IP Library › Granted Patent US 10,663,697
Granted Patent B2
US 10,663,697 · App. 16/159,828 · Granted May 26, 2020

Optical path folding element, imaging lens module and electronic device

Inventor: Ming-Ta Chou (Taichung, TW)
Assignee: LARGAN PRECISION CO., LTD.
G02B13/0065G02B1/04G02B17/0856G02B5/04G02B6/26G02B17/00G02B17/086G02B19/0028G02B23/243G02B27/0101
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Quick Facts
Patent No.
US 10,663,697
App. No.
16/159,828
Granted
May 26, 2020
Kind
B2
Abstract

An optical path folding element includes an incident surface, a path folding surface and an exiting surface. The incident surface allows a light ray to pass into the optical path folding element. The path folding surface folds the light ray from the incident surface. The exiting surface allows the light ray to pass through and depart from the optical path folding element. At least one of the incident surface and the exiting surface includes an optical effective portion and at least one engaging structure symmetrically disposed around the optical effective portion. The engaging structure includes an annular surface portion and an inclined surface portion. The annular surface portion surrounds the optical effective portion, and the inclined surface portion is located between the annular surface portion and the optical effective portion. An angle between the annular surface portion and the inclined surface portion satisfies a specific condition.

Claims (47)

1. An optical path folding element, comprising:

an incident surface allowing a light ray to pass into the optical path folding element;

a path folding surface folding the light ray from the incident surface; and

an exiting surface allowing the light ray to pass through and depart from the optical path folding element;

wherein at least one of the incident surface and the exiting surface comprises:

an optical effective portion; and

at least one engaging structure surroundingly disposed around the optical effective portion and comprising:

an annular surface portion surrounding the optical effective portion; and

an inclined surface portion located between the annular surface portion and the optical effective portion;

wherein an Abbe number of the optical path folding element is V, and the following condition is satisfied:

V<32.0.

2. The optical path folding element of claim 1 , wherein the optical path folding element is made of a plastic material.

3. The optical path folding element of claim 2 , wherein the path folding surface comprises an aluminum metallic layer covered thereon.

4. The optical path folding element of claim 2 , wherein a width of the inclined surface portion is L 1 , and the following condition is satisfied:

0.07 mm<L 1 <0.35 mm.

5. The optical path folding element of claim 2 , wherein the light ray is folded by 90 degrees when passing through the path folding surface.

6. The optical path folding element of claim 2 , wherein a distance between a center of the incident surface and a center of the path folding surface is equal to a distance between the center of the path folding surface and a center of the exiting surface.

7. The optical path folding element of claim 2 , wherein an area occupied by the optical effective portion is equal to or more than 40% of a total area of the incident surface or the exiting surface.

8. An imaging lens module, comprising:

the optical path folding element of claim 1 .

9. The imaging lens module of claim 8 , wherein the imaging lens module comprises at least one lens element, and the lens element is engaged with the engaging structure.

10. The imaging lens module of claim 8 , wherein the imaging lens module comprises at least one opaque member, and the opaque member is engaged with the engaging structure.

11. An electronic device, comprising:

the imaging lens module of claim 8 .

12. An optical path folding element, comprising:

an incident surface allowing a light ray to pass into the optical path folding element;

a path folding surface folding the light ray from the incident surface; and

an exiting surface allowing the light ray to pass through and depart from the optical path folding element;

wherein at least one of the incident surface and the exiting surface comprises:

an optical effective portion; and

at least one engaging structure symmetrically disposed around the optical effective portion and comprising:

an annular surface portion surrounding the optical effective portion; and

a conical surface located between the annular surface portion and the optical effective portion;

wherein an Abbe number of the optical path folding element is V, and the following condition is satisfied:

V<32.0.

13. The optical path folding element of claim 12 , wherein the optical path folding element is made of a plastic material.

14. The optical path folding element of claim 12 , wherein the conical surface is a closed ring.

15. The optical path folding element of claim 12 , wherein a width of the conical surface is L 2 , and the following condition is satisfied:

0.07 mm<L 2 <0.35 mm.

16. The optical path folding element of claim 12 , wherein the Abbe number of the optical path folding element is V, and the following condition is satisfied:

V<25.0.

17. The optical path folding element of claim 12 , wherein the light ray is folded by 90 degrees when passing through the path folding surface.

18. The optical path folding element of claim 12 , wherein a distance between a center of the incident surface and a center of the path folding surface is equal to a distance between the center of the path folding surface and a center of the exiting surface.

19. An imaging lens module, comprising:

the optical path folding element of claim 12 .

20. An electronic device, comprising:

the imaging lens module of claim 19 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 15, 2018
From: CHOU, MING-TA
To: LARGAN PRECISION CO., LTD.
Reel/Frame 047160/0840 →
Priority Claims (1)
TW 105213079 U · Aug 26, 2016 · national
Continuity (2)
Continuation 15292215 · Oct 13, 2016
Related Publication 20190049702A1 · Feb 14, 2019
Cited By (3)
US 12,216,257 US 12,253,656 US 12,449,571