System and method of indirect lighting for a turntable display
09970652 ยท 2018-05-15
Assignee
Inventors
Cpc classification
F21V23/003
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V7/0066
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V33/0056
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2115/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V7/0008
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
H04M1/22
ELECTRICITY
F21V33/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A system and method for creating a visual display on an outer surface of a turntable platter. The system and method includes providing a light source around and directed toward the periphery of the platter that includes a number of reflective nodes on its outer peripheral surface. The reflective nodes project a lighted display around the outer periphery of the platter thereby creating a visual effect.
Claims
1. A lighted turntable display, comprising: a housing having a reflective surface in a top surface; a rotatable platter supported by the housing, the platter defining an outer peripheral surface; a plurality of reflective nodes positioned on the outer peripheral surface; and, a plurality of light sources configured to direct light directly toward the reflective surface of the housing and reflectively toward the plurality of nodes to provide a visual light display.
2. The display of claim 1, wherein the reflective nodes are constructed from at least one of a reflective metal, glass, ceramic, and polymer.
3. The display of claim 1, further comprising controlling the plurality of light sources such that adjacent light sources are producing substantially the same type and quality of light.
4. The display of claim 1, further comprising controlling the plurality of light sources such that adjacent light sources are producing substantially a different type or quality of light.
5. The display of claim 4, wherein the different type or quality of light is at least one of a constant light source; strobe light source, white light source, or colored light source.
6. The display of claim 5, wherein the colored light source is at least one of a red, green, or blue.
7. The display of claim 1, wherein the plurality of light sources are light emitting diodes (LEDs).
8. The device of claim 1, further comprising a controller, the controller coupled to the light source for controllably illuminating the plurality of light sources, wherein the controller is configurable for producing different patterns of light from the plurality of light sources.
9. A system for providing visual display, comprising: a turntable having a housing having a reflective surface in a top surface, and a platter, the platter defining an outer periphery; a plurality of reflective nodes formed on the outer periphery; and, a plurality of light sources for directing light directly at the reflective surface of the housing and reflecting the light toward the reflective nodes around substantially all of the outer periphery.
10. The system of claim 9, further comprising a controller for controlling the plurality of light sources wherein the controller is configurable for producing different patterns of light from the plurality of light sources.
11. The system of claim 9, wherein the plurality of light sources are configured to provide at least one of a white light, red light, green light, or blue light.
12. A method of providing a visual display, comprising: providing a turntable having a rotatable platter defining an outer periphery, the outer periphery having reflective nodes thereon; providing a plurality of light sources for providing a light indirectly into the reflective nodes; and, controlling the light sources to provide a visual display by the light reflected off the reflective nodes.
13. The method of claim 12, wherein the providing a plurality of light sources is configured such that the plurality of light sources direct light at substantially all of the platter's outer periphery.
14. The method of claim 12, wherein controlling the light sources includes each light source producing substantially the same light quality and color.
15. The method of claim 12, wherein controlling the light sources includes each light source producing different light quality and color.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Illustrative embodiments will be described referring to the accompanying drawings, wherein like numerals denote like elements.
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DETAILED DESCRIPTION
(8) Referring to
(9) The word illustrative is used herein to mean serving as an example, instance, or illustration. Any aspect or design described herein as illustrative is not necessarily to be construed as preferred or advantageous over other aspects or designs. Further, for the purposes of this disclosure and unless otherwise specified, a or an means one or more. Still further, using and or or is intended to include and/or unless specifically indicated otherwise. The illustrative embodiments may be implemented as a method, apparatus, or article of manufacture using standard programming and/or engineering techniques to produce software, firmware, hardware, or any combination thereof to create and control the disclosed embodiments. Additionally, like numbers refer to like parts.
(10) With specific reference to
(11) The lights 114 are positioned such that any desired amount of the platter's outer periphery may be illuminated. A user may select to not provide any light to the outer periphery or they may elect to illuminate the entire 360 degrees of the outer periphery, or any amount there between.
(12) As depicted in the FIGS., the lights 114 may be stand alone, discrete units. Such as, for example, individual light emitting diodes (LED's). Conversely, the lights 114, may be collection of light elements such as LED strings or other connected lights sources (not shown). The specific nature or type of light is not intended to be limiting.
(13) The lights 114 may be configured to produce a single type of light, such as white light. In addition, they may be configured to produce a variety of colored light such as red, blue and green. Likewise, each light 114 or light element in a string or other assortment (not shown) may be configured to produce a constant light source or a variable light source such as a strobe.
(14) By way of non-limiting example, in one possible configuration, the audio system 100/200 may have multiple lights 114 positioned around the platter 102. All of the lights 114 may be configured to produce a constant white light. Conversely, they may all be configured to produce a white strobe light. Additionally, some or all of the lights 114 may be configured to produce a red light, a blue light and a green light. The various lights may be configured to produce constant or variable (strobe) colored light. Each light 114 may be configured and controlled independently from one another.
(15) With reference to
(16) The nodes 302 are configured to reflect light. One illustrative embodiment of the node material choice is that of reflective metal such as a machined metal, such as aluminum, surface. However, other material choices are available. By way of non-limiting example, certain ceramics may be used to form the nodes 302. Additionally, polymers that have light reflective properties may be used. Further, nodes 302 constructed from various silica material like glass (clear or colored) are within the scope of this disclosure. Those skilled in the art will appreciate other materials availability as well and material choice should not be limiting provided the material reflects light.
(17) As best depicted in
(18) An alternative illustrative embodiment is depicted best in
(19) In this illustrative embodiment, an inner edge of the top plate 304 is configured with a reflective surface 402 thereby permitting the lights 114 to direct light at reflective surface 402 and it will be reflected toward and off of the nodes 302. Like the node 302, the material choice for the reflective surface 402 is light reflective such as mirror or mirrored surfaces of metal, ceramic, glass (clear or colored), or suitable polymers.
(20) In use, either illustrative embodiment a user directs light of a desired quality, color and nature into (either directly or indirectly) the nodes 302. The light is then reflected back off the nodes 302 to the surrounding environment. As the platter 102 turns, the nodes 302 move respectively and a visual display is reflected outward toward viewers. In this manner, a visual display of varying nature is produced for viewers. This provides visual stimulation to accompany any audio stimulation produced by the audio system 100/200. An overall enhanced user experience is produced.
(21) With particular reference to
(22) An additional illustrative embodiment is depicted in
(23) In an illustrative embodiment a lighted turntable display is disclosed. Included are a housing having a reflective surface in a top surface and a rotatable platter supported by the housing, the platter defining an outer peripheral surface. Also depicted are a plurality of reflective nodes positioned on the outer peripheral surface. Further, a plurality of light sources configured to direct light directly toward a reflective surface and reflecting toward the nodes to provide a visual light display.
(24) A further illustrative embodiment includes the reflective nodes are constructed from at least one of a reflective metal, glass, ceramic, and polymer.
(25) A further illustrative embodiment includes controlling the plurality of light sources such that adjacent light sources are producing substantially the same type and quality of light.
(26) A still further illustrative embodiment includes controlling the plurality of light sources such that adjacent light sources are producing substantially a different type or quality of light.
(27) A further illustrative embodiment includes the different type or quality of light is at least one of a constant light source, strobe light source, white light source, or colored light source.
(28) A further illustrative embodiment includes the colored light source is at least one of a red, green, or blue.
(29) A further illustrative embodiment includes he plurality of light sources are light emitting diodes (LEDs).
(30) A further illustrative embodiment includes a controller, the controller coupled to the light source for controllably illuminating the plurality of light sources, wherein the controller is configurable for producing different patterns of light from the plurality of light sources.
(31) An illustrative embodiment includes a system for providing visual display. The system includes a turntable having a housing having a reflective surface in a top surface and a platter, the platter defining an outer periphery. Additionally, the system includes a plurality of reflective nodes on the outer periphery. Also included are a plurality of light sources for directing light directly at the reflective surface and reflecting toward reflective nodes around substantially all of the outer periphery.
(32) A further illustrative embodiment includes a controller for controlling the plurality of light sources wherein the controller is configurable for producing different patterns of light from the plurality of light sources.
(33) A further illustrative embodiment includes the plurality of light sources are configured to provide at least one of a white light, red light, green light, or blue light.
(34) An illustrative embodiment includes a method of providing a visual display. The method includes providing a turntable having a rotatable platter defining an outer periphery having reflective nodes thereon. Additionally, the method includes providing a plurality of light sources for providing a light indirectly into the reflective nodes. Also included in the method is controlling the light sources to provide a visual display by the light reflected off the reflective nodes.
(35) A further illustrative embodiment includes providing a plurality of light sources is configured such that the plurality of light sources direct light at substantially all of the platter's outer periphery.
(36) A further illustrative embodiment includes controlling the light sources includes each light source producing substantially the same light quality and color.
(37) A further illustrative embodiment includes controlling the light sources includes each light source producing different light quality and color.
(38) The foregoing description of illustrative embodiments of the disclosed subject matter has been presented for purposes of illustration and of description. It is not intended to be exhaustive or to limit the disclosed subject matter to the precise form disclosed, and modifications and variations are possible in light of the above teachings or may be acquired from practice of the disclosed subject matter. The embodiments were chosen and described in order to explain the principles of the disclosed subject matter and as practical applications of the disclosed subject matter to enable one skilled in the art to utilize the disclosed subject matter in various embodiments and with various modifications as suited to the particular use contemplated. It is intended that the scope of the disclosed subject matter be defined by the claims appended hereto and their equivalents.