Ocular optical system
Abstract
An ocular optical system includes a first lens element and a second lens element from an eye-side to a display-side in order along an optical axis. The first lens element and the second lens element each include an eye-side surface and a display-side surface. The display-side surface of the second lens element has a concave portion in a vicinity of a periphery thereof. The ocular optical system satisfies 2.000≤G2D/T1 and ER/G12≤20.000, wherein G2D is a distance from the second lens element to the display screen along the optical axis, T1 is a thickness of the first lens element along the optical axis, ER is a distance from a pupil of the eye of the observer to the first lens element along the optical axis, and G12 is an air gap from the first lens element to the second lens element along the optical axis.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
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 and a second lens element from the eye-side to the display-side in order along an optical axis, the first lens element and the second lens element each comprising an eye-side surface and a display-side surface;
the second lens element having negative refracting power, and the display-side surface of the second lens element having a concave portion in a vicinity of a periphery of the second lens element; and lens elements of the ocular optical system are only the first lens element and the second lens element; wherein the ocular optical system satisfies:
2.000≤ G 2 D/T 1; and
ER/G 12≤20.000,
wherein G 2 D is a distance from the second lens element to the display screen along the optical axis, T 1 is a thickness of the first lens element along the optical axis, ER is a distance from a pupil of the eye of the observer to the first lens element along the optical axis, and G 12 is an air gap from the first lens element to the second lens element along the optical axis.
2 . The ocular optical system according to claim 1 , wherein the eye-side surface of the first lens element has a convex portion in a vicinity of a periphery of the first lens element.
3 . The ocular optical system according to claim 1 , wherein the display-side surface of the second lens element having a concave portion in a vicinity of the optical axis.
4 . The ocular optical system according to claim 1 , wherein the ocular optical system further satisfies: 250.000 mm/EFL≤10.000, wherein EFL is an effective focal length of the ocular optical system.
5 . The ocular optical system according to claim 1 , wherein the ocular optical system further satisfies: 1.500≤(0.5×DLD)/ER, wherein DLD is a diagonal length of the display screen corresponding to one single pupil of the observer.
6 . The ocular optical system according to claim 1 , wherein the ocular optical system further satisfies: EFL/(0.5×DLD)≤1.400, wherein EFL is an effective focal length of the ocular optical system, and DLD is a diagonal length of the display screen corresponding to one single pupil of the observer.
7 . The ocular optical system according to claim 1 , wherein the ocular optical system further satisfies: 2.200≤G 2 D/ALT, wherein ALT is a sum of thicknesses of the first lens element and the second lens element along the optical axis.
8 . 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 and a second lens element from the eye-side to the display-side in order along an optical axis, the first lens element and the second lens element each comprising an eye-side surface and a display-side surface;
the eye-side surface of the second lens element having a convex portion in a vicinity of a periphery of the second lens element, and the display-side surface of the second lens element having a concave portion in a vicinity of the optical axis; and lens elements of the ocular optical system are only the first lens element and the second lens element; wherein the ocular optical system satisfies:
G 2 D/T 2≤16.000; and
1.500≤| f 2/ f 1|,
wherein G 2 D is a distance from the second lens element to the display screen along the optical axis, T 2 is a thickness of the second lens element along the optical axis, f 2 is a focal length of the second lens element, and f 1 is a focal length of the first lens element.
9 . The ocular optical system according to claim 8 , wherein the ocular optical system further satisfies: 2.000≤T 2 /G 12 , wherein G 12 is an air gap from the first lens element to the second lens element along the optical axis.
10 . The ocular optical system according to claim 8 , wherein the ocular optical system further satisfies: 2.000≤G 2 D/T 1 , wherein T 1 is a thickness of the first lens element along the optical axis.
11 . The ocular optical system according to claim 8 , wherein the ocular optical system further satisfies: 20.000≤G 2 D/G 12 , wherein G 12 is an air gap from the first lens element to the second lens element along the optical axis.
12 . The ocular optical system according to claim 8 , wherein the ocular optical system further satisfies: ER/T 2 ≤8.000, wherein ER is a distance from a pupil of the eye of the observer to the first lens element along the optical axis.
13 . The ocular optical system according to claim 8 , wherein the ocular optical system further satisfies: ER/T 1 ≤5.500, wherein ER is a distance from a pupil of the eye of the observer to the first lens element along the optical axis, and T 1 is a thickness of the first lens element along the optical axis.
14 . The ocular optical system according to claim 8 , wherein the ocular optical system further satisfies: 2.000≤EFL/ER, wherein 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.
15 . 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 and a second lens element from the eye-side to the display-side in order along an optical axis, the first lens element and the second lens element each comprising an eye-side surface and a display-side surface;
the eye-side surface of the first lens element having a convex portion in a vicinity of the optical axis; the eye-side surface of the second lens element having a convex portion in a vicinity of a periphery of the second lens element, and the display-side surface of the second lens element having a concave portion in a vicinity of the optical axis; and lens elements of the ocular optical system are only the first lens element and the second lens element; wherein the ocular optical system satisfies:
G 2 D/T 2≤16.000;
2.000≤ T 2/ G 12; and
ER/T 2≤8.000,
wherein G 2 D is a distance from the second lens element to the display screen along the optical axis, T 2 is a thickness of the second lens element along the optical axis, G 12 is an air gap from the first lens element to the second lens element along the optical axis, and ER is a distance from a pupil of the eye of the observer to the first lens element along the optical axis.
16 . The ocular optical system according to claim 15 , wherein the ocular optical system further satisfies: 1.500≤|f 2 /f 1 |, wherein f 2 is a focal length of the second lens element, and f 1 is a focal length of the first lens element.
17 . The ocular optical system according to claim 15 , wherein the ocular optical system further satisfies: 2.500≤T 1 /T 2 , wherein T 1 is a thickness of the first lens element along the optical axis.
18 . The ocular optical system according to claim 15 , wherein the ocular optical system further satisfies: 2.000≤G 2 D/ER.
19 . The ocular optical system according to claim 15 , wherein the ocular optical system further satisfies: ER/G 12 ≤20.000.
20 . The ocular optical system according to claim 15 , wherein the ocular optical system further satisfies: SL/T 1 ≤7.600, wherein SL is a distance from a pupil of the eye of the observer to the display screen along the optical axis, and T 1 is a thickness of the first lens element along the optical axis.Join the waitlist — get patent alerts
Track US2021373318A1 — get alerts on status changes and closely related new filings.
We store only your email — no account needed. See our privacy policy.