Abstract:
Disclosed is a mobile terminal including a display unit configured to display an image and including an OLED pixel module emitting light and a light non-transmitting layer formed therebelow, a fingerprint recognition sensor configured to recognize a user fingerprint by receiving, when the light emitted from the OLED pixel module is reflected by a user finger, the reflected light, a sensor insertion space formed by perforating a part of the light non-transmitting layer, the fingerprint recognition sensor being inserted into the sensor insertion space, and a force sensor disposed to surround a side surface of the fingerprint recognition sensor and to provide haptic feedback when pressure is applied to the force sensor.
Abstract:
A watch-type mobile terminal comprises: a touch screen through which information can be input and output; a force sensor for detecting the strength of force applied to the touch screen by a gesture; an acceleration sensor for detecting the orientation of the terminal; and a control unit which performs control so as to determine whether to activate a screen of the terminal and adjust the touch sensitivity for the touch screen of the terminal according to the orientation of the screen of the terminal.
Abstract:
The present disclosure relates to a mobile terminal capable of displaying an image and a control method thereof. A mobile terminal according to an embodiment of the present disclosure may include a touch screen configured to display a first image, and a controller configured to control the touch screen to display a part of the first image in an enlarged manner based on a user request, wherein the controller displays a part of a second image different from the first image in an enlarged manner on the touch screen when a predetermined type of touch is applied to the touch screen in a state that the part of the first image is displayed in an enlarged manner.
Abstract:
The present invention relates to a mobile terminal, including a terminal body having front, rear and side surfaces, an ultrasonic sensing unit mounted on the terminal body and including an ultrasonic output sensor, and an ultrasonic receiving sensor spaced apart from the ultrasonic output sensor to receive an ultrasonic wave output from the ultrasonic output sensor, and a detecting unit to detect a touch applied to the terminal body by using a signal change of the ultrasonic receiving sensor caused due to a touch on a path of the ultrasonic wave.
Abstract:
A glasses-type mobile terminal includes a display configured to display a virtual reality image and a controller configured to acquire reality information from a mobile terminal connected to the glasses-type mobile terminal and controlling the virtual reality image if a reality returning time indicating that viewing of the virtual reality image should be finished is reached based on the acquired reality information.
Abstract:
A watch type terminal including a main body mountable on part of a user; at least one biometric sensor installed in the main body; and a controller configured to control the biometric sensor to detect a biometric signal of the user, determine target biometric data for the user to be collected based on the detected biometric signal, control the biometric sensor to detect additional biometric signals of the user to collect the target biometric data, and output the target biometric data to the user.
Abstract:
A wearable device (100) includes: a touch screen (151); an acceleration sensor (143) configured to generate an acceleration signal; an optical sensor (144) using a light source and configured to generate a touch interrupt signal; and a control unit (180) configured to detect a wearing state of the wearable device (100), the wearing state of the wearable device including a not-wearing state for the wearable device, a wrist wearing state, and a hand gripping state on the basis of the acceleration signal and the touch interrupt signal, and to execute a function corresponding to the wearing state of the wearable device (100).
Abstract:
Provided is an electronic apparatus including a flexible display comprising at least a portion disposed at a first surface, a body frame disposed at a second surface opposed to the first surface, a display frame moving to decrease a distance to a first region of the body frame in response to a reduction in size of the flexible display exposed on the first surface, a first sensor disposed at at least a portion of the first region of the body frame and configured to sense an approach of an object, and a controller configured to control the size of the flexible display exposed on the first surface based on measurement information of the first sensor. The first region includes a surface corresponding to a position of the display frame among at least one surface of the body frame.