Abstract:
A vehicle configured to share a captured image with another vehicle, the vehicle including a first camera configured to capture the image; a first display; a second display; a speed sensor configured to sense a speed of the vehicle; a distance sensor configured to sense a vehicle-to-vehicle distance between the vehicle and a first vehicle immediately ahead of the vehicle; a transceiver configured to implement data communication between the vehicle and the first vehicle; and a processor configured to control the first camera, the first display, the distance sensor, the speed sensor and the transceiver. The processor is further configured to determine a state of the vehicle based on the speed of the vehicle and the vehicle-to-vehicle distance, display a first image captured by the first camera on the first display when the vehicle is in a first state, wherein the first state is a state in which the speed of the vehicle is equal to or greater than a first speed and less than a second speed, and the vehicle-to-vehicle distance is equal to or greater than a first distance and less than a second distance, display a second image captured by a second camera on the first display when the vehicle is in a second state, wherein the second state is a state in which the speed of the vehicle is equal to or greater than the second speed, and the vehicle-to-vehicle distance is equal to or greater than the second distance, and display the first image on the first display and the second image on the second display when the vehicle-to-vehicle distance is repeatedly increased and reduced within a predetermined time on the first distance or the second distance. In addition, the second camera is a camera installed in a second vehicle, the second vehicle being any one of one or more vehicles ahead of the vehicle.
Abstract:
Disclosed are a terminal apparatus, a system comprising the terminal apparatus, and a method for controlling the terminal apparatus. The terminal apparatus comprises: an input unit for receiving 3D scanning information of an object; a display unit for displaying the 3D scanning information; and a control unit for detecting a defective part from the 3S scanning information, wherein if a defective part is detected, the control unit activates a repair mode, generates a repair part corresponding to the defective part on the basis of the 3D scanning information, and wherein the repair part is divided into a coupling area and a non-coupling area, and if a predetermined condition is satisfied, a separable protrusion can be formed in the non-coupling area.
Abstract:
A display device and a method of controlling the same are disclosed. The display device includes a sensor unit configured to detect a first gesture input for a control interface, a communication unit configured to transmit a signal for generating a first image to a mobile device based on the detected first gesture input and to receive a signal for generating a second image from the mobile device, a display unit configured to display the control interface and the second image, and a processor configured to control the sensor unit, the communication unit and the display unit and execute according to a received control signal. The mobile device generates the signal for generating the first image, displays the first image, detects second gesture input for the first image, and transmits the signal for generating the second image to the display device based on the detected second gesture input.
Abstract:
A detachable head mounted display (HMD) device includes a display unit configured to display a user interface, a detached sensor unit configured to detect whether the HMD device has been affixed to eye-glasses, a sensor unit configured to detect an input signal generated when the eye-glasses to which the HMD device is affixed are touched, and a controller configured to control the display unit, the detached sensor unit, and the sensor unit. The controller is further configured to acquire identification information of the eye-glasses if the HMD device detects that the HMD device is affixed to the eye-glasses, to acquire a look up table related to the identification information, to acquire a control input related to the input signal from the look up table in response to the detected input signal, and to control the user interface to perform a function corresponding to the control input.
Abstract:
A terminal device and a method for controlling the same are disclosed herein. The terminal device includes a communication unit configured to perform communication with an external target, a rollable display unit configured to be stored in the housing and to be exposed from the housing, a sub display unit configured to be positioned on a portion of the housing, a grip unit configured to be positioned on a lower portion of the housing and to detect whether or not a contact is being made, a sensor unit configured to detect a movement of the terminal device, an input unit configured to receive commands from an external source, and a controller, wherein the controller may be configured to set up a first mode, in case the rollable display unit is exposed from the housing, wherein at least one key of the input unit is mapped to a key configured to perform a function respective to the first mode, and to set up a second mode, in case the rollable display unit is stored in the housing, and in case a contact state detected by the grip unit matches with a predetermined contact state, wherein at least one key of the input unit is mapped to a key configured to perform a function respective to the second mode.
Abstract:
A digital device configured to check a notification of an application and a method of controlling therefor are disclosed. If an icon including an indicator is slid to a direction of a sub display area from a main display area by a slide touch input, the digital device according to the present specification can display notification information corresponding to the indicator on the sub display area.
Abstract:
A method of controlling a wearable device according to one embodiment of the present specification can include the steps of displaying content on a display unit of the wearable device, sensing a tilt angle of the wearable device and providing a control interface providing control of the content. And, the step of providing the control interface can include the steps of mapping the control interface to the ground based on the sensed tilt angle and a state of the wearable device and displaying the mapped control interface on the display unit.
Abstract:
The method of a portable device may includes the steps of setting a first mode based on a first folding angle between the first body and the second body and a second folding angle between the first body and the third body, displaying a first application in the first mode, detecting change of the first folding angle and change of the second folding angle in the first mode, detecting the changed first folding angle being equal to or greater than a first threshold angle and the changed second folding angle less than a second threshold angle and if it is detected that a rear side of the second body is in a state of being contacted with a different real object, switching the first mode to a second mode.
Abstract:
A method for controlling the portable device may include detecting that the second body or the third body is folded to the first body and capturing an image by at least one of a first camera unit located in the second body and a second camera unit located in the third body. In this case, the first camera unit may capture an image of a first direction, and the second camera unit may capture an image of a second direction. In this case, the image may be captured based on a first capturing mode when the portable device is in an unfolded state, the image may be captured based on a second capturing mode when the portable device is in a first folded state, and the image may be captured based on a third capturing mode when the portable device is in a second folded state.
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.