Abstract:
A method of controlling a wearable device according to one embodiment of the present specification can include the steps of displaying content on a display unit of the wearable device, sensing a tilt angle of the wearable device and providing a control interface providing control of the content. And, the step of providing the control interface can include the steps of mapping the control interface to the ground based on the sensed tilt angle and a state of the wearable device and displaying the mapped control interface on the display unit.
Abstract:
The method of a portable device may includes the steps of setting a first mode based on a first folding angle between the first body and the second body and a second folding angle between the first body and the third body, displaying a first application in the first mode, detecting change of the first folding angle and change of the second folding angle in the first mode, detecting the changed first folding angle being equal to or greater than a first threshold angle and the changed second folding angle less than a second threshold angle and if it is detected that a rear side of the second body is in a state of being contacted with a different real object, switching the first mode to a second mode.
Abstract:
A method for controlling the portable device may include detecting that the second body or the third body is folded to the first body and capturing an image by at least one of a first camera unit located in the second body and a second camera unit located in the third body. In this case, the first camera unit may capture an image of a first direction, and the second camera unit may capture an image of a second direction. In this case, the image may be captured based on a first capturing mode when the portable device is in an unfolded state, the image may be captured based on a second capturing mode when the portable device is in a first folded state, and the image may be captured based on a third capturing mode when the portable device is in a second folded state.
Abstract:
A smart watch and a control method thereof are disclosed. The smart watch includes a first sensor unit configured to detect whether the smart watch is worn; a display unit configured to display visual information; a second sensor unit configured to detect movement of the smart watch; and a processor configured to control the first sensor unit, the display unit, and the second sensor unit. In addition, the processor is further configured to: if a first movement of the smart watch is detected, obtain a direction and a distance of the first movement of the smart watch, and if the direction of the first movement is a first direction and the distance of the first movement is equal to or more than a first threshold distance, perform a first function corresponding to the first direction, if the direction of the first movement is a second direction and the distance of the first movement is equal to or more than the first threshold distance, perform a second function corresponding to the second direction. Furthermore, the first direction and the second direction are set based on a same axis. Lastly, the first direction is the opposite direction to the second direction.
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:
The present specification relates to a digital device providing touch rejection and a method of controlling therefor. A method of controlling a digital device having a single shape and an expand shape, comprising the steps of detecting a first touch input touching a first area of the digital device in the single shape, executing a first operation based on the detected first touch input, and cancelling the first operation upon detecting that the digital device is changed to the expand shape from the single shape while the first touch input is maintained.
Abstract:
A flexible glass display apparatus and a method for displaying image data in the apparatus are provided. The flexible glass display apparatus includes: a flexible glass display unit that displays image data portions; a sensing unit that detects bending of the display unit; another sensing unit that detects first and second areas which are brought into contact with each other due to bending of the display unit; and a controller, upon detection of contact between the first and second areas, controls at least one image data portion displayed in the first and second areas based on the contact, wherein an image data portion displayed in any one of the first and second areas is distinguishable in the other area.
Abstract:
To this end, according to one embodiment, the display device, comprising: a touch sensor unit; a display unit; a transparent display unit; a position sensor unit; and a processor configured to: detect the second touch input by activating the second touch sensor unit and control the first object displayed in the display unit based on the detected second touch input when a first position, and detect the first touch input and the third touch input respectively by activating the first touch sensor unit and the third touch sensor unit, control the first object displayed in the display unit based on the detected first touch input, and control the second object displayed in the transparent display unit based on the detected third touch input when a second position.
Abstract:
The present specification relates to a head mounted display (HMD) and a method of controlling therefor. More specifically, the present specification provides a method for a user wearing an HMD to recognize at least one object positioned at the front via a virtual map. The 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. 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.
Abstract:
A wearable device and a method for controlling display of the same are disclosed. Herein, the method for controlling the wearable device includes the steps of, when a contents or channel change in information currently being viewed through an external device occurs, determining whether or not the contents change corresponds to a change performed by a wearer of the wearable device, and, when it is determined that the contents change corresponds to a change performed by a viewer other than the wearer of the wearable device, displaying a content signal that was previously viewed prior to the contents change to the display means.