Patent classifications
B60Q3/16
VEHICLE AND METHOD OF CONTROLLING THE SAME
A vehicle is provided to analyze a signal received by a communicator and identify a first electronic device that transmits the received signal and a second electronic device that will transmit the received signal. The vehicle identifies a lighting algorithm that corresponds to an analysis result of the received signal and sequentially turns on a plurality of lighting devices based on the identified lighting algorithm.
SYSTEM FOR DETECTING SURROUNDING CONDITIONS OF MOVING BODY
This system for detecting the surrounding conditions of a moving body forcibly changes the state of at least one of a plurality of lighting devices (change from an unlit sate to a lighting state or a blinking state, change in the emission color, or change in the luminance) installed inside the moving body, if an object to which attention must be paid during traveling of the moving body is detected in the surroundings of the moving body.
SYSTEM FOR DETECTING SURROUNDING CONDITIONS OF MOVING BODY
This system for detecting the surrounding conditions of a moving body forcibly changes the state of at least one of a plurality of lighting devices (change from an unlit sate to a lighting state or a blinking state, change in the emission color, or change in the luminance) installed inside the moving body, if an object to which attention must be paid during traveling of the moving body is detected in the surroundings of the moving body.
System for detecting surrounding conditions of moving body
This system for detecting the surrounding conditions of a moving body forcibly changes the state of at least one of a plurality of lighting devices (change from an unlit state to a lighting state or a blinking state, change in the emission color, or change in the luminance) installed inside the moving body, if an object to which attention must be paid during traveling of the moving body is detected in the surroundings of the moving body.
System for detecting surrounding conditions of moving body
This system for detecting the surrounding conditions of a moving body forcibly changes the state of at least one of a plurality of lighting devices (change from an unlit state to a lighting state or a blinking state, change in the emission color, or change in the luminance) installed inside the moving body, if an object to which attention must be paid during traveling of the moving body is detected in the surroundings of the moving body.
TECHNIQUES FOR CONSTRUCTING AND CONTROLLING A VEHICLE LIGHT ASSEMBLY
Constructing and controlling light assemblies in a vehicle interior. A light assembly is constructed by forming a PCB layer to have a shape that is based on a shape of a corresponding vehicle component. A set of light sources are mounted onto the PCB layer and the PCB layer is attached to the corresponding vehicle component. The light assembly is connected to a light controller that supplies power and control signals to the light sources. A lighting effects engine receives an input from a user or a vehicle sub-system, determines a lighting effect corresponding to the received input, retrieves a set of lighting routines associated with the lighting effect, and transmits the set of lighting routines to a set of light controllers. The set of light controllers collectively generate the lighting effect by applying/executing the received lighting routines on the set of light assemblies.
TECHNIQUES FOR CONSTRUCTING AND CONTROLLING A VEHICLE LIGHT ASSEMBLY
Constructing and controlling light assemblies in a vehicle interior. A light assembly is constructed by forming a PCB layer to have a shape that is based on a shape of a corresponding vehicle component. A set of light sources are mounted onto the PCB layer and the PCB layer is attached to the corresponding vehicle component. The light assembly is connected to a light controller that supplies power and control signals to the light sources. A lighting effects engine receives an input from a user or a vehicle sub-system, determines a lighting effect corresponding to the received input, retrieves a set of lighting routines associated with the lighting effect, and transmits the set of lighting routines to a set of light controllers. The set of light controllers collectively generate the lighting effect by applying/executing the received lighting routines on the set of light assemblies.
VEHICLE INTERIOR COMPONENT
A vehicle interior component configured to provide a user interface for interaction with a vehicle system is disclosed. The component may comprise a composite structure comprising a substrate, cover and functional layer. The user interface may comprise a light source/display and an input device comprising a switch and/or control element. The switch may project through a hole in the cover. The functional layer may comprise a soft layer, foam, fleece, fabric, textile, spacer, etc.; the functional layer may comprise a light-transmissive material. The light source/display may provide illumination through a light-transmissive section of the substrate, the functional layer and/or the cover. Illumination may indicate location of the input device. The light-transmissive section of the substrate may comprise illuminated display elements for the light display. Operation of the user interface may comprise an animation effect from illumination of display elements in a sequence.
VEHICLE INTERIOR COMPONENT
A vehicle interior component configured to provide a user interface for interaction with a vehicle system is disclosed. The component may comprise a composite structure comprising a substrate, cover and functional layer. The user interface may comprise a light source/display and an input device comprising a switch and/or control element. The switch may project through a hole in the cover. The functional layer may comprise a soft layer, foam, fleece, fabric, textile, spacer, etc.; the functional layer may comprise a light-transmissive material. The light source/display may provide illumination through a light-transmissive section of the substrate, the functional layer and/or the cover. Illumination may indicate location of the input device. The light-transmissive section of the substrate may comprise illuminated display elements for the light display. Operation of the user interface may comprise an animation effect from illumination of display elements in a sequence.
Infrared lamp having cut filter cut-on wavelength between starting stage peak wavelength and steady state peak wavelength
An infrared lamp 100 is composed of an LED 110 that emits infrared light and a cut filter 120 that transmits a part of the light from the LED 110. And a peak wavelength of the light emitted from the LED 110 in the lighting starting stage is set to be shorter than a cut-on wavelength of the cut filter 120.