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.
Abstract:
An automatic cleaner is provided. The automatic cleaner may include a main body, and a wheel assembly disposed in the main body to allow the main body to move. The wheel assembly may include a drive, a first wheel rotated by a power of the drive, and a second wheel rotated by the power of the drive. The second wheel may include a plurality of contact protrusions on an outer cirumferential surface thereof.
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:
A wearable device and a method for controlling the same are disclosed herein. The wearable device, comprising a bio-signal sensor unit configured to sense a bio-signal; a storage unit configured to store data; and a processor configured to control the bio-signal sensor unit and the storage unit, wherein the processor is further configured to: generate first reference data including a weight of a first reference object and a first bio-signal being generated by holding the first reference object when the first bio-signal is detected, generate measurement data including a second bio-signal being generated by holding a measurement object, when the second bio-signal is detected, and obtain a weight of the measurement object by comparing the measurement data with the first reference data.
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 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 multi-gaze recognition device according to one embodiment of the present specification includes a display module configured to display a display area containing a visual content capable of being scrolled, an input module configured to receive an input of a touch gesture signal to scroll the visual content, an image acquisition module configured to acquire an image in front of a device, and an analysis module configured to scroll the visual content using a first gaze and a second gaze detected from the image acquired in front of the device. The first gaze determines a maximum amount of a scroll area to scroll the visual content, the second gaze determines whether an event initiating the scroll occurs.
Abstract:
Discussed are a wearable display device and a method for controlling an augmented reality layer. The wearable display device may include a camera unit configured to capture an image of a user's face, a sensor unit configured to sense whether or not the user is turning his (or her) head, and a controller configured to move a virtual object belonging to a layer being gazed upon by the user's eye-gaze, when at least one of a turning of the user's head and a movement in the user's eye-gaze is identified based upon the image of the user's face captured by the camera unit and information sensed by the sensor unit, and when the user's eye-gaze is gazing upon any one of a first virtual object belonging to a first layer and a second virtual object belonging to a second layer.
Abstract:
Disclosed is a double-sided touch recognition digital device. The digital device includes a display unit to display a visual object, a front-side touch sensor unit to sense a touch input on a front side of the device, a rear-side touch sensor unit to sense a touch input on a rear side of the device, and a processor to control the display unit and the front-side and rear-side touch sensor units. The processor obtains a first reference position and second touch position on the front-side or rear-side touch sensor unit, obtains a distance between the first reference position and the second touch position, and determines whether or not the distance between the first reference position and the second touch position is within a valid recognition distance. The valid recognition distance for the rear-side touch sensor unit is longer than the valid recognition distance for the front-side touch sensor unit.
Abstract:
Disclosed is a method of controlling a display device including displaying a digital image, detecting a first control input to rotate the digital image, generating a first tactile feedback in a first part of a touch region and a second tactile feedback in a second part of the touch region when rotation of the digital image begins, changing at least one of the first and second tactile feedbacks according to a first rate if a rotation angle of the digital image is a first angle, and changing at least one of the first and second tactile feedbacks according to a second rate if the rotation angle of the digital image is a second angle. The first rate and the second rate is a rate of the second tactile feedback in relation to the first tactile feedback, and the second rate is greater than the first rate.