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 method of controlling a portable device including a flip cover for covering a display unit according to one embodiment of the present specification includes the steps of detecting that the portable device operates in a standby mode and the flip cover is positioned in a closed position, wherein the flip cover contains an open window and wherein the open window exposes a first part of the display unit when the flip cover is positioned in a closed position, sensing an orientation of the portable device, detecting a first control input, when the orientation of the portable device corresponds to a first orientation, displaying predetermined information in the first part of the display unit and when the orientation of the portable device corresponds to a second orientation, activating the camera unit in response to the first control input and displaying a first preview image of the digital image sensed by the camera unit in the first part of the display unit.
Abstract:
The present specification relates to a digital device and a method of controlling therefor. According to one embodiment, the digital device includes a touch sensitive display unit configured to detect a touch input, a transparent cover unit, which is positioned in an open position or a closed position and overlapped with the touch sensitive display unit in the closed position and a processor configured to control the touch sensitive display unit, the processor is further configured to detect the touch input on a first position of the touch sensitive display unit, when the transparent cover unit is in the open position, alter location information of the touch input detected on the first position to a second position, when the transparent cover unit is in the closed position, alter the location information of the touch input detected on the first position to a third position.
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:
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.
Abstract:
A wearable computing device receiving at least one of visual information and audible information from an information providing device and providing the received information to a user is disclosed. The wearable computing device includes a detecting unit detecting a state of the wearable computing device and outputting detection information, a controller deciding whether the state of the wearable computing device corresponds to a first mode or a second mode based upon the detection information of the detecting unit, and controlling an output of the visual information and the audible information provided by the information providing device based upon the decided mode, a converter converting the visual information provided by the information providing device to audible information of a voice format when the state corresponds to the second mode, and an audible information output unit providing the audible information converted by the converter to the user.
Abstract:
A method of controlling a head mounted display (HMD) device according to one embodiment of the present specification includes the steps of detecting whether the head mounted display device is in a wearing mode or a non-wearing mode, if the head mounted display device is in the wearing mode, displaying the digital information with a first user interface format, and if the head mounted display device is in the non-wearing mode, displaying the digital information with a second user interface format, wherein the digital information displayed with the second user interface format corresponds to the digital information displayed in a manner of expanding the digital information displayed with the first user interface format.
Abstract:
A laundry treating apparatus includes a cabinet forming an external appearance of the laundry treating apparatus, an accommodation space provided in the cabinet to receive laundry, and a discharge portion allowing an interior of the accommodation space to communicate with an exterior of the cabinet and adapted to discharge air in the accommodation space from the cabinet. The laundry treating apparatus also includes a supply portion that supplies air into the accommodation space, and a shutoff portion adapted to open and close the discharge portion.
Abstract:
A vehicle configured to share a captured image with another vehicle, the vehicle including a first camera configured to capture the image; a first display; a second display; a speed sensor configured to sense a speed of the vehicle; a distance sensor configured to sense a vehicle-to-vehicle distance between the vehicle and a first vehicle immediately ahead of the vehicle; a transceiver configured to implement data communication between the vehicle and the first vehicle; and a processor configured to control the first camera, the first display, the distance sensor, the speed sensor and the transceiver. The processor is further configured to determine a state of the vehicle based on the speed of the vehicle and the vehicle-to-vehicle distance, display a first image captured by the first camera on the first display when the vehicle is in a first state, wherein the first state is a state in which the speed of the vehicle is equal to or greater than a first speed and less than a second speed, and the vehicle-to-vehicle distance is equal to or greater than a first distance and less than a second distance, display a second image captured by a second camera on the first display when the vehicle is in a second state, wherein the second state is a state in which the speed of the vehicle is equal to or greater than the second speed, and the vehicle-to-vehicle distance is equal to or greater than the second distance, and display the first image on the first display and the second image on the second display when the vehicle-to-vehicle distance is repeatedly increased and reduced within a predetermined time on the first distance or the second distance. In addition, the second camera is a camera installed in a second vehicle, the second vehicle being any one of one or more vehicles ahead of the vehicle.