Lighting device and operating method thereof
US-2015377464-A1 · Dec 31, 2015 · US
US9772093B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9772093-B2 |
| Application number | US-201414369918-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 16, 2014 |
| Priority date | Apr 16, 2014 |
| Publication date | Sep 26, 2017 |
| Grant date | Sep 26, 2017 |
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A lens has a front surface, a rear surface, a side surface extending between the front surface and the rear surface. The rear surface defines a rear-facing chamber. The front surface has a central surface and an edge surface connected in a surrounding manner with the central surface, and the edge surface extends between the central surface and the side surface. The lens is an axisymmetric body and defines a central axis. The lens cooperates with the LED light source or similar light source which are located at the central axis and can move within the chamber, to form a lens system, so as to achieve a high capacity factor of the emergent light emitted from the light source, and functions of collimating and focusing for the incident light. This lens system can be applied to a flashlight with the function of variable focus.
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The invention claimed is: 1. A lens, wherein, the lens comprises a front surface, a rear surface, a side surface extending between the front surface and the rear surface; the rear surface defines a rear-facing chamber; the front surface comprises a central surface and an edge surface connected in a surrounding manner with the central surface; the edge surface extends between the central surface and the side surface; the lens defines a central axis; the chamber comprises a side wall and a bottom, the side wall and the bottom define a space of the chamber, and the central axis passes through the central surface and the bottom; lines corresponding to the edge surface on the central cross section which are edge lines, are consisted of segments parallel to the central axis and segments perpendicular to the central axis in an alternately connecting manner; any cross section of the lens along the central axis which is a central cross section is of the same shape; a line corresponding to the central surface on the central cross section which is a central line is an arc line. 2. The lens according to claim 1 , wherein, the direction of an arc-shaped convex of the central line is away from the bottom. 3. The lens according to claim 2 , wherein, the extending direction of the edge lines parallel to the central axis is same as the direction of the arc-shaped convex of the central line, and the edge lines extend away from the central line in the direction perpendicular to the central axis. 4. The lens according to claim 1 , wherein, the lines corresponding to the side wall on the central cross section which are side wall lines, are straight lines or arc lines. 5. The lens according to claim 4 , wherein, the side wall lines are parallel to the central axis. 6. The lens according to claim 3 , wherein, the bottom is a cambered surface or a plane. 7. The lens according to claim 3 , wherein, the side wall cooperates with the side surface to meet that a reflected light is parallel to the central axis, and the reflected light is reflected by the side surface after an incident light being emitted from a pointolite located at the central axis and entering the lens from the side wall. 8. The lens according to claim 7 , wherein, the size of the edge surface meets that the reflected light reflected by the side surface is emitted directly from the edge surface. 9. The lens according to claim 8 , wherein, the shape of the side surface meets that the incident light entering from the side wall is totally reflected by the side surface. 10. The lens according to claim 9 , wherein, the central surface cooperates with the bottom to meet that if the incident light emitted from the pointolite located at the central axis enters the lens from the bottom, the corresponding emergent light is emitted from the central surface only. 11. The lens according to claim 10 , wherein, the shape of the edge surface meets that the emergent light emitted from the central surface is not blocked by the edge surface. 12. The lens according to claim 1 , wherein, the side surface is plated with a total reflection film. 13. The lens according to claim 12 , wherein, the total reflection film is silver. 14. The lens according to claim 1 , wherein, a material of the lens is polymethylmethacrylate. 15. A lens system using the lens according to claim 7 , wherein, the lens system comprises the lens and a light source which provides the incident light for the lens. 16. The lens system according to claim 15 , wherein, the light source is located at the central axis of the lens. 17. The lens system according to claim 16 , wherein, the light source can move along the central axis. 18. The lens system according to claim 17 , wherein, the range of the movement of the light source is within the inside of the chamber of the lens. 19. The lens system according to claim 18 , wherein, the range of the movement of the light source is from 0 mm apart from the chamber to 10 mm deep in the chamber. 20. The lens system according to claim 19 , wherein, when the light source moves from 0 mm apart from the chamber to 10 mm deep in the chamber, the maximum included angle of the emergent light emitted from the central surface of the lens is 8 to 90 degrees. 21. The lens system according to claims 16 , wherein, the light source is a LED light source. 22. The uses of any one of the lens systems of claim 21 , wherein, the lens system is applicable to a flashlight with the function of variable focus.
the device being a pocket lamp (F21L4/022, F21L4/045, F21L4/085 take precedence) · CPC title
with provision for adjustment, e.g. for focusing · CPC title
the material diffusing light, e.g. translucent plastics · CPC title
applied to portable lighting devices · CPC title
Lenses · CPC title
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