Abstract:
A method of controlling a smart watch including a case and a band connected to the case is disclosed. The method includes displaying digital content on a display unit provided on a front surface of the case, detecting a length of a non-displayed portion of the digital content on the display unit, and generating first tactile feedback corresponding to the length of the non-displayed portion of the digital content on the display unit on a back surface of the band.
Abstract:
A method of controlling a head mounted display (HMD) according to one embodiment of the present specification includes the steps of detecting a first contact contacted with a nose pad of the HMD, detecting a second contact contacted with a temple of the HMD, if the first contact and the second contact are detected, operating in a wearing mode to activate a display unit and an audio input unit, if the first contact is not detected and the second contact is detected, operating in a mute mode to activate the display unit and inactivate the audio input unit, and if the first contact and the second contact are not detected, operating in a non-wearing mode to inactivate the display unit and the audio input unit.
Abstract:
The present specification relates to a smart watch, a display device, and a method of controlling therefor, and more particularly, if a display unit of the smart watch and a display unit of the display device face an identical direction, to a method of providing contents related to each other to each of the display units. The smart watch includes a communication unit to transmit a connection signal and a position state of the smart watch to a display device and receive an execution signal of a first content from the display device, a display unit to display the first content, a sensor unit to detect the position state of the smart watch, a camera unit to sense an image in a front direction, and a processor to control the communication unit, the display unit, the sensor unit, and the camera unit and execute a received control signal.
Abstract:
A head mounted display (HMD) is disclosed. The HMD includes a camera unit configured to capture an image; a display unit configured to display an information image; and a processor configured to control the camera unit and the display unit, wherein the processor is further configured to: detect an object using the camera unit, wherein the object has a staring state in which the object substantially stares at a wearer wearing the HMD and an unstaring state in which the object does not substantially stares at the wearer, display a first information image when the object in the staring state is detected, display a second information image when the object in the unstaring state is detected, and wherein the first information image includes at least one of a different amount of displayed information from the second information image and a different displaying location from the second information image.
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 foldable display device and method for controlling the foldable display device are discussed. The method includes detecting a state of a foldable display unit, the 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; and deactivating a touch sensor unit of the first area and activating touch sensor units of the second area and the third area, when the foldable display unit is gripped in the unfolded state.
Abstract:
A display device is disclosed. A display device according to an embodiment of the present specification includes a display unit configured to display visual information, a camera unit configured to capture an image in front of the display device, a sensor unit configured to sense user input applied to the display device, and a control unit configured to control the display device, wherein the control unit detects at least one user from the captured image, maintains display of the visual information and processes received user input when the detected user includes a predetermined master user, the control unit detects at least one user from the captured image, maintains display of the visual information and does not process the received user input when the detected user does not include the predetermined master user, and the control unit deactivates the display unit when no user is detected in the captured image.
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:
A digital device according to an embodiment includes a sensor unit configured to sense a user input to the digital device and to provide a signal corresponding to a sensed result to a processor, a camera unit configured to acquire an image, a display unit configured to display the acquired image, and the processor configured to control the sensor unit, the camera unit, and the display unit. The processor is further configured to: display the image acquired through the camera unit on the display unit, and provide a preview interface indicating a to-be-captured area in the displayed image, wherein the preview interface includes a first frame indicating a preview area of a first picture and a second frame indicating a preview area of a second picture.
Abstract:
A method for controlling a foldable display device includes detecting a state of a foldable display unit, the 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, and 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, deactivating touch sensor units of the first area and the second area and activating a touch sensor unit of the third area, if the foldable display unit is in the folded state, and deactivating the touch sensor unit of the first area and activating the touch sensor units of the second area and the third area, if the foldable display unit is in the unfolded state.