IP Library Granted Patent US 9,690,075
Granted Patent B2
US 9,690,075 · App. 14/584,485 · Granted Jun 27, 2017

Optical image capturing system

Inventors: Nai-Yuan Tang (Taichung, TW); Yeong-Ming Chang (Taichung, TW)
Assignee: ABILITY OPTO-ELECTRONICS TECHNOLOGY CO. LTD.
G02B13/0045G02B13/002
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Quick Facts
Patent No.
US 9,690,075
App. No.
14/584,485
Granted
Jun 27, 2017
Kind
B2
Abstract

A six-piece lens for capturing image and a six-piece optical module for capturing image are provided. In order from an object side to an image side, the lens along the optical axis comprises a first lens with positive refractive power having a convex object-side surface; a second lens with refractive power; a third lens with refractive power; a fourth lens with refractive power; a fifth lens with refractive power; and a sixth lens with negative refractive power having a concave image-side surface; and at least one of the image-side surface and object-side surface of each of the six lens elements are aspheric. The optical lens can increase aperture value and improve the imagining quality for use in compact cameras.

Claims (49)

1. An optical image capturing system, in order from an object side to an image side comprising:

a first lens with positive refractive power;

a second lens with negative refractive power;

a third lens with positive refractive power;

a fourth lens with positive refractive power;

a fifth lens with positive refractive power;

a sixth lens with negative refractive power, and at least one of an object-side surface and an image-side surface thereof having at least one inflection point; and

an image-plane;

wherein the optical image capturing system has six lenses having refractive power, at least one of the second lens to the fifth lens has positive refractive power, an object-side surface and an image-side surface of the first lens are aspheric, and both an object-side surface and an image-side surface of the sixth lens are aspheric, focal lengths from the first lens to the sixth lens are respectively f1, f2, f3, f4, f5 and f6, focal length of the optical image capturing system is f, an entrance pupil diameter of the optical image capturing system is HEP, a half of the maximal view angle of the optical image capturing system is HAF, a distance from the object-side surface of the first lens to the image-plane is HOS, and the following conditions are satisfied: 0≦|f/f1|≦2; 1.2≦f/HEP≦2.8; 0.4≦|tan(HAF)|≦1.5; and 1.3≦HOS/f≦1.7.

2. The optical image capturing system of claim 1 , wherein the optical image capturing system is satisfied with the following formula: |f2|+|f3|+|f4|+|f5|>|f1|+|f6|.

3. The optical image capturing system of claim 1 , wherein when the optical image capturing system is imaging, TV distortion is TDT, and the following condition is satisfied: |TDT|<1.5%.

4. The optical image capturing system of claim 3 , wherein when the optical image capturing system is imaging, optical distortion is ODT, and the following condition is satisfied: |ODT|≦2.5%.

5. The optical image capturing system of claim 1 , wherein a distance from the object-side surface of the first lens to the image-side surface of the sixth lens is InTL, a distance from the object-side surface of the first lens to the image-plane is HOS, and the following condition is satisfied: 0.6≦InTL/HOS≦0.95.

6. The optical image capturing system of claim 1 , wherein on the optical axis, a total thickness of all the lenses having refractive power is ΣTP, a distance from the object-side surface of the first lens to the image-side surface of the sixth lens is InTL, and the following condition is satisfied: 0.45≦ΣTP/InTL≦0.95.

7. The optical image capturing system of claim 1 , wherein a horizontal translation distance from an intersection point of the image-side surface of the sixth lens on the optical axis to the maximal effective diameter position of the image-side surface of the sixth lens on the optical axis is InRS62, a thickness of the sixth lens on the optical axis is TP6, and the following condition is satisfied: 0<|InRS62|/TP6≦3.

8. The optical image capturing system of claim 1 , further comprising an aperture, wherein on the optical axis, a distance from the aperture to the image-plane is InS, and the following condition is satisfied: 0.6≦InS/HOS≦1.1.

9. The optical image capturing system of claim 8 , further comprising an image sensing element disposed on the image-plane, a half of a diagonal line of an effective detection field of the image sensing element is HOI, and the following condition is satisfied: HOS/HOI≦3.

10. An optical image capturing system, in order from an object side to an image side comprising:

a first lens with positive refractive power;

a second lens with negative refractive power;

a third lens with positive refractive power;

a fourth lens with positive refractive power;

a fifth lens with positive refractive power;

a sixth lens with negative refractive power, and at least one of an object-side surface and an image-side surface thereof having at least one inflection point; and

an image-plane;

wherein the optical image capturing system has six lenses having refractive power, at least one of the third lens to the sixth lens has positive refractive power, an object-side surface and an image-side surface of the first lens are aspheric, and both an object-side surface and an image-side surface of the sixth lens are aspheric, focal lengths from the first lens to the sixth lens are respectively f1, f2, f3, f4, f5 and f6, focal length of the optical image capturing system is f, an entrance pupil diameter of the optical image capturing system is HEP, a half of the maximal view angle of the optical image capturing system is HAF, a distance from the object-side surface of the first lens to the image-plane is HOS, when the optical image capturing system is imaging, TV distortion and optical distortion are respectively TDT and ODT, and the following conditions are satisfied: 0≦|f/f1|≦2; 1.2≦f/HEP≦2.8; 0.4≦|tan(HAF)|≦1.5; 1.3≦HOS/f≦1.7; |TDT|<1.5%; and |ODT|≦2.5%.

11. The optical image capturing system of claim 10 , wherein the third lens, the fourth lens and the fifth lens have positive refractive power.

12. The optical image capturing system of claim 10 , wherein a horizontal translation distance from an intersection point of the image-side surface of the sixth lens on the optical axis to the maximal effective diameter position of the image-side surface of the sixth lens on the optical axis is InRS62, a thickness of the sixth lens on the optical axis is TP6, and the following condition is satisfied: 0<|InRS62|/TP6≦3.

13. The optical image capturing system of claim 12 , wherein a position of the inflection point of the image-side surface of the sixth lens projecting vertically to the optical axis is a reference point, a horizontal translation distance from the intersection point of the image-side surface of the sixth lens on the optical axis to the reference point is Inf62, and the following condition is satisfied: 0<Inf62/|InRS62|≦120.

14. The optical image capturing system of claim 10 , wherein a horizontal translation distance from an intersection point of the image-side surface of the fifth lens on the optical axis to the maximal effective diameter position of the image-side surface of the fifth lens on the optical axis is InRS52, a thickness of the fifth lens on the optical axis is TP5, and the following condition is satisfied: 0<|InRS52|/TP5≦5.

15. The optical image capturing system of claim 10 , wherein the image-side surface of the sixth lens has at least one critical point C crossing with a tangent plane vertical to the optical axis, a vertical distance from the critical point C to the optical axis is HVT62, and the following condition is satisfied: 0<HVT62/HOS≦1.

16. The optical image capturing system of claim 10 , wherein a horizontal translation distance from the intersection point of the image-side surface of the sixth lens on the optical axis to the maximal effective diameter position of the image-side surface of the sixth lens on the optical axis is InRS61, a horizontal translation distance from the intersection point of the image-side surface of the fifth lens on the optical axis to the maximal effective diameter position of the image-side surface of the fifth lens on the optical axis is InRS52, and the following condition is satisfied: 0 mm<|InRS52|+|InRS61|≦5 mm.

17. The optical image capturing system of claim 10 , wherein on the optical axis, a total thickness of all the lenses having refractive power is ΣTP, a thickness of the third lens on the optical axis is TP3, a thickness of the fourth lens on the optical axis is TP4, a thickness of the fifth lens on the optical axis is TP5, and the following condition is satisfied: 0<(TP3+TP4+TP5)/ΣTP≦0.85.

18. The optical image capturing system of claim 10 , wherein a distance between the first lens and the second lens on the optical axis is IN12, and the following condition is satisfied: 0<IN12/f≦0.25.

19. The optical image capturing system of claim 10 , wherein a distance between the first lens and the second lens on the optical axis is IN12, a thickness of the first lens on the optical axis is TP1, a thickness of the second lens on the optical axis is TP2, and the following condition is satisfied: 1≦(TP1+IN12)/TP2≦10.

20. An optical image capturing system, in order from an object side to an image side comprising:

a first lens with positive refractive power having a convex object-side surface close to the optical axis;

a second lens with negative refractive power;

a third lens with positive refractive power;

a fourth lens with positive refractive power;

a fifth lens with positive refractive power;

a sixth lens with negative refractive power, and at least one of an object-side surface and an image-side surface thereof having at least one inflection point; and

an image-plane;

wherein the optical image capturing system has six lenses having refractive power, both an object-side surface and an image-side surface of the first lens are aspheric, and both an object-side surface and an image-side surface of the sixth lens are aspheric, focal lengths from the first lens to the sixth lens are respectively f1, f2, f3, f4, f5 and f6, focal length of the optical image capturing system is f, an entrance pupil diameter of the optical image capturing system is HEP, a half of the maximal view angle of the optical image capturing system is HAF, a distance from the object-side surface of the first lens to the image-plane is HOS, and when the optical image capturing system is imaging, optical distortion is ODT and TV distortion is TDT, and the following conditions are satisfied: 0≦|f/f1|≦2; 1.2≦f/HEP≦2.8; 0.4≦|tan(HAF)|≦1.5; 1.3≦HOS/f≦1.7; |TDT|<1.5%; and |ODT|≦2.5%.

21. The optical image capturing system of claim 20 , wherein a ratio f/fp between focal length f of the optical image capturing system and a focal length fp of each lens having positive refractive power is PPR, a ratio f/fn between focal length f of the optical image capturing system and a focal length fp of each lens having negative refractive power is NPR, a sum of the PPR of all the lenses having positive refractive power is ΣPPR, a sum of the NPR of all the lenses having negative refractive power is ΣNPR, and the following condition is satisfied: 0.5≦ΣPPR/|ΣNPR|≦2.5.

22. The optical image capturing system of claim 20 , wherein a horizontal translation distance from an intersection point of the image-side surface of the sixth lens on the optical axis to the maximal effective diameter position of the image-side surface of the sixth lens on the optical axis is InRS62, a thickness of the sixth lens on the optical axis is TP6, a horizontal translation distance from an intersection point of the image-side surface of the fifth lens on the optical axis to the maximal effective diameter position of the image-side surface of the fifth lens on the optical axis is InRS52, a thickness of the fifth lens on the optical axis is TP5, the image-side surface of the sixth lens has at least one critical point C crossing with a tangent plane vertical to the optical axis, a vertical distance from the critical point C to the optical axis is HVT62, and the following conditions are satisfied: 0<|InRS62|/TP6≦3; 0<|InRS52|/TP≦5; and 0<HVT62/HOS≦1.

23. The optical image capturing system of claim 20 , further comprising an aperture, an image-plane and an image sensing element, wherein the image sensing element is disposed on the image-plane, a distance from the aperture on the optical axis to the image-plane is InS, a distance from the object-side surface of the first lens to the image-plane is HOS, and the following condition is satisfied: 0.6≦InS/HOS≦1.1.

24. The optical image capturing system of claim 23 , wherein length, width and diagonal line of the image sensing element are respectively L, B and Dg, and the following condition is satisfied: Dg≦1/1.2 inch, and L/B=16/9.

25. The optical image capturing system of claim 23 , wherein at least 8 million pixels are disposed on the image sensing element, size of the pixel is PS, and the following condition is satisfied: PS≦(1.4 μm) 2 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 5, 2015
From: TANG, NAI-YUAN; CHANG, YEONG-MING
To: ABILITY OPTO-ELECTRONICS TECHNOLOGY CO.LTD.
Reel/Frame 034634/0623 →
Priority Claims (1)
TW 103133425 A · Sep 26, 2014 · national
Continuity (1)
Related Publication 20160091694A1 · Mar 31, 2016