Abstract:
An electronic device and a method a provided. The electronic device includes a first surface, a second surface opposite to the first surface, and a side surface that surrounds at least part of a space between the first and second surfaces; a Radio Frequency (RF) communication circuit; an antenna radiator that forms at least part of at least one of the first surface, the second surface, and the side surface and is connected to the RF communication circuit; a sensor that detects whether an external object contacts the antenna radiator; a switching circuit connected to the antenna radiator and the sensor; and a processor configured to receive a first value from the sensor when the antenna radiator and the sensor are connected to each other and to receive a second value from the sensor when the antenna radiator and the sensor are separated from each other.
Abstract:
A method for controlling a combined display in an electronic device includes: performing connection to at least one sub-electronic device; receiving an image from the at least one sub-electronic device; and identifying relative position information of the at least one sub-electronic device with respect to the electronic device by using the image; and configuring the combined display in cooperation with the at least one sub-electronic device by using the relative position information.
Abstract:
A portable communication device is provided, which includes a housing including a rear cover; a battery disposed in the housing; NFC circuitry; wireless charging circuitry; MST circuitry; an FPCB including a plurality of layers substantially parallel to each other, at least a portion of the FPCB being disposed between the battery and the rear cover; an NFC coil electrically connected with the NFC circuitry, the NFC coil including a first portion and a second portion formed at different layers of the FPCB; a wireless charging coil electrically connected with the wireless charging circuitry, the wireless charging coil including a third portion and a fourth portion formed at different layers of the FPCB; and an MST coil electrically connected with the MST circuitry, the MST coil including a fifth portion and a sixth portion at different layers of the FPCB.
Abstract:
A portable communication device is provided. The portable communication device includes near field communication (NFC) circuitry; wireless charging circuitry; magnetic secure transmission (MST) circuitry; a flexible printed circuit board (FPCB) including a first substrate layer and a second substrate layer; an NFC coil electrically connected with the NFC circuitry, the NFC coil including a first portion formed on the first substrate layer and a second portion formed on the second substrate layer; a wireless charging coil electrically connected with the wireless charging circuitry, the wireless charging coil including a third portion formed on the first substrate layer and a fourth portion formed on the second substrate layer; and an MST coil electrically connected with the MST circuitry, the MST coil including a fifth portion formed on the first substrate layer and a sixth portion formed on the second substrate layer.
Abstract:
An electronic device is provided. The electronic device includes a housing; a plurality of coils that are disposed on a first layer within the housing; a plurality of other coils disposed on a second layer substantially parallel to the first layer; a first conductor that connects an end point of a first coil of the plurality of coils and a start point of a second coil of the plurality of other coils and conducts a current from the end point of the first coil to the start point of the second coil; and a second conductor that connects a start point of a third coil adjacent to an outer side of the first coil of the plurality of coils and an end point of the second coil and conducts the current to be applied from the end point of the second coil to the start point of the third coil, wherein the first conductor and the second conductor induce a directional magnetic field when the current flows.
Abstract:
An electronic device and a method of operating the electronic device are provided. The electronic device includes a communication circuit; a battery; a first conductive pattern electrically connected to the battery and configured to wirelessly receive power; a second conductive pattern electrically connected to the communication circuit; a processor; and a memory that stores instructions, which when executed, instruct the processor to receive power from an external device through the first conductive pattern, to detect a voltage or a current of a signal output from the second conductive pattern while receiving the power, and to provide an output that is at least partially based on the detected voltage or current of the signal output from the second conductive pattern.
Abstract:
An electronic device and a method a provided. The electronic device includes a first surface, a second surface opposite to the first surface, and a side surface that surrounds at least part of a space between the first and second surfaces; a Radio Frequency (RF) communication circuit; an antenna radiator that forms at least part of at least one of the first surface, the second surface, and the side surface and is connected to the RF communication circuit; a sensor that detects whether an external object contacts the antenna radiator; a switching circuit connected to the antenna radiator and the sensor; and a processor configured to receive a first value from the sensor when the antenna radiator and the sensor are connected to each other and to receive a second value from the sensor when the antenna radiator and the sensor are separated from each other.
Abstract:
An electronic device and a method for disassembling the electronic device are provided. The electronic device includes a housing including at least one of a first plate or a second plate, when the housing includes the first plate and the second plate, the second plate faces in an opposite direction to the first plate, a substrate disposed between the first and second plates in substantially parallel with the first and second plates, a first attachment layer disposed between the first plate and the substrate, and a second attachment layer disposed between the second plate and the substrate. When the first and second attachment layers are seen from above the first plate, the first and second attachment layers overlap with each other at least partially, and one of the first and second attachment layer includes at least one tear line extended at least partially across the one attachment layer.
Abstract:
An electronic device is provided. The electronic device includes a housing; a plurality of coils that are disposed on a first layer within the housing; a plurality of other coils disposed on a second layer substantially parallel to the first layer; a first conductor that connects an end point of a first coil of the plurality of coils and a start point of a second coil of the plurality of other coils and conducts a current from the end point of the first coil to the start point of the second coil; and a second conductor that connects a start point of a third coil adjacent to an outer side of the first coil of the plurality of coils and an end point of the second coil and conducts the current to be applied from the end point of the second coil to the start point of the third coil, wherein the first conductor and the second conductor induce a directional magnetic field when the current flows.
Abstract:
According to an embodiment of the present disclosure, a method and an electronic device for receiving a user input by the electronic device is provided. The method includes receiving a first touch input on a touchscreen, detecting at least part of a region contacted by the first touch input on the touchscreen, a region adjacent to the contacted region, and a position adjacent to the contacted region, after receiving the first touch input, and displaying a user interface on the touchscreen at least partially based on a relative relation between the region contacted by the first touch input, and at least one of the adjacent region and the adjacent position.