IP Library Granted Patent US 10,324,273
Granted Patent B2
US 10,324,273 · App. 15/286,575 · Granted Jun 18, 2019

Optical lens set

Inventors: Feng Chen (Fujian, CN); Baina Chen (Fujian, CN); Yanxuan Yin (Fujian, CN)
Assignee: Genius Electronic Optical (Xiamen) Co., Ltd.
G02B13/0045G02B5/005G02B5/20G02B9/60G02B27/0025
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Quick Facts
Patent No.
US 10,324,273
App. No.
15/286,575
Granted
Jun 18, 2019
Kind
B2
Abstract

An optical lens assembly includes a first lens of a concave image surface near its periphery, a second lens of a plastic material, a third lens of a concave object surface near the optical-axis and a concave image surface near its periphery, a fourth lens of a concave object surface near the optical-axis, a fifth lens of a concave object surface near its periphery and a convex image surface near the optical-axis.

Claims (23)

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 and a fifth lens element, said first lens element to said fifth lens element each having an object-side surface facing toward said object side as well as an image-side surface facing toward said image side, wherein:

said first lens element has an image-side surface with a concave portion in a vicinity of its periphery and with a concave portion in a vicinity of said optical axis;

said second lens element is of a plastic material;

said third lens element has an object-side surface with a concave portion in a vicinity of said optical axis and an image-side surface with a concave portion in a vicinity of its periphery;

said fourth lens element has an object-side surface with a concave portion in a vicinity of said optical axis; and

said fifth lens element has an object-side surface with a concave portion in a vicinity of its periphery and an image-side surface with a convex portion in a vicinity of said optical axis, and the optical imaging lens set exclusively has five lens elements with refractive power, EFL is an effective focal length of said optical imaging lens set, said second lens element has a second lens element thickness T 2 along said optical axis and said fourth lens element has a fourth lens element thickness T 4 along said optical axis to satisfy 9.50≤EFL/(T 2 +T 4 ).

2. The optical imaging lens set of claim 1 , wherein TTL is a distance from said first object-side surface of said first lens element to an image plane along said optical axis to satisfy 10.50≤TTL/T 2 ≤22.80.

3. The optical imaging lens set of claim 2 , wherein ALT is a total thickness of all five lens elements along said optical axis, an air gap G 12 between said first lens element and said second lens element along said optical axis and an air gap G 45 between said fourth lens element and said fifth lens element along said optical axis to satisfy5.50≤ALT/(G 12 +G 45 ).

4. The optical imaging lens set of claim 1 , wherein ALT is a total thickness of all five lens elements along said optical axis to satisfy 6.50≤ALT/T 2 .

5. The optical imaging lens set of claim 4 , wherein TTL is a distance from said first object-side surface of said first lens element to an image plane along said optical axis, an air gap G 12 between said first lens element and said second lens element along said optical axis, an air gap G 23 between said second lens element and said third lens element along said optical axis and an air gap G 45 between said fourth lens element and said fifth lens element along said optical axis to satisfy 4.20≤TTL/(G 12 +G 23 +G 45 ).

6. The optical imaging lens set of claim 1 , wherein ALT is a total thickness of all five lens elements along said optical axis to satisfy ALT/T 4 ≤8.60.

7. The optical imaging lens set of claim 6 , wherein TTL is a distance from said first object-side surface of said first lens element to an image plane along said optical axis, an air gap G 23 between said second lens element and said third lens element along said optical axis and an air gap G 45 between said fourth lens element and said fifth lens element along said optical axis to satisfy 4.20≤TTL/(G 23 +G 45 )≤8.50.

8. The optical imaging lens set of claim 1 , wherein an air gap G 12 between said first lens element and said second lens element along said optical axis and an air gap G 23 between said second lens element and said third lens element along said optical axis to satisfy EFL/(G 12 +G 23 )≤12.70.

9. The optical imaging lens set of claim 8 , wherein TTL is a distance from said first object-side surface of said first lens element to an image plane along said optical axis and said fifth lens element has a fifth lens element thickness T 5 along said optical axis to satisfy TTL/(T 4 +T 5 )≤6.50.

10. The optical imaging lens set of claim 1 , wherein an air gap G 23 between said second lens element and said third lens element along said optical axis and an air gap G 45 between said fourth lens element and said fifth lens element along said optical axis to satisfy EFL/(G 23 +G 45 )≤8.6.

11. The optical imaging lens set of claim 10 , wherein ALT is a total thickness of all five lens elements along said optical axis and said third lens element has a third lens element thickness T 3 along said optical axis to satisfy 4.20≤ALT/(T 2 +T 3 ).

12. The optical imaging lens set of claim 1 , wherein said first lens element has a first lens element thickness T 1 along said optical axis to satisfy 2.80≤(T 1 +T 4 )/T 2 ≤4.50.

13. The optical imaging lens set of claim 12 , wherein an air gap G 12 between said first lens element and said second lens element along said optical axis, an air gap G 23 between said second lens element and said third lens element along said optical axis and an air gap G 45 between said fourth lens element and said fifth lens element along said optical axis to satisfy EFL/(G 12 +G 23 +G 45 )≤10.50.

14. The optical imaging lens set of claim 1 , wherein ALT is a total thickness of all five lens elements along said optical axis and an air gap G 34 between said third lens element and said fourth lens element along said optical axis to satisfy 1.3≤ALT/G 34 .

15. The optical imaging lens set of claim 14 , wherein said fifth lens element has a fifth lens element thickness T 5 along said optical axis to satisfy 8.50≤EFL/T 5 ≤11.80.

16. The optical imaging lens set of claim 1 , wherein an air gap G 34 between said third lens element and said fourth lens element along said optical axis to satisfy 3.70≤EFL/G 34 ≤12.50.

17. The optical imaging lens set of claim 16 , wherein TTL is a distance from said first object-side surface of said first lens element to an image plane along said optical axis, said first lens element has a first lens element thickness T 1 along said optical axis to satisfy 4.00≤TTL/(T 1 +T 2 ).

18. The optical imaging lens set of claim 1 , wherein TTL is a distance from said first object-side surface of said first lens element to an image plane along said optical axis, an air gap G 12 between said first lens element and said second lens element along said optical axis and an air gap G 34 between said third lens element and said fourth lens element along said optical axis to satisfy 3.20≤TTL/(G 12 +G 34 ).

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 5, 2017
From: GENIUS ELECTRONIC OPTICAL CO., LTD.
To: GENIUS ELECTRONIC OPTICAL (XIAMEN) CO., LTD.
Reel/Frame 043750/0325 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 6, 2016
From: CHEN, FENG; CHEN, BAINA; YIN, YANXUAN
To: GENIUS ELECTRONIC OPTICAL CO., LTD.
Reel/Frame 039950/0054 →
Priority Claims (1)
CN 2016 1 0755720 · Aug 29, 2016 · national
Continuity (1)
Related Publication 20180059371A1 · Mar 1, 2018