Abstract:
A method for controlling a digital device according to an exemplary embodiment of the present specification may include may include a step of activating a display unit, when a first input is detected in a Standby mode, wherein the display unit is deactivated, a step of activating the display unit, when a second control input is detected in the Standby mode, wherein the display unit is deactivated, and displaying a quick control menu based upon a position where the second control input is detected, a step of detecting a third control input selecting the quick control menu, and a step of displaying an execution screen of the application respective to the third control input, and, herein, the first control input and the second control input may each include two parts, and the first control input and the second control input may be partially identical to one another.
Abstract:
A display device detecting pressure of a touch input is disclosed. The display device calibrates the pressure of the touch input based on a distance between a position where the display device is gripped and a position on which the touch input is received. By calibrating the pressure of the touch input, the display device can obtain more precise pressure of a touch input.
Abstract:
A display device including two or more display areas is disclosed. The display device includes a task bar between the two or more display areas. And, the task bar includes an icon and an indicator. The indicator indicates a display area to which an execution window of an application is assigned.
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 portable device including a display unit, a control button and a controller. The display unit displays an execution screen of an application of the portable device. The control button receives a control input including at least one of a fingerprint input corresponding to a security authentication for the application and a push input corresponding to a cancel function. The controller displays a security authentication screen of the application, for which the fingerprint input is needed, receives a first control input including a first fingerprint input and a first push input when the security authentication screen of the application is displayed, and recognizes the first fingerprint input of the first control input by activating a fingerprint recognition function when the first fingerprint input is detected for more than a first threshold time and the first push input of the first control input is not detected.
Abstract:
Disclosed is a control method of a vehicle, including displaying a first image sequence including plural images captured by a first camera unit and a first control interface on a first display unit, and displaying a second image sequence including plural images captured by a second camera unit and a second control interface on a second display unit. Here, the first display unit and the second display unit may be located in directions facing each other, and arrangement of control objects included in the first control interface and arrangement of control objects included in the second control interface may be differently set.
Abstract:
A head mounted display (HMD) configured to provide a surrounding image is disclosed. The HMD includes a display unit configured to display a section of the surrounding image corresponding to a front direction of the HMD, a first sensor group including at least one sensor configured to sense motion of the HMD, a second sensor group including at least one sensor provided to the HMD to capture a circumjacent image, and a processor configured to control the display unit, the first sensor group and the second sensor group to acquire first sensing information from the first sensor group and second sensing information from the second sensor group, wherein the processor detects a state of the HMD using at least one of the first sensing information and the second sensing information, the state of the HMD including a static state in which an absolute position of the HMD does not change and a moving state in which the absolute position changes, detects, when the state of the HMD is detected as the static state, a direction in which a front of the HMD faces based on the first sensing information or on the first sensing information and the second sensing information, detects, when the state of the HMD is detected as the moving state, the direction in which the front of the HMD faces based on the second sensing information or based on the second sensing information and the corrected first sensing information, and displays an image of a section of the surrounding image corresponding to the detected direction.
Abstract:
A flexible display device including a flexible display unit; and a controller configured to receive a first touch input at a first position on the flexible display unit in a flat state, store, in a memory, first position information of the first touch input that is offset a first predetermined amount from the first position, receive a second touch input at the first position on the flexible display unit in a first bent state, and store, in the memory, second position information of the second touch input that is offset a second predetermined amount from the first position. Further, the first predetermined amount of offset is greater than the second predetermined amount of offset.
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 method for controlling a head mounted display (HMD) includes detecting an external device, displaying an augmented reality image as a first mode, changing the first mode to a second mode when the gaze of the user to the augmented reality image is detected in the first mode, and executing a function corresponding to the augmented reality image when the augmented reality image and the external device are aligned in the second mode. The first mode is a mode in which a display position of the augmented reality image depends on a position of the external device the second mode is a mode in which the display position of the augmented reality image remains fixed even when the position of the external device is changed.