<0.8 is satisfied, where f is an overall focal length of the optical imaging system, and f2 is a focal length of the second lens.

15. An optical imaging system comprising:

a first lens having a negative refractive power;

a second lens having a positive refractive power;

a third lens having a refractive power;

a fourth lens having a refractive power;

a fifth lens having positive a refractive power;

a sixth lens having a negative refractive power, and an object-side surface thereof being convex; and

a seventh lens having a refractive power and having an inflection point formed on an image-side surface thereof,

wherein the first to seventh lenses are sequentially disposed from an object side toward an imaging plane, and

wherein the optical imaging system has a total number of seven lenses.

16. The optical imaging system of claim 15 , wherein both surfaces of the second lens are convex.

17. An optical imaging system comprising:

first and second lens groups, the first and second lens groups being sequentially disposed from an object side toward an imaging plane, the first lens group being fixedly disposed at the object-side, and the second lens group being slidably disposed relative to the first group,

wherein the optical imaging system satisfies 0.4<f/fG2<1.1, where f is an overall focal length of the optical imaging system and fG2 is a synthetic focal length of the second lens group,

wherein the optical imaging system has a total number of seven lenses,

wherein first to seventh lenses are sequentially disposed from an object side toward an imaging plane, and

wherein a third lens of the first to seventh lenses has a convex image-side surface.

18. The optical imaging system of claim 17 , wherein the optical imaging system satisfies −80<{(1/f)*(Y/tan θ)−1}*100<−20, where f is an overall focal length of the optical imaging system, 2Y is a diagonal length of the imaging plane, and θ is half of a field of view of the optical imaging system.

19. The optical imaging system of claim 18 , wherein the first lens group comprises the first lens and a second lens of the first to seventh lenses.

20. The optical imaging system of claim 19 , wherein the second lens group comprises the third lens, a fourth lens, a fifth lens, and a sixth lens of the first to seventh lenses, and the seventh lens.

Priority Claims (1)
KR 10-2015-0145259 · Oct 19, 2015 · national
Continuity (2)
Continuation 15084978 · Mar 30, 2016
Related Publication 20200150385A1 · May 14, 2020