Patent classifications
B60Q3/10
AUTONOMOUS VEHICLES AND METHODS OF USING SAME
A vehicle includes one or more sensors arranged on at least one of a dashboard, a roof, and a center console of the vehicle, or one or more image capturing devices for capturing one or more images from a left side and a right side of the vehicle, an electronic control unit (ECU) configured to communicate with the one or more sensors or the one or more image capturing devices, and at least one of a morphing surface, a windshield display, and one or more displays configured to be controlled by the ECU, where the one or more sensors are arranged under a black panel surface.
AUTONOMOUS VEHICLES AND METHODS OF USING SAME
A vehicle includes one or more sensors arranged on at least one of a dashboard, a roof, and a center console of the vehicle, or one or more image capturing devices for capturing one or more images from a left side and a right side of the vehicle, an electronic control unit (ECU) configured to communicate with the one or more sensors or the one or more image capturing devices, and at least one of a morphing surface, a windshield display, and one or more displays configured to be controlled by the ECU, where the one or more sensors are arranged under a black panel surface.
Lighting device for lighting the interior of a transportation vehicle
A lighting device for lighting the interior of a transportation vehicle having an oblong housing by which a belt carrier having light sources is held. The housing is a reflector element having at least one reflector chamber in which light beams, which are emitted from the light sources are reflected in a diffuse state before the light beams arrive at a light emission opening. A lighting device providing an extremely homogeneous light emission with an extremely compact design.
Lighting device for lighting the interior of a transportation vehicle
A lighting device for lighting the interior of a transportation vehicle having an oblong housing by which a belt carrier having light sources is held. The housing is a reflector element having at least one reflector chamber in which light beams, which are emitted from the light sources are reflected in a diffuse state before the light beams arrive at a light emission opening. A lighting device providing an extremely homogeneous light emission with an extremely compact design.
Plate with printed layer, manufacturing method thereof, and display device
The present invention relates to a plate with a printed layer, including a plate having a bent portion, a lower printed layer, and an upper printed layer provided at a portion of the lower printed layer, in which at least a portion of the lower printed layer is provided at a position corresponding to the bent portion on a main surface of the plate.
Plate with printed layer, manufacturing method thereof, and display device
The present invention relates to a plate with a printed layer, including a plate having a bent portion, a lower printed layer, and an upper printed layer provided at a portion of the lower printed layer, in which at least a portion of the lower printed layer is provided at a position corresponding to the bent portion on a main surface of the plate.
BACKLIGHT DEVICE AND LIQUID CRYSTAL DISPLAY DEVICE
A liquid crystal display device with high visibility and a backlight device for implementing the liquid crystal display device are provided. A backlight device (100) for irradiating light to a back surface of a liquid crystal panel (19) in a liquid crystal display device 101 includes: light sources (45); a substrate (51); and a plate-like optical member (29) through which a part of light emitted by the light sources (45) is transmitted. The optical member (29) includes: first region (A11) and two or more second regions (A21), wherein in the first region (A11), the light transmittance increases as separating from a mounting position of one light source (45), and in the second regions (A21), the light transmittance increases as approaching an outer peripheral portion from a central portion of the optical member (29) in a predetermined direction in places in contact with another adjacent second region (A21).
Vehicle including instrument panel and interior member
A vehicle includes a driver's seat and a passenger's seat, an interior member, and an instrument panel. The instrument panel has a meter cluster portion and an information display portion. The interior member has, on a front side of the vehicle, a extending portion extending around a back side of the information display portion so as to be spaced from the information display portion, and the information display portion has a panel capable of displaying at least either one information of images or characters, and at least when the information is not displayed, enters a light transmission state so as to allow a driver to visually recognize the extending portion.
Vehicle including instrument panel and interior member
A vehicle includes a driver's seat and a passenger's seat, an interior member, and an instrument panel. The instrument panel has a meter cluster portion and an information display portion. The interior member has, on a front side of the vehicle, a extending portion extending around a back side of the information display portion so as to be spaced from the information display portion, and the information display portion has a panel capable of displaying at least either one information of images or characters, and at least when the information is not displayed, enters a light transmission state so as to allow a driver to visually recognize the extending portion.
SUBSURFACE ENGRAVED VEHICLE LIGHT GUIDE
An automotive light guide that displays subsurface engraved indicia to create an optical branding feature or another illuminated design element. In one implementation, the light guide has a body with a primary viewing outer side and a plurality of microablation sites located within the body. From a first viewing angle with respect to the primary viewing outer side, the plurality of microablation sites are configured to appear in a first indicia pattern, and from a second viewing angle, the plurality of microablation sites are configured to appear in a second indicia pattern. In another implementation, the light guide has a body with a planar engraving outer side and a rounded primary viewing outer side. The plurality of microablation sites are etched through the planar engraving side and are viewable as an indicia pattern through the rounded primary viewing outer side.