Abstract:
Disclosed is a combined type sensor device including a transceiver configured to transmit and receive data to and from a user terminal, a connector combined with a sensor module, and a processor configured to identify a type of the sensor module, to transmit the identified type of the sensor module to the user terminal through the transceiver, to update the sensor module based on a firmware file received from the user terminal through the transceiver, and to change communication setting according to the identified type of the sensor module.
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 mobile terminal is disclosed. The mobile terminal for visible light communication, according to 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:
Disclosed are a mobile terminal, and a method for controlling the same. The mobile terminal includes: a body; a camera provided at the body; a display unit configured to display a preview screen as the camera is driven; a sensing unit configured to sense a moved degree of the body as the camera is driven; and a controller configured to control the camera to execute a timer capturing, if a face region of a subject is detected from the displayed preview screen, and if the sensed moved degree of the body satisfies a preset capturing condition. The controller may execute an operation corresponding to the timer capturing, and may consecutively generate a next capturing command at a reference time interval while the moved degree of the body is within a reference range.
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 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 mobile terminal combinable with a terminal case including a front cover with a front incision part. The mobile terminal includes a wireless communication unit configured to provide wireless communication; a touch screen; a state detection sensor configured to detect whether the front cover is in an opened state or a closed state with respect to the mobile terminal; a color sensor configured to detect a color of the front cover; and a controller configured to control the touch screen based on whether the front cover is in the opened or closed state and the detected color of the front cover.
Abstract:
A mobile terminal and controlling method thereof are disclosed, which facilitates a terminal to be used in further consideration of user's convenience. The present invention includes a sensing unit including at least one sensor and a controller analyzing a user's mobile terminal use pattern based on a sensing signal received through the at least one sensor, the controller controlling a power of the at least one sensor based on the use pattern and a remaining power of the mobile terminal. Accordingly, powers of a plurality of sensors can be efficiently controlled based on a user's use pattern and/or a remaining power level. And, a user can activate a specific application and/or view a content with ease in a manner of analyzing a user's use pattern for a mobile terminal and then estimating and providing an application and/or a content necessary for the user based on a result of the analysis.
Abstract:
Proposed is a grain dispenser including: a storage unit including a plurality of storage hoppers in which different kinds of grain, respectively, are stored; a container accommodating the kinds of grain to be dispensed; a water supply unit and a water draining unit that supply and drain water, respectively; a container actuator rotating the container to mix and wash the kinds of grain; an artificial intelligence unit identifying a user who makes a request for meal cooking, and learning a kind of grain to be dispensed, an amount of grain to be dispensed, and a multigrain mixture ratio; a memory in which customized data including at least one of the kind of grain to be dispensed, the amount of grain to be dispensed, and the multigrain mixture ratio are stored; and a controller controlling the storage unit, the container actuator, the water supply unit, and the water draining unit.
Abstract:
A human body sensing mat for sensing the movement of a human body, comprises: a substrate; a sensor array including a plurality of fiber sensors for generating signals according to a distance to a specific object, and disposed on the substrate; and a driving unit for applying a voltage to the sensor array, wherein the sensor array includes a plurality of sensing lines arranged in parallel in a first direction, and regarding the plurality of sensing lines, a first distance between neighboring sensing lines connected to different electrodes is greater than a second distance between neighboring sensing lines connected to the same electrode. The human body sensing mat can analyze user's movements and biometric signals regardless of the user's posture.