IP Library › Granted Patent US 12,313,820
Granted Patent B2
US 12,313,820 · App. 17/548,605 · Granted May 27, 2025

Camera optical lens

Inventors: Takayuki Sakaguchi (Osaka, JP); Lei Zhang (Shenzhen, CN)
Assignee: AAC Optics (Suzhou) Co., Ltd.
G02B13/0045G02B9/62G02B13/06
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Quick Facts
Patent No.
US 12,313,820
App. No.
17/548,605
Granted
May 27, 2025
Kind
B2
Abstract

The present disclosure relates to a technical field of optical lenses, and discloses a camera optical lens. The camera optical lens includes six lenses. An order of the six lenses is sequentially from an object side to an image side, which is shown as follows: a first lens having a negative refractive power, and a second lens having a positive refractive power, a third lens having a positive refractive power, a fourth lens having a negative refractive power, a fifth lens having a positive refractive power, and a sixth lens having a negative refractive power. The camera optical lens provided by the present disclosure has excellent optical characteristics, and further has characteristics of large aperture, wide-angle, and ultra-thin, especially suitable for mobile phone camera lens assemblies and WEB camera lenses, which are composed of camera components having high pixels, such as CCD and CMOS.

Claims (74)

1. A camera optical lens, comprising:

six lenses, being sequentially from an object side to an image side, comprising:

a first lens having a negative refractive power;

a second lens having a positive refractive power;

a third lens having a positive refractive power;

a fourth lens having a negative refractive power; an image side surface of the fourth lens is concave in a paraxial region;

a fifth lens having a positive refractive power; and

a sixth lens having a negative refractive power;

wherein, a focal length of the second lens is denoted as f2, a focal length of the third lens is denoted as f3, an on-axis thickness of the first lens is denoted as d1, an on-axis thickness of the second lens is denoted as d3, an on-axis distance, from an image side surface of the second lens to an object side surface of the third lens, is denoted as d4, an on-axis thickness of the third lens is denoted as d5, an on-axis distance, from an image side surface of the third lens to an object side surface of the fourth lens, is denoted as d6, a focal length of the camera optical lens is denoted as f, a focal length of the fourth lens is denoted as f4, a center curvature radius of the object side surface of the fourth lens is denoted as R7, a center curvature radius of the image side surface of the fourth lens is denoted as R8, an on-axis thickness of the fourth lens is denoted as d7, a total optical length of the camera optical lens is denoted as TTL, and the camera optical lens satisfies following relationships:

0.80≤ d 4/ d 6≤1.10;

2.00≤ f 2/ f 3≤3.50;

1.10≤( d 1+ d 3)/ d 5≤1.35;

−6.90≤ f 4/ f≤− 1.85;

−1.41≤( R 7+ R 8)/( R 7− R 8)≤2.06;

0.02≤ d 7/ TTL≤ 0.07.

2. The camera optical lens according to claim 1 , wherein an object side surface of the first lens is concave in a paraxial region, an image side surface of the first lens is concave in a paraxial region;

a focal length of the first lens is denoted as f1, a center curvature radius of the object side surface of the first lens is denoted as R1, a center curvature radius of the image side surface of the first lens is denoted as R2, and the camera optical lens satisfies following relationships:

−6.48≤ f 1/ f≤− 1.62;

−1.42≤( R 1+ R 2)/( R 1− R 2)≤1.15;

0.02≤ d 1/ TTL≤ 0.10.

3. The camera optical lens according to claim 2 , wherein the camera optical lens satisfies following relationships:

−4.05≤ f 1/ f≤− 2.03;

−0.89≤( R 1+ R 2)/( R 1− R 2)≤0.92;

0.04≤ d 1/ TTL≤ 0.08.

4. The camera optical lens according to claim 1 , wherein an object side surface of the second lens is convex in a paraxial region, the image side surface of the second lens is concave in a paraxial region;

a center curvature radius of the object side surface of the second lens is denoted as R3, a center curvature radius of the image side surface of the second lens is denoted as R4, and the camera optical lens satisfies following relationships:

1.76 ≤f 2/ f≤ 7.30;

−10.32≤( R 3+ R 4)/( R 3− R 4)≤−1.83;

0.03≤ d 3/ TTL≤ 0.08.

5. The camera optical lens according to claim 4 , wherein the camera optical lens satisfies following relationships:

2.82 ≤f 2/ f≤ 5.84;

−6.45≤( R 3+ R 4)/( R 3− R 4)≤−2.29;

0.04≤ d 3/ TTL≤ 0.07.

6. The camera optical lens according to claim 1 , wherein the object side surface of the third lens is convex in a paraxial region, the image side surface of the third lens is convex in a paraxial region;

a center curvature radius of the object side surface of the third lens is denoted as R5, a center curvature radius of the image side surface of the third lens is denoted as R6, and the camera optical lens satisfies following relationships:

0.70≤ f 3/ f≤ 2.62;

0.19≤( R 5+ R 6)/( R 5− R 6)≤1.51;

0.04≤ d 5/ TTL≤ 0.14.

7. The camera optical lens according to claim 6 , wherein the camera optical lens satisfies following relationships:

1.11≤ f 3/ f≤ 2.10;

0.31≤( R 5+ R 6)/( R 5− R 6)≤1.20;

0.07≤ d 5/ TTL≤ 0.11.

8. The camera optical lens according to claim 1 , wherein the camera optical lens satisfies following relationships:

−4.31≤ f 4/ f≤− 2.32;

0.66≤( R 77+ R 8)/( R 7− R 8)≤1.65;

0.04≤ d 7/ TTL≤ 0.06.

9. The camera optical lens according to claim 1 , wherein an object side surface of the fifth lens is concave in a paraxial region, an image side surface of the fifth lens is convex in a paraxial region;

a focal length of the fifth lens is denoted as f5, a center curvature radius of the object side surface of the fifth lens is denoted as R9, a center curvature radius of the image side surface of the fifth lens is denoted as R10, an on-axis thickness of the fifth lens is denoted as d9, and the camera optical lens satisfies following relationships:

0.35≤ f 5/ f≤ 1.18;

0.52≤( R 9+ R 10)/( R 9− R 10)≤1.68;

0.09≤ d 9/ TTL≤ 0.39.

10. The camera optical lens according to claim 9 , wherein the camera optical lens satisfies following relationships:

0.57≤ f 5/ f≤ 0.95;

0.84≤( R 9+ R 10)/( R 9− R 10)≤1.35;

0.15≤ d 9/ TTL≤ 0.31.

11. The camera optical lens according to claim 1 , wherein an object side surface of the sixth lens is convex in a paraxial region, an image side surface of the sixth lens is concave in a paraxial region;

a focal length of the sixth lens is denoted as f6, a center curvature radius of the object side surface of the sixth lens is denoted as R11, a center curvature radius of the image side surface of the sixth lens is denoted as R12, an on-axis thickness of the sixth lens is denoted as d11, and the camera optical lens satisfies following relationships:

−1.99≤ f 6/ f≤− 0.52;

0.68≤( R 11+ R 12)/( R 11− R 12)≤3.39;

0.02≤ d 11/ TTL≤ 0.13.

12. The camera optical lens according to claim 11 , wherein the camera optical lens satisfies following relationships:

−1.25≤ f 6/ f≤− 0.65;

1.09≤( R 11+ R 12)/( R 11− R 12)≤2.71;

0.04≤ d 11/ TTL≤ 0.11.

13. The camera optical lens according to claim 1 , wherein an image height of the camera optical lens is denoted as IH, and the camera optical lens satisfies a following relationship:

TTL/IH≤ 1.85.

14. The camera optical lens according to claim 13 , wherein the camera optical lens satisfies a following relationship:

TTL/IH≤ 1.80.

15. The camera optical lens according to claim 1 , wherein a field of view of the camera optical lens is denoted as FOV, the FOV is greater than or equal to 112.95°.

16. The camera optical lens according to claim 15 , wherein the FOV is greater than or equal to 114.10°.

17. The camera optical lens according to claim 1 , wherein an F number of the camera optical lens is denoted as FNO, the FNO is less than or equal to 2.47.

18. The camera optical lens according to claim 17 , wherein the FNO is less than or equal to 2.42.

19. The camera optical lens according to claim 17 , wherein a combined focal length of the first lens and the second lens is denoted as f12, and satisfies a following relationship:

−28.14≤ f 12/ f≤− 3.72.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 19, 2021
From: SAKAGUCHI, TAKAYUKI; ZHANG, LEI
To: AAC OPTICS (SUZHOU) CO., LTD.
Reel/Frame 058426/0060 →
Priority Claims (1)
CN 202011461782.0 · Dec 14, 2020 · national
Continuity (1)
Related Publication 20220187576A1 · Jun 16, 2022
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