IP Library Granted Patent US 10,606,070
Granted Patent B2
US 10,606,070 · App. 15/401,120 · Granted Mar 31, 2020

Ocular optical system

Inventor: Matthew Bone (Fujian, CN)
Assignee: Genius Electronic Optical Co., Ltd.
G02B27/0025G02B25/001G02B27/0172G02B27/027G02B3/04
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Quick Facts
Patent No.
US 10,606,070
App. No.
15/401,120
Granted
Mar 31, 2020
Kind
B2
Abstract

An ocular optical system for imaging of imaging rays entering an eye of an observer via the ocular optical system from a display screen is provided. A side facing towards the eye is an eye-side, and a side facing towards the display screen is a display-side. The ocular optical system includes a first lens element, a second lens element, and a third lens element from the eye-side to the display-side in order along an optical axis. The first lens element, the second lens element, and the third lens element each include an eye-side surface and a display-side surface. The second lens element has positive refracting power, and the display-side surface of the second lens element has a concave portion in a vicinity of the optical axis.

Claims (28)

1. An ocular optical system, for imaging of imaging rays entering an eye of an observer via the ocular optical system from a display screen, a side facing towards the eye being an eye-side, a side facing towards the display screen being a display-side, the ocular optical system comprising a first lens element, a second lens element, and a third lens element from the eye-side to the display-side in order along an optical axis, the first lens element, the second lens element, and the third lens element each comprising an eye-side surface and a display-side surface;

the first lens element having refracting power;

the second lens element having positive refracting power, the display-side surface of the second lens element having a concave portion in a vicinity of the optical axis; and

at least one of the eye-side surface and the display-side surface of the third lens element being an aspheric surface,

wherein lens elements having refracting power of the ocular optical system are only the first lens element, the second lens element, and the third lens element,

wherein the ocular optical system satisfies: 1.3≤DLD/G3D≤5, where DLD is a diagonal length of the display screen corresponding to one single pupil of the observer, and G3D is a distance from the third lens element to the display screen along the optical axis.

2. The ocular optical system according to claim 1 , wherein the ocular optical system satisfies: 2.5≤250 mm/G3D≤25.

3. The ocular optical system according to claim 1 , wherein the ocular optical system satisfies: 0.5≤(T1+G12)/T2≤4.5, where T1 is a thickness of the first lens element along the optical axis, G12 is an air gap from the first lens element to the second lens element along the optical axis, and T2 is a thickness of the second lens element along the optical axis.

4. The ocular optical system according to claim 1 , wherein the ocular optical system satisfies: 0.5≤T1/T2≤4, where 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.

5. The ocular optical system according to claim 1 , wherein the ocular optical system satisfies: 2.5≤ER/T3≤5, where ER is a distance from a pupil of the eye of the observer to the first lens element along the optical axis, and T3 is a thickness of the third lens element along the optical axis.

6. The ocular optical system according to claim 1 , wherein the ocular optical system satisfies: 0.69≤(ER+G12+T3)/T1≤2.09, where ER is a distance from a pupil of the eye of the observer to the first lens element along the optical axis, G12 is an air gap from the first lens element to the second 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.

7. The ocular optical system according to claim 1 , wherein the ocular optical system satisfies: 0.38≤(ER+G12+T3)/G3D≤1.02, where ER is a distance from a pupil of the eye of the observer to the first lens element along the optical axis, G12 is an air gap from the first lens element to the second lens element along the optical axis, and T3 is a thickness of the third lens element along the optical axis.

8. The ocular optical system according to claim 1 ,

the eye-side surface of the second lens element having a convex portion in a vicinity of the optical axis; and

the third lens element having negative refracting power.

9. The ocular optical system according to claim 1 , wherein the ocular optical system satisfies: 2.5≤TTL/(T2+T3)≤9, where TTL is a distance from the eye-side surface of the first lens element to the display screen 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.

10. The ocular optical system according to claim 1 , wherein the ocular optical system satisfies: 2.0≤D2/T2, where D2 is a diameter of a clear aperture of the eye-side surface of the second lens element, and T2 is a thickness of the second lens element along the optical axis.

11. The ocular optical system according to claim 1 , wherein the ocular optical system satisfies: 3.5≤EFL/ER≤4.5, where EFL is an effective focal length of the ocular optical system, and ER is a distance from a pupil of the eye of the observer to the first lens element along the optical axis.

12. The ocular optical system according to claim 1 , wherein the ocular optical system satisfies: 0.79≤(ER+G12+T3)/T2≤3.25, where ER is a distance from a pupil of the eye of the observer to the first lens element along the optical axis, G12 is an air gap from the first lens element to the second lens element along the optical axis, T3 is a thickness of the third lens element along the optical axis, and T2 is a thickness of the second lens element along the optical axis.

13. The ocular optical system according to claim 1 , wherein the ocular optical system satisfies: 1.27≤(ER+G12+G3D)/T1≤7.19, where ER is a distance from a pupil of the eye of the observer to the first lens element along the optical axis, G12 is an air gap from the first lens element to the second lens element along the optical axis, and T1 is a thickness of the first lens element along the optical axis.

14. The ocular optical system according to claim 1 ,

the eye-side surface of the second lens element having a convex portion in a vicinity of the optical axis; and

the eye-side surface of the third lens element having a concave portion in a vicinity of a periphery of the third lens element.

15. The ocular optical system according to claim 1 , wherein the ocular optical system satisfies: 3≤TTL/(G23+T3)≤23, where TTL is a distance from the eye-side surface of the first lens element to the display screen along the optical axis, G23 is an air gap from the second lens element to the third lens element along the optical axis, and T3 is a thickness of the third lens element along the optical axis.

16. The ocular optical system according to claim 1 , wherein the ocular optical system satisfies: 6.0≤D3/T3, where D3 is a diameter of a clear aperture of the eye-side surface of the third lens element, and T3 is a thickness of the third lens element along the optical axis.

17. The ocular optical system according to claim 1 , wherein the ocular optical system satisfies: 20≤DLD/EPSD≤36, where EPSD is a semidiameter of the single pupil of the observer.

18. The ocular optical system according to claim 1 , wherein the ocular optical system satisfies: 0.99≤(ER+G12+T3)/G23≤16.16, where ER is a distance from a pupil of the eye of the observer to the first lens element along the optical axis, G12 is an air gap from the first lens element to the second lens element along the optical axis, T3 is a thickness of the third lens element along the optical axis, and G23 is an air gap from the second lens element to the third lens element along the optical axis.

19. The ocular optical system according to claim 1 , wherein the ocular optical system satisfies: 1.71≤(ER+G12+G3D)/T2≤11.19, where ER is a distance from a pupil of the eye of the observer to the first lens element along the optical axis, G12 is an air gap from the first lens element to the second lens element along the optical axis, and T2 is a thickness of the second lens element along the optical axis.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 27, 2018
From: GENIUS ELECTRONIC OPTICAL (XIAMEN) CO., LTD.
To: GENIUS ELECTRONIC OPTICAL CO., LTD.
Reel/Frame 046705/0659 →
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 Jan 10, 2017
From: BONE, MATTHEW
To: GENIUS ELECTRONIC OPTICAL CO., LTD.
Reel/Frame 040907/0951 →
Continuity (2)
Provisional Application 62396242 · Sep 19, 2016
Related Publication 20180081151A1 · Mar 22, 2018