Light engine and lamp with light engine
12123578 · 2024-10-22
Assignee
Inventors
- Zhian LI (Shenzhen Guangdong, CN)
- Armin Konrad (Großaitingen, DE)
- Shijun Nie (Garching, DE)
- Tianci Zeng (Shenzhen Guangdong, CN)
Cpc classification
F21Y2103/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S2/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V21/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2115/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21V21/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S2/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S4/28
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
Provided is a light engine of a lamp. The light engine includes a number of light engine modules, and a support frame for movably mounting the light engine modules, where each light engine module comprises one or more light sources. The support frame includes a number of movable components, the movable components of the support frame are mechanically engaged to the light engine modules, such that mechanical motion of the movable components of the support frame relative to each other can cause the motion of the light engine modules relative to each other. In addition, a lamp with a light engine is provided.
Claims
1. A light engine of a lamp, the light engine comprising: a plurality of light engine modules, wherein: each light engine module has one or more light sources; and at least one of the light engine modules has at least one slide channel formed therein; and a support frame configured for movably mounting the light engine modules, wherein the support frame comprises a plurality of movable components, wherein at least one of the movable components of the support frame is mechanically engaged to the at least one slide channel formed in the at least one of the light engine modules, thus enabling mechanical motion of the movable components of the support frame relative to each other to cause motion of the light engine modules relative to each other.
2. The light engine according to claim 1, wherein the support frame is configured as a foldable frame to facilitate the light engine modules to be arranged substantially adjacent to each other in a folded state of the support frame and to facilitate the light engine modules to be spaced from each other in an unfolded state of the support frame.
3. The light engine according to claim 1, wherein the support frame is configured to arrange the light engine modules in a substantially coplanar arrangement.
4. The light engine according to claim 3, wherein the support frame is configured such that the substantially coplanar arrangement of the light engine modules is maintained during relative movement of the movable components of the support frame.
5. The light engine according to claim 1, wherein the support frame is configured such that the movement of the movable components of the support frame causes substantially translational motion of the light engine modules relative to each other.
6. The light engine according to claim 1, wherein the movable components pivot rotationally about a plurality of first pivot points fixed to the light engine modules in a way that rotational motion of the movable components about the first pivot points causes translational motion of the light engine modules relative to each other.
7. The light engine according to claim 6, wherein the support frame comprises a plurality of second pivot points, wherein at least one of the second pivot points is slidably connected to the at least one slide channel formed in the at least one of the light engine modules so as to maintain directions of the light engine modules with each other during the motion of the movable components.
8. The light engine according to claim 1, wherein the light engine modules are configured as linear optical modules arranged substantially parallel to each other.
9. A lamp comprising: a lamp housing; and at least one light engine according to claim 1, wherein the at least one support frame of the at least one light engine is mounted in the lamp housing.
10. The light engine according to claim 7, wherein the plurality of second pivot points is configured to maintain parallel arrangement of the light engine modules during unfolding and folding of the support frame.
11. The light engine according to claim 7, further comprising at least one slider configured for slidably connecting at least one of the second pivot points to the at least one slide channel formed in the at least one of the light engine modules, wherein the at least one slider is configured to stabilize at least one joint at said at least one second pivot point.
12. The light engine according to claim 11, wherein the at least one slider is configured to attach directly to a main body of the at least one light engine module.
13. The light engine according to claim 12, wherein the at least one slider is configured to attach to an outer surface of the main body of the at least one light engine module.
14. The light engine according to claim 11, wherein the at least one slider is configured to attach to an outer surface of a circuit board of the at least one light engine module.
15. The light engine according to claim 11, wherein the at least one slider is configured to contribute to reducing mechanical pressure on the at least one second pivot point.
16. The light engine according to claim 1, wherein: the at least one light engine module having the at least one slide channel formed therein is configured as a linear optical module; and the at least one slide channel extends along a longitudinal axis of the linear optical module.
17. The light engine according to claim 1, wherein the at least one slide channel is configured as an elongate groove formed in a main body of the at least one light engine module.
18. The light engine according to claim 1, wherein the at least one light engine module having the at least one slide channel formed therein further has at least one fixed pivot point formed thereat, about which at least one fixed pivot point the movable components pivot in folding and unfolding the support frame.
19. The light engine according to claim 18, wherein: the at least one slide channel comprises a first slide channel and a second slide channel; and the at least one fixed pivot point is linearly situated between the first slide channel and the second slide channel along a longitudinal axis of the at least one light engine module having the at least one slide channel formed therein.
20. The light engine according to claim 1, wherein: the at least one slide channel comprises a plurality of slide channels; and the at least one light engine module having the plurality of slide channels formed therein further has a plurality of fixed pivot points formed thereat.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(10)
(11) The light engine 1 further includes a support frame 6, indicated by an arrow 6. The light engine modules 2 are connected to each other through the support frame 6, which is not clearly visible in
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(13) A distance between the light engine modules 2 or the size of the light engine 1 can be changed depending on the extension level of the grid or the support frame 6. In particular, the size of the light engine 1 may be increased and/or adjusted to make the light engine 1 suitable for a particular lamp.
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(16) The pivot points 21 and 22 may be achieved by means of hinge pins or rivets. The configuration of the second pivot points 22 is that the second pivot points 22 can respectively slide back and forth along the slide channel or the sliding track when the support frame 6 is unfolded or folded.
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(22) The light engine 1 described above can be mounted in lamps of different sizes and/or shapes. In particular, the light engine 1 may be used in a backlight lamp, for example a sign or panel lamp. Due to adjustable size, the light engine can be used in lamps of different sizes. In particular, due to the foldable support frame, the light engine can be folded or unfolded as needed, thereby adjusting the distance between the light engine modules according to the size of the lamp.
(23) In particular, the light engine 1 may be mounted in a substantially rectangular lamp housing 11, for example, as shown in
(24) Due to the pivotal arrangement of the movable components 7, the rotational motion of the movable components 7 causes substantially translational motion of the light engine modules 2, thereby maintaining a substantially equidistant and/or parallel arrangement of the light engine modules 2 when the support frame 6 is folded and/or unfolded. In this way, a particularly uniform spatial distribution of the light sources 3 can be achieved, thereby achieving a uniform light distribution of the lamp.
(25) Therefore, as shown in
(26) Although at least one demonstrative embodiment has been described in the foregoing detailed description, it should be understood that there are numerous variations. It should also be understood that the demonstrative embodiments or exemplary embodiments are only examples and are not intended in any way to limit the scope, applicability or configuration of the present disclosure. In contrast, the above detailed description will provide a convenient route map for those skilled in the art to implement demonstrative embodiments or exemplary embodiments.