IP Library Granted Patent US 12,055,679
Granted Patent B2
US 12,055,679 · App. 17/381,940 · Granted Aug 6, 2024

Optical imaging lens assembly

Inventors: Liefeng Zhao (Yuyao, CN); Lin Huang (Yuyao, CN); Fujian Dai (Yuyao, CN)
Assignee: Zhejiang Sunny Optics Co., Ltd.
G02B13/003G02B9/04
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Quick Facts
Patent No.
US 12,055,679
App. No.
17/381,940
Granted
Aug 6, 2024
Kind
B2
Abstract

An optical imaging lens assembly includes, sequentially from an object side to an image side along an optical axis, a first lens group having positive refractive power and including a first lens with refractive power; a second lens group, sequentially from the object side to the image side along the optical axis, including a second lens, a third lens, a fourth lens, a fifth lens and a sixth lens, each of which having refractive power; a plate glass; and a photosensitive element. At least one surface of at least one lens among the first to the sixth lenses is a non-rotationally symmetric surface. At least one of the first lens to the sixth lens is configured to be movable relative to the photosensitive element in the direction of the optical axis. A maximum optical distortion Distmax of the optical imaging lens assembly may satisfy: |Distmax|<5%.

Claims (35)

1. An optical imaging lens assembly, sequentially from an object side to an image side of the optical imaging lens assembly along an optical axis, comprising:

a first lens group having positive refractive power and including a first lens with refractive power;

a second lens group, sequentially from the object side to the image side along the optical axis, including a second lens, a third lens, a fourth lens, a fifth lens and a sixth lens, each of the second to the sixth lenses having refractive power;

a plate glass; and

a photosensitive element,

wherein |Distmax|<5%, where Distmax is a maximum optical distortion of the optical imaging lens assembly

at least one of the object-side surface and the image-side surface of the sixth lens is a non-rotationally symmetric surface; and

at least one of the first lens to the sixth lens is configured to be movable relative to the photosensitive element in a direction of the optical axis; and

wherein 0<10*|(fAy-fAx)/(fAy+fAx)|<10,

where fAy is an effective focal length of the sixth lens in a Y-axis direction, and

fAx is an effective focal length of the sixth lens in an X-axis direction.

2. The optical imaging lens assembly according to claim 1 , wherein ΔCRAmax<2°,

where ΔCRAmax is a maximum amount of change of a chief ray angle of the optical imaging lens assembly.

3. The optical imaging lens assembly according to claim 1 , wherein effective half-apertures of the second to the sixth lenses increase sequentially; and

1.5<DT51/DT32<2.5,

where DT51 is a maximum effective half-aperture of an object-side surface of the fifth lens, and DT32 is a maximum effective half-aperture of an image-side surface of the third lens.

4. The optical imaging lens assembly according to claim 1 , wherein 0.5<DT41/DT51<1,

where DT41 is a maximum effective half-aperture of an object-side surface of the fourth lens, and DT51 is a maximum effective half-aperture of an object-side surface of the fifth lens.

5. The optical imaging lens assembly according to claim 1 , further comprising a stop disposed at an object side of the first lens;

wherein −1<ST/CT 1 <0, where ST is a distance from the stop to an object-side surface of the first lens along the optical axis, and CT 1 is a center thickness of the first lens along the optical axis.

6. The optical imaging lens assembly according to claim 1 , wherein the fifth lens has positive refractive power; and

0.5<R9/f5<1.5,

where R9 is a radius of curvature of an object-side surface of the fifth lens, and f5 is an effective focal length of the fifth lens.

7. The optical imaging lens assembly according to claim 1 , wherein 0.8<CT 2 /CT 4 <1.2,

where CT 2 is a center thickness of the second lens along the optical axis, and CT 4 is a center thickness of the fourth lens along the optical axis.

8. The optical imaging lens assembly according to claim 1 , wherein 0.1<CT 1 /ΣCT<0.5,

where CT 1 is a center thickness of the first lens along the optical axis, and ΣCT is a sum of center thicknesses along the optical axis of lenses in the first lens group and the second lens group.

9. The optical imaging lens assembly according to claim 1 , wherein 0.7<f1/f5<1.3,

where f1 is an effective focal length of the first lens, and f5 is an effective focal length of the fifth lens.

10. The optical imaging lens assembly according to claim 1 , wherein −0.3<SAG52/DT52<0,

where SAG52 is an on-axis distance from an intersection of an image-side surface of the fifth lens and the optical axis to a vertex of an effective radius of the image-side surface of the fifth lens, and DT52 is a maximum effective half-aperture of the image-side surface of the fifth lens.

11. The optical imaging lens assembly according to claim 1 , wherein 30<V3<50,

where V3 is an Abbe number of the third lens.

12. The optical imaging lens assembly according to claim 1 , wherein −0.5<(R1−R4)/(R1+R4)<0,

where R1 is a radius of curvature of an object-side surface of the first lens, and R4 is a radius of curvature of an image-side surface of the second lens.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 21, 2021
From: ZHAO, LIEFENG; HUANG, LIN; DAI, FUJIAN
To: ZHEJIANG SUNNY OPTICS CO., LTD.
Reel/Frame 056938/0273 →
Priority Claims (1)
CN 202010745835.5 · Jul 29, 2020 · national
Continuity (1)
Related Publication 20220035126A1 · Feb 3, 2022