Abstract:
A method of controlling a smart watch including a case and a band connected to the case is disclosed. The method includes displaying digital content on a display unit provided on a front surface of the case, detecting a length of a non-displayed portion of the digital content on the display unit, and generating first tactile feedback corresponding to the length of the non-displayed portion of the digital content on the display unit on a back surface of the band.
Abstract:
An apparatus including: an image sensor unit configured to convert a sensed hand-drawn sketch to a digital image, an image display unit configured to visualize the digital image to a virtual hand-drawn sketch, and a controller configured to sense a first hand-drawn sketch being drawn with a first sketching tool having a first sketching characteristics on a first sketching plane, store the sensed first hand-drawn sketch as a first digital image with the first sketching characteristics, visualize the stored first digital image as a first virtual hand-drawn sketch on a second sketching plane, sense a second hand-drawn sketch being drawn with a second sketching tool having a second sketching characteristics on the second sketching plane while the first virtual hand-drawn sketch is visualized on the second sketching plane, and store the sensed second hand-drawn sketch as a second digital image. The second digital image is stored with the first sketching characteristics, when the second hand-drawn sketch is a continued sketch of the first hand-drawn sketch.
Abstract:
Disclosed is a portable device having a flexible display unit and a control method for the same. The device provides a dimming mode for dimming the display unit when lack of user input for a preset dimming time is sensed. The dimming mode includes a first dimming mode having a first dimming time and a second dimming mode having a second dimming time. The display unit has a first state before the display unit is expanded, and a second state after the display unit is expanded. A processor of the device converts the device from the first dimming mode to the second dimming mode when the display unit is retracted from the second state to the first state, reverts the device into the first dimming mode when preset user input is sensed, and performs dimming of the display unit when lack of the preset user input is sensed.
Abstract:
A control method of a head mounted display (HMD) is disclosed. The control method of the HMD includes detecting a first route of a first moving object and a second route of a second moving object in front of the HMD, detecting a third route along which user's eye gaze moves, setting the first moving object as a reference object if the detected first route is substantially identical with the detected third route, setting the second moving object as the reference object if the detected second route is substantially identical with the detected third route, and performing an eye gaze calibration based on a route of the set reference object and the detected third route.
Abstract:
An eye gaze calibration method includes sensing an image of surroundings located in front of the HMD device using a camera unit, detecting a reference object from the sensed image of the surroundings using an image processing unit, detecting an eye gaze direction in which a user gazes at the detected reference object using an eye gaze detection unit, and performing eye gaze calibration based on the detected reference object and the detected eye gaze direction using a controller, wherein detecting the reference object includes detecting at least one object contained in the sensed image as a first object, detecting a hand of the user contained in the sensed image as a second object, detecting an event of the second object with respect to the first object, and deciding the first object, on which the event has been detected, as the reference object.
Abstract:
A head mounted display (HMD) comprises a display unit configured to output an image; a communication unit configured to transmit and receive video communication image data; a camera unit configured to take an image in a forward direction of the HMD; and a processor configured to control the display unit, the communication unit and the camera unit, wherein the processor is further configured to detect an image of a user wearing the HMD from the taken image, wherein the image of the user includes a camera area of the HMD, recognize an image of a partner from the received video communication image data, provide a video communication interface displaying the image of the partner, wherein the video communication interface displays the image of the partner corresponding to a position of the camera area of the HMD, and transmit a video communication image of the user from the taken image.
Abstract:
Disclosed is a dual display apparatus to display first and second display screens. The dual display apparatus includes a display unit to display the first and second display screens, and an input unit to receive a first or second multi-touch gesture signal. The first multi-touch gesture signal includes pinch-in signals to expand content displayed in the first display screen, and the second multi-touch gesture signal includes a sliding touch to expand the first display screen or to change the first display screen to the entire display screen. The dual display apparatus further includes a screen adjustment module to expand content displayed in the first display screen in response to the first multi-touch gesture signal, and to display the expanded first display screen or the changed entire display screen in response to the second multi-touch gesture signal. The first and second multi-touch gesture signals are input in succession via a touch.
Abstract:
A flexible display device and a method for accurately recognizing a user's flex input bending of the flexible display device is described. The present invention is able to discard unintentional flexing of the flexible display device while being able to accurately recognize a user's intended flex input command based on a number of bending degree thresholds. A first bending threshold must be overcome in order to initially recognize a user's flex input as a valid flex input command. Then the user's flex input must fall below a second bending threshold in order to cease the recognition of the user's flex input as a valid flex input.
Abstract:
A flexible display device and a method for accurately recognizing a user's flex input bending of the flexible display device is described. The present invention is able to discard unintentional flexing of the flexible display device while being able to accurately recognize a user's intended flex input command based on a number of bending degree thresholds. A first bending threshold must be overcome in order to initially recognize a user's flex input as a valid flex input command. Then the user's flex input must fall below a second bending threshold in order to cease the recognition of the user's flex input as a valid flex input.
Abstract:
A mobile device and a method for controlling the same are disclosed, which senses an image including a pattern code. The mobile device includes a camera unit configured to sense an image, a display unit configured to display the image, a sensor unit configured to detect an input signal and transmit the detected input signal to a processor, and the processor configured to control the display unit, the camera unit and the sensor unit. The processor is further configured to provide an image capturing interface, wherein the image capturing interface displays the image sensed by the camera unit and an image capturing trigger for storing the image, adjust focus of the image to an area corresponding to a location of a pattern code automatically and simultaneously display a pattern code trigger in the image capturing interface, only when the pattern code is recognized from the image, store the image when an input signal for the image capturing trigger is detected, and display content linked to the pattern code when an input signal for the pattern code trigger is detected.