Abstract:
A head mounted display (HMD) including a display unit configured to display an augmented reality image; a communication unit configured to communicate with an external device; a gaze detection unit configured to detect a gaze of a user; and a processor configured to execute a function corresponding to the augmented reality image when the augmented reality image and the external device are aligned in a first mode. Further, the first mode is a mode in which a display position of the augmented reality image remains fixed even when a position of the external device is changed, and transmit control information for displaying an execution image of the function to the external device.
Abstract:
The present specification discloses a foldable display device displaying stored images by a folding or unfolding action of a foldable housing and a method of controlling therefor. The foldable display device according to the present specification includes a display unit including a first display area spatially or visually separated by the folding or unfolding action of the foldable housing. When the first display area changes a state from a state of facing a second direction (e.g., user direction) to a state of facing a first direction (e.g., third party direction), stored images are displayed on the first display area. By doing so, a third party can easily check the stored images displayed on the first display area.
Abstract:
A portable device and a method for controlling the same are disclosed herein. The method includes the steps of detecting a folded state, wherein the first body is folded to the second body, displaying a first interface on a side display area, wherein the first interface is configured of a first part and a second part and includes multiple objects, detecting a first control input configured to select a first object included in the first interface, and displaying a first application respective to the first object, when a first triggering signal configured to shift the portable device from the folded state to an unfolded state is detected.
Abstract:
Disclosed is a display device providing a user interface to switch a control object of a pointer from the display device to an external transparent display device. The display device includes a display unit including a first display area, a communication unit to communicate with an external transparent display device including a second display area, and a control unit. The control unit receives a pointer control signal, detects a first area among the first display area overlapped by the external transparent display device, sets a user interface to a position proximate to at least a portion of the edge of the first area, transmits the pointer control signal to the external transparent display device when the pointer overlaps at least a portion of the user interface, and transmits no pointer control signal when the pointer moves into the first area in a path not passing through the user interface.
Abstract:
Disclosed is a vehicle, which senses a speed of the vehicle using a speed sensor unit and also senses a vehicle-to-vehicle distance between the vehicle and a first vehicle immediately ahead of the vehicle using a distance sensor unit and then determines a state of the vehicle based on the speed of the vehicle and the vehicle-to-vehicle distance. In this case, when the vehicle is in a first state, the vehicle displays a first image captured by a first camera unit on a first display unit. In addition, when the vehicle is in a second state, the vehicle displays a second image captured by a second camera unit on the first display unit. Here, the second camera unit is a camera unit stalled in a second vehicle, and the second vehicle being any one of one or more vehicles ahead of the vehicle.
Abstract:
A control method of a head mounted display (HMD) is disclosed. The control method includes detecting a first route of a first moving object and a second route of a second moving object in front of the HMD, detecting a third route along which a user's eye gaze moves, setting the first moving object as a reference object if the detected first route identical with the detected third route, setting the second moving object as the reference object if the detected second route identical with the detected third route, and setting a focus of the camera unit on the set reference object based on a route of the set reference object and the detected third route.
Abstract:
A method of controlling a head mounted display (HMD) according to one embodiment of the present specification includes performing a first operation, receiving a first voice input through an audio input unit, processing the first voice input with respect to the first operation while a first contact is detected through a first sensor positioned at a nose pad of the HMD, detecting the first contact being released through the first sensor positioned at a nose pad of the HMD, receiving a second voice input through the audio input unit while the first contact is released, and performing a second operation according to the received second voice input.
Abstract:
Disclosed is a display device including a display unit to display at least 3D object having different depths, a touch sensor unit to sense a touch input on the display unit, a tactile feedback unit to generate a tactile feedback corresponding to the 3D object, and a processor to control these units. The processor enables a tactile feedback function. If the touch input is sensed, the processor determines whether or not a first touch position as a position of the sensed touch input is within a first display area of a first 3D object having a first depth. If the first touch position is within the first display area, the processor regulates the first depth to make a first surface of the 3D object coincide with a surface of the display unit, and generates a first tactile feedback corresponding to the 3D object.
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:
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.