IP Library › Granted Patent US 10,831,000
Granted Patent B2
US 10,831,000 · App. 16/243,089 · Granted Nov 10, 2020

Optical lens assembly

Inventors: Jinhui Gong (Fujian, CN); Qingzhi Zhu (Fujian, CN); Jiali Lian (Fujian, CN)
Assignee: GENIUS ELECTRONIC OPTICAL (XIAMEN) CO., LTD.
G02B13/008G02B9/12G02B9/34G02B13/004G02B13/0035
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Quick Facts
Patent No.
US 10,831,000
App. No.
16/243,089
Granted
Nov 10, 2020
Kind
B2
Abstract

An optical lens assembly for generating light beams from near infrared light beams emitted by a structured light generating unit having light sources and passed through the optical lens assembly is provided. The optical lens assembly includes a first lens element, a second lens element and a third lens element arranged along an optical axis in a sequence from a light output side to a light input side. The optical lens assembly satisfies: SL/AAG≤6.500, wherein SL is a distance from an optical surface of one of an optical elements closest to the light output side of the optical lens assembly to the structured light generating unit having the plurality of light sources along the optical axis, and AAG is a sum of the air gaps among all lenses having refracting power of the optical lens assembly along the optical axis.

Claims (26)

1. An optical lens assembly for generating a plurality of light beams from a plurality of near infrared light beams emitted by a structured light generating unit having a plurality of light sources and passed through the optical lens assembly, a side facing the structured light generating unit having the light sources being a light input side, another side opposite thereto being a light output side, the optical lens assembly comprising a first lens element, a second lens element and a third lens element arranged along an optical axis in a sequence from a light output side to a light input side, each of the first lens element, the second lens element and the third lens element comprising a light output surface facing the light output side and a light input surface facing the light input side;

wherein

the first lens element is arranged to be a lens element having refracting power in a first order from the light output side to the light input side;

the second lens element is arranged to be a lens element having refracting power in a second order from the light input side to the light output side;

the third lens element is arranged to be a lens element having refracting power in a first order from the light input side to the light output side;

the curvature of a cross-sectional line of the light input surface and the light output surface of the first lens element, the light input surface and the light output surface of the second lens element, and the light input surface and the light output surface of the third lens element on a plane containing the optical axis and parallel to an XZ plane are respectively different from the curvature of a cross-sectional line of the light input surface and the light output surface of the first lens element, the light input surface and the light output surface of the second lens element, and the light input surface and the light output surface of the third lens element on a plane containing the optical axis and parallel to a YZ plane, wherein an X direction and a Y direction are perpendicular to each other and perpendicular to the optical axis, and a Z direction is parallel to the optical axis, and the XZ plane is defined by the X direction and the Y direction, and the YZ plane is defined by the Y direction and the Z direction; and

the optical lens assembly satisfies: SL/AAG≤6.500, wherein SL is a distance from an optical surface of one of optical elements closest to the light output side of the optical lens assembly to the structured light generating unit having the plurality of light sources along the optical axis, and AAG is a sum of the air gaps among all lens elements having refracting power of the optical lens assembly along the optical axis.

2. The optical lens assembly according to claim 1 , wherein cross-sectional lines of the light input surface and the light output surface of the first lens element, the light input surface and the light output surface of the second lens element, and the light input surface and the light output surface of the third lens element on a plane containing the optical axis parallel to the YZ plane are all straight lines.

3. The optical lens assembly according to claim 1 , wherein at least one of the first lens element, the second lens element, and the third lens element is made of glass.

4. The optical lens assembly according to claim 1 , wherein the optical lens assembly further satisfies to the following conditional formula: ALT/T1≤5.200, wherein ALT is a sum of thicknesses of all the lens elements having refracting power of the optical lens assembly along the optical axis, and T1 is a thickness of the first lens element along the optical axis.

5. The optical lens assembly according to claim 1 , wherein the optical lens assembly further satisfies to the following conditional formula: TL/(T3+BFL)≤6.500, wherein TL is a distance from the light output surface of the first lens element to the light input surface of the third lens element along the optical axis, T3 is a thickness of the third lens element along the optical axis, and BFL is a distance from the light input surface of the third lens element to the structured light generating unit having a plurality of light sources along the optical axis.

6. The optical lens assembly according to claim 1 , wherein the optical lens assembly further satisfies to the following conditional formula: SL/EFL≤2.500, wherein EFL is an effective focal length of the optical lens assembly.

7. The optical lens assembly according to claim 1 , wherein the optical lens assembly further satisfies to the following conditional formula: EFL/(T1+T2)≤4.500, wherein EFL is an effective focal length of the optical lens assembly, T1 is a thickness of the first lens element along the optical axis, and T2 is a thickness of the second lens element along the optical axis.

8. The optical lens assembly according to claim 1 , wherein the optical lens assembly further satisfies to the following conditional formula: ALT/(G12+T2)≤2.500, wherein ALT is a sum of thicknesses of all of the lens elements having refracting power of the optical lens assembly along the optical axis, and G12 is a distance from the light input surface of the first lens element to the light output surface of the second lens element along the optical axis, and T2 is a thickness of the second lens element along the optical axis.

9. The optical lens assembly according to claim 1 , wherein the optical lens assembly further satisfies to the following conditional formula: TL/(G23+T3)≤12.000, wherein TL is a distance from the light output surface of the first lens element to the light input surface of the third lens element along the optical axis, G23 is a distance from the light input surface of the second lens element to the light output surface of the third lens element along the optical axis, and T3 is a thickness of the third lens element along the optical axis.

10. The optical lens assembly according to claim 1 , wherein the optical lens assembly further satisfies to the following conditional formula: ALT/AAG≤3.500, wherein ALT is a sum of thicknesses of all of the lens elements having refracting power of the optical lens assembly along the optical axis.

11. The optical lens assembly according to claim 1 , wherein the optical lens assembly further satisfies to the following conditional formula: (T1+T3)/T2≤5.200, wherein T1 is a thickness of the first lens element along the optical axis, T2 is a thickness of the second lens element along the optical axis, and T3 is a thickness of the third lens element along the optical axis.

12. The optical lens assembly according to claim 1 , wherein the optical lens assembly further satisfies to the following conditional formula: TTL/ALT≤2.800, wherein TTL is a distance from the light output surface of the first lens element to the structured light generating unit having a plurality of light sources along the optical axis, and ALT is a sum of thicknesses of all of the lens elements having refracting power of the optical lens assembly along the optical axis.

13. The optical lens assembly according to claim 1 , wherein the optical lens assembly further satisfies to the following conditional formula: SL/(T2+G23+T3)≤5.000, wherein T2 is a thickness of the second lens element along the optical axis, G23 is a distance from the light input surface of the second lens element to the light output surface of the third lens element along the optical axis, and T3 is a thickness of the third lens element along the optical axis.

14. The optical lens assembly according to claim 1 , wherein the optical lens assembly further satisfies to the following conditional formula: TL/(T1+G23)≤7.500, wherein TL is a distance from the light output surface of the first lens element to the light input surface of the third lens element along the optical axis, T1 is a thickness of the first lens element along the optical axis, and G23 is a distance from the light input surface of the second lens element to the light output surface of the third lens element along the optical axis.

15. The optical lens assembly according to claim 1 , wherein the optical lens assembly further satisfies to the following conditional formula: (T1+G12+T2)/T3≤12.000, wherein T1 is a thickness of the first lens element along the optical axis, G12 is a distance from the light input surface of the first lens element to the light output surface of the second lens element along the optical axis, T2 is a thickness of the second lens element along the optical axis, and T3 is a thickness of the third lens element along the optical axis.

16. The optical lens assembly according to claim 1 , wherein the optical lens assembly further satisfies to the following conditional formula: (G23+T3)/T1≤3.300, wherein G23 is a distance from the light input surface of the second lens element to the light output surface of the third lens element along the optical axis, T3 is a thickness of the third lens element along the optical axis, and T1 is a thickness of the first lens element along the optical axis.

17. The optical lens assembly according to claim 1 , wherein the optical lens assembly further satisfies to the following conditional formula: ALT/(T2+T3)≤3.600, wherein ALT is a sum of thicknesses of all of the lens elements having refracting power of the optical lens assembly along the optical axis, T2 is a thickness of the second lens element along the optical axis, and T3 is a thickness of the third lens element along the optical axis.

18. The optical lens assembly according to claim 1 , wherein the optical lens assembly further satisfies to the following conditional formula: (T1+BFL)/T2≤4.100, wherein T1 is a thickness of the first lens element along the optical axis, BFL is a distance from the light input surface of the third lens element to the structured light generating unit having a plurality of light sources along the optical axis, and T2 is a thickness of the second lens element along the optical axis.

19. The optical lens assembly according to claim 1 , wherein the optical lens assembly further satisfies to the following conditional formula: AAG/T2≤6.000, wherein T2 is a thickness of the second lens element along the optical axis.

20. The optical lens assembly according to claim 1 , wherein the optical lens assembly further satisfies to the following conditional formula: EFL/AAG≤4.300, wherein EFL is an effective focal length of the optical lens assembly.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 16, 2019
From: GONG, JINHUI; ZHU, QINGZHI; LIAN, JIALI
To: GENIUS ELECTRONIC OPTICAL (XIAMEN) CO., LTD.
Reel/Frame 048038/0297 →
Priority Claims (1)
CN 2018 1 1425823 · Nov 27, 2018 · national
Continuity (1)
Related Publication 20200166731A1 · May 28, 2020