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.
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:
An electronic device and a method for controlling the same are disclosed. The electronic device includes a main body having a back surface contacting a body part of a user, a band portion extended from one side or both sides of the main body, the band portion having a back surface contacting the body part of the user, an electrode positioned on the back surface of the main body or the back surface of the band portion, the electrode having a current flow area and a non-current flow area, and a controller mounted inside the main body or the band portion, the controller configured to adjust a voltage applied to the electrode in response to a biometric signal of the user acquired through the electrode.
Abstract:
A watch type terminal is presented, which includes a main body; a band connected to the main body and formed to be worn on a user's wrist; an electrode unit formed in one area of the main body or the band and performing a predetermined function; an electromagnetic wave sensor module connected with the electrode unit and sensing a capacitance change; and a controller sensing whether the user wears the watch type terminal based on the capacitance change and generating a control command based on whether the user wears the watch type terminal.
Abstract:
A mobile terminal including a camera configured to obtain an image; a display configured to display the obtained image; and a controller configured to receive a zoom input for zooming in on the displayed image, display a zoomed image on a portion of the displayed image in response to the zoom input, and capture at least one of the displayed image and the zoomed image in response to a predetermined input.
Abstract:
A circuit in a mobile terminal for measuring heartbeat/stress. The circuit includes a photoplethysmography (PPG) sensor having first and second green light-emitting diodes (LEDs); first and second LED drivers respectively connected to the first and second green LEDS and respectively configured to drive the first and second green LEDs; and a processor configured to control the first and second LED drivers to alternately turn on the first and second green LEDs within one driving period to respectively produce first and second PPG signals, and measure a user's heartbeat/stress using the first and second PPG signals that have a corresponding signal quality equal to or greater than a predetermined threshold.
Abstract:
A mobile terminal comprises: a main body; a display in the front surface of the main body; a coil antenna module positioned in a first region of the rear surface of the main body; and a rear touch sensor positioned in a second region of the rear surface of the main body to sense a touch input of a user, wherein the first region and the second region do not overlap each other. Since the rear touch sensor is provided within a limited space of the mobile terminal, the difficulty of one-handed manipulation can be reduced.
Abstract:
There is disclosed a mobile terminal comprising: a display module; a first piezoelectric layer provided on a rear surface of the display module and configured to vibrate the display module by forming a first frequency in an audible range; and a second piezoelectric layer provided on the rear surface of the display module and configured to sense the pressure transmitted from the display module and provide a haptic feedback at a second frequency, wherein the second piezoelectric layer is thicker than the first piezoelectric layer in a front-to-back direction and fixedly coupled to the first piezoelectric layer.
Abstract:
The present invention relates to a watch-type terminal enabling touch input sensing and a method for controlling the same. The watch-type terminal comprises: a display unit; a sensing unit for sensing the touch surface area of a touch input applied to the display unit; and a control unit for detecting the direction of changes in the touch surface area of the touch input which has been sensed and, in response to the changes in the touch surface area, for executing a particular function connected to the direction of changes of the touch surface area among a plurality of functions for controlling the operation of a watch-type terminal.
Abstract:
A display apparatus is disclosed. The display apparatus includes: a display unit configured to display an image; and a controller configured to display a planar image of an omnidirectionally captured image or a thumbnail image of a partial region of the omnidirectionally captured image, with a first point of the omnidirectionally captured image as a center, wherein a center of the planar image or a center of the thumbnail image is variable.