Abstract:
An electronic device may include an audio output device; and a processor configured to be operatively connected to the audio output device. The processor is configured to: acquire a first user input for reproducing a first audio related to a first application; based on the first user input, generate first decoded data by decoding the first audio using a first codec; generate first synthesized data by applying a first audio effect to the first decoded data; transmit the first synthesized data to an audio framework; based on the first audio being decoded using the first codec, transmit, to the audio framework, a first request for deactivating a function of applying a second audio effect; and output the first synthesized data via the audio output device without applying the second audio effect to the first synthesized data, based on the function of applying the second audio effect being deactivated.
Abstract:
An electronic device that carries out communication and an operation method therefor are provided. The electronic device includes a short-range communication circuit and at least one processor operatively connected to the short-range communication circuit, wherein the at least one processor may be configured to establish a first communication connection to a first external electronic device via the short-range communication circuit, transmit, to a second external electronic device via the short-range communication circuit, first information associated with the first communication connection, if an event requiring a second communication connection between the second external electronic device and the first external electronic device occurs in the second external electronic device, receive, from the second external electronic device via the short-range communication circuit, second information notifying that the second communication connection will be established, and disestablish the first communication connection via the short-range communication circuit.
Abstract:
An electronic device may include a display and at least one processor configured to execute an application, play multimedia content, obtain information associated with playing the multimedia content, identify a synchronization parameter for synchronization, based on the obtained information, output a UI generated based on the obtained information and the synchronization parameter to the display, and synchronize the audio signal and the video signal.
Abstract:
An electronic device according to various embodiments comprises a communication module including communication circuitry, at least one microphone, and a processor. The processor can be configured to: be connected to an external device through the communication module; switch a call audio signal path to an external device output path in response to being call-connected to an opponent device; duplicate a call audio signal (Rx in) transmitted from the opponent device, provide a first signal to an echo removal module, and provide a second signal to the external device via the external device output path; measure latency between the external device and the electronic device; variably adjust the size of a dynamic buffer for removing echo, by applying the measured latency; generate a reference signal delayed in the second signal, by the adjusted dynamic buffer; and remove an echo signal, with respect to the first signal generated from a speaker of the external device, from a microphone input signal obtained from the at least one microphone, based on the generated reference signal.
Abstract:
Provided is an apparatus that includes a speaker, a memory, and a processor operatively connected to the speaker and the memory. The processor is configured to: identify whether audio output is provided via the speaker when an external device is detected; determine, based on whether the audio is output via the speaker, whether to apply output conversion effects; and control, based on the determination, the audio output via the external device. Various other embodiments including a method thereof are also possible.
Abstract:
An electronic device may include: a memory, a display, a haptic module comprising haptic circuitry, a sound module comprising audio circuitry, and a processor. The processor may be configured to: detect an event for an output of vibration and sound, delay the output of the vibration, change a sound output mode from a first mode to a second mode for fast output while the output of the vibration is delayed, output the sound using the sound module in the second mode, and output the delayed vibration through the haptic module to be synchronized with the output of the sound. As the sound output mode is changed to the second mode, a sound output path may be opened. The sound output path may be changed from the first path for non-fast output to the second path for fast output.
Abstract:
An electronic device may include a camera and a processor operatively connected to the camera, wherein the processor may be configured to: acquire video data through the camera; receive first audio data through a first audio input device; perform a connection configuration of a second audio input device as the device receiving audio data is switched from the first audio input device to the second audio input device; calculate a gap time on the basis of a time consumed for completing the connection configuration of the second audio input device; generate silent data on the basis of the calculated gap time; receive second audio data from the second audio input device; and synchronize the video data, the first audio data, the silent data, and the second audio data. Various other embodiments are possible.
Abstract:
A photosensitive resin composition includes (A) a photo-conversion material; (B) a metal-containing compound; (C) a photopolymerizable monomer; (D) a photopolymerization initiator; and (E) a solvent, wherein the metal-containing compound includes a *—S-M-S—* (M is Zn, Al, Mg, Ca, Sc, Ti, V, Cr, Mn, Fe, Co, Ni, Cu, Zn, Ga, Sr, Y, Zr, Nb, Mo, Cd, In, Ba, Au, Hg, or TI) structure, a complex including a polymer matrix in which a photo-conversion material is dispersed, wherein the polymer matrix includes a *—S-M-S—* (M is Zn, Al, Mg, Ca, Sc, Ti, V, Cr, Mn, Fe, Co, Ni, Cu, Zn, Ga, Sr, Y, Zr, Nb, Mo, Cd, In, Ba, Au, Hg, or TI) structure and an ester linking group, a laminated structure including the complex, and a display device and an electronic device including the laminated structure.
Abstract:
A photosensitive resin composition includes (A) a photo-conversion material; (B) a metal-containing compound; (C) a photopolymerizable monomer; (D) a photopolymerization initiator; and (E) a solvent, wherein the metal-containing compound includes a *—S-M-S—* (M is Zn, Al, Mg, Ca, Sc, Ti, V, Cr, Mn, Fe, Co, Ni, Cu, Zn, Ga, Sr, Y, Zr, Nb, Mo, Cd, In, Ba, Au, Hg, or Tl) structure, a complex including a polymer matrix in which a photo-conversion material is dispersed, wherein the polymer matrix includes a *—S-M-S—* (M is Zn, Al, Mg, Ca, Sc, Ti, V, Cr, Mn, Fe, Co, Ni, Cu, Zn, Ga, Sr, Y, Zr, Nb, Mo, Cd, In, Ba, Au, Hg, or Tl) structure and an ester linking group, a laminated structure including the complex, and a display device and an electronic device including the laminated structure.
Abstract:
A method of processing an audio signal is provided. The method includes receiving at least one digital audio stream from at least one audio source, applying at least one gain value to each of the at least one digital audio stream by a gain adjustment unit, mixing the at least one digital audio stream to which the at least one gain value has been applied, calculating a representative gain value from the at least one gain value, calculating an extra valid headroom based on the representative gain value for correction of the mixed at least one digital audio stream, and post-processing the mixed at least one digital audio stream using the extra valid headroom.