Abstract:
According to one embodiment of the present specification, if a notification is generated, a method of controlling a portable device includes the steps of sensing a state of the portable device using a sensor unit, if the portable device is in a first state, displaying content of the notification in a first display area or a second display area of a display unit and if the portable device is in a second state, displaying the content of the notification in the second display area of the display unit in a manner of reversing a left and right of the content of the notification.
Abstract:
A detachable head mounted display (HMD) device includes a display unit configured to display a user interface, a detached sensor unit configured to detect whether the HMD device has been affixed to eye-glasses, a sensor unit configured to detect an input signal generated when the eye-glasses to which the HMD device is affixed are touched, and a controller configured to control the display unit, the detached sensor unit, and the sensor unit. The controller is further configured to acquire identification information of the eye-glasses if the HMD device detects that the HMD device is affixed to the eye-glasses, to acquire a look up table related to the identification information, to acquire a control input related to the input signal from the look up table in response to the detected input signal, and to control the user interface to perform a function corresponding to the control input.
Abstract:
A display device and a method for controlling the same are disclosed in which a threshold range for generating a panorama image is indicated in accordance with a bending angle of a bending portion provided between a first area of a body provided with a first camera and a second area of a body provided with a second camera, whereby the panorama image may be generated using the first camera and the second camera.
Abstract:
Disclosed are a portable device and a control method thereof for convenient and accurate dimming control. The portable device includes a foldable display unit, a state sensor unit to detect folded and unfolded states of the foldable display unit, an input sensor unit to sense user input and a processor to control the respective units. The processor converts the portable device from a first dimming mode to a second dimming mode upon detection of change of the foldable display unit from the unfolded state to the folded state, perform dimming of the foldable display unit based on a dimming time different with the second dimming time when the user input is sensed in the second dimming mode within a second dimming time, and performs dimming of the foldable display unit after the second dimming time has passed when the user input is not sensed in the second dimming mode within the second dimming time.
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:
Disclosed is a control method of a vehicle, including displaying a first image sequence including plural images captured by a first camera unit and a first control interface on a first display unit, and displaying a second image sequence including plural images captured by a second camera unit and a second control interface on a second display unit. Here, the first display unit and the second display unit may be located in directions facing each other, and arrangement of control objects included in the first control interface and arrangement of control objects included in the second control interface may be differently set.
Abstract:
An apparatus including: an image sensor unit configured to convert a sensed hand-drawn sketch to a digital image, an image display unit configured to visualize the digital image to a virtual hand-drawn sketch, and a controller configured to sense a first hand-drawn sketch being drawn with a first sketching tool having a first sketching characteristics on a first sketching plane, store the sensed first hand-drawn sketch as a first digital image with the first sketching characteristics, visualize the stored first digital image as a first virtual hand-drawn sketch on a second sketching plane, sense a second hand-drawn sketch being drawn with a second sketching tool having a second sketching characteristics on the second sketching plane while the first virtual hand-drawn sketch is visualized on the second sketching plane, and store the sensed second hand-drawn sketch as a second digital image. The second digital image is stored with the first sketching characteristics, when the second hand-drawn sketch is a continued sketch of the first hand-drawn sketch.
Abstract:
A method for controlling a head mounted display (HMD) includes detecting an external device, displaying an augmented reality image as a first mode, changing the first mode to a second mode when the gaze of the user to the augmented reality image is detected in the first mode, and executing a function corresponding to the augmented reality image when the augmented reality image and the external device are aligned in the second mode. The first mode is a mode in which a display position of the augmented reality image depends on a position of the external device the second mode is a mode in which the display position of the augmented reality image remains fixed even when the position of the external device is changed.
Abstract:
A display device with a voice recognition capability may be used to allow a user to speak voice commands for controlling certain features of the display device. As a means for increasing operational efficiency, the display device may utilize a plurality of voice recognition units where each voice recognition unit may be assigned a specific task.
Abstract:
A foldable display device including a foldable display unit being in a folded state when the foldable display device is folded and being in an unfolded state when the foldable display device is unfolded, the foldable display unit being divided into a first area which is a border area, a second area which is a folding area and a third area located between the first area and the second area, touch sensor units of the first area, the second area and the third area configured to detect control input for the display unit, and a controller configured to control the display unit and the touch sensor units, wherein the controller is further configured to detect the state of the foldable display unit, and deactivate the touch sensor unit of the first area and activates the touch sensor units of the second area and the third area, when the foldable display unit is in the unfolded state.