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:
A mobile device includes a camera unit configured to sense an image; a display unit configured to display the image; a sensor unit configured to detect an input signal and transmit the detected input signal to a processor; a storage unit; and the processor configured to control the display unit, the camera unit, the sensor unit, wherein the processor is further configured to: provide an image capturing interface displaying the image sensed by the camera unit, display a pattern code indicator when a pattern code is recognized from the image, store the image in the storage unit in response to a first input signal, and store data linked to the pattern code in the storage unit in response to a second input signal.
Abstract:
According to one embodiment disclosed to achieve the aforementioned object, the present specification provides a method of controlling a portable device including the steps of if the portable device is a first mode to lock the portable device, detecting an unlocking triggering signal, if the unlocking triggering signal is detected, converting the portable device to a second mode to display an unlocking interface in the expandable display, if a touch input signal for the unlocking interface is detected when the portable device is the second mode, recognizing a touch input pattern from the detected touch input, displaying the unlocking interface by reflecting to the touch input pattern and if the touch input pattern is matched with a pre-set pattern, converting the portable device to a third mode to unlock the portable device, and if the expandable display expands when the portable device is the second mode, displaying the unlocking interface by reflecting to an expansion of the expandable display and if a degree of expansion of the expandable display is greater than a threshold, converting the portable device to the third mode.
Abstract:
A portable device including an index display region and a method for controlling the same are disclosed. A method for controlling a portable device includes displaying a first layer from among a plurality of layers on a first display region located at a front surface of the portable device; displaying an index of the plurality of layers on a second display region located at a lateral surface of the portable device; determining a user-viewed display region from among the first display region and the second display region; detecting a first control input to the first display region; and controlling the first layer displayed on the first display region in response to the first control input when a user gazes at the first display region, or controlling the index displayed on the second display region in response to the first control input when the user gazes at the second display region.
Abstract:
A portable device and a method for controlling the same are disclosed, which senses an image including a pattern code. The mobile device includes a camera unit configured to sense an image; a display unit configured to display the image; a sensor unit configured to detect an input signal and transmit the detected input signal to a processor; and the processor configured to control the display unit, the camera unit and the sensor unit, wherein the processor further configured to: provide an image capturing interface, wherein the image capturing interface displays the image sensed by the camera unit and an image capturing trigger for storing the image, simultaneously display a pattern code trigger for storing information of a pattern code in the image capturing interface only when the pattern code is recognized from the image.
Abstract:
Disclosed is a digital device controlling an unmanned aerial vehicle to provide a flight trajectory feedback based on at least one of an application and a task of the application. The digital device includes a communication unit configured to communicate with an unmanned aerial vehicle, a display unit, and a processor configured to control the communication unit and the display unit. The processor is further configured to transmit application data including information of at least one of an application executed by the digital device and/or a task of the application to the unmanned aerial vehicle through the communication unit. The application data causes the unmanned aerial vehicle to provide a flight trajectory feedback determined based on the application data. The flight trajectory feedback is one of plural predetermined flight trajectory feedbacks and displays at least one of the application and the task pairing with the unmanned aerial vehicle.
Abstract:
A digital image processing apparatus, system and a control method thereof are disclosed. The digital image processing apparatus includes an image sensor unit to sense hand-drawn information, a display unit to display complete information including the sensed information as partial information, a communication unit to transmit selected complete information among the complete information to a server and a controller. The controller controls the display unit so as to display the complete information by searching for the complete information, and also controls the display unit so as to display the selected complete information when one of the retrieved complete information is selected. The controller senses a hand-drawn marker and, when the sensed marker is a sharing attribute marker, links the sharing attribute marker with the selected complete information and controls the communication unit so as to transmit the selected complete information along with the sharing attribute marker.
Abstract:
An apparatus and method of providing a user interface (UI) on head mounted display and the head mounted display (HMD) thereof are discussed. The apparatus comprises a sensor unit detecting whether an object exists in the proximity of the HMD and if the object is detected, the sensor unit senses a distance between the object and the HMD. The apparatus further comprises a processor controlling a User Interface (UI) of the HMD based on a result of the sensor unit. A physical User Interface (UI) mode is applied if the detected object is within a predetermined distance from the HMD and a non-physical User Interface (UI) mode is applied if the object is not detected or is not within the predetermined distance from the HMD.
Abstract:
A method of controlling a foldable display device according to one embodiment of the present specification can include the steps of displaying a first image in a first area, a second image in a second area, and a third image in a third area in a mode that a foldable display device is not folded, wherein the first area is positioned at the center of the foldable display device, the second area is positioned at the left of the first area, and the third area is positioned at the right of the first area, detecting that the second area or the third area of the foldable display device is folded, if the second area is folded, assigning the first image to a first image layer of the first area and assigning the second image of the folded second area to a second image layer of the first area.
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.