Lighting element and a method for manufacturing a lighting element
10655838 · 2020-05-19
Assignee
Inventors
Cpc classification
A01G9/20
HUMAN NECESSITIES
F21V31/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H05K1/0274
ELECTRICITY
F21Y2115/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2113/13
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21W2131/40
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2105/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21V31/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A01G9/20
HUMAN NECESSITIES
A01G7/04
HUMAN NECESSITIES
Abstract
The invention relates to a waterproof lighting element, wherein the lighting element comprises a printed circuit board with an aluminum substrate layer. The invention relates also to a waterproof lighting element, wherein the lighting element comprises a printed circuit board with a base plate. The invention relates also to a method of manufacturing a waterproof lighting element.
Claims
1. A waterproof lighting element comprising: a printed circuit board with an aluminum substrate layer, the printed circuit board having a trace layer on a first side having a center section and a peripheral section, the center section having the trace layer, the peripheral section forming a closed loop shape without the trace layer around the center section, the printed circuit board having an opening extending from the first side to an opposite second side; a plurality of light emitting diode (LED) components mounted on the center section of the first side; a waterproof electrical connector mounted through the opening, the waterproof connector being configured to provide a connection interface on the second side in order to form an electrical connection to the LED components; a transparent cover element made of tempered glass, mounted on top of the first side, the cover element having a contact surface facing the peripheral section of the first side; and an adhesive sealant between the peripheral section and the contact surface, the adhesive sealant forming a closed loop shape attaching the printed circuit board and the cover element together, thereby forming a waterproof structure sealing the LED components inside the waterproof structure.
2. The waterproof lighting element according to claim 1, wherein the waterproof electrical connector has a connector portion which is detachable from the waterproof lighting element.
3. The waterproof lighting element according to claim 1, further comprising a power source.
4. The waterproof lighting element according to claim 1, further comprising a reflector element attached to the cover element.
5. The waterproof lighting element according to claim 1, wherein the plurality of LED components comprises at least two subsets of LED components with different emission spectrums.
6. A method of manufacturing a waterproof lighting element, the method comprising: providing a printed circuit board blank having an aluminum substrate layer, the printed circuit board further having a trace layer on a first side; removing a portion of the trace layer from the first side, thereby forming a center section and a peripheral section on the first side, such that the center section has the trace layer and the peripheral section forms a closed loop shape without the trace layer around the center section; forming an opening, the opening extending from the center section of the first side of the printed circuit board to an opposite second side of the printed circuit board; mounting a plurality of light emitting diode (LED) components on the center section; mounting a waterproof electrical connector through the opening, the waterproof connector being configured to provide a connection interface on the second side in order to form an electrical connection to the LED components; providing an adhesive sealant on the peripheral section, the adhesive sealant being configured to form a closed loop shape corresponding with the closed loop shape of the peripheral section; and mounting a transparent cover element made of tempered glass on the adhesive sealant on the first side so that the adhesive sealant attaches the cover element to the printed circuit board, thereby forming a waterproof structure sealing the LED components inside the waterproof structure.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Examples of the invention will now be described in detail with reference to the accompanying drawings, in which:
(2)
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DETAILED DESCRIPTION OF THE EMBODIMENTS
(7)
(8) The waterproof lighting element 100 of the first embodiment further comprises a plurality light emitting diode (LED) components 107 mounted on the surface of the centre section of the first side having a trace layer 104, in which at least two subsets of LED components with different emission spectrums may be used. The emission spectrums of the subsets can be appropriately combined and the amount of each color in the spectra can then be fine-tuned to the specific needs of different plants and their growth phases.
(9) In the lighting element 100 there is a transparent cover element 110, preferably made of tempered glass, which is arranged to cover the first side of the printed circuit board 101 and the LED components 107 mounted on it. When viewed from the side, the cross section of the cover element may be U-shaped or rectangular, but its shape is not limited to these shapes but may vary. The transparent cover element 110 is mounted on top of the first side 102, the cover element having a contact surface 111 facing the peripheral section 106 of the first side 102. An adhesive sealant 112 is arranged between the peripheral section 106 and the contact surface 111, wherein the adhesive sealant 112 forms a closed loop shape attaching the printed circuit board 101 and the cover element 110 together, thereby forming a waterproof structure sealing the LED components 107 inside the waterproof structure. As an adhesive sealant, silicone-based materials, glue or other adhesive can be used.
(10)
(11)
(12) The waterproof lighting element 300 may further comprise a waterproof electrical connector 319 mounted through the opening 308, wherein the waterproof connector 319 is configured to provide a connection interface on the second side of the printed circuit board in order to form an electrical connection to the LED components. The waterproof electrical connector or portion thereof may be mounted on the printed circuit board in various ways, for example by soldering. The waterproof electrical connector may be a quick-coupling structure which may comprise a male connector portion and a female connector portion, which are detachable from each other, in which both the male connector portion and the female connector portion are attached to the cable conductor 320. The waterproof lighting element 300 may further comprise a power source 322, such as a DC-DC or an AC-DC power converter, which may be mounted directly into the printed circuit board, or alternatively connected to the cable conductor 320, whereby the power converter may be an integral part or a separate part of the cable conductor.
(13)
(14) In
(15) When comparing the first embodiment of the invention with the second embodiment of the invention, it is noted that in the second embodiment, the metallic base plate 423 and the printed circuit board 401 are separate parts, whereas in the first embodiment, the trace layer is attached to the metallic substrate layer. In the second embodiment, the base plate 423 and the PCB 401 can be disposed separately from each other. In this case, there can be optionally a suitable thermal interface material, such as thermal interface foil, thermal pad or thermal interface grease, arranged between the base plate 423 and the PCB 401 to provide a sufficient heat transfer between the PCB and the base plate.
(16) The invention relates also to a method of manufacturing a waterproof lighting element, as discussed above. The method comprises steps of: providing a printed circuit board blank having an aluminium substrate layer, wherein the printed circuit board further has a trace layer on a first side, removing a portion of the trace layer from the first side, thereby forming a centre section and a peripheral section on the first side, such that the centre section has the trace layer and that the peripheral section forms a closed loop shape without the trace layer around the centre section, forming an opening, the opening extending from the centre section of the first side of the printed circuit board to an opposite second side of the printed circuit board, mounting a plurality of LED components on the centre section, mounting a waterproof electrical connector through the opening, wherein the waterproof connector is configured to provide a connection interface on the second side in order to form an electrical connection to the LED components, providing an adhesive sealant on the peripheral section, wherein the adhesive sealant is configured to form a closed loop shape corresponding with the closed loop shape of the peripheral section, and mounting a transparent cover element made of tempered glass on the adhesive sealant on the first side so that the adhesive sealant attaches the cover element to the printed circuit board, thereby forming a waterproof structure sealing the LED components inside the waterproof structure.
(17) It is obvious to a person skilled in the art that the inventive concept can be implemented in various ways. The invention and its embodiments are not limited to the examples described above but may vary within the scope of the claims.