IP Library Granted Patent US 12,210,213
Granted Patent B2
US 12,210,213 · App. 17/628,233 · Granted Jan 28, 2025

Camera lens group

Inventors: Long Li (Zhejiang, CN); Fujian Dai (Zhejiang, CN); Liefeng Zhao (Zhejiang, CN)
Assignee: ZHEJIANG SUNNY OPTICS CO., LTD.
G02B9/62G02B3/0043
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Quick Facts
Patent No.
US 12,210,213
App. No.
17/628,233
Granted
Jan 28, 2025
Kind
B2
Abstract

A camera lens group sequentially includes, from an object side to an image side along an optical axis: a first lens (E 1 ) with a refractive power, wherein an object-side surface (S 1 ) thereof is a concave surface, while an image-side surface (S 2 ) is a convex surface; a second lens (E 2 ) with a refractive power, wherein an object-side surface (S 3 ) is a convex surface, while an image-side surface (S 4 ) is a concave surface; a third lens (E 3 ) with a positive refractive power; a fourth lens (E 4 ) with a refractive power; a fifth lens (E 5 ) with a positive refractive power, wherein an object-side surface (S 9 ) thereof is a concave surface, while an image-side surface (S 10 ) is a convex surface; and a sixth lens (E 6 ) with a negative refractive power, wherein an object-side surface (S 11 ) thereof is a convex surface, while an image-side surface (S 12 ) is a concave surface. A half ImgH of a diagonal length of an effective pixel region on an imaging surface (S 15 ) of the camera lens group meets ImgH>4.60 mm.

Claims (34)

1. A camera lens group with a total of six lenses, sequentially comprising, from an object side to an image side along an optical axis:

a first lens with a refractive power, an object-side surface thereof being a concave surface, while an image-side surface being a convex surface;

a second lens with a refractive power, an object-side surface thereof being a convex surface, while an image-side surface being a concave surface;

a third lens with a positive refractive power;

a fourth lens with a refractive power;

a fifth lens with a positive refractive power, an object-side surface thereof being a concave surface, while an image-side surface being a convex surface; and

a sixth lens with a negative refractive power, an object-side surface thereof being a convex surface, while an image-side surface being a concave surface,

wherein ImgH is a half of a diagonal length of an effective pixel region on an imaging surface of the camera lens group, and the ImgH satisfies: ImgH>4.60 mm.

2. The camera lens group according to claim 1 , wherein the camera lens group further comprises a diaphragm arranged between the second lens and the third lens.

3. The camera lens group according to claim 1 , wherein TTL is a distance from the object-side surface of the first lens to the imaging surface of the camera lens group on the optical axis, a total effective focal length f of the camera lens group and the TTL and the ImgH satisfy: 4.00 mm<TTL/ImgH×f<5.50 mm.

4. The camera lens group according to claim 1 , wherein TTL is a distance from the object-side surface of the first lens to the imaging surface of the camera lens group on the optical axis, the TTL and the ImgH satisfy: TTL/ImgH≤1.37.

5. The camera lens group according to claim 1 , wherein an effective focal length f3 of the third lens and a total effective focal length f of the camera lens group satisfy: 1.00<f3/f<4.00.

6. The camera lens group according to claim 1 , wherein DT61 is a maximum effective radius of the object-side surface of the sixth lens, the ImgH and the DT61 satisfy: 1.00<ImgH/DT61<1.50.

7. The camera lens group according to claim 1 , wherein a curvature radius R11 of the object-side surface of the sixth lens and a curvature radius R12 of the image-side surface of the sixth lens satisfy: 1.00<(R11+R12)/(R11−R12)<3.00.

8. The camera lens group according to claim 1 , wherein a curvature radius R3 of the object-side surface of the second lens and a curvature radius R4 of the image-side surface of the second lens satisfy: 0.50<R4/R3<2.00.

9. The camera lens group according to claim 8 , wherein a curvature radius R3 of the object-side surface of the second lens and a total effective focal length f of the camera lens group satisfy: 0.50<f/R3<2.50.

10. The camera lens group according to claim 1 , wherein SAL51 is a distance from an intersection point of an object-side surface of the fourth lens and the optical axis to an effective radius vertex of the object-side surface of the fourth lens on the optical axis, and SAL52 is a distance from an intersection point of an image-side surface of the fourth lens and the optical axis to an effective radius vertex of the image-side surface of the fourth lens on the optical axis, the SAL51 and the SAL52 satisfy: 3.00<(SAL51+SAL52)/(SAL51−SAL52) <5.00.

11. The camera lens group according to claim 1 , wherein a maximum effective radius DT62 of the image-side surface of the sixth lens and a maximum effective radius DT22 of the image-side surface of the second lens satisfy: 3.00<DT62/DT22<4.50.

12. The camera lens group according to claim 1 , wherein a center thickness CT3 of the third lens on the optical axis and a center thickness CT4 of the fourth lens on the optical axis satisfy: 2.00<(CT3+CT4)/(CT3−CT4)<6.00.

13. The camera lens group according to claim 1 , wherein TD is a distance from the object-side surface of the first lens to the image-side surface of the sixth lens on the optical axis, and ΣAT is a sum of spacing distances of any two adjacent lenses in the first lens to the sixth lens on the optical axis satisfy: ΣAT/TD<0.35.

14. The camera lens group according to claim 1 , wherein a maximum field of view FOV of the camera lens group satisfies: FOV≥94.0°.

15. A camera lens group with a total of six lenses, sequentially comprising, from an object side to an image side along an optical axis:

a first lens with a refractive power, wherein an object-side surface thereof is a concave surface, while an image-side surface is a convex surface;

a second lens with a refractive power, wherein an object-side surface thereof is a convex surface, while an image-side surface is a concave surface;

a third lens with a positive refractive power;

a fourth lens with a refractive power;

a fifth lens with a positive refractive power, wherein an object-side surface thereof is a concave surface, while an image-side surface is a convex surface; and

a sixth lens with a negative refractive power, wherein an object-side surface thereof is a convex surface, while an image-side surface is a concave surface,

wherein TTL is a distance from the object-side surface of the first lens to an imaging surface of the camera lens group on the optical axis, and ImgH is a half of a diagonal length of an effective pixel region on the imaging surface, the TTL and the ImgH satisfy: TTL/ImgH≤1.37.

16. The camera lens group according to claim 15 , wherein the camera lens group further comprises a diaphragm arranged between the second lens and the third lens.

17. The camera lens group according to claim 15 , wherein the TTL and the ImgH and a total effective focal length f of the camera lens group satisfy: 4.00 mm<TTL/ImgH×f<5.50 mm.

18. The camera lens group according to claim 17 , wherein the ImgH satisfies: ImgH>4.60 mm.

19. The camera lens group according to claim 15 , wherein an effective focal length f3 of the third lens and a total effective focal length f of the camera lens group satisfy: 1.00<f3/f<4.00.

20. The camera lens group according to claim 15 , wherein DT61 is a maximum effective radius of the object-side surface of the sixth lens, the ImgH and the DT61 satisfy:1.00<ImgH/DT61<1.50.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 11, 2024
From: LI, LONG; DAI, FUJIAN; ZHAO, LIEFENG
To: ZHEJIANG SUNNY OPTICS CO., LTD
Reel/Frame 069547/0324 →
Priority Claims (1)
CN 201910832999.9 · Sep 4, 2019 · national
Continuity (1)
Related Publication 20220269044A1 · Aug 25, 2022
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