Abstract:
Disclosed are a mobile terminal capable of implementing an always-on function with a lower power, based on a motion, and a motion-based low power implementing method thereof. The method includes sensing a motion of a user by using an acceleration sensor in a low-power always-on that only the acceleration sensor is activated; a selectively activating an always-on function according to the sensed motion and deactivating the always-on function when no motion is sensed in an always-on state and automatically entering to the low-power always-on function.
Abstract:
A watch type terminal is presented, which includes a main body; a band connected to the main body and formed to be worn on a user's wrist; an electrode unit formed in one area of the main body or the band and performing a predetermined function; an electromagnetic wave sensor module connected with the electrode unit and sensing a capacitance change; and a controller sensing whether the user wears the watch type terminal based on the capacitance change and generating a control command based on whether the user wears the watch type terminal.
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:
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 heating module includes: an insulating case; at least one heat emitting element that is supported by the insulating case; at least one terminal plate that is arranged in the insulating case to contact the heat emitting element; and a ceramic insulator that is arranged on an outer surface of the terminal plate.
Abstract:
The present invention relates to a mobile terminal capable of performing a pressure measurement, the mobile terminal including a pressure sensor, a main body having an inner space to accommodate the pressure sensor therein, a cover configured to cover at least part of the main body, and a hole formed through the cover to allow an introduction of external air into the inner space, and located to face the pressure sensor.
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:
The present disclosure relates to a mobile terminal, including: a window; a display disposed on the underside of the window to output visual information through the window and including an organic light emitting diode; a fingerprint sensor disposed on the underside of the display to sense a fingerprint of a user on the window; and a piezoelectric actuator formed in an annular shape to receive the fingerprint sensor therein and configured to transfer vibration to the window or sense a force applied to the window.
Abstract:
The present invention relates to a watch-type terminal enabling touch input sensing and a method for controlling the same. The watch-type terminal comprises: a display unit; a sensing unit for sensing the touch surface area of a touch input applied to the display unit; and a control unit for detecting the direction of changes in the touch surface area of the touch input which has been sensed and, in response to the changes in the touch surface area, for executing a particular function connected to the direction of changes of the touch surface area among a plurality of functions for controlling the operation of a watch-type terminal.
Abstract:
A watch type mobile terminal including a wrist band; a main system including a circuit board for operating the watch type mobile terminal; a main frame connected to the wrist band and encasing the main system; a fob detachably connected to the main system; and a display detachably connected to the fob.