Abstract:
An electronic device according to an embodiment may include: a battery, a haptic motor, a speaker, haptic motor driving circuitry, audio circuitry, at least one processor, comprising processing circuitry, and memory storing instructions, wherein the at least one processor, individually and/or collectively, is configured to execute the instructions and to cause the electronic device to: output, through the speaker, audio signals corresponding to audio data using the audio circuitry, based on haptic signals being output concurrently with output of audio signals through the speaker, identify the audio signals to be output and the haptic signals to be output, estimate a discharge current value of the battery associated with the audio signals to be output concurrently with output of the haptic signals, and, based on the estimated discharge current value exceeding a specified discharge current value, adjust volume associated with the audio signals to be output and/or a driving voltage for driving the haptic motor in association with the haptic signals to be output such that the discharge current value of the battery due to the output of the audio signals and haptic signals does not exceed the specified discharge current value.
Abstract:
An electronic device may include: a communication circuit; and a processor operatively connected to the communication circuit. The processor may be configured to generate a communication link to a first electronic device for audio by using the communication circuit, and when identifying a first state in which the remaining battery capacity of the electronic device for audio is smaller than the remaining battery capacity of the first electronic device for audio, and a difference between the remaining battery capacity of the electronic device for audio and the remaining battery capacity of the first electronic device for audio is greater than or equal to a threshold value, change a master role from the electronic device for audio to the first electronic device for audio. Various other embodiments may be provided.
Abstract:
An electronic device may include a printed circuit board layer including a plurality of flexible areas and a plurality of rigid areas, a wireless charging circuit disposed in one rigid area among the plurality of rigid areas, and a plurality of wireless charging antennas disposed in the plurality of flexible areas and including a coil shape. The plurality of wireless charging antennas each may be electrically connected in parallel with the wireless charging circuit. Other various embodiments identified through the specification are possible.
Abstract:
An example wearable electronic device includes a housing including a rear cover having a first hole and at least partially contacting a body of a user while the wearable electronic device is worn by the user, a first biometric sensor disposed in the housing and aligned with the first hole, wherein the first biometric sensor includes a first lens disposed in the first hole and is configured to detect first biometric information of the user based on light of a designated wavelength band, which passes through the first lens, a second biometric sensor disposed in the housing and disposed to face the rear cover, wherein the second biometric sensor is configured to detect second biometric information that is different from the first biometric information, and a blocking structure that prevents or reduces foreign substances from being introduced through the first hole.
Abstract:
A terminal including a plurality of speakers and a method for operating the same are provided. The method includes generating a request for an audio data playback, processing a signal according to the audio data playback, determining an audio pass which will output the processed signal corresponding to the audio data, when the audio pass which will output the processed signal corresponding to the audio data is determined, dividing an audio signal to be transferred to sub amplifiers in a front terminal of at least one dual amplifier connected to a plurality of speakers in one-to-on correspondence and including two sub amplifiers corresponding to a dual amplifier, transferring the divided audio signal to a corresponding sub amplifier of the dual amplifier, and amplifying the processed signal corresponding to the audio data and transferring the amplified processed signal corresponding to the audio data to the speakers by the dual amplifier.