Abstract:
The present specification relates to a wearable display and a method of controlling therefor, and more particularly, to a method of recognizing eyes of a user of the wearable display device, postponing updating the displayed visual information when the recognized eyes are in a state of eyes-opened, and updating the displayed visual information when the state of eyes-opened is switched to a state of eyes-closed.
Abstract:
Disclosed is a digital device controlling an unmanned aerial vehicle to provide a flight trajectory feedback based on at least one of an application and a task of the application. The digital device includes a communication unit configured to communicate with an unmanned aerial vehicle, a display unit, and a processor configured to control the communication unit and the display unit. The processor is further configured to transmit application data including information of at least one of an application executed by the digital device and/or a task of the application to the unmanned aerial vehicle through the communication unit. The application data causes the unmanned aerial vehicle to provide a flight trajectory feedback determined based on the application data. The flight trajectory feedback is one of plural predetermined flight trajectory feedbacks and displays at least one of the application and the task pairing with the unmanned aerial vehicle.
Abstract:
Provided is a mobile terminal. The mobile terminal including: a body including a front surface, a side surface and a rear surface, a touch screen including a first region that is disposed on the front surface and formed to have a first curvature and a second region that is disposed on the side surface and extending from the first region and formed to have a second curvature, a sensing unit configured to sense a touch input applied to the touch screen; and a control unit configured to: display on the first region of the touch screen at least a portion of an execution screen of an application, detect a touch input applied to the execution screen, and display on an interface region located between the first region and the second region at least a portion of a graphic object associated with control of an execution screen.
Abstract:
A mobile terminal disclosed herein includes a terminal body that is configured to be deformable by an external force, a deformation sensor that is configured to sense a folded state and an unfolded state of the terminal body, a display unit that is mounted to the terminal body and configured to output screen information in the unfolded state, a touch sensor that is located on a folding edge area of the terminal body which is deformed upon conversion into the folded state, and configured to sense a user's touch input, and a controller that is configured to control the display unit to output divided screen information when the unfolded state is converted into the folded state after the touch input applied along the folding edge area is sensed in the folded state.
Abstract:
A micro-head mounted display device that may be detachably affixed to eye-glasses and a method for controlling the same are disclosed. A method for controlling a detachable HMD device, detecting that the HMD device is affixed to eye-glasses, acquiring identification information of the eye-glasses, acquiring a look up table related to the identification information, receiving an input signal generated when the eye-glasses to which the HMD device is affixed are touched, from the sensor unit, acquiring a control input related to the input signal from the look up table, and performing a function corresponding to the control input.
Abstract:
The present specification relates to a head mounted display and a method of controlling therefor. More specifically, the present specification provides a method for a user wearing a head mounted display to recognize at least one object positioned at the front via a virtual map. In one embodiment, a head mounted display (HMD) includes a display unit configured to display visual information, a position sensing unit configured to sense a position of the HMD, a camera unit configured to sense at least one object positioned at the front of the HMD, and a processor configured to control the display unit, the position sensing unit, and the camera unit, wherein the processor is further configured to: obtain position information of the HMD, generate a first virtual map indicating a virtual object corresponding to the at least one object positioned at the front of the HMD, based on the position information of the HMD, and display the first virtual map, wherein the first virtual map corresponds to a curved map which is displayed on top of a first object and wherein a degree of a slope of the curved map increases as a distance from the HMD increases.
Abstract:
A wearable device and a method for controlling the same are disclosed herein. The wearable device, comprising a bio-signal sensor unit configured to sense a bio-signal; a storage unit configured to store data; and a processor configured to control the bio-signal sensor unit and the storage unit, wherein the processor is further configured to: generate first reference data including a weight of a first reference object and a first bio-signal being generated by holding the first reference object when the first bio-signal is detected, generate measurement data including a second bio-signal being generated by holding a measurement object, when the second bio-signal is detected, and obtain a weight of the measurement object by comparing the measurement data with the first reference data.
Abstract:
There are disclosed a wearable computing device and a method for a user interface. The wearable computing device includes a drowsiness detection unit configured to detect a user's drowsiness; a controller configured to determine whether a current situation corresponds to a first mode not allowing the user's drowsiness or a second mode allowing the user's drowsiness when the user's drowsiness is detected; and a feedback output unit configured to provide the user with at least one feedback comprising a message of the first mode or the second mode according to the mode determined by the controller, wherein the message of the first mode is to fight off the drowsiness and wherein the message of the second mode is to help the user's sleep.
Abstract:
Disclosed herein are a wearable display device and a method for controlling an augmented reality layer. The wearable display device may include a display unit configured to display a first virtual object belonging to a first layer and a second virtual object belonging to a second layer, a camera unit configured to capture an image of a user's face, a sensor unit configured to sense whether or not the user is turning his (or her) head, and a controller configured to move a virtual object belonging to a layer being gazed upon by the user's eye-gaze, when at least one of a turning of the user's head and a movement in the user's eye-gaze is identified based upon the image of the user's face captured by the camera unit and information sensed by the sensor unit, and when the user's eye-gaze is gazing upon any one of the first virtual object belonging to the first layer and the second virtual object belonging to the second layer.
Abstract:
A digital device and a method for controlling the same are disclosed, in which different kinds of information on an event is provided to a user depending on whether an external device paired with the digital device has identified a notification related to an event occurring in the digital device within a predetermined period.