Abstract:
A head mounted display (HMD) is disclosed. The head mounted display (HMD) includes a camera unit configured to capture an image; a display unit configured to display an information image; and a processor configured to control the camera unit and the display unit, wherein the processor is further configured to : detect an object using the camera unit, wherein the object has a staring state in which the object substantially stares at a wearer wearing the HMD and an unstaring state in which the object does not substantially stares at the wearer, display a first information image when the object in the staring state is detected, display a second information image when the object in the unstaring state is detected, and wherein the first information image includes at least one of a different amount of displayed information from the second information image and a different displaying location from the second information image.
Abstract:
The present specification relates to a head mounted display and a method of controlling therefor, and more particularly, when a user wearing the head mounted display captures an image, a method of storing a captured image according to whether a preview via an image preview interface exists or not.
Abstract:
A method for controlling a head mount display (HMD) according to one embodiment comprises the steps of detecting a 3D printer as a first marker through a camera unit; displaying a first augmented reality image of a shape of a 3D object on the basis of the detected first marker before the 3D object is output by the 3D printer; detecting the 3D object, which is output from the 3D printer, as a second marker if the 3D printer starts to output the 3D object; updating the first augmented reality image to a second augmented reality image on the basis of the first marker and the second marker; and displaying the second augmented reality image.
Abstract:
A digital device including a scent emitting unit and a method for controlling the same are disclosed. The digital device includes a display unit for displaying a first image including a first object having a first scent property and a second object having a second scent property, a sensor unit for sensing a distance from a specific body part of a user, a scent emitting unit, and a processor. The processor controls the scent emitting unit to emit any one of a first scent, a second scent or a mixture of the first scent and the second scent according to the distance from the specific body part of the user, and a mixture ratio of the first scent to the second scent in the mixture is changed according to a predetermined condition.
Abstract:
Disclosed is a Head Mounted Display (HMD) device. The head Mounted Display (HMD) device comprising: a rotation sensor unit configured to sense a rotation degree of the HMD device; a display unit configured to display visual information; and a processor configured to control the rotation sensor unit and the display unit, wherein, when providing a map image for guidance on a drive path, the processor is further configured to : acquire driver identification information regarding a user wearing the HMD device, the driver identification information indicating whether or not the user is a driver, and provide the map image in a stationary view mode when detecting that the user is the driver based on the acquired driver identification information, or provide the map image in a moving view mode when detecting that the user is not the driver based on the acquired driver identification information.
Abstract:
Disclosed are a smart watch and a control method thereof. The smart watch comprising: 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, wherein the processor is further configured to: detect a first snap motion and a second snap motion of the smart watch, wherein 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 wherein 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, the second direction being an opposite to the first direction, and execute a first command corresponding to the first direction when detecting the first snap motion or execute a second command corresponding to the second direction when detecting the second snap motion.
Abstract:
A method for controlling a display device according to an embodiment of the specification may include displaying a digital image including a first region to which a first tactile feedback is allocated, detecting a control input applied to the first region of the digital image, determining whether the first region of the digital image is smaller than a size threshold, zooming in on the first region to which the first tactile feedback is allocated to a size larger than the size threshold with a first magnification when the first region is smaller than the size threshold, and generating the first tactile feedback in the zoomed in on first region.
Abstract:
Disclosed is a method of, in a case in which at least one person contained in a displayed image is recognized, sharing the image with the at least one person contained in the image while displaying the number of sharing and the number of capturing.
Abstract:
A portable device and a method for controlling the same are disclosed, in which a user may control the device more conveniently and more exactly. The portable device comprises a double sided display unit including a first display screen on a front side and a second display screen on a back side; a first touch sensor unit and a second touch sensor unit configured to respectively sense a first touch input for the first display screen and a second touch input for the second display screen; and a processor configured to control the double sided display unit, the first touch sensor unit and the second touch sensor unit, wherein the processor is further configured to: switch the second touch sensor unit to a ready-to-active state activating temporarily the second touch sensor unit for a predetermined period when the first touch input for the first display screen is sensed, and switch the second touch sensor unit to an active state when the second touch input for the second display screen is sensed within the predetermined period, or switch the second touch sensor unit to an inactive state when a lack of the second touch input is within the predetermined period.
Abstract:
The present specification relates to a foldable display device and a method of controlling therefor, and more particularly, to a method of configuring illuminance of a display screen according to an illuminance value detected based on a folding angle between a first body and a second body of the foldable display device. According to one embodiment, a foldable display device includes a first body configured to support a first display screen, a second body configured to support a second display screen wherein the first display screen and the second display screen are provided at a first side of the foldable display device, an angle sensing unit configured to sense a folding angle between the first body and the second body wherein the first body and the second body are foldable in a direction to which the first display screen and the second display screen are facing, a first illuminance sensing unit provided in the first side configured to sense illuminance, a second illuminance sensing unit provided in the second side, which is an opposite side of the first side, configured to sense illuminance, and a processor configured to control the first body, the second body, the angle sensing unit, the first illuminance sensing unit, and the second illuminance sensing unit, wherein the processor is further configured to: set illuminance of at least one of the first display screen and the second display screen provided at the first side, based on a first illuminance value detected by the first illuminance sensing unit of the first side, when the folding angle between the first body and the second body is equal to an illuminance threshold angle or greater than the illuminance threshold angle, set the illuminance of at least one of the first display screen and the second display screen, which are provided at the first side, based on a second illuminance value detected by the second illuminance sensing unit of the second side, when the folding angle between the first body and the second body is smaller than the illuminance threshold angle.