Abstract:
The present disclosure provides a mobile terminal including a pair of bodies being folded around a hinge portion, a sensing unit for sensing a folded angle of the bodies, an obtaining unit for obtaining external information, a display for outputting visual information, and a controller connected to the sensing unit, the obtaining unit, and the display, wherein the controller controls the sensing unit to sense the continuously varying folded angle of the bodies, and controls the obtaining unit to obtain the external information corresponding to the sensed folded angle.
Abstract:
Disclosed are a posture detection device and a posture detection method that can identify a user and determine the posture of a user by using artificial intelligence technology. An operation method of an electronic device to which artificial intelligence technology is applied includes acquiring sensing data measured by each of a plurality of sensors, determining whether a posture of a user is changed on the basis of the sensing data, acquiring statistical sensing data by statistically processing the sensing data when it is determined that the posture is changed, and identifying the user and determining the posture of the user on the basis of the statistical sensing data. With the use of an artificial intelligence machine learning technology, it is possible to improve posture determination accuracy and user identification accuracy.
Abstract:
A human body sensing mat can sense the movement of a human body and analyze a user's sleep. The human body sensing mat may include a substrate; a plurality of fiber sensors for generating signals according to a distance to a specific object; a sensor array disposed on the substrate; a shield layer for covering the sensor array; and a driving unit for applying a voltage to the sensor array. Each of the fiber sensors is disposed on a central portion of the substrate and on both ends of the substrate. The fiber sensors that are respectively disposed in the central portion and end portions of the mat can sense the user's breathing, tossing and turning, and the like regardless of the user's posture. Accordingly, the user's sleep can be analyzed regardless of the user's posture.
Abstract:
The present application discloses a smart device comprising a temperature sensor, and a method for controlling the same. The present application relates to a smart device comprising a temperature sensor for measuring the temperature of a certain object at a position spaced a certain distance from the object and having a measurement range varying according to the distance from the object. The present application provides a method for controlling a smart device comprising the steps of: measuring a distance from the smart device to the object for measuring the temperature of the object; if the measurement range of the temperature sensor at the measured position is not placed within the object, notifying a user that the temperature of the object cannot be measured; and directing the user to place the measurement range within the object.
Abstract:
A mobile terminal including a display; a sensor configured to sense a plurality of touch inputs on the display and to sense a fingerprint of at least one finger applying the touch inputs to the display; and a controller configured to enter the mobile terminal into a locked state, and release the locked state of the mobile terminal when the plurality of touch inputs match a preset pattern and the sensed fingerprint matches registered fingerprint information.
Abstract:
The present invention relates to a mobile terminal capable of utilizing, as a control use, an hour hand and a minute hand, and a control method therefor. To this end, the mobile terminal can comprise a display unit for outputting information, and a control unit for controlling the outputting, through the display unit, of information corresponding to a time indicated by the hour hand and the minute hand, if a first touch input for outputting the hour hand the minute hand through the display unit is received or if a second touch input for dragging any one of the hour hand and the minute hand outputted through the display unit is received.
Abstract:
The present disclosure relates to a mobile terminal and a control method therefore which can control the function of the mobile terminal according to external force. The mobile terminal, according to one embodiment of the present invention, comprises: a terminal body; an acceleration sensor for detecting taps tapping on an object by using the movement of the body, and generating a control signal when a multiple number of taps are detected within a time limit; and a control unit for controlling at least one among function capable of being executed on the terminal in response to the control signal.
Abstract:
A user terminal device, and a method of controlling a user terminal device are discussed. The user terminal device includes an ear accessory of the user terminal device including a first electrocardiogram (ECG) electrode contacted with an ear of a user, a second ECG electrode contacted with a hand of the user, and a first speaker configured to output an audio signal; a display; and a controller configured to display, on the display, bio information based on a first ECG signal from the first ECG electrode when the ear of the user is contacted with the first ECG electrode, and control an audio playback in response to a second ECG signal from the second ECG electrode when the hand of the user is contacted with the second ECG electrode.
Abstract:
Provided is a mobile terminal. The mobile terminal includes: a display unit disposed at a front of the mobile terminal; a front proximity sensor disposed at the front of the mobile terminal; a back proximity sensor disposed at a back of the mobile terminal; and a control unit performing an operation by using a detection result of the back proximity sensor.
Abstract:
Disclosed are a glass type terminal capable of supporting gestures using one finger or two fingers by providing a three-dimensional input device at a temple hinged to a rim of a lens, and an input method thereof. For three-dimensional touch inputs, the temple is configured to have an upper surface, a lower surface, an inner side surface and an outer side surface provided touch sensor, respectively. Upon sensing of a touch input applied onto said one or more surfaces of the temple using one finger or two fingers, a screen displayed on a lens is controlled in correspondence to the sensed touch input. Under such configuration, a user can control the screen in a more convenient manner.