Abstract:
A mobile terminal capable of controlling a vehicle and a method for controlling the same are provided. The mobile terminal includes a main body having a front surface, a side surface, and a rear surface, a cover configured to cover at least a portion of the front surface, the side surface, and the rear surface of the main body, a vehicle authenticating unit configured to supply power to the main body and the vehicle authenticating unit, and a control unit configured to control the power supply unit to supply power to the vehicle authenticating unit, wherein, upon receiving power from the power supply unit, the vehicle authenticating unit performs the authentication information to the vehicle to perform authentication with respect to the vehicle.
Abstract:
A wearable device includes: a touch screen; an acceleration sensor configured to generate an acceleration signal; an optical sensor using a light source and configured to generate a touch interrupt signal; and a control unit configured to detect a wearing state of the wearable device, 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.
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 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 wearable device includes: a touch screen; an acceleration sensor configured to generate an acceleration signal; an optical sensor using a light source and configured to generate a touch interrupt signal; and a control unit configured to detect a wearing state of the wearable device, 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.
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 glasses type mobile terminal including an output unit configured to output information; a camera; a wireless communication unit configured to wirelessly communicate with an external terminal; and a controller configured to transmit a first image received by the camera to the external terminal via the wireless communication unit, receive touch information from the external terminal indicating a touch input of the first image displayed on the external terminal is outside a corresponding viewing range of the glasses type mobile terminal, and display an indicator via the output unit indicating the touch input of the first image displayed on the external terminal is outside the viewing region of the glasses type mobile terminal.
Abstract:
Provided is a mobile terminal. The mobile terminal includes: a display unit disposed at a front of the mobile terminal; a front proximity sensor disposed at the front of the mobile terminal; a back proximity sensor disposed at a back of the mobile terminal; and a control unit performing an operation by using a detection result of the back proximity sensor.
Abstract:
A mobile terminal including a wireless communication unit configured to provide wireless communication; a touch screen; and a controller configured to enter the mobile terminal into a lock state, receive a touch pattern formed by a plurality of taps applied on the touch screen, and release the lock state of the mobile terminal when the touch pattern formed by the taps matches defined positions of the taps and time intervals between the taps.