Abstract:
A method for controlling a wearable device including a display, the method including changing a content currently displayed on an external device from a first content to a second content different from the first content; determining, via a controller, whether the changing the content is performed by a wearer of the wearable device; and displaying the first content on the display of the wearable device to be viewed by the wearer if it is determined that the changing the content is performed by a person other than the wearer of the wearable device, further during the displaying the first content on the display, the first content is displayed only on the display of the wearable device.
Abstract:
A mobile terminal according to the present invention, if it is determined that external power is being supplied through an external charging port, a controller controls the power supply unit to charge the cable-type battery by using the external power. If it is determined that the external power is not supplied, the controller controls the power supply unit to charge the main battery by using a cable-type battery embedded in an earphone.
Abstract:
Discussed are a smart watch and a control method for the same, which provide a notification indicating events, which are scheduled to occur later on the basis of a take-off time, if the smart watch is taken off. The smart watch includes a display unit to display content, a communication unit to perform transmission/reception of data, and a sensor unit to detect an input signal with regard to the smart watch and transmit the signal to a processor that serves to control the aforementioned units. The processor detects a take-off signal, indicating separation of the smart watch from a user, in a worn mode, to switch the smart watch to an unworn mode in response to the detected take-off signal, and provides a notification indicating at least one event that is scheduled to occur after detecting the take-off signal in the unworn mode.
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 herein are a head-mounted display and a method of controlling the same, more particularly, a method of displaying an image preview interface based on the position of a camera unit in the case that the camera unit mounted to a head-mounted display is detached.
Abstract:
A head mounted display (HMD) device according to one embodiment comprises a communication unit configured to transmit and receive data; a display unit configured to display visual information; a camera unit configured to capture an image; and a processor configured to control the communication unit, the display unit and the camera unit, wherein the processor is further configured to: detect an object image from a first image, which includes the object image, the first image being displayed in an external device located in an angle of view area of the camera unit, display information related to the object image, and display the first image in addition to the information when detecting that the first image is switched to a second image, which does not include the object image.
Abstract:
The present specification discloses a method for controlling a thumbnail image page including thumbnail images with respect to visual information for which security is set, and a digital device using the same. The digital device according to the present specification provides a first thumbnail image page mode (“first mode” hereinafter) to a display unit when security information on a user corresponds to predetermined security information and provides a second thumbnail image page mode (“second mode” hereinafter) to the display unit when the security information on the user does not correspond to the predetermined security information. For example, the thumbnail image page displays thumbnail images with respect to visual information for which security is set in the first mode, whereas the thumbnail image page does not display thumbnail images with respect to visual information for which security is set in the second mode.
Abstract:
The present specification is related to a digital device including a front side display unit and a back side display unit and a method of controlling therefor, more particularly, to a method of controlling an application in the back side display unit by rotating an icon corresponding to the application in the front side display unit and a digital device therefor.
Abstract:
A portable device and a method for controlling the same are disclosed, in which a user may set a timer or alarm more conveniently and more exactly. The portable device comprises a display unit, a sensor unit configured to sense a touch input for the display unit, and a processor configured to control the display unit and the sensor unit, wherein the processor is further configured to display an unlock interface for unlocking a lock state when the portable device is in the lock state, the unlock interface including a current time indicator displaying current time information, the current time indicator including a first zone indicating current hour unit information and a second zone indicating current minute unit information.
Abstract:
A method for controlling a portable device is provided. The method includes detecting bending of the portable device and determining whether to perform motion sensing correction due to the bending; acquiring a motion sensing correction factor for performing the motion sensing correction due to the bending; performing motion sensing correction of at least one motion sensor using the motion sensing correction factor; and controlling the portable device according to the corrected motion sensing.