IP Library › Granted Patent US 12,681,268
Granted Patent B2
US 12,681,268 · App. 18/731,382 · Granted Jul 14, 2026

Camera optical lens

Inventor: Ziwei Liu (Changzhou, CN)
Assignee: AAC OPTICS (CHANGZHOU) CO., LTD.
G02B9/62G02B13/18
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12,681,268
App. No.
18/731,382
Filed
Jun 3, 2024
Granted
Jul 14, 2026
Kind
B2
Art Unit
2872
USPC
359/713
Abstract

The present disclosure relates to the field of optical lens, and provides a camera optical lens, including, from an object side to an image side, a first lens, a second lens, a third lens, a fourth lens, a fifth lens and a sixth lens. The camera optical lens satisfies: 6.00≤R2/R1≤25.00, 2.00≤(R7+R8)/(R7−R8)≤9.00, and 3.00≤(d5+d9)/d7≤9.00. R1 represents a curvature radius of an object side surface of the first lens, R2 represents a curvature radius of an image side surface of the first lens, R7 represents a curvature radius of an object side surface of the fourth lens, R8 represents a curvature radius of an image side surface of the fourth lens, d5 represents an on-axis thickness of the third lens, d7 represents an on-axis thickness of the fourth lens, and d9 represents an on-axis thickness of the fifth lens.

Claims (414)

1 . A camera optical lens, comprising, from an object side to an image side in sequence, a first lens with a negative refractive power, a second lens with a positive refractive power, a third lens with a positive refractive power, a fourth lens with a negative refractive power, a fifth lens with a positive refractive power, and a sixth lens with a negative refractive power;

wherein the camera optical lens satisfies the following conditions:

6.

≤

R

⁢

2

/

R

⁢

1

≤

25.

;

2.

≤

(

R

⁢

7

+

R

⁢

8

)

/

(

R

⁢

7

-

R

⁢

8

)

≤

9.

;

and

3.

≤

(

d

⁢

5

+

d

⁢

9

)

/

d

⁢

7

≤

9.

;

wherein

R1 represents a curvature radius of an object side surface of the first lens;

R2 represents a curvature radius of an image side surface of the first lens;

R7 represents a curvature radius of an object side surface of the fourth lens;

R8 represents a curvature radius of an image side surface of the fourth lens;

d5 represents an on-axis thickness of the third lens;

d7 represents an on-axis thickness of the fourth lens; and

d9 represents an on-axis thickness of the fifth lens.

2 . The camera optical lens according to claim 1 , further satisfies the following condition:

2.

≤

TTL

/

f

≤

2.3

;

wherein

TTL represents a total track length of the camera optical lens; and

f represents a focal length of the camera optical lens.

3 . The camera optical lens according to claim 1 , further satisfies the following condition:

-

6.

≤

f

⁢

6

/

d

⁢

11

≤

-

3.

;

wherein

f6 represents a focal length of the sixth lens; and

d11 represents an on-axis thickness of the sixth lens.

4 . The camera optical lens according to claim 1 , further satisfies the following condition:

2.5

≤

f

⁢

2

/

f

⁢

3

≤

7.

;

wherein

f2 represents a focal length of the second lens; and

f3 represents a focal length of the third lens.

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

wherein the camera optical lens further satisfies the following conditions:

-

5.26

≤

f

⁢

1

/

f

≤

-

1.23

;

-

2.8

≤

(

R

⁢

1

+

R

⁢

2

)

/

(

R

⁢

1

-

R

⁢

2

)

≤

-

0.72

;

and

0.02

≤

d

⁢

1

/

TTL

≤

0.06

;

wherein

f1 represents a focal length of the first lens;

f represents a focal length of the camera optical lens;

d1 represents an on-axis thickness of the first lens; and

TTL represents a total track length of the camera optical lens.

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

wherein the camera optical lens further satisfies the following conditions:

1.5

≤

f

⁢

2

/

f

≤

11.95

;

-

54.86

≤

(

R

⁢

3

+

R

⁢

4

)

/

(

R

⁢

3

-

R

⁢

4

)

≤

-

4.92

;

and

0.03

≤

d

⁢

3

/

TTL

≤

0.11

;

wherein

f2 represents a focal length of the second lens;

f represents a focal length of the camera optical lens;

R3 represents a curvature radius of the object side surface of the second lens;

R4 represents a curvature radius of the image side surface of the second lens;

d3 represents an on-axis thickness of the second lens; and

TTL represents a total track length of the camera optical lens.

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

wherein the camera optical lens further satisfies the following conditions:

0.57

≤

f

⁢

3

/

f

≤

1.79

;

0.11

≤

(

R

⁢

5

+

R

⁢

6

)

/

(

R

⁢

5

-

R

⁢

6

)

≤

0.37

;

and

0.06

≤

d

⁢

5

/

TTL

≤

0.18

;

wherein

f3 represents a focal length of the third lens;

f represents a focal length of the camera optical lens;

R5 represents a curvature radius of the object side surface of the third lens;

R6 represents a curvature radius of an image side surface of the third lens; and

TTL represents a total track length of the camera optical lens.

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

wherein the camera optical lens further satisfies the following conditions:

-

9.47

≤

f

⁢

4

/

f

≤

-

2.92

;

and

0.03

≤

d

⁢

7

/

TTL

≤

0.09

;

wherein

f4 represents a focal length of the fourth lens;

f represents a focal length of the camera optical lens; and

TTL represents a total track length of the camera optical lens.

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

wherein the camera optical lens further satisfies the following conditions:

0.29

≤

f

⁢

5

/

f

≤

0.89

;

0.83

≤

(

R

⁢

9

+

R

⁢

10

)

/

(

R

⁢

9

-

R

⁢

10

)

≤

2.6

;

and

0.09

≤

d

⁢

9

/

TTL

≤

0.26

;

wherein

f5 represents a focal length of the fifth lens;

f represents a focal length of the camera optical lens;

R9 represents a curvature radius of the object side surface of the fifth lens;

R10 represents a curvature radius of the image side surface of the fifth lens; and

TTL represents a total track length of the camera optical lens.

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

wherein the camera optical lens further satisfies the following conditions:

-

1.44

≤

f

⁢

6

/

f

≤

-

0.48

;

0.89

≤

(

R

⁢

11

+

R

⁢

12

)

/

(

R

⁢

11

-

R

⁢

12

)

≤

2.74

;

and

0.04

≤

d

⁢

11

/

TTL

≤

0.13

;

wherein

f6 represents a focal length of the sixth lens;

f represents a focal length of the camera optical lens;

R11 represents a curvature radius of the object side surface of the sixth lens;

R12 represents a curvature radius of the image side surface of the sixth lens;

d11 represents an on-axis thickness of the sixth lens; and

TTL represents a total track length of the camera optical lens.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 17, 2024
From: LIU, ZIWEI
To: AAC OPTICS (CHANGZHOU) CO., LTD.
Reel/Frame 068004/0606 →
Priority Claims (1)
CN 202410202516.8 · Feb 23, 2024 · national
Continuity (1)
Related Publication 20250271636A1 · Aug 28, 2025
References Cited (22)
US 9897782B1 · Tsai · 2018 [cited by examiner]
US 10175461B1 · Lai · 2019 [cited by examiner]
US 11372214B2 · Teraoka · 2022 [cited by examiner]
US 11782236B2 · Li · 2023 [cited by examiner]
US 20210041669A1 · Teraoka · 2021 [cited by examiner]
US 20210191078A1 · Chen · 2021 [cited by examiner]
US 20210215909A1 · Hu · 2021 [cited by examiner]
US 20210286152A1 · Jia · 2021 [cited by examiner]
US 20220066143A1 · Zhang · 2022 [cited by examiner]
US 20220091382A1 · Dou · 2022 [cited by examiner]
US 20220091384A1 · Meng · 2022 [cited by examiner]
US 20220107481A1 · Li · 2022 [cited by examiner]
US 20220137342A1 · Zhou · 2022 [cited by examiner]
US 20220137365A1 · Zhou · 2022 [cited by examiner]
US 20220187574A1 · Yamazaki · 2022 [cited by examiner]
US 20220187576A1 · Sakaguchi · 2022 [cited by examiner]
US 20220252843A1 · Meng · 2022 [cited by examiner]
US 20220404584A1 · Chuang · 2022 [cited by examiner]
US 20230020801A1 · Wang · 2023 [cited by examiner]
US 20240045175A1 · Kondo · 2024 [cited by examiner]
US 20240210660A1 · Lee · 2024 [cited by examiner]
US 20250085517A1 · Lee · 2025 [cited by examiner]