Abstract:
Adevice (100) formeasuringfloatingmicro-organismsaccording to the present embodiment comprises an air flow path (250) through which air including floating micro-organisms flow, a first main body (210) which is provided on a side of the air flow path (250) and has a first space portion (231) and a second space portion (233), a second main body (220) which is provided on the other side of the air flow path (250) and in which a collecting portion (260) for collecting the floating micro-organisms are installed, a light emitting unit (310) which is installed in the first space portion (231) and emits a preset wavelength region of light toward the collecting portion (260), and a light receiving unit (370) which is installed on the second space portion (233) and detects a fluorescence signal generated from light which acts on riboflavin contained in the floating micro-organisms.
Abstract:
Disclosed is a user interface (200) apparatus for vehicle (100), including: a circuit part injection-molded body formed in an insert injection process in which first resin melt (1515,1525,1535) is injected when a circuit part is inserted; and a cover part injection-molded body formed in an insert injection process in which second resin melt (1515,1525,1535) is injected when a cover part is inserted, wherein the circuit part comprises: a light emitting unit (254); a touch sensor (213A) configured to detect a touch; a processor (270,370,470,821) configured to control the light emitting unit (254) in response to an event to generate light, activate the touch sensor (213A) in response to generation of the light, and generate a signal for controlling a vehicle (100) device in response to a touch input (210) which is received via the activated touch sensor (213A); and a transparent flexible printed circuit board (820,821) on which the light emitting unit (254), the touch sensor (213A), and the processor (270,370,470,821) are arranged, and wherein, in response to generation of the light, the cover part allows the light to pass therethrough and form a shape (890).
Abstract:
Provided is a wearable device including: a biological-signal sensing unit that senses a biological signal of a user; a vehicle-state sensing unit that senses a state where a vehicle that the user gets in is moved; and a controller that determines a parking mode and a parking direction using a result of the sensing by the vehicle-state sensing unit, when the vehicle is parked, and that measures a level of user tension for the parking mode and the parking direction that are determined using the biological signal that is sensed while the vehicle is being parked, in which the controller selects the parking mode and the parking direction that the user prefers, based on the measured level of user tension, and provides the user with information relating to a parking lot where the vehicle is able to be parked in the parking mode and the parking direction that are selected.
Abstract:
The present disclosure relates to a path providing device provided in a vehicle capable of communicating with at least one of a repeater and a server, and the path providing device may include a telecommunication control unit that performs communication with the repeater; and a processor that receives EHP information including at least one of an optimal path in units of lanes and field-of-view information for autonomous driving in which sensing information is merged with the optimal path from the repeater through the telecommunication control unit, and distributes the received EHP information to at least one electrical part provided in the vehicle.
Abstract:
Disclosed is a path providing device for providing a route to a vehicle. The path providing device may include a first communication module that receives a high-definition (HD) map from an external server, a second communication module that receives external information generated by an external device located within a predetermined range with respect to the vehicle, and a processor configured to generate forward path information for guiding a road ahead of the vehicle in lane units using the HD map and provide the forward path information to at least one of electric components provided in the vehicle. The processor may generate dynamic information related to an object to be sensed by at least one of the electric components provided in the vehicle based on the external information and match the dynamic information to the forward path information.
Abstract:
A water supply device, and a steam supply device and a cooking device including the same are disclosed. The disclosed invention comprises: a housing, which is installed in a body of a cooking device, has a receiving space formed therein, and has one longitudinal side open to the outside of the body; a water tank having a storage space formed therein to store water and an inlet port arranged at a front side thereof to form a passage for introducing water into the storage space, wherein the water tank is installed at the housing to be movable between an insertion position at which the inlet port is located in the receiving space and a withdrawal position in which the inlet port is exposed to the outside of the receiving space; and a connector which is installed at the housing so as to be movable in a longitudinal direction inside the receiving space, and moves in the longitudinal direction to move the water tank to the insertion position or the withdrawal position.