MODULAR LUMINAIRES FOR APPLIANCE LIGHTING
20250198612 ยท 2025-06-19
Inventors
Cpc classification
F21V5/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2103/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V33/002
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V33/0044
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V7/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V7/0091
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2105/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21W2131/307
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21W2131/301
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2115/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V33/0024
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A47B2220/0077
HUMAN NECESSITIES
F21V33/0012
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V7/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
The luminaires of the present disclosure provide a slim profile and simple construction for use in a variety of lighting applications. A circuit board can have a plurality of light sources thereon, and a lens can at least partially encapsulate the circuit board to protect and electrically insulate the circuit board. When used, for example, in a lighted shelf application, power can be provided to the luminaire through shelf brackets along the side of the shelf panel.
Claims
1-35. (canceled)
36. A shelf assembly comprising: a shelf panel having a front edge; a frame coupled to the front edge of the shelf panel, the frame having a groove defined between upper and lower walls, the groove sized to receive the front edge of the shelf panel; and a luminaire affixed under the shelf panel adjacent to the frame, the luminaire comprising: a housing; a circuit board; a plurality of light sources electrically coupled to the circuit board; and a lens coupled to the housing to enclose the circuit board and the plurality of light sources, wherein the lens is coupled to the housing underneath the shelf panel to extend rearwardly along the shelf panel.
37. The shelf assembly of claim 36, wherein the housing secures the circuit board and lens in place.
38. The shelf assembly of claim 36, wherein the frame is bonded to the shelf panel.
39. The shelf assembly of claim 36, wherein the lens comprises snaps or hooks for attachment.
40. The shelf assembly of claim 36, wherein the lens seals the circuit board off from outside contaminants.
41. The shelf assembly of claim 36, wherein the lens and housing are configured to direct light emitted from the light sources into the shelf panel.
42. The shelf assembly of claim 36, wherein the lens and housing are configured to direct light emitted from the light sources into an interior of a space in which the shelf assembly is installed.
43. The shelf assembly of claim 36, wherein the lens has a tapered configuration aligned with the plurality of light sources.
44. The shelf assembly of claim 36, wherein the lens diffuses light emitted by the plurality of light sources.
45. The shelf assembly of any claim 36, further comprising brackets coupled to lateral edges of the shelf panel, the brackets including rear coupling portions configured to mount the shelf assembly within an appliance.
46. The shelf assembly of claim 45, wherein the luminaire and at least one of the brackets have contact pads that align when the luminaire and brackets are coupled to the shelf panel to facilitate and maintain a connection between the luminaire and a power source.
47. The shelf assembly of claim 45, wherein the circuit board comprises one or more interfaces to receive an electrical connection from one or both of the brackets to electrically couple the plurality of light sources with a power source.
48. The shelf assembly of claim 47, wherein the lens comprises a main region covering and protecting the circuit board and a second region designed to cover the one or more interfaces, the second region comprising an aperture to leave an open space for the one or more interfaces.
49. The shelf assembly of claim 48, wherein one of the brackets is configured to extend along the aperture.
50. The shelf assembly of claim 45, wherein the brackets are electrically insulated from the shelf panel.
51. The shelf assembly of claim 50, wherein the brackets comprise an insulative coating.
52. The shelf assembly of claim 45, wherein the shelf panel comprises glass; and the brackets are bonded to the shelf panel.
53. The shelf assembly of claim 45, wherein a front surface of the frame corresponds to a height of the side brackets and shelf panel at a front of the shelf assembly and a bottom surface of the frame tapers downwardly extending along the bottom edge of the brackets to conceal the luminaire from view forwardly of the shelf assembly.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE DISCLOSURE
[0017] The present disclosure provides a lighting module, known as a luminaire, for illumination of one or more glass shelves or interior spaces in an appliance. In one embodiment, the appliance is a refrigerator. Advantageously, the luminaires of the present disclosure are modular, and can be used with shelving in various ways. As will be discussed in greater detail below, the luminaire can be integrated into the shelving unit, removably or permanently connected to the same, or adapted to a particular shelf's size or dimensions. This allows for the use of the luminaires of the present disclosure in a variety of different applications.
[0018] Referring to the drawings, and in particular
[0019] Luminaire 10 comprises printed circuit board (PCB) 20, lens 30, and housing 40. PCB 20 has a plurality of light sources, such as light-emitting diodes (LED) 22, along a length thereof. LEDs 22 can be in communication with a power source. When activated, LEDs 22 provide light to illuminate shelf 2. Lens 30 and housing 40 provide the optics that direct the light emitted from LEDs 22 back into shelf 2, or an interior of the space in which shelf 2 is installed. Housing 40 can be sized and shaped so as to ensure a secure connection for luminaire 10 to shelf 2.
[0020]
[0021] Panel 2 and the panels of subsequent embodiments can be glass, metal, plastic, wood, or any other suitable structural material, which can be bonded or attached to the brackets 4. Panel 2 can be flat, or also have bent or curved edges. The bonding or attachment between panel 2 and brackets 4 can be with curable adhesives, two-sided pressure-sensitive adhesive or tape, other types of adhesives or tape, encapsulation, mechanical fasteners, or other methods. If panel 2 is made of a conductive material, e.g. metal, brackets 4 should be insulated from panel 2. The attachment medium between panel 2 and brackets 4 can then serve the dual purposes of connecting panel 2 and brackets 4 and also provided electrical isolation or insulation.
[0022] Brackets 4, as well as the brackets in any of the embodiments discussed below, can have a coating. This coating can provide decoration and resistance to corrosion. The coating also serves to insulate the metal of brackets 4 for the power being conducted through the brackets 4. The coating can be a powder coat, liquid paint, another type of paint, or other suitable coatings. As discussed in greater detail below, exposed or masked interconnect areas on brackets 4 at the point of connection to luminaire 10, as well as at a power source (e.g. bus 50), facilitate power conduction.
[0023] In luminaire 10, and all of the additional embodiments discussed below, the PCB (in this embodiment PCB 20) can be connected to a substrate, such as panel 2, with curable adhesives, two-sided pressure-sensitive adhesive or tape, other types of adhesives or tape, encapsulation, mechanical fasteners, or other methods. These connection methods can provide the double function of sealing PCB 20 from the environment, electro-static discharge (ESD), contamination, or human touch, and structurally attaching PCB 20 to the substrate.
[0024] One way to achieve the sealing and connection functions discussed immediately above is by using lens 30 to connect or enclose PCB 20 to shelf panel 2. Referring to
[0025] Luminaire 10 is modular with a slim profile. Thus, luminaire 10 can be adapted into several types of drawer and shelf configurations. It is also easy to assemble and inexpensive, due to the simplified construction. In some embodiments, discussed in further detail below, luminaire 10 is integrated into a shelf so that the shelf or a shelf frame itself serves the function of lens 30 or housing 40, thus eliminating the need for one or both of these components. These features distinguish the luminaires of the present disclosure over those of the prior art. The latter often require cumbersome housing assemblies with additional components such as fasteners, all of which have to be attached to or surround the glass shelf panel. This adds significantly to the profile or size of the final shelf assembly. With the luminaires of the present disclosure, by contrast, the overall profile or dimensions of the shelf assembly is not significantly altered. Moreover, as discussed in greater detail below, they can be easily adapted for many different types of applications.
[0026] Referring to
[0027] Referring to
[0028] In the embodiment of a shelf assembly 100 shown in
[0029] As shown in
[0030] As shown in
[0031] Luminaire 110 can also have an additional contact pad (not shown) to facilitate and maintain the connection between interface 124, lens 130, and a power source. The contact pad can be made of a conductive compound, such as solder or other conductive liquids, gels, or tapes. The contact pad can be connected to or applied to any or all of brackets 104, lens 130, or PCB 120. The contact pad can be used when second region 134 is conductive or insulating.
[0032] As shown in
[0033] As shown in
[0034] In the embodiment of a shelf assembly 200 shown in
[0035] As shown in
[0036] Shelf assembly 200 has front frame 206, the latter of which is shown in
[0037] As shown in
[0038]
[0039]
[0040]
[0041]
[0042] Referring to
[0043] Luminaire 810 uses the principle of total internal reflection (TIR) to reflect light towards the illumination target area. Lens 830 has an asymmetrical or symmetrical shape with a TIR optic surface 831 (
[0044] In any of the above-described embodiments, the luminaires 10-810 can also be removably connected to the associated shelves or drawers. This removable connection could be, for example, a snap connection. A removably connected luminaire has several advantages, such as allowing the luminaire to be sold separately, for the customer to choose a desired color temperature, and for the luminaire to be serviceable without replacing the entire shelf. Luminaires 10-810 can also be sealed onto the associated shelf or drawer to that it is dishwasher safe.
[0045] Also, in any of the above-described embodiments, the luminaires can have a design that allows for PCBs with variable LED population and density, i.e. number of LEDs, while maintaining overall performance. Thus, the light intensity of the luminaire can be scalable without changing the lens or reflector. With this feature, the same lens and housing can become, for example, a 100 lumen, 200 lumen or 300 lumen luminaire with all the same parts. The luminaires can thus have scalable light output and cost. In addition, white liners, gray liners, and black liners require different levels of light to appear bright. With variable LED counts and densities, a universal product can easily fit a variety of applications.
[0046] The optical designs and light patterns of the luminaires of the present disclosure can also be changed by molding the lenses or housings out of different materials-for example, by molding the lens out of clear as compared to white plastic. Each material gives appreciably different optical patterns.
[0047] The luminaires of the present disclosure can also be used to illuminate graphics displayed on the associated glass panels. The luminaire can be under the panel, on top of the panel, shining through the glass, or as edge lighting. This can be particularly useful for highlighting any text or logos etched into the glass panel, such as a company brand name.
[0048] The luminaires of the present disclosure can also use power transferred via bus bars screened on the glass panel, as opposed to having to move power from the back of shelf to the front edge of the shelf with wires or other traditional methods. Such bus bars can be similar to what is used in commercial cooler doors to transfer power on the glass. Power can also be transferred using the side brackets of the shelf assembly, as discussed above.
[0049] With any luminaire of the present disclosure, a reflective surface can be applied to the inside of the front frame surface. The inside surface of the front frame can act as a reflector to project light into the target area.
[0050] The present disclosure also contemplates a feature that can be used with any of the above-described luminaires, whereby illumination can be interactive. There can be sensors on the shelf or luminaire (e.g., infrared sensors) that sense the presence of a person (e.g., by detecting the person's hand) and change the intensity of the emitted light. The sensors could also be used to change the color of the light.
[0051] In some applications, it can be suitable to apply a coating to the glass panel and or the frames that enhances the transfer of heat from a luminaire affixed to the shelf to the open air portion of the shelf. This will allow the luminaire to perform at higher light outputs. Such a coating could also be used to increase the reflective properties of the luminaire.
[0052] While the present disclosure has been described with reference to one or more particular embodiments, it will be understood by those skilled in the art that various changes can be made and equivalents can be substituted for elements thereof without departing from the scope thereof. In addition, many modifications can be made to adapt a particular situation or material to the teachings of the present disclosure without departing from the scope thereof. Therefore, it is intended that the present disclosure not be limited to the particular embodiment(s) disclosed as the best mode contemplated for carrying out this disclosure.