Abstract:
A mobile terminal including a main body; a band connected to the main body and configured to be wearable on a wrist; a wireless communication unit disposed on the main body and configured to communicate with a predetermined server; a touch screen disposed on a front surface of the main body and configured to display screen information including at least two indication hands moving to show a current time; and a controller configured to in response to an automatic transfer from a predetermined account being scheduled to be made within a reference time from the current time, display a notification icon on the touch screen indicating the automatic transfer in the screen information, and in response to a touch input being applied to the notification icon, perform control associated with the automatic transfer based on the applied touch input.
Abstract:
There is disclosed a mobile terminal including a case, a display disposed on a front surface of the case, an optical part arranged adjacent to the display, the optical parts comprising a transmitting unit and a receiving unit, a window glass coupled to the front surface of the case to cover the optical part and the display, a bezel printed on a rear surface of the window glass, corresponding to a circumferential portion of the display, the bezel comprising a light transmission hole formed corresponding to the optical part, a color filter disposed to the light transmission hole, and a control unit configured to control a strength of a signal emitted from the transmitting unit based on a color of the color filter.
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 mobile terminal includes: a terminal body; a first sensor part formed on an external surface of the terminal body, having a light emitting portion and a light receiving portion, and configured to collect pulse wave information; a second sensor part disposed on one region of the terminal body, and configured to collect an additional bio signal; and a controller configured to calculate a blood pressure based on the pulse wave information and the additional bio signal.
Abstract:
The present invention relates to a wearable terminal includes a display comprising a front side and a rear side, a first sensing unit configured to sense a biometric characteristic and disposed at the rear side of the display to be proximate to or contact a user's body, a second sensing unit configured to sense a movement of the terminal; and controller configured to execute a different function based on the movement of the terminal when a sensing strength of the biometric characteristic via the first sensing unit is greater than a threshold strength level, wherein the sensing strength is varied based on a portion of the user's body which the first sensing unit is proximate to or is in contact with.
Abstract:
A mobile terminal and controlling method thereof are disclosed, by which a plurality of message, product or registration card items and be collectively managed. The present invention includes a wireless communication unit configured to transmit and receive information, a user input unit, a touchscreen, and a controller configured to receive messages via the wireless communication unit, cause the touchscreen to display the received messages, group a plurality of the received messages in a prescribed group when a change command corresponding to the plurality of received messages is received via the user input unit, cause the touchscreen to display the prescribed group and cause the wireless communication unit to transmit a change request signal corresponding to one or more selected messages of the prescribed group.
Abstract:
The present invention relates to a mobile terminal and a method of controlling therefor. The mobile terminal includes a touch screen configured to display information on a screen having a circular form, and a controller configured to control two or more touch keys displayed on a border of the screen, each touch key to correspond to at least one or more characters different from each other, and in response to receiving a first touch input on at least one touch key, the controller configured to control an operation corresponding to at least one or more characters corresponding to the at least one touch key. A user can easily input a character and watch a currently used screen at a glance at the same time in a manner of displaying each of the touch keys of a keypad along with the border of the touch screen of the circle form in a size capable of being easily touched by the user.
Abstract:
A mobile terminal is disclosed. The mobile terminal for visible light communication, according o one embodiment of the present invention, uses visible light outputted from a lighting that turns on/off according to a preset condition, and the mobile terminal comprises: a light receiving unit for receiving visible light; a control unit for extracting, from the received visible light, data corresponding to the turning on/off; and a display unit for displaying information based on the extracted data, wherein the light receiving unit comprises at least one among an illuminance sensor, a first image sensor disposed on the front of the mobile terminal, and a second image sensor disposed on the back of the mobile terminal, and the control unit controls so that visible light communication is performed by using, among the illuminance sensor, the first image sensor, and the second image sensor, the sensor that receives visible light having the greatest signal strength.
Abstract:
A method for forwarding a remote control signal and a signal forwarding node (200-1) using the same are disclosed. Herein, the signal forwarding node (200-1) includes a laser light receiver (402-2) configured to detect laser light, an Infra Red (IR) light receiver (402-1) configured to receive a remote control signal, a wireless communication module (404) configured to transmit and receive data to and from an external signal forwarding node (200-2), and a controller (405) configured to control the wireless communication module (404), when laser light is detected through the laser light receiver (402-2), 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 (200-2).