Abstract:
A mobile terminal including a wireless communication unit configured to wirelessly communicate with at least one other terminal; a first sensor configured to detect a blowing action on the mobile terminal; a second sensor configured to detect an input action of a user; and a controller configured to execute a prescribed function on the mobile terminal when detecting the input of the user, detecting the blowing action on the mobile terminal, and detecting a release of the input action.
Abstract:
A mobile terminal and a method of measuring a bioelectric signal thereof are provided. When the mobile terminal enters a call mode, a user's pulse wave data are acquired using a plurality of electrodes provided in a body of the mobile terminal or a body of an earphone.
Abstract:
Systems, circuits, and devices for wirelessly charging a mobile device are disclosed. In one embodiment, a system of a mobile device comprises a low power PAN module and a controller for the low power PAN module configured to monitor a connection request signal communicated from an external device while the mobile device is in a sleep mode, where the controller is supplied with quiescent current from a battery of the mobile device during the sleep mode. In addition, the system comprises an AP of the mobile device configured to wake up from the sleep mode when the connection request signal is validated by the controller, forward to the external device an equipment identity data of the mobile device and a charging status of the battery, and charge the battery of the mobile device with energy received from a wireless charging module associated with the external device.
Abstract:
The present invention relates to a mobile terminal capable of efficiently controlling reception of an incoming call in a state that an external terminal capable of assisting audio output is connected with the mobile terminal and a method of controlling therefor. Specifically, the present invention relates to the mobile terminal including a wireless communication unit configured to communicate with the external terminal, a sensing unit configured to detect a movement of the mobile terminal, an audio output unit and a controller, if a first movement is detected by the sensing unit in the middle of receiving the incoming call in a first configuration state of which an audio output is performed via a first external terminal, configured to accept the incoming call and switch to a second configuration outputting an calling signal for the accepted incoming call via the audio output unit instead of the first external terminal.
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 is provided which includes: at least one body sensor; at least one wireless communication module; a display unit; a memory for storing a program that processes at least one body signal detected by the at least one body sensor; and a control unit for executing the memory. The terminal may include an electrocardiogram sensor, a fingerprint sensor, a photoplethysmographic sensor. The terminal is adapted to estimate the user's emotional state or excitement level. The terminal is also adapted to measure an electromyogram.
Abstract:
Systems, circuits, and devices for wirelessly charging a mobile device are disclosed. In one embodiment, a system of a mobile device comprises a low power PAN module and a controller for the low power PAN module configured to monitor a connection request signal communicated from an external device while the mobile device is in a sleep mode, where the controller is supplied with quiescent current from a battery of the mobile device during the sleep mode. In addition, the system comprises an AP of the mobile device configured to wake up from the sleep mode when the connection request signal is validated by the controller, forward to the external device an equipment identity data of the mobile device and a charging status of the battery, and charge the battery of the mobile device with energy received from a wireless charging module associated with the external device.