Abstract:
A mobile terminal including a glass panel having a first and a second touch region. The second touch region is, at least in part, located within the first touch region and configured to obtain fingerprint information. The mobile terminal further includes a first and a second touch sensor respectively corresponding to the first and second touch regions, a light guide plate provided at a backside of the first and second touch sensors, and a light source provided on at least one side of the light guide plate, wherein the light guide plate includes a light guide plate body to propagate light from the light source, and windows such that brightness of the second touch region is substantially the same as brightness of a portion of the first touch region that is outside of the second touch region, the windows having different properties including at least one of size and density.
Abstract:
A mobile terminal according to the present invention includes a terminal main body, a user input unit provided at the terminal main body and capable of receiving a control command for executing a specific function, a sensor unit provided adjacent to the user input unit and capable of sensing biometric information during the reception of the control command, and a controller capable of executing the specific function based on the control command and calculating a blood pressure value using the biometric information.
Abstract:
A method for forwarding a remote control signal and a signal forwarding node using the same are disclosed. Herein, the signal forwarding node includes a laser light receiver configured to detect laser light, an Infra Red (IR) light receiver configured to receive a remote control signal, a wireless communication module configured to transmit and receive data to and from an external signal forwarding node, and a controller configured to control the wireless communication module, when laser light is detected through the laser light receiver, and when the remote control signal is received, so as to forward control information included in the received remote control signal to the external signal forwarding node.
Abstract:
A method of controlling a mobile terminal, and which includes receiving operational status information of an external device, via a wireless communication unit of the mobile terminal, from the external device in response to the mobile terminal being located within a predetermined distance range from the external device; displaying an icon on a display of the mobile terminal representing a type of the external device; and displaying the operational status information of the external device and recommended user notification information for performing a recommended operation on the external device in response to a selection of the displayed icon.
Abstract:
A mobile terminal which includes a terminal body; a display mounted to the terminal body; a window disposed to cover the display and including central and edge regions wherein the central region is formed of a transmissive material and configured to align with the display, and the edge region is formed of an opaque material and configured to surround the central region. The mobile terminal further includes a first touch sensor disposed to span at least the central region and configured to detect a touch input to the central region; and a second touch sensor disposed to span at least part of the edge region and configured to detect a touch input to the at least part of the edge region, wherein the second touch sensor is configured to have a higher touch sensitivity than the first in order to detect a touch input to the opaque edge region.
Abstract:
A wearable terminal can include a main body configured to be in contact with a body of a user using one side of the main body, a photo plethysmography including a transmitter combined with one side of the main body and outputs a output signal, and a receiver detecting a reflection signal corresponding to the output signal returned, a cover configured to cover the photo plethysmography and be combined with the main body and a controller configured to measure a heart rate based on a reflection signal measured by the photo plethysmography. The cover is combined with the main body and parts corresponding to the transmitter and the receiver of the photo plethysmography include transparent units through which the output signal and the reflection signal are passing and a barrier unit positioned between the transparent units and shielding the output signal and the reflection signal.
Abstract:
The present disclosure provides a mobile terminal including a pair of bodies being folded around a hinge portion, a sensing unit for sensing a folded angle of the bodies, an obtaining unit for obtaining external information, a display for outputting visual information, and a controller connected to the sensing unit, the obtaining unit, and the display, wherein the controller controls the sensing unit to sense the continuously varying folded angle of the bodies, and controls the obtaining unit to obtain the external information corresponding to the sensed folded angle.
Abstract:
Provided is an electronic apparatus including a flexible display disposed such that a size of the display exposed on a first surface of the electronic apparatus is changed, and a controller configured to identify a first input that is input to at least one of the first surface and the second surface and control the size of the display exposed on the first surface based on the first input.
Abstract:
A head-mounted display (HMD) includes a frame configured to be fixated to a head, a light-transmissive display unit fixated to the frame and outputting a VR image in a VR mode and an AR image in an AR mode, a light transmission control layer having changed transmittance, a lens unit having a refractive index changed in the VR mode and the AR mode, and a controller control the light transmission control layer to increase transmittance in the AR mode and decrease transmittance in the VR mode.
Abstract:
An electronic device includes a body including a case formed of a metallic material and forming side surfaces; a display unit coupled to the case, and forming a front surface of the body; a grip sensor attached to one region of the case, and configured to sense a pressure applied to the side surfaces; and a controller configured to execute a specific function by the grip sensor, wherein the case forms a mounting space for accommodating the grip sensor therein, and wherein the case includes a transformation portion formed in a thickness direction of the case, at a region near the grip sensor.