IP Library Granted Patent US 7,436,605
Granted Patent B2
US 7,436,605 · App. 11/864,382 · Granted Oct 14, 2008

Imaging lens and camera apparatus

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Quick Facts
Patent No.
US 7,436,605
App. No.
11/864,382
Granted
Oct 14, 2008
Kind
B2
Abstract

An imaging lens is configured sequentially from the object side by: a first lens having a meniscus shape where a convex surface is directed to the object side; a second lens; and a positive third lens in which an image-side surface is a convex surface. The first lens, the second lens, and the third lens are configured by a bi-aspherical plastic lens. The second lens is configured by a bi-convex lens in which the absolute value of the radius of curvature of the object-side surface is smaller than that of the image-side surface. The third lens is a positive lens and a meniscus lens in which a concave surface is directed to the object side, and a convex surface is directed to the image side.

Claims (77)

1. An imaging lens comprising: in order from an object side of the imaging lens,

a first lens of a negative lens having a meniscus shape and having a convex surface on the object side thereof;

a second lens having at least one aspherical surface;

an aperture diaphragm; and

a third lens of a positive lens having at least one aspherical surface and having a convex surface on an image side thereof,

the imaging lens satisfying conditional expressions:

0<| f 2/ f 3|<0.49  (1)

1.5<ν3/ν2  (2)

0.5<| f 1/ f 23|<3.0  (3)

wherein f1, f2, and f3 are focal lengths of the first lens, the second lens and the third lens, respectively, ν2, and ν3 are Abbe numbers of the second lens and the third lens, respectively, and f23 is a composite focal length of the second and third lenses.

2. The imaging lens according to claim 1 , further satisfying conditional expression:

0< L/f< 10.0  (4)

wherein L is a distance between an apex of an object-side surface of the first lens and an image plane of the imaging lens, and f is a focal length of the imaging lens.

3. The imaging lens according to claim 2 , wherein a material of each of the first and third lenses has an Abbe number of 40 or more, and a material of the second lens has an Abbe number of 40 or less.

4. The imaging lens according to claim 3 , further satisfying conditional expression:

R 3/ f< 1.0  (6)

wherein R3 is a radius of curvature of an object-side surface of the second lens.

5. The imaging lens according to claim 4 , further satisfying conditional expression:

D 1/ f< 1  (7)

wherein D1 is a distance between the apex on the object side of the first lens and that on the image side.

6. The imaging lens according to claim 5 , further satisfying conditional expression:

2<| R 4/ D 3|<6  (9)

wherein R4 is a radius of curvature of an image-side surface of the second lens, and D3 is a center thickness of the second lens.

7. The imaging lens according to claim 1 , wherein a material of each of the first and third lenses has an Abbe number of 40 or more, and a material of the second lens has an Abbe number of 40 or less.

8. The imaging lens according to claim 1 , further satisfying conditional expression:

R 3/ f< 1.0  (6)

wherein R3 is a radius of curvature of an object-side surface of the second lens.

9. The imaging lens according to claim 1 , further satisfying conditional expression:

D 1/ f< 1  (7)

wherein D1 is a distance between the apex on the object side of the first lens and that on the image side.

10. The imaging lens according to claim 1 , further satisfying conditional expression:

2<| R 4/ D 3|<6  (9)

wherein R4 is a radius of curvature of an image-side surface of the second lens, and D3 is a center thickness of the second lens.

11. A camera apparatus comprising:

an imaging lens according to claim 1 , and

a solid-state imaging device that converts an optical image formed by the imaging lens to an electrical signal.

12. An imaging lens comprising: in order from an object side of the imaging lens,

a first lens of a negative lens having at least one surface aspherical surface and having a concave surface on an image side thereof;

a second lens having at least one aspherical surface;

an aperture diaphragm; and

a third lens of a positive lens having at least one aspherical surface and having a convex surface on the image side thereof,

the imaging lens satisfying conditional expressions:

0<| f 2/ f 3|<0.49  (1)

1.5<ν3/ν2  (2)

0.5<| f 1/ f 23|<3.0  (3)

N 1<1.80  (5)

wherein f1, f2, and f3 are focal lengths of the first lens, the second lens and the third lens, respectively, ν2, and ν3 are Abbe numbers of the second lens and the third lens, respectively, N1 is a refractive index of the first lens at the d-line, and f23 is a composite focal length of the second and third lenses.

13. The imaging lens according to claim 12 , wherein the first lens has a convex surface on the object side thereof.

14. The imaging lens according to claim 13 , further satisfying conditional expression:

0< L/f< 10.0  (4)

wherein L is a distance between an apex of an object-side surface of the first lens and an image plane of the imaging lens, and f is a focal length of the imaging lens.

15. The imaging lens according to claim 14 , wherein a material of each of the first and third lenses has an Abbe number of 40 or more, and a material of the second lens has an Abbe number of 40 or less.

16. The imaging lens according to claim 15 , further satisfying conditional expression:

R 3/ f< 1.0  (6)

wherein R3 is a radius of curvature of an object-side surface of the second lens.

17. The imaging lens according to claim 16 , further satisfying conditional expression:

D 1/ f< 1  (7)

wherein D1 is a distance between the apex on the object side of the first lens and that on the image side.

18. The imaging lens according to claim 17 , further satisfying conditional expression:

2<| R 4/ D 3|<6  (9)

wherein R4 is a radius of curvature of an image-side surface of the second lens, and D3 is a center thickness of the second lens.

19. The imaging lens according to claim 12 , further satisfying conditional expression:

0< L/f< 10.0  (4)

wherein L is a distance between an apex of an object-side surface of the first lens and an image plane of the imaging lens, and f is a focal length of the imaging lens.

20. The imaging lens according to claim 12 , wherein a material of each of the first and third lenses has an Abbe number of 40 or more, and a material of the second lens has an Abbe number of 40 or less.

21. The imaging lens according to claim 12 , further satisfying conditional expression:

R 3/ f< 1.0  (6)

wherein R3 is a radius of curvature of an object-side surface of the second lens.

22. The imaging lens according to claim 12 , further satisfying conditional expression:

D 1/ f< 1  (7)

wherein D1 is a distance between the apex on the object side of the first lens and that on the image side.

23. The imaging lens according to claim 12 , further satisfying conditional expression:

2<| R 4/ D 3|<6  (9)

wherein R4 is a radius of curvature of an image-side surface of the second lens, and D3 is a center thickness of the second lens.

24. A camera apparatus comprising:

an imaging lens according to claim 12 , and

a solid-state imaging device that converts an optical image formed by the imaging lens to an electrical signal.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 17, 2020
From: NANCHANG O-FILM OPTICAL-ELECTRONIC TECH CO., LTD.
To: TIANJIN OFILM OPTO ELECTRONICS CO., LTD.
Reel/Frame 052431/0700 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 10, 2019
From: FUJIFILM CORPORATION
To: NANCHANG O-FILM OPTICAL-ELECTRONIC TECH CO., LTD.
Reel/Frame 048045/0443 →
CHANGE OF NAME Recorded Sep 26, 2018
From: FUJINON CORPORATION
To: FUJIFILM CORPORATION
Reel/Frame 047155/0045 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 14, 2007
From: ASAMI, TARO
To: FUJINON CORPORATION
Reel/Frame 020111/0437 →