Abstract:
An electronic device is provided. The electronic device includes a foldable housing, a flexible display, at least one camera, at least one sensor and at least one processor, wherein the foldable housing includes a first housing having a first surface facing a first direction and a second surface facing a second direction opposite to the first direction, a first connecting member which is connected to a side surface of the first housing and which can be folded in a first rotating direction and unfolded in a second rotating direction, a second housing which is connected to the first connecting member and has a third surface facing the first direction and a fourth surface facing the second direction, and in which the flexible display is positioned on the third surface, a second connecting member connected to the side surface of the second housing, and a third housing which is connected to the second connecting member and has a fifth surface facing the first direction and a sixth surface facing the second direction.
Abstract:
An electronic device is provided. The electronic device includes a housing on which at least a part of an external device operating communication in a frequency band of 20 GHz or higher is mounted, support members comprising a first support member connected to an area of the housing so as to support wearing of the electronic device in an area of the user's head while surrounding at least a part of the horizontal circumference of the user's head, and a second member surrounding at least a part of the vertical circumference of the user's head, and an antenna module disposed in an area of the second support member. The antenna module comprises an antenna layer comprising multiple patch antenna elements, a wireless circuit layer laminated on the lower portion of the antenna layer, and a heat-radiating layer laminated on the lower portion of the wireless circuit layer.
Abstract:
A fordable electronic device may include a first display, a second display, and a processor. The processor is configured to: based on the electronic device being in a folded state and a screen being displayed through the second display, detect that unfolding of the electronic device has started; based on and angle exceeding a first angle, control the second display to be in an off state and display at least a portion of a screen displayed through the second display on a first area of the first display and a menu for controlling the screen displayed through the first area on a second area of the first display; and based on the angle exceeding a second angle greater than the first angle, display at least a portion of the screen displayed through the first area and the second area on the entire area of the first display.
Abstract:
An electronic device according to an embodiment includes: a housing including a frame, a first temple connected to one side of the frame, and a second temple connected to the other side of the frame, a first printed circuit board (PCB) positioned in the first temple, and a flexible printed circuit board electrically connected to the first PCB, and the flexible printed circuit board includes a first rigid portion connected to the first PCB, a first flexible portion extending from the first rigid portion in a first direction, and a second flexible portion extending from the first rigid portion in a second direction different from the first direction, the second flexible portion being bent in a first bending area to overlap at least a portion of the first flexible portion.
Abstract:
According to various embodiments, an electronic device comprises a battery, a wireless interface including a coil and configured to wirelessly transmit electric power from the battery via the coil, and at least one processor configured to: perform a wireless charging function of wirelessly transmitting electric power to an external device via the wireless interface, while neither the electronic device nor the external device is being supplied with electric power from an external power source via a wire, and based on identifying that the external device starts being supplied with electric power from an external power source via a wire while performing the wireless charging function, stop performing the wireless charging function of wirelessly transmitting electric power to the external device.
Abstract:
An electronic device according to various embodiments may include: a coil configured to receive a signal for wirelessly obtaining power from an external electronic device; a wireless power circuit (MFC) configured to output the signal received by the coil as a DC signal; a first capacitive voltage divider circuit configured to adjust the voltage of, and to output, power according to a first voltage division ratio; a second capacitive voltage divider circuit configured to adjust the voltage of, and to output, power according to a second voltage division ratio; a controller configured to control the electronic device to provide the DC signal to at least one capacitive voltage divider circuit among the first capacitive voltage divider circuit and the second capacitive voltage divider circuit, based on a voltage value of the signal received through the coil; and a battery configured to receive another signal output from the at least one capacitive voltage divider circuit, based on the provided DC signal, thereby obtaining power.
Abstract:
An electronic device according to various embodiments of the present invention comprises: a housing including a first surface; a coil located close to the first surface within the housing and having conductivity; a battery located within the housing and being rechargeable; a first circuit located within the housing and providing, via the coil, power received wirelessly from the outside of the housing to a power management circuit; a second circuit located within the housing and providing wirelessly, via the coil, power of the battery to the outside of the housing; and a third circuit configured to establish selectively a first electrical connection between the first circuit and a first feed point of the coil or a second electrical connection between the second circuit and a second feed point of the coil, wherein the first feed point and the second feed point may be different. Other various embodiments are possible.
Abstract:
An electronic apparatus according to a variety of embodiments comprises: a rotation part for rotating a plurality of cameras; a memory for storing instructions; and a processor electrically connected to the rotation part and memory, wherein the memory can store, when being executed, instructions for the processor to: acquire at least one item of image data by means of the cameras; check in the image data whether at least a portion of an object is located in an overlap area; and, if at least a portion of an object is located in the overlap area, then modify the filming direction of the cameras by means of the rotation part.
Abstract:
An electronic device is provided, which includes a housing including a first plate facing in a first direction, a second plate facing in a second direction opposite to the first direction, and a lateral member surrounding a space between the first plate and the second plate, at least one hinge structure disposed at an edge of the second plate, a stand member that is opened or closed at an angle from the second plate through the at least one hinge structure; and a display disposed in the space and being visible through at least a portion of the first plate. The second plate includes an engaging stopper formed by a first terminating plane near the at least one hinge structure. The stand member includes a first stopper formed by a second terminating plane facing the engaging stopper of the second plate. The angle is determined when the first stopper meets the engaging stopper.
Abstract:
According to one embodiment of the present disclosure, an electronic device may include a housing including a portion configured to detachably couple with a part of a user's ear, a sensor installed on an outer surface of the housing or in the housing, a communication circuit installed on the outer surface of the housing or in the housing, a speaker installed on the outer surface of the housing, exposed toward an eardrum of the ear, and electrically connected to the communication circuit, a processor electronically connected to the sensor, the communication circuit, and the speaker, and a memory electrically connected to the processor.