Abstract:
An electronic device and a method for controlling an external electronic device connected to the electronic device through wireless communication are provided herein. A first electronic device includes a communication module configured to communicate with a second electronic device; and a processor configured to, in response to an entry event of a communication restriction mode in which at least one communication function of the first electronic device is deactivated, provide entry information of the communication restriction mode and release information of the communication restriction mode to the second electronic device, and control performance of the communication restriction mode using the entry information and the release information.
Abstract:
A system for detecting the connection of an earphone system to a mobile device is provided. The earphone connection detecting system detects an electrical change from a mechanical change according to the insertion of the earphone jack plug of the earphone system to the jack interface of the mobile device, via a switching device electrically isolated from the earphone system, thereby identifying the connection of the earphone system to the mobile device.
Abstract:
According to various embodiments, an electronic device may comprise a bended display, a sensor unit, and a processor. The bended display includes a front display region, a side display region, and a back display region, which respectively correspond to a front face, a side face, and a back face of the electronic device. The sensor unit detects a motion of the electronic device. If an event occurs while content is displayed on the front display region, the processor controls the bended display to display a graphic object corresponding to the event on the front display region, and also controls the bended display to display a first screen corresponding to the graphic object on the back display region, based on the detected motion of the electronic device.
Abstract:
According to various embodiments, an electronic device may comprise a bended display, a sensor unit, and a processor. The bended display includes a front display region, a side display region, and a back display region, which respectively correspond to a front face, a side face, and a back face of the electronic device. The sensor unit detects a motion of the electronic device. If an event occurs while content is displayed on the front display region, the processor controls the bended display to display a graphic object corresponding to the event on the front display region, and also controls the bended display to display a first screen corresponding to the graphic object on the back display region, based on the detected motion of the electronic device.
Abstract:
An electronic device includes a touch panel configured to receive a user input at a location and a display configured to output at least one object on at least one of a plurality of grid areas. The plurality of grid areas is arranged in a plurality of rows and a plurality of columns. A processor is configured to rearrange an output location of the at least one object outputted on the at least one grid area in response to receiving the user input.
Abstract:
An electronic device includes: a housing; a battery disposed in the housing; and a sensor module at least partially disposed in the housing, wherein the sensor module includes: a board; a biometric recognition sensor disposed on the board; a sealing member around at least a part of the board and at least part of the biometric recognition sensor, and a biosignal sensing electrode around at least a part of the sealing member, wherein the biosignal sensing electrode is electrically connected to the board and at least partially exposed outside of the housing.
Abstract:
An electronic device includes a touch panel configured to receive a user input at a location and a display configured to output at least one object on at least one of a plurality of grid areas. The plurality of grid areas is arranged in a plurality of rows and a plurality of columns. A processor is configured to rearrange an output location of the at least one object outputted on the at least one grid area in response to receiving the user input.
Abstract:
An electronic device and a user interface providing method of the electronic device is provided. The electronic device includes a first display disposed on a first surface of the electronic device, a second display disposed on a second surface opposite to the first surface of the electronic device; and a processor. The processor outputs, on the first display, a specified object. The first display includes a display panel that displays the specified object, a touch panel that receives a touch input for the specified object, and a pressure sensor that senses a pressure of the touch input. The processor further outputs, on the second display, content associated with the touched specified object based on the pressure of the touch input.
Abstract:
According to various embodiments, an electronic device may comprise a bended display, a sensor unit, and a processor. The bended display includes a front display region, a side display region, and a back display region, which respectively correspond to a front face, a side face, and a back face of the electronic device. The sensor unit detects a motion of the electronic device. If an event occurs while content is displayed on the front display region, the processor controls the bended display to display a graphic object corresponding to the event on the front display region, and also controls the bended display to display a first screen corresponding to the graphic object on the back display region, based on the detected motion of the electronic device.
Abstract:
An apparatus for reducing TDMA noise in a terminal transceiving a wireless signal in a TDMA scheme, includes an interface unit in which an output accessory is mounted, an audio processor including a virtual ground and transceiving an audio signal to and from an output accessory through the interface unit, a switch unit provided between the interface unit and the audio processor and switching such that a ground terminal of the interface unit is connected to one of a real ground or a virtual ground of the audio processor, and a controller controlling the switch unit to connect the ground terminal of the interface unit to the virtual ground when a call function using the output accessory is activated, in which the switch unit is configured by two or more switches which are connected to each other in a parallel connection.