Abstract:
A structure of a mobile terminal for visible light communication is disclosed. The mobile terminal, according to one embodiment of the present invention, comprises: a light reception unit for receiving visible light; and a control unit for extracting, from the received visible light, data corresponding to the turning on/off of an external lighting, wherein the light reception 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 comprises a guide member for guiding the traveling direction of visible light outputted from the lighting.
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 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 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 including an output unit configured to output information; a receiving device configured to receive information from an external device; a controller configured to receive body condition information about a physical condition of a user while specific information is being received by the receiving device or output by the output unit, analyze the body condition information and estimate an emotional state of the user based on the body condition information, generate tag information indicating the estimated emotional state of the user, store the generated tag information with data corresponding the specific information, and output the generated tag information and the data corresponding to the specific information.
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 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 and controlling method thereof are disclosed, by which various convenient functions including application management in association with such a wearable external device as a watch type mobile terminal and the like can be provided. The present invention includes a wireless communication unit, a touchscreen, and a controller, when the touchscreen is turned off, if a 1st touch is inputted to the touchscreen and a 2nd touch is then inputted to the touchscreen by maintaining the 1st touch, turning on the touchscreen and controlling information of at least one wearable device currently connected through the wireless communication unit to be displayed on the touchscreen.
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.