IP Library Granted Patent US 9,766,429
Granted Patent B2
US 9,766,429 · App. 14/564,814 · Granted Sep 19, 2017

Imaging lens

Inventor: Tohru Ishizaka (Sukagawa, JP)
Assignee: KANTATSU CO., LTD.
G02B9/60G02B1/041G02B13/0045
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Quick Facts
Patent No.
US 9,766,429
App. No.
14/564,814
Granted
Sep 19, 2017
Kind
B2
Abstract

An imaging lens for a solid-state image sensor includes five lenses, arranged in order from an object side to an image side, a first lens with positive refractive power having a convex surface on the object side, a second lens with negative refractive power, a third lens with positive or negative refractive power having a meniscus shape with a convex surface on the object side and a concave surface on the image side near an optical axis, a fourth lens as a double-sided aspheric lens, having a concave surface on the image side near the optical axis, and a fifth lens as a double-sided aspheric lens, having a concave surface on the image side near the optical axis; wherein the first to fifth lenses are made of plastic materials.

Claims (51)

1. An imaging lens for a solid-state image sensor, comprising, from an object side to an image side of the imaging lens:

a first lens with positive refractive power having a convex surface facing the object side;

a second lens with negative refractive power;

a third lens with positive or negative refractive power having a meniscus shape with a convex surface facing the object side and an image-side surface that is concave near an optical axis of the imaging lens;

a fourth lens that is a double-sided aspheric lens having an image-side surface that is concave near the optical axis; and

a fifth lens that is a double-sided aspheric lens having an image-side surface that is concave near the optical axis,

wherein the first lens, the second lens, the third lens, the fourth lens, and the fifth lens are made of plastic materials, and the imaging lens contains only five lenses.

2. The imaging lens according to claim 1 , wherein the second lens has a concave surface facing the image side.

3. The imaging lens according to claim 1 , wherein when ν1 is an Abbe number of the first lens and ν2 is an Abbe number of the second lens, the first lens and the second lens satisfy conditional expressions (1), (2), and (3) below:

45<ν1<90  (1)

22<ν2<35  (2)

2.0<ν1/ν2<2.6.  (3)

4. The imaging lens according to claim 1 , wherein the fourth lens has positive refractive power, and the fifth lens has negative refractive power.

5. The imaging lens according to claim 1 , wherein when f is an overall focal length of the imaging lens and f1 is a focal length of the first lens, a conditional expression (4) below is satisfied:

0.6 <f 1 /f< 0.9.  (4)

6. The imaging lens according to claim 1 , wherein when f is an overall focal length of the imaging lens and f2 is a focal length of the second lens, a conditional expression (5) below is satisfied:

−1.0 <f 2 /f<− 0.8.  (5)

7. The imaging lens according to claim 6 , wherein when f4 is a focal length of the fourth lens, a conditional expression (8) below is satisfied:

1.6 <f 4 /f< 3.8.  (8)

8. The imaging lens according to claim 7 , wherein when f5 is a focal length of the fifth lens, a conditional expression (9) below is satisfied:

−9.0 <f 5 /f<− 1.4.  (9)

9. The imaging lens according to claim 1 , wherein an aperture stop is located on an object side of the first lens.

10. The imaging lens according to claim 1 , wherein the fourth lens and the fifth lens each have a meniscus shape and pole-change points separated from the optical axis on an object-side surface and the image-side surface.

11. The imaging lens according to claim 1 , wherein when f is an overall focal length of the imaging lens and TTL is a distance along the optical axis from an image plane of the imaging lens to an object-side surface of the first lens, a conditional expression (6) below is satisfied:

1.1<TTL/ f< 1.3.  (6)

12. The imaging lens according to claim 1 , wherein the first lens is a biconvex lens, and when r1 is a curvature radius of an object-side surface of the first lens and r2 is a curvature radius of an image-side surface of the first lens, a conditional expression (7) below is satisfied:

−0.40 <r 1 /r 2<−0.08.  (7)

13. The imaging lens according to claim 1 , wherein cycloolefin plastic material is used for the first lens, the third lens, the fourth lens, and the fifth lens, and polycarbonate is used for the second lens.

14. An imaging lens for a solid-state image sensor, comprising, from an object side to an image side of the imaging lens:

a first lens with positive refractive power having a convex surface facing the object side;

a second lens with negative refractive power;

a third lens with positive or negative refractive power having a meniscus shape with a convex surface facing the object side and an image-side surface that is concave near an optical axis of the imaging lens;

a fourth lens that is a double-sided aspheric lens having an image-side surface that is concave near the optical axis; and

a fifth lens that is a double-sided aspheric lens having an image-side surface that is concave near the optical axis,

wherein the first lens, the second lens, the third lens, the fourth lens, and the fifth lens are made of plastic materials, and

when f is an overall focal length of the imaging lens and f2 is a focal length of the second lens, a conditional expression (5) below is satisfied:

−1.0 <f 2 /f <−0.8.  (5)

15. The imaging lens according to claim 14 , wherein when f4 is a focal length of the fourth lens, a conditional expression (8) below is satisfied:

1.6 <f 4 /f< 3.8.  (8)

16. The imaging lens according to claim 15 , wherein when f5 is a focal length of the fifth lens, a conditional expression (9) below is satisfied:

−9.0 <f 5/ f<− 1.4.  (9)

17. The imaging lens according to claim 14 , wherein the second lens has a concave surface facing the image side.

18. An imaging lens for a solid-state image sensor, comprising, from an object side to an image side of the imaging lens:

a first lens with positive refractive power having a convex surface facing the object side;

a second lens with negative refractive power;

a third lens with positive or negative refractive power having a meniscus shape with a convex surface facing the object side and an image-side surface that is concave near an optical axis of the imaging lens;

a fourth lens that is a double-sided aspheric lens having an image-side surface that is concave near the optical axis; and

a fifth lens that is a double-sided aspheric lens having an image-side surface that is concave near the optical axis,

wherein the first lens, the second lens, the third lens, the fourth lens, and the fifth lens are made of plastic materials, and cycloolefin plastic material is used for the first lens, the third lens, the fourth lens, and the fifth lens, and polycarbonate is used for the second lens.

19. The imaging lens according to claim 18 , wherein the second lens has a concave surface facing the image side.

20. The imaging lens according to claim 18 , wherein the fourth lens has positive refractive power, and the fifth lens has negative refractive power.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 6, 2021
From: KANTATSU CO., LTD.
To: TOKYO VISIONARY OPTICS CO., LTD.
Reel/Frame 057109/0379 →
CHANGE OF ADDRESS Recorded Aug 3, 2021
From: KANTATSU CO., LTD.
To: KANTATSU CO., LTD.
Reel/Frame 057061/0113 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 9, 2014
From: ISHIZAKA, TOHRU
To: KANTATSU CO., LTD.
Reel/Frame 034441/0261 →
Priority Claims (1)
JP 2012-085263 · Apr 4, 2012 · national
Continuity (2)
Continuation 13853359 · Mar 29, 2013
Related Publication 20150092285A1 · Apr 2, 2015