Abstract:
The present disclosure relates to a hybrid material panel assembly for a vehicle. The panel assembly includes a panel and a plurality of mounting flanges integrally formed with the panel. The panel is formed of a first material having a first coefficient of thermal expansion. The plurality of mounting flanges are formed of a second material having a second coefficient of thermal expansion, where each of the plurality of mounting flanges include a mounting area that defines a mounting surface and at least one mounting hole. The first coefficient of thermal expansion is greater than the second coefficient of thermal expansion.
Abstract:
A vehicle lamp includes one or more LEDs mounted to a printed circuit board for producing light. One or more inner lenses are coupled to LEDs for receiving light such that light enters along an edge or surface of each inner lens and propagates through each inner lens before exiting. A projection lens is oriented adjacent the inner lenses such that the projection lens receives light from the inner lenses and projects the light from the vehicle lamp. A light blocking material is applied to at least a portion of the projection lens for altering an appearance of light emitted from the projection lens. The resulting projections provide custom lit appearances having varying patterns, intensity, texture, and/or color. The vehicle lamp may be used for satisfying vehicle lamp legal functions, welcome functions, autonomous driving functions, and/or logo functions.
Abstract:
A backlit three-dimensional lamp for a vehicle includes an indicia rendering disposed on a transparent lenticular sheet, an outer lens positioned in front of the transparent lenticular sheet, and a light source positioned behind the transparent lenticular sheet. The light source provides backlighting of the indicia rendering such that the lenticular sheet projects a forward image that hovers beyond the outer lens. A vehicle light assembly includes a light source adapted to produce a substantially homogeneous light, a rendering of indicia located adjacent the light source and facing away from the light source such that the rendering of indicia is backlit by the light source, and an array of light-modifying elements aligned with the light source to at least partially cover the rendering of indicia for creating a projection of the rendering of indicia outside the vehicle light assembly.
Abstract:
An illuminated-marking system for a lamp assembly includes one or more markings illuminated by an organic light emitting diode (OLED) panel. The markings may include an ink composition printed directly onto the OLED panel. A process for printing the ink composition includes printing one or more desired ink compositions onto the OLED panel.
Abstract:
A programmable glare-free high beam device onboard a vehicle includes a plurality of light sources and an input coupler for combining light from the plurality of light sources. A focusing lens is adapted to receive light emitted from the input coupler and focus the light onto a digital micro-mirror device (DMD). The DMD has a plurality of individual micro-mirrors for reflecting light received from the focusing lens. A projection lens is adapted to receive light from the DMD and to project the light to form a spot distribution of a high beam light pattern. A plurality of auxiliary optics are adapted to form a broadened distribution of the high beam light pattern. A controller is provided for adaptively controlling the plurality of LEDs, the DMD, and the plurality of auxiliary optics to actively dim or turn off portions of the high beam light pattern.
Abstract:
An integrated display -light assembly for a vehicle includes a lamp housing for mechanically supporting an outer lens. A light source is positioned within the lamp housing behind a first portion of the outer lens. A display device is positioned within the lamp housing behind a second portion of the outer lens, different than the first portion. The display device illuminates a changeable visual content visible through the outer lens. The display device may be adapted for displaying digital images received from a controller. The light source may provide an automotive lighting function. The outer lens is positioned externally beside the display device and the light source for providing protection from external environmental conditions. The lamp housing is adapted to support the display device, the light source, and the outer lens.
Abstract:
A vehicle reflector lamp includes a curved reflector having a reflective front side and a non-reflective back side opposite the front side. The curved reflector has a light- permeable slot. A light source is positioned behind the non-reflective back side such that light emanates from the light source through the light-permeable slot for reflecting off the reflective front side. An optical sheet is positioned adjacent the front side of the reflector for homogenizing light reflected from the reflector, and a clear outer lens protects the optical sheet, the light source, and the curved reflector from an outdoor environment. The reflector lamp has a lit mode and an unlit mode. When in the unlit mode, ambient light reflects off of the reflective front side. When in the lit mode, light from the light source reflects of at least a portion of the reflective front side.
Abstract:
Lit image projection devices and lamp assemblies containing the same for generation of three dimensional images. A projection device of the present disclosure comprises one or more light sources, a rippled substrate defining a reflective surface, the reflective surface configured to reflect light source light from the one or more light sources as reflected light, and a first lenticular lens configured to receive the reflected light from the reflective surface, wherein the reflected light received by the first lenticular lens generates a three-dimensional lit image.
Abstract:
A projector shield including a clear obelisk optic configured to modulate light exiting a vehicular headlamp. The clear obelisk optic comprises a base configured to sufficiently allow the passage of light therethrough, and a tip configured to refract light thereby preventing it from exiting the vehicular headlamp. The clear obelisk optic generates a light projection having a sufficiently dimmed area compared to surrounding areas.
Abstract:
A lamp assembly for a vehicle includes a plurality of light-emitting diodes (LEDs) mounted in or on the vehicle and arranged in a linear pattern. An elongated optical member is disposed longitudinally along the linear pattern of LEDs. The elongated optical member is configured to receive light emitted from the LEDs and project a corresponding plurality of lit images. A vehicle lamp assembly includes a plurality of LEDs mounted to a printed- circuit board to form a linear array. A primary light pipe is disposed adjacent to the linear array of LEDs and aligned longitudinally along the linear array of LEDs, such that light emitted from each of the LEDs of the linear array traverses radially through the primary light pipe.