Abstract:
A user interface apparatus for a vehicle includes: a circuit part injection-molded body formed in an insert injection process in which first resin melt is injected while a circuit part is inserted; and a cover part injection-molded body coupled to the circuit part injection-molded body, and formed in an insert injection process in which second resin melt is injected while a cover part is inserted. The circuit part includes: a light emitting unit; a touch sensor that detects a touch input; and at least one processor that controls the light emitting unit in response to an event to generate light; activates the touch sensor in response to generation of the light; and generates a signal for controlling a vehicle device in response to a touch input. The cover part allows light generated by the light emitting unit to pass therethrough and illuminate a shape on the cover part.
Abstract:
A mobile terminal and a control method thereof are disclosed. A mobile terminal according to an embodiment of the present invention comprises: a sound output unit which outputs a sound corresponding to reproduction of a content; a setting unit which includes a plurality of noise blocking levels and sets at least one noise blocking level on the basis of a user input; and a control unit which, when the content is reproduced, blocks surrounding noise according to the set noise blocking level and, when a specific event is detected, adjusts the already set noise blocking level such that the degree of surrounding noise blocking is changed according to the detected specific event.
Abstract:
A digital device including a display unit, a communication unit, and a processor to control the display unit, wherein the processor extracts at least one keyword, designates the at least one keyword and extracts at least one application providing additional information.
Abstract:
A head mount display and method for outputting an output of the same are disclosed. The method includes outputting a first task from the head mount display, the first task including at least one of a first video output and a first audio output; recognizing a portable device, which outputs a second task including at least one of a second video output and a second audio output; determining whether the first and second video outputs are swapping targets, if the portable device is recognized; swapping the first video output with the second video output if the first and second video outputs are determined to be swapping targets; determining whether the first and second audio outputs are swapping targets, if the portable device is recognized; and swapping the first audio output with the second audio output if the first and second audio outputs are determined to be swapping targets.
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:
A smart watch is disclosed in which a part of the wrist of a user connected to the palm when the smart watch is worn by the user is constructed to be thin. According to an embodiment, the smart watch includes a display part configured to display digital content, a first connection part connected to one side of the display part, the first connection part including a camera unit, a second connection part connected to the other side of the display part, the second connection part including a battery unit, and a comfort part configured to connect the first connection part and the second connection part, wherein thickness of the comfort part is thinner than thickness of the display part, the first connection part, and the second connection part.
Abstract:
A method for controlling a portable device is provided. The method includes detecting bending of the portable device and determining whether to perform motion sensing correction due to the bending; acquiring a motion sensing correction factor for performing the motion sensing correction due to the bending; performing motion sensing correction of at least one motion sensor using the motion sensing correction factor; and controlling the portable device according to the corrected motion sensing.
Abstract:
A method for controlling a portable device is provided. The method includes detecting bending of the portable device and determining whether to perform motion sensing correction due to the bending; acquiring a motion sensing correction factor for performing the motion sensing correction due to the bending; performing motion sensing correction of at least one motion sensor using the motion sensing correction factor; and controlling the portable device according to the corrected motion sensing.
Abstract:
An ion generating device, a method for manufacturing an ion generating device, and an air conditioner are provided. The ion generating device may include a discharge electrode that generates ions, and a power supply that applies power to the discharge electrode. The discharge electrode may include a support formed of a conductor, and a discharge pin formed to protrude from a surface of the support and having a tip. The discharge pin may include nickel (Ni).
Abstract:
A signal receiver and an electronic apparatus including the same are disclosed. A signal receiver according to an embodiment of the present disclosure includes a first input interface to output a first type signal, second to fourth input interfaces to output the first type signal or the second type signal, a first buffer electrically connected to the first and the second input interfaces, a second buffer electrically connected to the second and the third input interfaces, a third buffer electrically connected to the third and the fourth input interfaces, and a fourth buffer electrically connected to the fourth and the second input interfaces. Accordingly, it is possible to simply implement a circuit for receiving a plurality of types of signals.