IP Library Granted Patent US 11,340,434
Granted Patent B2
US 11,340,434 · App. 16/679,304 · Granted May 24, 2022

Camera optical lens including six lenses of +−−−++ refractive powers

Inventors: Yutong Guo (Shenzhen, CN); Lei Zhang (Shenzhen, CN); Yanmei Wang (Shenzhen, CN); Zixuan Huang (Shenzhen, CN)
Assignee: AAC Optics Solutions Pte. Ltd.
G02B13/0045G02B9/62
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Quick Facts
Patent No.
US 11,340,434
App. No.
16/679,304
Granted
May 24, 2022
Kind
B2
Abstract

The present disclosure relates to the field of optical lenses and provides a camera optical lens. The camera optical lens includes, from an object side to an image side: a first lens; a second lens having a negative refractive power; a third lens having a negative refractive power; a fourth lens; a fifth lens; and a sixth lens. The camera optical lens satisfies following conditions: −3.01≤f1/f2≤−1.00; and 12.00≤(R1+R2)/(R1−R2)≤25.00. The camera optical lens can achieve a high imaging performance while obtaining a low TTL.

Claims (118)

1. A camera optical lens, comprising, from an object side to an image side:

a first lens;

a second lens having a negative refractive power;

a third lens having a negative refractive power;

a fourth lens;

a fifth lens; and

a sixth lens,

wherein the camera optical lens satisfies following conditions:

−3.01≤f1/f2≤−1.00; and

12.00≤(R1+R2)/(R1−R2)≤25.00,

where

f1 denotes a focal length of the first lens;

f2 denotes a focal length of the second lens;

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

R2 denotes a curvature radius of an image side surface of the first lens.

2. The camera optical lens as described in claim 1 , further satisfying a following condition:

−3.01≤f1/f2≤−1.12.

3. The camera optical lens as described in claim 1 , wherein the first lens has a positive refractive power, 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, and

the camera optical lens further satisfies following conditions:

3.09≤f1/f≤17.63; and

0.02≤d1/TTL≤0.06,

where

f denotes a focal length of the camera optical lens;

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

TTL denotes a total optical length from the object side surface of the first lens to an image plane of the camera optical lens along an optic axis.

4. The camera optical lens as described in claim 3 , further satisfying following conditions:

4.94≤f1/f≤14.11; and

0.03≤d1/TTL≤0.05.

5. The camera optical lens as described in claim 1 , wherein the second lens comprises an object side surface being concave in a paraxial region and an image side surface being concave in the paraxial region, and

the camera optical lens further satisfies following conditions:

−10.01≤f2/f≤−1.62;

−1.50≤(R3+R4)/(R3−R4)≤−0.38; and

0.02≤d3/TTL≤0.07,

where

f denotes a focal length of the camera optical lens;

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

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

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

TTL denotes a total optical length from the object side surface of the first lens to an image plane of the camera optical lens along an optic axis.

6. The camera optical lens as described in claim 5 , further satisfying following conditions:

−6.26≤f2/f≤−2.02;

−0.93≤(R3+R4)/(R3−R4)≤−0.48; and

0.03≤d3/TTL≤0.05.

7. The camera optical lens as described in claim 1 , wherein the third lens comprises an object side surface being convex in a paraxial region and an image side surface being concave in the paraxial region, and

the camera optical lens further satisfies following conditions:

−3.61E+07≤f3/f≤−7.97;

3.57≤(R5+R6)/(R5−R6)≤113.59; and

0.04≤d5/TTL≤0.12,

where

f denotes a focal length of the camera optical lens;

f3 denotes a focal length of the third lens;

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

R6 denotes a curvature radius of the image side surface of the third lens;

d5 denotes an on-axis thickness of the third lens; and

TTL denotes a total optical length from the object side surface of the first lens to an image plane of the camera optical lens along an optic axis.

8. The camera optical lens as described in claim 7 , further satisfying following conditions:

−2.25E+07≤f3/f≤−9.96;

5.71≤(R5+R6)/(R5−R6)≤90.87; and

0.06≤d5/TTL≤0.10.

9. The camera optical lens as described in claim 1 , wherein the fourth lens has a negative refractive power, and comprises an object side surface being concave in a paraxial region and an image side surface being concave in the paraxial region, and

the camera optical lens further satisfies following conditions:

−5.75≤f4/f≤−1.69;

0.13≤(R7+R8)/(R7−R8)≤0.55; and

0.01≤d7/TTL≤0.04,

where

f denotes a focal length of the camera optical lens;

f4 denotes a focal length of the fourth lens;

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

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

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

TTL denotes a total optical length from the object side surface of the first lens to an image plane of the camera optical lens along an optic axis.

10. The camera optical lens as described in claim 9 , further satisfying following conditions:

−3.60≤f4/f≤−2.11;

0.20≤(R7+R8)/(R7−R8)≤0.44; and

0.02≤d7/TTL≤0.03.

11. The camera optical lens as described in claim 1 , wherein the fifth lens has a positive refractive power, and comprises an object side surface being convex in a paraxial region and an image side surface being convex in the paraxial region, and

the camera optical lens further satisfies following conditions:

0.36≤f5/f≤1.12;

0.22≤(R9+R10)/(R9−R10)≤0.76; and

0.06≤d9/TTL≤0.19,

where

f denotes a focal length of the camera optical lens;

f5 denotes a focal length of the fifth lens;

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

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

d9 denotes an on-axis thickness of the fifth lens; and

TTL denotes a total optical length from the object side surface of the first lens to an image plane of the camera optical lens along an optic axis.

12. The camera optical lens as described in claim 11 , further satisfying following conditions:

0.58≤f5/f≤0.90;

0.35≤(R9+R10)/(R9−R10)≤0.61; and

0.10≤d9/TTL≤0.15.

13. The camera optical lens as described in claim 1 , wherein the sixth lens has a positive refractive power, and comprises an object side surface being convex in a paraxial region and an image side surface being concave in the paraxial region, and

the camera optical lens further satisfies following conditions:

24.32≤f6/f≤103.37;

26.33≤(R11+R12)/(R11−R12)≤96.08; and

0.03≤d11/TTL≤0.08,

where

f denotes a focal length of the camera optical lens;

f6 denotes a focal length of the sixth lens;

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

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

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

TTL denotes a total optical length from the object side surface of the first lens to an image plane of the camera optical lens along an optic axis.

14. The camera optical lens as described in claim 13 , further satisfying following conditions:

38.92≤f6/f≤82.69;

42.13≤(R11+R12)/(R11−R12)≤76.87; and

0.04≤d11/TTL≤0.07.

15. The camera optical lens as described in claim 1 , further satisfying a following condition:

−46.68≤f12/f≤−2.39,

where

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

f12 denotes a combined focal length of the first lens and the second lens.

16. The camera optical lens as described in claim 15 , further satisfying a following condition:

−29.18≤f12/f≤−2.99.

17. The camera optical lens as described in claim 1 , wherein a total optical length TTL from the object side surface of the first lens to an image plane of the camera optical lens along an optic axis is smaller than or equal to 6.10 mm.

18. The camera optical lens as described in claim 17 , wherein the total optical length TTL of the camera optical lens is smaller than or equal to 5.82 mm.

19. The camera optical lens as described in claim 1 , wherein an F number of the camera optical lens is smaller than or equal to 1.98.

20. The camera optical lens as described in claim 19 , wherein the F number of the camera optical lens is smaller than or equal to 1.94.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 21, 2020
From: GUO, YUTONG; ZHANG, LEI; WANG, YANMEI; HUANG, ZIXUAN
To: AAC OPTICS SOLUTIONS PTE. LTD.
Reel/Frame 051560/0870 →
Priority Claims (1)
CN 201811650464.1 · Dec 31, 2018 · national
Continuity (1)
Related Publication 20200209584A1 · Jul 2, 2020