Apparatus and methodology for customizing vehicle signage
11545055 · 2023-01-03
Inventors
Cpc classification
G09F13/005
PHYSICS
International classification
Abstract
Aspects are disclosed that facilitate customizing vehicle signage. In a particular aspect, a signage is disclosed which includes a mica cover positioned within the perimeter of a frame. The signage further includes a light source configured to direct light towards a backside of the mica cover, and a logo component positioned on the backside of the mica cover. In a particular aspect, the light source is configured to illuminate a logo by transmitting light through the logo component so that the illuminated logo is viewable from the frontside of the mica cover. An attachment mechanism is also included, which is configured to attach the signage to a vehicle.
Claims
1. A signage, comprising: a frame; a mica cover positioned within a perimeter of the frame; a light source configured to direct light towards a backside of the mica cover; a logo component positioned on the backside of the mica cover, wherein: the light source is configured to illuminate a logo by transmitting light through the logo component, the illuminated logo comprises translucent ink and is viewable from the frontside of the mica cover, and the logo component is an etching of the logo on the backside of the mica cover; and an attachment mechanism, wherein the attachment mechanism is configured to attach the signage to a vehicle.
2. The signage according to claim 1, wherein the mica cover comprises polycarbonate material.
3. The signage according to claim 1, wherein the light source is a light emitting diode (LED) light source.
4. The signage according to claim 1, further comprising a sensor configured to measure ambient light, and wherein the sensor is configured to activate the light source upon detecting that the ambient light is below a threshold.
5. The signage according to claim 1, further comprising a power source configured to provide power to the light source.
6. The signage according to claim 5, wherein the power source is a 12 volt battery.
7. The signage according to claim 5, wherein the power source is a solar power source.
8. The signage according to claim 5, wherein the power source is a power source provided by the vehicle.
9. The signage according to claim 1, wherein the attachment mechanism is a magnetic mechanism.
10. The signage according to claim 9, wherein the magnetic mechanism comprises at least one rare-earth magnet.
11. A signage, comprising: a frame; a mica cover positioned within a perimeter of the frame; a light source configured to direct light towards a backside of the mica cover; a logo component positioned on the backside of the mica cover, wherein the light source is configured to illuminate a logo by transmitting light through the logo component, and wherein the illuminated logo is viewable from the frontside of the mica cover; and an attachment mechanism, wherein the attachment mechanism is a magnetic mechanism configured to attach the signage to a vehicle, the magnetic mechanism comprising a switch and at least one electropermanent magnet, wherein the switch is configured to activate a magnetic field of the at least one electropermanent magnet.
12. The signage according to claim 11, wherein the mica cover comprises polycarbonate material.
13. The signage according to claim 11, wherein the logo component is an etching of the logo on the backside of the mica cover, and wherein the logo comprises translucent ink.
14. The signage according to claim 11, wherein the logo component is a transparency film positioned on the backside of the mica cover, and wherein the logo is printed on the transparency film.
15. The signage according to claim 14, wherein at least one side of the frame includes a slot configured to receive the transparency film.
16. The signage according to claim 11, wherein the light source is a light emitting diode (LED) light source.
17. The signage according to claim 11, further comprising a sensor configured to measure ambient light, and wherein the sensor is configured to activate the light source upon detecting that the ambient light is below a threshold.
18. The signage according to claim 11, further comprising a 12 volt battery configured to provide power to the light source.
19. The signage according to claim 11, further comprising a solar power source configured to provide power to the light source.
20. The signage according to claim 11, further comprising a power source provided by the vehicle configured to provide power to the light source.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Various non-limiting embodiments are further described with reference to the accompanying drawings in which:
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
DETAILED DESCRIPTION
(10) Overview
(11) As discussed in the introduction, it would be desirable to address the specific problem of making vehicle signage more viewable when ambient light is dim and making the content of such signage more readily replaceable. The various embodiments disclosed herein are directed towards overcoming these limitations by providing a replaceable vehicle signage apparatus configured with a lighting mechanism. An exemplary embodiment of the vehicle signage apparatus disclosed herein is illustrated in
(12) It is also contemplated that the signage 100 may be configured to include any of various lighting mechanisms. In an exemplary embodiment, it is thus contemplated that a logo displayed on the signage 100 may be viewable both in the daytime, as illustrated in
(13) Exemplary Vehicle Signage Embodiments
(14) Turning now to
(15) Referring next to
(16) Referring next to
(17) Referring next to
(18) Referring next to
(19) Referring next to
(20) Alternatively, in order to facilitate easy removal of the signage 800, it is contemplated that the magnetic attachment mechanism 850 may comprise at least one electropermanent magnet, wherein a switch 852 is configured to activate and deactivate a magnetic field of the at least one electropermanent magnet. Within such embodiment, it is further contemplated that the switch 852 may be coupled to a user interface which allows the user to enter security credentials to activate and deactivate the magnetic field. Such configuration might be desirable to avoid having the signage 800 stolen, for example, wherein the user interface may be any of a plurality of user interfaces known in the art (e.g., a keypad configured to receive an alphanumeric password, a biometric reader configured to perform a biometric reading, etc.).
(21) The word “exemplary” is used herein to mean serving as an example, instance, or illustration. For the avoidance of doubt, the subject matter disclosed herein is not limited by such examples. In addition, any aspect or design described herein as “exemplary” is not necessarily to be construed as preferred or advantageous over other aspects or designs, nor is it meant to preclude equivalent exemplary structures and techniques known to those of ordinary skill in the art. Furthermore, to the extent that the terms “includes,” “has,” “contains,” and other similar words are used in either the detailed description or the claims, for the avoidance of doubt, such terms are intended to be inclusive in a manner similar to the term “comprising” as an open transition word without precluding any additional or other elements.
(22) The aforementioned systems have been described with respect to interaction between several components. It can be appreciated that such systems and components can include those components or specified sub-components, some of the specified components or sub-components, and/or additional components, and according to various permutations and combinations of the foregoing. Sub-components can also be implemented as components coupled to other components rather than included within parent components (hierarchical). Additionally, it is noted that one or more components may be combined into a single component providing aggregate functionality or divided into several separate sub-components, and any one or more middle layers may be provided to couple to such sub-components in order to provide integrated functionality. Any components described herein may also interact with one or more other components not specifically described herein but generally known by those of skill in the art.
(23) In view of the exemplary systems described supra, methodologies that may be implemented in accordance with the disclosed subject matter can be appreciated with reference to the various figures. While for purposes of simplicity of explanation, the methodologies are described as a series of steps, it is to be understood and appreciated that the disclosed subject matter is not limited by the order of the steps, as some steps may occur in different orders and/or concurrently with other steps from what is described herein. Moreover, not all disclosed steps may be required to implement the methodologies described hereinafter.
(24) While the various embodiments have been described in connection with the exemplary embodiments of the various figures, it is to be understood that other similar embodiments may be used or modifications and additions may be made to the described embodiment for performing the same function without deviating there from. Therefore, the present invention should not be limited to any single embodiment.