IP Library Granted Patent US 10,025,067
Granted Patent B2
US 10,025,067 · App. 14/695,052 · Granted Jul 17, 2018

Optical imaging lens set with six lens elements and electronic device comprising the same

Inventors: Shih-Han Chen (Taichung, TW); Baina Chen (Taichung, TW); Bo Chong (Taichung, TW)
Assignee: Genius Electronics Optical (Xiamen) Co., Ltd.
G02B13/0045H04N5/2254
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Quick Facts
Patent No.
US 10,025,067
App. No.
14/695,052
Granted
Jul 17, 2018
Kind
B2
Abstract

An optical imaging lens includes: a first, second, third, fourth, fifth and sixth lens element. The first lens element has positive refracting power, an object-side surface with a convex part in a vicinity of the optical axis, and a convex part in a vicinity of its periphery, the second lens element has negative refracting power, an image-side surface with a convex part in a vicinity of its periphery, the third lens element has an image-side surface with a concave part in a vicinity of the optical axis, the fourth lens has an image-side surface with a convex part in a vicinity of the optical axis, the fifth lens element has object-side surface with a concave part in a vicinity of the optical axis, and the sixth lens element has an image-side surface with a concave part in a vicinity of the optical axis.

Claims (31)

1. An optical imaging lens set, from an object side toward an image side in order along an optical axis comprising: 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, said first to sixth lens elements having an object-side surface facing toward the object side as well as an image-side surface facing toward the image side, wherein:

said first lens element has a positive refracting power, having an object-side surface having a convex part in a vicinity of the optical axis, and a convex part in a vicinity of its periphery;

said second lens element has a negative refracting power, having an object-side surface having a convex part in a vicinity of the optical axis, and a concave part in a vicinity of its periphery;

said third lens element has an image-side surface with a concave part in a vicinity of the optical axis;

said fourth lens has an image-side surface with a convex part in a vicinity of the optical axis;

said fifth lens element has an object-side surface with a concave part in a vicinity of the optical axis; and

said sixth lens element has an image-side surface having a concave part in a vicinity of the optical axis, and a convex part in a vicinity of its periphery;

wherein the optical imaging lens set does not include any lens element with refractive power other than said first lens element, second lens element, third lens element, fourth lens element, fifth lens element and sixth lens element, and the sum of all five air gaps AAG between each lens element from said first lens element to said sixth lens element along the optical axis, a thickness T 1 of said first lens element along said optical axis, a thickness T 2 of said second lens element along said optical axis, an air gap AG 12 between said first lens elements and said second lens element along said optical axis, and an air gap AG 56 between said fifth lens elements and said sixth lens element along said optical axis satisfy the relationships 0.95≤T 1 /(AG 12 +AG 56 ) and AAG/T 2 ≤3.6.

2. The optical imaging lens set of claim 1 , wherein an air gap AG 23 between said second lens elements and said third lens element along said optical axis satisfies a relationship 1.1≤T 2 /AG 23 .

3. The optical imaging lens set of claim 2 , wherein an air gap AG 34 between said third lens elements and said fourth lens element along said optical axis satisfies a relationship 1.7≤T 1 /AG 34 .

4. The optical imaging lens set of claim 1 , wherein an air gap AG 34 between said third lens elements and said fourth lens element along said optical axis satisfies a relationship 1.0≤T 2 /AG 34 .

5. The optical imaging lens set of claim 4 , wherein an air gap AG 23 between said second lens elements and said third lens element along said optical axis satisfies a relationship 2.0≤T 1 /AG 23 .

6. The optical imaging lens set of claim 4 , wherein a total thickness ALT of said first lens element, said second lens element, said third lens element, said fourth lens element, said fifth lens element and said sixth lens element along said optical axis, and a thickness T 3 of said third lens element along said optical axis satisfy a relationship 6.5≤ALT/T 3 .

7. The optical imaging lens set of claim 4 , wherein an air gap AG 23 between said second lens elements and said third lens element along said optical axis satisfies a relationship 1.1≤(AG 12 +AG 56 )/AG 23 .

8. The optical imaging lens set of claim 1 , wherein a thickness T 3 of said third lens element along said optical axis, and a thickness T 6 of said sixth lens element along said optical axis satisfy a relationship 1.3≤T 6 /T 3 .

9. The optical imaging lens set of claim 8 , wherein a thickness T 5 of said fifth lens element along said optical axis, and an air gap AG 23 between said second lens elements and said third lens element along said optical axis satisfy a relationship 1.2≤T 5 /AG 23 .

10. The optical imaging lens set of claim 1 , wherein a thickness T 6 of said sixth lens element along said optical axis, and an air gap AG 23 between said second lens elements and said third lens element along said optical axis satisfy a relationship 2.5≤T 6 /AG 23 .

11. The optical imaging lens set of claim 10 , wherein a thickness T 3 of said third lens element along said optical axis, and a thickness T 5 of said fifth lens element along said optical axis satisfy a relationship 0.7≤T 5 /T 3 .

12. The optical imaging lens set of claim 10 , wherein a thickness T 4 of said fourth lens element along said optical axis, and an air gap AG 34 between said third lens elements and said fourth lens element along said optical axis satisfy a relationship 2.2≤T 4 /AG 34 .

13. The optical imaging lens set of claim 1 , wherein a thickness T 6 of said sixth lens element along said optical axis satisfies a relationship 2.0≤T 6 /(AG 12 +AG 56 ).

14. The optical imaging lens set of claim 13 , wherein a thickness T 4 of said fourth lens element along said optical axis, and an air gap AG 23 between said second lens elements and said third lens element along said optical axis satisfy a relationship 2.5≤T 4 /AG 23 .

15. The optical imaging lens set of claim 1 , further satisfying a relationship 0.7≤T 1 /AAG.

16. An electronic device, comprising:

a case; and

an image module disposed in said case and comprising:

an optical imaging lens set of claim 1 ;

a barrel for the installation of said optical imaging lens set;

a module housing unit for the installation of said barrel;

a substrate for the installation of said module housing unit; and

an image sensor disposed on the substrate and disposed at an image side of said optical imaging lens set.

17. The optical imaging lens set of claim 1 , wherein a thickness T 4 of said fourth lens element along said optical axis satisfies a relationship AAG/T 4 ≤2.0.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 3, 2017
From: GENIUS ELECTRONIC OPTICAL CO., LTD.
To: GENIUS ELECTRONIC OPTICAL (XIAMEN) CO., LTD.
Reel/Frame 043176/0727 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 24, 2015
From: CHEN, SHIH-HAN; CHEN, BAINA; CHONG, BO
To: GENIUS ELECTRONIC OPTICAL CO., LTD.
Reel/Frame 035485/0395 →
Priority Claims (1)
CN 2015 1 0035044 · Jan 23, 2015 · national
Continuity (1)
Related Publication 20160216479A1 · Jul 28, 2016
Cited By (1)
US 12,669,682