Abstract:
The present specification relates to a portable device, a smart watch, which is used in a manner of being synchronized with the portable device, and a method of controlling therefor. According to one embodiment, the processor configured to detect a first external device including a second ID, if the second ID of the first external device is identical to the first ID of the portable device, the processor configured to include the first ID of the portable device in ID information, if the second ID of the first external device is different from the first ID of the portable device, the processor configured to include the second ID of the first external device in the ID information, the processor configured to transmit the data including the ID information to a second external device.
Abstract:
A method for controlling a display device, comprising, executing a first application and displaying an execution screen of the first application on a display unit, wherein the display unit includes a first display area and a second display area, and the execution screen of the application is displayed in at least one of the first display area and the second display area; and displaying a history screen including history information of the first application, wherein the history information is set up based upon a display mode, wherein first history information is displayed when the display mode of the first application corresponds to a single area mode, second history information is displayed when the display mode of the first application corresponds to an expand area mode, wherein the first history information has a display property different from the display property of the second history information.
Abstract:
A display device includes a display unit configured to display an image; a sensor unit configured to sense an input to the display device and to generate an input signal according to a sensed result; and a processor, wherein the processor is further configured to: provide a user interface for editing the displayed image, divide the image into a first area and a second area if a first input signal is detected, determine any one of the first area and the second area as a variable area having variable visibility if a second input signal is detected, switch the variable area to an invisible state and display an indicator indicating the invisible state of the variable area if a third input signal is detected, and switch the variable area in the invisible state to a visible state if a fourth input signal is detected.
Abstract:
Discussed are a smart watch and a control method thereof. The smart watch includes a rotation sensor unit configured to sense a rotation direction and a rotation speed of the smart watch; a display unit configured to display visual information; and a processor configured to control the rotation sensor unit and the display unit and detect a first snap motion and a second snap motion of the smart watch. The first snap motion is detected when the smart watch rotates on an axis of rotation of the smart watch in a first direction at a first threshold speed or more, and the second snap motion is detected when the smart watch rotates on the axis of rotation in the first direction at less than the first threshold speed and then rotates in a second direction at a second threshold speed or more within a predetermined time.
Abstract:
The display system displays, at a first position on the transparent flexible display unit, a first augmented reality object corresponding to a first real object forming a first angle relative to the camera unit, and displays, at a second position on the transparent flexible display unit, a second augmented reality object corresponding to a second real object forming a second angle relative to the camera unit, wherein, upon detecting bending of the transparent flexible display unit, the processor displays the first augmented reality object at a third position spaced a first distance apart from the first position, and displays the second augmented reality object at a fourth position spaced a second distance apart from the second position, wherein, when the first angle is greater than the second angle, the first distance is set to be greater than the second distance.
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:
The present specification relates to a display device and a method of controlling therefor. According to one embodiment of the present specification, a method of controlling a display device may include the steps of displaying a video image and a timeline interface corresponding to the video image, setting frames of which correlation is greater than a predetermined ratio among a plurality of frames included in the video image as a first frame group, setting a first point and a second point on the timeline interface based on the first frame group, setting a first panorama section between the set first point and the second point and displaying a first panorama interface corresponding to the first panorama section.
Abstract:
A bended display device according to the present specification comprises: a bended display which has a main region toward the front side of the device and a sub-region extending from the main region and having a predetermined curvature, and is capable of receiving input through a user's contact; and a control unit for controlling a function of the device, wherein the control unit can control so that when a user's first input for an icon of the application displayed on the sub-region is received through the bended display, the icon is transformed into a preset form of an image and is displayed on the sub-region, and when a user's second input for the image is received through the bended display, a function corresponding to the second input among the functions of the application can be performed.
Abstract:
Disclosed in the present specification are a foldable display device for displaying interconnected first and second contents respectively in a first display region and a second display region which are physically and visually separated by the folding of a housing part, and a method for controlling the same. The foldable display device according to the present invention is capable of further displaying a second content connected with a first content in a second display region facing the same direction as a first display region when the housing part is converted from a completely folded state to a half unfolded state during a period of displaying the first content in the first display region of at least two display regions which are physically or visually separated by the folding of the housing part in a state where the housing part is completely folded. The present specification allows a user to simultaneously identify the first content displayed in the first display region and the second content displayed in the second display region in the second state. Accordingly, the user can conveniently simultaneously compare at least two interconnected contents.
Abstract:
A display device and a control method are disclosed. The display device comprises: a flexible display unit capable of displaying an image in two directions; a camera unit, which is disposed in a first direction and receives as an input the image in the first direction; and a control unit, wherein the control unit can temporarily capture the image input in the first direction and display the temporarily captured image in the first direction on the flexible display unit in a second direction or a bent region of the flexible display unit when the region of the flexible display unit, which includes the camera unit, is bent in the second direction at an angle equal to or greater than a preset angle, so that the camera unit can receive as an input the image in the second direction, which is opposite the first direction.