Abstract:
The present specification relates to a display device and a method of controlling therefor. According to one embodiment of the present specification, a method of controlling a display device may include the steps of displaying a video image and a timeline interface corresponding to the video image, setting frames of which correlation is greater than a predetermined ratio among a plurality of frames included in the video image as a first frame group, setting a first point and a second point on the timeline interface based on the first frame group, setting a first panorama section between the set first point and the second point and displaying a first panorama interface corresponding to the first panorama section.
Abstract:
Disclosed is a control method of a wearable display device. The control method includes displaying at least one content at a first position on a display unit of the wearable display device, sensing at least one real object located outside of the wearable display device, identifying at least one event object by matching the at least one sensed real object with a predetermined object set, determining a second position on the display unit adjacent to a position on the display unit corresponding to the at least one identified event object and moving a display position of the at least one content from the first position to the determined second position on the display unit.
Abstract:
A display device having a scope of accreditation in cooperation with a depth of a virtual object and a controlling method thereof are disclosed in this specification. The display device according to this specification outputs a three-dimensional (3D) image including virtual objects. And a scope of accreditation accrediting (or recognizing) that a virtual object has been selected is configured in the virtual object. At this point, an area of a scope of accreditation may be configured to be in cooperation with a depth of a virtual object along an increasing or decreasing direction of the depth of the virtual object, wherein the depth of the virtual object indicates a distance level between the virtual object and a user's perspective within the 3D image.
Abstract:
A display device detecting pressure of a touch input is disclosed. The display device calibrates the pressure of the touch input based on a distance between a position where the display device is gripped and a position on which the touch input is received. By calibrating the pressure of the touch input, the display device can obtain more precise pressure of a touch input.
Abstract:
A display device including two or more display areas is disclosed. The display device includes a task bar between the two or more display areas. And, the task bar includes an icon and an indicator. The indicator indicates a display area to which an execution window of an application is assigned.
Abstract:
A display device is disclosed. The display device includes a sensor unit configured to sense an input to the display device, a display unit configured to display an image, a communication unit configured to perform communication with an external device, and a processor configured to control the sensor unit, the display unit and the communication unit, wherein the processor detects a touch input of a first input state to the display unit, the first input state being a touch input state detected with the external device worn on a user's body, detects content displayed by the external device worn on the user's body, the content being displayed at a plurality of executing levels, detects that the displayed content is first content displayed at a first executing level, receives, from the external device, second content using the communication unit, the second content being displayed at a lower executing level of the first executing level, and displays the received second content on the display unit.
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:
The display system displays, at a first position on the transparent flexible display unit, a first augmented reality object corresponding to a first real object forming a first angle relative to the camera unit, and displays, at a second position on the transparent flexible display unit, a second augmented reality object corresponding to a second real object forming a second angle relative to the camera unit, wherein, upon detecting bending of the transparent flexible display unit, the processor displays the first augmented reality object at a third position spaced a first distance apart from the first position, and displays the second augmented reality object at a fourth position spaced a second distance apart from the second position, wherein, when the first angle is greater than the second angle, the first distance is set to be greater than the second distance.
Abstract:
Disclosed are a display apparatus and a control method thereof. The display apparatus includes a transparent display unit to display content including a first part and a second part based on a first direction in which a first user is located, a sensor unit to receive information sensed in a second direction opposite to the first direction, and a controller to implement mirror flipping the second part to be displayed in the second direction according to the received sensed information. The transparent display unit displays the first part in the first direction and the mirror flipped second part. The first part and the second part are included in the same content, the first part is set to maintain the first direction, and the second part is set to be mirror flipped based on the second direction.
Abstract:
A method for controlling a portable device is disclosed. The method includes displaying a plurality of augmented reality (AR) images, detecting a gaze of a user, determining a target object based on the gaze of the user, identifying an associated AR image that is associated with the target object and a non-associated AR image that is not associated with the target object from the plural AR images, and maintaining display of the associated AR image and terminating display of the non-associated AR image when the target object is a moving object.