Abstract:
An apparatus and a method for providing a control function using a fingerprint sensor in an electronic device are provided. The method includes collecting information based on occurrence of an event, detecting a touch input on a fingerprint sensor, and performing a control function for the information based on the touch input on the fingerprint sensor.
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 process operating method is provided. The method includes determining an execution application, generating an application process for the determined execution application, loading the determined execution application from a secondary memory to the generated application process, generating a platform child process that is a child process of a platform process, and loading a predetermined sub-module of the application to the platform child process.
Abstract:
An electronic device and a method for controlling the electronic device are provided. The method includes receiving at least one input sound from a user, determining one of a plurality of reference sounds included in a guide track as a device playing sound corresponding to the at least one input sound, and playing the device playing sound.
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 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:
A wearable electronic device is provided. The wearable electronic device comprises a first part including a first electronic component, a second part including a second electronic component and being spaced apart from the first part, and a flexible connection part configured to interconnect the first part and the second part. The flexible connection part includes a sensor configured to sense whether at least a part of the flexible connection part is flexed, and a retention member configured to maintain a shape of the flexed at least a part of the flexible connection part
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, at least one ultrasonic wave generator and at least one ultrasonic sensor operatively disposed on the housing, and a processor electrically connected to the at least one ultrasonic wave generator and the at least one ultrasonic sensor and configured to emit ultrasonic waves from at least one surface of the housing using the at least one ultrasonic wave generator, receive reflected waves reflected from at least one object through the at least one ultrasonic sensor, and determine a proximity between the electronic device and the object based on at least a difference between a first time, at which the ultrasonic waves are emitted, and a second time, at which the reflected waves are received.
Abstract:
An electronic device and method for outputting feedback corresponding to input handwriting is provided. The method for outputting feedback corresponding to a handwriting trajectory includes receiving input of the handwriting trajectory onto a screen, dividing the handwriting trajectory into axis-specific component vectors, generating a plurality of feedback signals corresponding to the respective component vectors, and outputting the feedback signals corresponding to the handwriting trajectory.