Tool-Less Light Fixture
20200116336 · 2020-04-16
Inventors
- Peter Budavari (Nyergesujfalu, HU)
- Csaba HORVATH (Budapest, HU)
- Péter Balázs Bedo (Budapest, HU)
- Peter Pelbart (Eger, HU)
Cpc classification
F21V23/003
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V31/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V15/015
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V21/025
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S8/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S2/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V17/002
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V29/70
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2115/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V17/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2103/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21V17/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V15/015
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V17/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V17/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V29/70
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S8/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A lighting fixture comprising: an elongate housing having an outer surface and an inner surface and having an elongate opening extending in a longitudinal direction of the housing; wherein the elongate housing comprises a first wall and a second wall extending towards the elongate opening; a light module for emitting light having a first face through which light is emitted and an opposite second face; a plurality of retainer means provided at the second face and configured for engaging the first and second walls such that the light module is retained within the elongate housing; a stopper means for preventing inward displacements of the light module past a predetermined boundary.
Claims
1. A lighting fixture comprising: an elongate housing having an outer surface and an inner surface and having an elongate opening extending in a longitudinal direction of the housing; wherein the elongate housing comprises a first wall and a second wall extending towards the elongate opening; a light module for emitting light having a first face through which light is emitted and an opposite second face; a plurality of retainer means provided at the second face and configured for engaging the first and second walls such that the light module is retained within the elongate housing; a stopper means for preventing inward displacements of the light module past a predetermined boundary.
2. The fixture of claim 1, wherein the plurality of retainer means comprises at least a first spring element and a second spring element having a protruding portion snap-fitted behind a first ridge and a second ridge at the first wall and the second wall, respectively, when looking from the elongate opening in the direction of the inner surface.
3. The fixture of claim 2, wherein the spring element comprises a first portion extending upwardly from the second face of the light module; and wherein the protruding portion is a curved portion formed at an upper edge of the first portion.
4. The fixture of claim 1, wherein the stopper means comprises at least one element configured for engaging an edge of the first and the second wall.
5. The fixture of claim 3, wherein the stopper means is configured to prevent further inward displacements of the light module when the protruding curved portion of each of the plurality of retainer means is behind the first and second ridge.
6. The fixture of claim 1, wherein the light module has a first and a second longitudinal side extending in the longitudinal direction, and a first and a second lateral side extending between the first longitudinal side and the second longitudinal side; and wherein the at least one element of the stopper means comprises a first lateral edge at the first lateral side of the light module extending from the second face of the light module in direction of the first and second wall, and a second lateral edge at the second lateral side of the light module extending from the second face of the light module in direction of the first and second wall.
7. The fixture of claim 1, wherein the light module comprises: a support substrate with at least one LED disposed thereon; a lighting housing comprising a base portion and a cover; said cover extending over the at least one LED and being fixed to said base portion.
8. The fixture of claim 7, wherein the light module further comprises: a lighting plate containing a thermally conductive material and having a first surface and a second surface, wherein the support substrate is provided on the second surface of the lighting plate, wherein the first surface of the lighting plate faces the base portion of the lighting housing.
9. The fixture of claim 7, wherein the cover extends between outer edges of the elongate opening.
10. The fixture of claim 7, wherein the cover is located at least partially within the elongate housing.
11. The fixture of claim 7, wherein the base portion and the support substrate are located entirely within the elongate housing.
12. The fixture of claim 7, wherein the cover is located at least partially out of the elongate housing.
13. The fixture of claim 1, wherein at least one electric component is mounted on the second face of the light module such that the at least one electric component is located in a space within the bounds of the inner surface of the elongate housing, the first and second walls, and the second face of the light module.
14. The fixture of claim 1, wherein a second light module is retained longitudinally adjacent to a first light module by another plurality of retainer means within the elongate housing.
15. The fixture of claim 14, wherein a lighting driver is mounted on the second face of the first light module, wherein the lighting driver is configured to control the provision of power to the at least one LED of the first light module and the second light module.
16. The fixture of claim 1, wherein at least the first or second wall is composed of a first portion of the elongate housing extending towards the elongate opening and joining to another second portion of the elongate housing extending at an angle of the first portion.
17. The fixture of claim 1, wherein the first face of the light module is designed to align with the outer edges of the elongate opening when mounted within the elongate housing.
18. The fixture of claim 1, wherein the elongate housing is an extruded profile, preferably in metal.
19. The fixture of claim 1, wherein the elongate housing comprises an outer casing in which the elongate opening is arranged; wherein at least the first wall is arranged in the outer casing, such that a compartment delimited by the outer casing and the first wall is created.
20. A light module for use in the fixture of claim 1, comprising: a support substrate with at least one LED disposed thereon; a lighting housing comprising a base portion and a cover; a lighting plate containing a thermally conductive material and having a first surface and a second surface, wherein the support substrate is provided on the second surface of the lighting plate, wherein the first surface of the lighting plate faces the base portion of the lighting housing; said cover extending over the at least one LED and being fixed to said base portion; a plurality of retainer means provided on the outer surface of the base portion; a stopper means.
Description
BRIEF DESCRIPTION OF THE FIGURES
[0053] This and other aspects of the present invention will now be described in more detail, with reference to the appended drawings showing a currently preferred embodiment of the invention. Like numbers refer to like features throughout the drawings.
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DESCRIPTION OF EMBODIMENTS
[0058]
[0059] The light module 120 comprises a first face 121 through which light is emitted, and a second face 122 opposite of the first face 121. The plurality of retainer means 130 are provided at the second face 122 of the light module and are configured for engaging the first wall 114 and the second wall 116. A stopper means 140 is implemented to prevent inward displacements of the light module 120 past a predetermined boundary. The housing 110 may comprise a planar support surface 111 to fix the housing to a wall, a first side wall extending from the support surface 111, a second side wall extending from the support surface 111 opposite of the first side wall. The first side wall comprises a first upper wall 112 extending outward and away from the mounting surface, and a first lower wall 113 extending inward and away from the first upper wall 112 and joining to the first upper wall 112. The second side wall comprises the first wall 114 extending away from the support surface 111, a second portion 115 extending outwardly at an angle of the first wall 114 and joining to the first wall 114, and a second lower wall 117 extending in a symmetrical manner as the first lower wall 113. Thus an elongate opening is formed by the edges of the first lower wall 113 and the second lower wall 117. An external compartment 180 is defined by the first wall 114, the second portion 115 of the second side wall, and a portion of the outer casing. This external compartment 180 may be used to contain additional electronic or non-electronic devices, e.g. wires. A second wall 116 extends from the support surface 111 towards the elongate opening and parallel to the first wall 114. There may be a first ridge 118 at the joining of the first wall 114 and the second portion 115, and a second ridge 119 at the extremity of the second wall 116. As will be explained below, the first ridge 118 and the second ridge 119 are intended for cooperating with the plurality of retainer means 130. The elongate housing 110 shown in
[0060] The light module 120 has a first face 121 through which light is emitted. The first face may be a plate composed of a transparent or translucent material. A second face 122 of the light module opposite of the first face 121 may be a cup-shaped plate, e.g. made of plastic.
[0061] A plurality of retainer means 130 may be provided at the second face of the light module 122.
[0062] The stopper means 140 role is to prevent inward displacement of the light module past a predetermined boundary. The stopper means 140 comprises at least one element for engaging an edge of the first wall 114 and the second wall 116. The stopper means 140 may be configured to prevent further inward displacements of the light module 120 when the protruding curved portion 133 of each of the plurality of retainer means 130 is behind the first ridge 118 and the second ridge 119. The stopper means 140 may have a first and a second longitudinal side 141 extending in the longitudinal direction, and a first and a second lateral side 142 extending between the first longitudinal side and the second longitudinal side 141. The stopper means may comprise a first and a second lateral edge 143 at the first and the second lateral side 142 of the stopper means, respectively. The first and the second edge 143 engage with the edge of the first wall 114 and the edge of the second wall 116. The first and the second edge 143 may be designed so that the engagement occurs when the protruding curved portion 133 of each of the plurality of the retainer means is past the first ridge 118 and the second ridge 119.
[0063] At least one electronic component may be mounted to the second face 122 of the light module. A driver 151 to drive at least one light module 120 might be the at least one electronic component. The at least one electronic component is mounted such that it may be located in a space within the bounds of the mounting inner surface 111 of the elongate housing, the first wall 114, the second wall 116, and the mounting surface 144 of the stopper means. The at least one electronic component may be fixed in a gear tray 150 provided to the mounting surface 144 of the stopper means or to the second face 122 of the light module.
[0064] To adjust the longitudinal position of the light module 120 within the elongate housing, a spacer block 160 may be used. The spacer block 160 can be mounted within the elongate housing using a similar stopper means 140 and retainer means 130 as the light module 120. To complete the enclosure of the light module within the elongate housing, cover plates 170 may be fixed to each open end of the elongate housing extruded profile. The spacer block 160 may be designed in extruded metal, preferably aluminum, to align with the outer edges of the elongate opening when mounted within the elongate housing 110.
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