IP Library › Granted Patent US 9,277,152
Granted Patent B2
US 9,277,152 · App. 14/324,631 · Granted Mar 1, 2016

Photographing optical lens assembly, image capturing unit and mobile device

Inventor: Hsin-Hsuan Huang (Taichung, TW)
Assignee: LARGAN PRECISION CO., LTD.
H04N5/374G02B13/0045H04N5/238
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Quick Facts
Patent No.
US 9,277,152
App. No.
14/324,631
Granted
Mar 1, 2016
Kind
B2
Abstract

A photographing optical lens assembly includes, in order from object side to image side, a first lens element, a second lens element, a third lens element, a fourth lens element, a fifth lens element and a sixth lens element. The first lens element with positive refractive power has object-side surface being convex in a paraxial region thereof. The second lens element has positive refractive power. The third and fourth lens elements have refractive power. The fifth lens element with negative refractive power has an image-side surface being concave in a paraxial region thereof. An object-side surface and the image-side surface of the fifth lens element are aspheric. The sixth lens element with refractive power has an image-side surface being concave in a paraxial region thereof. When specific conditions are satisfied, it is easier to miniaturize the photographing optical lens assembly and achieve better image quality in a limited space.

Claims (59)

1. A photographing optical lens assembly comprising, in order from an object side to an image side:

a first lens element with positive refractive power having an object-side surface being convex in a paraxial region thereof and an image-side surface being concave in a paraxial region thereof;

a second lens element having positive refractive power;

a third lens element;

a fourth lens element;

a fifth lens element with negative refractive power having an image-side surface being concave in a paraxial region thereof, wherein both of an object-side surface and the image-side surface of the fifth lens element are aspheric; and

a sixth lens element having an image-side surface being concave in a paraxial region thereof, wherein both of an object-side surface and the image-side surface of the sixth lens element are aspheric, and the image-side surface of the sixth lens element has at least one inflection point;

wherein the photographing optical lens assembly has a total of six lens elements, there is an air gap in a paraxial region between any two of the first lens element, the second lens element, the third lens element, the fourth lens element, the fifth lens element and the sixth lens element that are adjacent to each other, a focal length of the photographing optical lens assembly is f, a focal length of the second lens element is f2, a curvature radius of the image-side surface of the fifth lens element is R10, an axial distance between the object-side surface of the first lens element and an image plane is TL, a maximum image height of the photographing optical lens assembly is ImgH, and the following conditions are satisfied:

0.20< f/R 10;

TL/ImgH< 2.0; and

0.07< f/f 2.

2. The photographing optical lens assembly of claim 1 , wherein the focal length of the photographing optical lens assembly is f, the curvature radius of the image-side surface of the fifth lens element is R10, and the following condition is satisfied:

0.40< f/R 10.

3. The photographing optical lens assembly of claim 1 , wherein the focal length of the photographing optical lens assembly is f, the focal length of the second lens element is f2, and the following condition is satisfied:

0.25< f/f 2.

4. The photographing optical lens assembly of claim 1 , wherein an Abbe number of the first lens element is V1, an Abbe number of the second lens element is V2, and the following condition is satisfied:

0.7< V 1/ V 2<1.3.

5. The photographing optical lens assembly of claim 1 , wherein a maximal field of view of the photographing optical lens assembly is FOV, and the following condition is satisfied:

70[deg.]<FOV<100[deg.].

6. The photographing optical lens assembly of claim 1 , wherein the object-side surface of the sixth lens element is convex in a paraxial region thereof, and the object-side surface of the sixth lens element has at least one concave shape in an off-axis region thereof.

7. The photographing optical lens assembly of claim 1 , wherein the object-side surface of the fifth lens element is convex in a paraxial region thereof, and the object-side surface of the fifth lens element has at least one concave shape in an off-axis region thereof.

8. The photographing optical lens assembly of claim 1 , wherein a vertical distance between a non-axial critical point on the image-side surface of the fifth lens element and the optical axis is Yc52, a vertical distance between a non-axial critical point on the image-side surface of the sixth lens element and the optical axis is Yc62, and the following condition is satisfied:

Yc 52< Yc 62.

9. The photographing optical lens assembly of claim 1 , wherein the focal length of the photographing optical lens assembly is f, a focal length of the first lens element is f1, the focal length of the second lens element is f2, a focal length of the third lens element is f3, a focal length of the fourth lens element is f4, a focal length of the fifth lens element is f5, a focal length of the sixth lens element is f6, and the following condition is satisfied:

| P max|=max(| f/fi|,i= 1,2,3,4,5,6); and

| P max|<1.0.

10. The photographing optical lens assembly of claim 1 , wherein an object-side surface of the fourth lens element is concave in a paraxial region thereof, and an image-side surface of the fourth lens element is convex in a paraxial region thereof.

11. The photographing optical lens assembly of claim 1 , wherein the third lens element has negative refractive power.

12. The photographing optical lens assembly of claim 1 , further comprising a stop, an axial distance between the stop and the image-side surface of the sixth lens element is SD, an axial distance between the object-side surface of the first lens element and the image-side surface of the sixth lens element is Td, and the following condition is satisfied:

0.75< SD/Td< 1.2.

13. An image capturing unit, comprising:

the photographing optical lens assembly of claim 1 ; and

an image sensor, wherein the image sensor is disposed on the image side of the photographing optical lens assembly.

14. A mobile device, comprising:

the image capturing unit of claim 13 .

15. A photographing optical lens assembly comprising, in order from an object side to an image side:

a first lens element with positive refractive power having an object-side surface being convex in a paraxial region thereof;

a second lens element with positive refractive power having an object-side surface being convex in a paraxial region thereof;

a third lens element having refractive power;

a fourth lens element;

a fifth lens element with negative refractive power having an object-side surface being convex in a paraxial region thereof and an image-side surface being concave in a paraxial region thereof, wherein both of the object-side surface and the image-side surface of the fifth lens element are aspheric; and

a sixth lens element having an image-side surface being concave in a paraxial region thereof, wherein both of an object-side surface and the image-side surface of the sixth lens element are aspheric, and the image-side surface of the sixth lens element has at least one inflection point;

wherein the photographing optical lens assembly has a total of six lens elements, a focal length of the photographing optical lens assembly is f, a curvature radius of the image-side surface of the fifth lens element is R10, a focal length of the first lens element is f1, a maximal field of view of the photographing optical lens assembly is FOV, and the following conditions are satisfied:

0.0< f/R 10;

f/f 1<0.70; and

70[deg.]<FOV<100[deg.].

16. The photographing optical lens assembly of claim 15 , wherein the first lens element has an image-side surface being concave in a paraxial region thereof.

17. The photographing optical lens assembly of claim 15 , wherein the second lens element has an image-side surface being concave in a paraxial region thereof.

18. The photographing optical lens assembly of claim 15 , wherein a vertical distance between a non-axial critical point on the image-side surface of the sixth lens element and the optical axis is Yc62, an axial distance between the object-side surface of the first lens element and the image-side surface of the sixth lens element is Td, and the following condition is satisfied:

0.20< Yc 62/ Td< 0.70.

19. The photographing optical lens assembly of claim 15 , wherein a curvature radius of the object-side surface of the fifth lens element is R9, the curvature radius of the image-side surface of the fifth lens element is R10, and the following condition is satisfied:

1.0<( R 9+ R 10)/( R 9− R 10).

20. The photographing optical lens assembly of claim 15 , wherein an Abbe number of the first lens element is V1, an Abbe number of the second lens element is V2, and the following condition is satisfied:

0.7< V 1/ V 2<1.3.

21. The photographing optical lens assembly of claim 15 , wherein each of the first lens element, the second lens element, the third lens element, the fourth lens element, the fifth lens element and the sixth lens element has a refractive index, a maximum refractive index among the first lens element, the second lens element, the third lens element, the fourth lens element, the fifth lens element and the sixth lens element is Nmax, and the following condition is satisfied:

N max<1.7.

22. The photographing optical lens assembly of claim 21 , wherein the fourth lens element has positive refractive power.

23. The photographing optical lens assembly of claim 21 , wherein an axial distance between the second lens element and the third lens element is T23, an axial distance between the fourth lens element and the fifth lens element is T45, and the following condition is satisfied:

0.4< T 23/ T 45.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 7, 2014
From: HUANG, HSIN-HSUAN
To: LARGAN PRECISION CO., LTD.
Reel/Frame 033251/0713 →
Priority Claims (1)
TW 103115849 A · May 2, 2014 · national
Continuity (1)
Related Publication 20150319389A1 · Nov 5, 2015