Patent classifications
G09F13/18
LIGHT ELEMENT OF A VEHICLE
The invention relates to a light element of a vehicle with at least one light source configured to emit light rays, a reflective layer. With a pattern made wholly or partly in the reflective layer. The light element further including an optical element configured to project the light rays from the at least one light source towards the reflective layer. With a dark layer extending along the optical element on the side opposite the reflective layer.
Illuminated decorative panel
An illuminated decorative panel comprises a slab composed at least partly of substantially transparent material, a decorative element associated with the slab, lighting device/unit/component/structure of the slab comprising at least one emitting device of at least one light wave, wherein the slab comprises at least one housing compartment of the emitting device formed along at least one stretch of at least one side of the slab.
Illuminated decorative panel
An illuminated decorative panel comprises a slab composed at least partly of substantially transparent material, a decorative element associated with the slab, lighting device/unit/component/structure of the slab comprising at least one emitting device of at least one light wave, wherein the slab comprises at least one housing compartment of the emitting device formed along at least one stretch of at least one side of the slab.
License plate holder
A license plate holder includes a base with a first connector for attaching the base to a vehicle, a transmissive substrate, and a frame. The frame defines a central opening to permit display of indicia on a license plate display region of a license plate disposed between the base and the frame. The frame further defines a frame display region adjacent the central opening. The frame includes a rear connector disposed adjacent a rear of the frame to removably attach the rear of the frame to the base and includes a front connector disposed adjacent a front of the frame to removably attach the transmissive substrate to the front of the frame.
License plate holder
A license plate holder includes a base with a first connector for attaching the base to a vehicle, a transmissive substrate, and a frame. The frame defines a central opening to permit display of indicia on a license plate display region of a license plate disposed between the base and the frame. The frame further defines a frame display region adjacent the central opening. The frame includes a rear connector disposed adjacent a rear of the frame to removably attach the rear of the frame to the base and includes a front connector disposed adjacent a front of the frame to removably attach the transmissive substrate to the front of the frame.
Self-Illuminated Portable Shadowbox Monument
A self-illuminated shadow box for containing mementos or the like includes a box that has an upright metallic back wall panel for attaching magnets, a transparent door spaced from the upright metallic back wall panel, a roof extending over the metallic back wall panel and the transparent wall, and a solar energized light emitting diode mounted on the roof and directed toward the metallic back wall.
Self-Illuminated Portable Shadowbox Monument
A self-illuminated shadow box for containing mementos or the like includes a box that has an upright metallic back wall panel for attaching magnets, a transparent door spaced from the upright metallic back wall panel, a roof extending over the metallic back wall panel and the transparent wall, and a solar energized light emitting diode mounted on the roof and directed toward the metallic back wall.
DISPLAY PANEL
A visually observable display comprising a circuit board including at least one illuminator emitting light outwardly from a surface of the board, a light transmissive display window pane operable to receive light at an inner surface and transmit the light through an outer surface, and an insert disposed between the illuminator and the display window pane. The insert comprises an elongated light distributing conduit receiving light from the at least one illuminator at a first location in a direction substantially perpendicular to the display window pane, distributing the light transversely through the light conduit along the inner surface of the display window pane, and redirecting the distributed light outwardly along an outer wall of the conduit and outwardly through the window pane. The display may include multiple light illuminators emitting light outwardly from the board surface and into the light distributing conduit at discrete locations along the conduit.
METHOD OF MAKING SUSPENDED LIGHTING FIXTURES USING OPTICAL WAVEGUIDES
A method of making suspended lighting fixtures that includes the use of flexible sheets of optically transmissive material, LED strips, and a linear heat-dissipating structure. The method comprises providing a first flexible sheet having a first major surface, an opposing second major surface, and a first edge having a first light input surface. A pair of flexible sheets of an optically transmissive material are provided, each having an edge with a light input surface. A first LED strip and a second LED strip are provided along with a linear heat-dissipating structure having a first channel and a second channel. The LED strips are positioned within the respective channels and attached to the body of the linear heat-dissipating structure. The edges of the flexible sheets are positioned within the respective channels and in proximity to the respective LED strips. The flexible sheets may be bent to a curved shape.
METHOD OF MAKING SUSPENDED LIGHTING FIXTURES USING OPTICAL WAVEGUIDES
A method of making suspended lighting fixtures that includes the use of flexible sheets of optically transmissive material, LED strips, and a linear heat-dissipating structure. The method comprises providing a first flexible sheet having a first major surface, an opposing second major surface, and a first edge having a first light input surface. A pair of flexible sheets of an optically transmissive material are provided, each having an edge with a light input surface. A first LED strip and a second LED strip are provided along with a linear heat-dissipating structure having a first channel and a second channel. The LED strips are positioned within the respective channels and attached to the body of the linear heat-dissipating structure. The edges of the flexible sheets are positioned within the respective channels and in proximity to the respective LED strips. The flexible sheets may be bent to a curved shape.