IP Library › Granted Patent US 12,124,109
Granted Patent B2
US 12,124,109 · App. 17/543,746 · Granted Oct 22, 2024

Camera optical lens

Inventor: Jiekang Chen (Shenzhen, CN)
Assignee: AAC Optics (Suzhou) Co., Ltd.
G02B9/64G02B13/0045
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Quick Facts
Patent No.
US 12,124,109
App. No.
17/543,746
Granted
Oct 22, 2024
Kind
B2
Abstract

The present invention discloses a camera optical lens including, from an object side to an image side in sequence, a first lens having a negative refractive power, a second lens, a third lens, a fourth lens, a fifth lens, a sixth lens, a seventh lens, and an eighth lens. The camera optical lens satisfies the following conditions: 100.00°≤FOV≤135.00°, −8.00≤f3/f4≤−0.50, and 0.60≤d8/d10≤4.50. The camera optical lens according to the present invention has excellent optical characteristics, such as large aperture, wide-angle, and ultra-thin.

Claims (141)

1. A camera optical lens, comprising, from an object side to an image side in sequence: a first lens having a negative refractive power, a second lens, a third lens, a fourth lens, a fifth lens, a sixth lens, a seventh lens, and an eighth lens; the first lens has an image side surface being concave in a paraxial region; wherein the camera optical lens satisfies the following conditions:

100.00°≤ FOV≤ 135.00°;

−8.00≤ f 3/ f 4≤−0.50;

0.60≤ d 8/ d 10≤4.50;

−4.29≤ f 1/ f≤− 1.02;

0.35≤( R 1+ R 2)/( R 1− R 2)≤1.65; and

0.02≤ d 1/ TTL≤ 0.41;where,

FOV: a field of view of the camera optical lens in a diagonal direction;

f3: a focal length of the third lens;

f4: a focal length of the fourth lens;

d8: an on-axis distance from an image side surface of the fourth lens to an object side surface of the fifth lens;

d10: an on-axis distance from an image side surface of the fifth lens to an object side surface of the sixth lens;

f1: a focal length of the first lens;

f: a focal length of the camera optical lens;

R1: a central curvature radius of the object side surface of the first lens;

R2: a central curvature radius of the image side surface of the first lens;

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

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

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

2.00≤( R 9+ R 10)/( R 9− R 10)≤9.00;

where,

R9: a central curvature radius of the object side surface of the fifth lens; and

R10: a central curvature radius of the image side surface of the fifth lens.

3. The camera optical lens according to claim 1 further satisfying the following conditions:

−2.68≤ f 1/ f≤− 1.28;

0.55≤( R 1+ R 2)/( R 1− R 2)≤1.32; and

0.04≤ d 1/ TTL≤ 0.33.

4. The camera optical lens according to claim 1 , wherein, the second lens has an object side surface being convex in a paraxial region; the second lens has a positive refractive power; the camera optical lens further satisfies the following conditions:

0.69≤ f 2/ f≤ 3.57;

−2.34≤( R 3+ R 4)/( R 3− R 4)≤−0.15; and

0.03≤ d 3/ TTL≤ 0.17;

where,

f: a focal length of the optical camera lens;

f2: a focal length of the second lens;

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

R4: a central curvature radius of an image side surface of the second lens;

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

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

5. The camera optical lens according to claim 4 further satisfying the following conditions:

1.11≤ f 2/ f≤ 2.85;

−1.46≤( R 3+ R 4)/( R 3− R 4)≤−0.19; and

0.05≤ d 3/ TTL≤ 0.13.

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

the camera optical lens further satisfies the following conditions:

−92.83≤ f 3/ f≤ 972.61;

−229.57≤( R 5+ R 6)/( R 5− R 6)≤1.78; and

0.02≤ d 5/ TTL≤ 0.06;

where,

f: a focal length of the optical camera lens;

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

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

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

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

7. The camera optical lens according to claim 6 further satisfying the following conditions:

−58.02≤ f 3/ f≤ 778.09;

−143.48≤( R 5+ R 6)/( R 5− R 6)≤1.43; and

0.02≤ d 5/ TTL≤ 0.05.

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

the camera optical lens further satisfies the following conditions:

−304.79≤ f 4/ f≤ 8.71;

−17.41≤( R 7+ R 8)/( R 7− R 8)≤1.91; and

0.02≤ d 7/ TTL≤ 0.06;

where,

f: a focal length of the optical camera lens;

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

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

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

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

9. The camera optical lens according to claim 8 further satisfying the following conditions:

−190.49≤ f 4/ f≤ 6.97;

−10.88≤( R 7+ R 8)/( R 7− R 8)≤1.52; and

0.02≤ d 7/ TTL≤ 0.05.

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

the fifth lens has a negative refractive power;

the camera optical lens further satisfies the following conditions:

−23.83≤ f 5/ f≤− 3.03; and

0.01≤ d 9/ TTL≤ 0.08;

where,

f: a focal length of the camera optical lens;

f5: a focal length of the fifth lens;

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

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

11. The camera optical lens according to claim 10 further satisfying the following conditions:

−14.90≤ f 5/ f≤− 3.78; and

0.02≤ d 9/ TTL≤ 0.06.

12. The camera optical lens according to claim 1 , wherein, the object side surface of the sixth lens is convex in a paraxial region; the sixth lens has a positive refractive power; the camera optical lens further satisfies the following conditions:

4.57≤ f 6/ f≤ 16.51;

−11.02≤( R 11+ R 12)/( R 11− R 12)≤−0.26; and

0.03≤ d 11/ TTL≤ 0.14;

where,

f: a focal length of the camera optical lens;

f6: a focal length of the sixth lens;

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

R12: a central curvature radius of an image side surface of the sixth lens;

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

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

13. The camera optical lens according to claim 12 further satisfying the following conditions:

7.31≤ f 6/ f≤ 13.21;

−6.89≤( R 11+ R 12)/( R 11− R 12)≤−0.32; and

0.05≤ d 11/ TTL≤ 0.11.

14. The camera optical lens according to claim 1 , wherein, the seventh lens has an image side surface being convex in a paraxial region;

the seventh lens has a positive refractive power;

the camera optical lens further satisfies the following conditions:

0.35≤ f 7/ f≤ 1.92;

0.39≤( R 13+ R 14)/( R 13− R 14)≤1.51; and

0.03≤ d 13/ TTL≤ 0.16;

where,

f: a focal length of the camera optical lens;

f7: a focal length of the seventh lens;

R13: a central curvature radius of an object side surface of the seventh lens;

R14: a central curvature radius of the image side surface of the seventh lens;

d13: an on-axis thickness of the seventh lens; and

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

15. The camera optical lens according to claim 14 further satisfying the following conditions:

0.57≤ f 7/ f≤ 1.54;

0.63≤( R 13+ R 14)/( R 13− R 14)≤1.20; and

0.06≤ d 13/ TTL≤ 0.13.

16. The camera optical lens according to claim 1 , wherein, the eighth lens has an object side surface being convex in a paraxial region and an image side surface being concave in the paraxial region;

the eighth lens has a negative refractive power;

the camera optical lens further satisfies the following conditions:

−2.70≤ f 8/ f≤− 0.46;

0.55≤( R 15+ R 16)/( R 15− R 16)≤2.73; and

0.02≤ d 15/ TTL≤ 0.12;

where,

f: a focal length of the camera optical lens;

f8: a focal length of the eighth lens;

R15: a central curvature radius of the object side surface of the eighth lens;

R16: a central curvature radius of the image side surface of the eighth lens;

d15: an on-axis thickness of the eighth lens; and

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

17. The camera optical lens according to claim 16 further satisfying the following conditions:

−1.69≤ f 8/ f≤− 0.57;

0.88≤( R 15+ R 16)/( R 15− R 16)≤2.18; and

0.03≤ d 15/ TTL≤ 0.10.

18. The camera optical lens according to claim 1 further satisfying the following condition: TTL/IH≤3.14;

where,

IH: an image height of the camera optical lens; and

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

19. The camera optical lens according to claim 1 , wherein, an FNO of the camera optical lens is less than or equal to 1.86;

where,

FNO: a ratio of an effective focal length of the camera optical lens to an entrance pupil diameter.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 7, 2021
From: CHEN, JIEKANG
To: AAC OPTICS (SUZHOU) CO., LTD.
Reel/Frame 058329/0223 →
Priority Claims (1)
CN 202011628500.1 · Dec 30, 2020 · national
Continuity (1)
Related Publication 20220206256A1 · Jun 30, 2022