Abstract:
A mobile terminal and a method for controlling the mobile terminal are disclosed. A mobile terminal according to one embodiment of the present invention, if an earphone with a cable-type battery is inserted and an audio output function is carried out while the mobile terminal is charged through the cable-type battery, can output an audio sound through either a built-in speaker of the mobile terminal or the earphone. Accordingly, an audio sound can be output through an audio output path selected according to the intention of the user who has inserted the earphone.
Abstract:
A method for controlling a portable device is disclosed. The method includes displaying a plurality of augmented reality (AR) images, detecting a gaze of a user, determining a target object based on the gaze of the user, identifying an associated AR image that is associated with the target object and a non-associated AR image that is not associated with the target object from the plural AR images, and maintaining display of the associated AR image and terminating display of the non-associated AR image when the target object is a moving object.
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:
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.
Abstract:
A portable device and a method for controlling the same are disclosed, in which a user may control a display of the device more conveniently and exactly. The portable device having a flexible display, the portable device comprises a main display unit; a flexible display unit; a touch sensor unit configured to sense a touch input of a user; a measurement unit configured to detect expanding of the flexible display; and a processor configured to control the main display unit, the flexible display unit, the touch sensor unit, and the measurement unit, wherein the processor is further configured to: when a first image is displayed on a first area which is an expanded area of the flexible display unit, display a second image on a second area which is an additionally expanded area of the flexible display unit when additional expanding of the flexible display unit and a lack of a first touch input to the flexible display unit are sensed, and display the first image on the first area and the second area by enlarging the first image when the additional expanding of the flexible display unit and the first touch input are sensed.
Abstract:
The present specification relates to a mobile terminal including a double-sided display unit and a controlling method thereof, and more particularly, to a method of controlling, which is controlled in a 1st display unit, a content to be displayed in a second display unit in a standby state of the mobile terminal. According to one embodiment, a mobile terminal containing a double-sided display unit includes a first display unit and a second display unit, wherein the second display unit uses an e-paper display panel, a sensor unit configured to detect an input signal and transmit the detected input signal to a processor, and a processor configured to control the first display unit, the second display unit, and the sensor unit, wherein the processor is further configured to detect a trigger signal to switch the mobile terminal to a standby state, display a standby state preview interface in the first display unit displaying a content currently displayed in the second display unit, and if an input signal for the standby state preview interface is not detected within a predetermined time, switch the mobile terminal to the standby state without changing the content displayed in the second display unit.
Abstract:
The present specification is related to a device enabling for a user to control a flexible display more convenient and precise and a controlling method therefor. According to one embodiment disclosed for this, the device includes a flexible display, if the flexible display expands (roll-out), a length measuring unit configured to measure an expanded length of the flexible display expanded from the device, a speed measuring unit configured to measure a speed of which the flexible display expanded from the device and a processor configured to control the flexible display, the length measuring unit, and the speed measuring unit, wherein if the flexible display expanded to a unit length, the processor displaying an application execution screen corresponding to the unit length in the flexible display and wherein if the flexible display expanded more than the unit length, the processor controlling a display of the application execution screen displayed in the flexible display or the display of the application execution screen corresponding to a next unit length of the unit length according to an expansion speed of the flexible display. According to a different embodiment disclosed for this, the device includes a flexible display, a length measuring unit configured to measure an expanded length of the flexible display expanded from the device, if the flexible display is reduced (roll-in), a speed measuring unit configured to measure a speed of the flexible display reduced to the device, and a processor configured to control the flexible display, the length measuring unit, and the speed measuring unit, wherein if the flexible display is reduced to a unit length, the processor displaying an application execution screen corresponding to the unit length and wherein if the flexible display is reduced less than the unit length, the processor controlling a display of the application execution screen displayed in the flexible display or the display of the application execution screen corresponding to a previous unit length of the unit length according to a reduction speed of the flexible display.
Abstract:
A mobile terminal according to the present invention, if it is determined that external power is being supplied through an external charging port, a controller controls the power supply unit to charge the cable-type battery by using the external power. If it is determined that the external power is not supplied, the controller controls the power supply unit to charge the main battery by using a cable-type battery embedded in an earphone.
Abstract:
According to one embodiment of the present specification, a head mounted display (HMD), comprising: a projector unit configured to project visual information; a sensor unit configured to sense whether the HMD is stored in a HMD case for storing the HMD; and a processor configured to control the projector unit and the sensor unit, the processor is further configured to: change an optical path of the projector unit based on a physical structure of the HMD case, if an incased state where the HMD is stored in the HMD case is detected, and, change the optical path of the projector unit based on a physical structure of the HMD, if an uncased state where the HMD is not stored in the HMD case is detected.