IP Library Granted Patent US 7,813,056
Granted Patent B2
US 7,813,056 · App. 11/857,336 · Granted Oct 12, 2010

Imaging lens and camera system including the same lens

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Quick Facts
Patent No.
US 7,813,056
App. No.
11/857,336
Granted
Oct 12, 2010
Kind
B2
Abstract

An imaging lens comprises, in order from an object side: a first lens having a negative refractive power with a concave surface on an image side thereof; a second lens with at least one aspherical surface; an aperture stop; and a third lens having a positive refractive power with at least one aspherical surface, wherein the first lens is formed of an optical glass whose Abbe number is 40 or more, the second lens is formed of a plastic whose Abbe number is 40 or less, and the third lens is formed of a plastic whose Abbe number is 50 or more, and wherein assuming that a point, where a light ray which constitutes an outermost light ray in light rays which enter an image plane intersects a lens surface, constitutes an effective aperture terminating edge, the second lens is such that an intersection point between an object side surface and an optical axis lies closer to an image forming side of the imaging lens than an effective aperture terminating edge of the object side surface does.

Claims (39)

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

a first lens having a negative refractive power with a concave surface on an image side thereof;

a second lens with at least one aspherical surface;

an aperture stop; and

a third lens having a positive refractive power with at least one aspherical surface,

wherein the first lens is formed of an optical glass whose Abbe number is 40 or more, the second lens is formed of a plastic whose Abbe number is 40 or less, and the third lens is formed of a plastic whose Abbe number is 50 or more,

wherein assuming that a point, where a light ray which constitutes an outermost light ray in light rays which enter an image plane intersects a lens surface, constitutes an effective aperture terminating edge, the second lens is such that an intersection point between an object side surface and an optical axis lies closer to an image forming side of the imaging lens than an effective aperture terminating edge of the object side surface does,

wherein, letting focal lengths of the second lens and the third lens be f 2 , f 3 , respectively, the following conditional expression is satisfied:

0.2< f 2/ f 3≦3.54  (2′), and

wherein letting a distance from an apex on an object side surface of the first lens to the image plane be L and a focal length of the first lens be f 1 , the following conditional expression is satisfied:

0.5<| L/f 1|≦2.62  (1″).

2. An imaging lens as set forth in claim 1 ,

wherein the second lens is such that an intersection point between an image side surface and the optical axis lies closer to the image forming side of the imaging lens than an effective aperture terminating edge of the image side surface does.

3. An imaging lens as set forth in claim 2 ,

wherein the second lens is a meniscus lens having a concave surface on an object side thereof.

4. An imaging lens as set forth in claim 1 ,

wherein the second lens is a meniscus lens having a concave surface on an object side thereof.

5. An imaging lens as set forth in claim 1 ,

wherein letting a focal length of the first lens be f 1 and a composite focal length of the second lens and the third lens be f 23 , the following conditional expression is satisfied:

0.2<| f 1/ f 23|<6  (3).

6. An imaging lens as set forth in claim 1 ,

wherein letting a focal length of the imaging lens be f, the following expression is satisfied:

0< L/f< 15  (4).

7. A camera system comprising:

an imaging lens as set forth in claim 1 ; and

a solid state image sensing device that converts an optical image formed by the imaging lens into an electric signal.

8. An imaging lens as set forth in claim 1 , wherein letting focal lengths of the second lens and the third lens be f 2 , f 3 , respectively, the following conditional expression is satisfied:

0.5<| f 2/ f 3|<5.

9. An imaging lens as set forth in claim 1 , wherein letting a focal length of the imaging lens be f, and a distance from an apex on an object side surface of the first lens to the image plane be L, the following expression is satisfied:

4< L/f< 8.

10. An imaging lens as set forth in claim 1 , wherein the first lens is a glass spherical lens.

11. An imaging lens as set forth in claim 1 , wherein a light cut-off film or an opaque plate material is provided in connection with the first lens, to prevent the entrance of light from the outside of an effective aperture.

12. An imaging lens as set forth in claim 1 , wherein the object side surface and the image side surface of the second and third lenses are aspherical surfaces.

13. An imaging lens as set forth in claim 1 , wherein the third lens has a positive meniscus shape which has a concave surface on an object side.

14. An imaging lens as set forth in claim 1 , wherein the third lens is formed into a double-convex shape which has a convex surface on an object side and a convex surface on an image side thereof and in which both the object side convex surface and the image side convex surface are aspherical surfaces.

15. An imaging lens as set forth in claim 1 , wherein the first lens is formed into a double-concave shape which has a concave surface on an object side and a concave surface on an image side thereof and in which an absolute value of radius of curvature of the concave surface on the image side is smaller than an absolute value of radius of curvature of the concave surface on the object side.

16. An imaging lens as set forth in claim 1 , wherein the first lens is formed into a planoconcave shape which has a plane on an object side and a concave surface on an image side thereof.

17. An imaging lens as set forth in claim 1 , wherein the first lens is made of a material which has superior water resistance and acids resistance.

18. An imaging lens as set forth in claim 1 , wherein said imaging lens has a wide angle of view in which the diagonal angle of view is 80 degrees or more.

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 Feb 25, 2008
From: ASAMI, TARO
To: FUJINON CORPORATION
Reel/Frame 020557/0529 →