Abstract:
A method of performing a voice command function in an electronic device includes detecting voice of a user, acquiring one or more pieces of attribute information from the voice, and authenticating the user by comparing the attribute information with pre-stored authentic attribe information, using a recognition model. An electronic device includes a voice input module configured to detect a voice of a user, a first processor configured to acquire one or more pieces of attribute information from the voice and authenticate the user by comparing the attribute information with a recognition model, and a second processor configured to when the attribute information matches the recognition mode, activate the voice command function, receive a voice command of the user, and execute an application corresponding to the voice command. Other embodiments are also disclosed.
Abstract:
An electronic device is disclosed, including a first housing with a first support member, a second housing foldably coupled to the first housing through a hinge mechanism and including a second support member, a flexible display supported by the first housing and the second housing, the flexible display including: a window layer, a display panel disposed under the window layer, and a bending portion extended from the display panel and attached to a rear surface of the display panel, the bending portion including: an extension portion and a control circuit and a flexible substrate, a first waterproof member, a second waterproof member, and a third waterproof member that connects the first waterproof member and second waterproof member, wherein when the flexible display is viewed from above, the control circuit and the flexible substrate overlap a first waterproof space formed through the first, second and third waterproof member.
Abstract:
Provided is an electronic device that includes a first processor for receiving an audio signal, performing first voice recognition on the audio signal, and transferring a driving signal to a second processor based on a result of the first voice recognition. The second processor performs second voice recognition based on a voice signal by the first voice recognition or the audio signal, in response to the driving signal.
Abstract:
Various embodiments of the present invention relate to an apparatus and a method for displaying an electronic document for processing a user's voice command in an electronic device. The electronic device includes an input device; a display; and a processor, wherein the processor may be configured to detect a voice command of a user using the input device, if outputting an electronic document corresponding to the voice command, identify at least one input field in the electronic document, determine guide information based on information of the at least one input field, and display the electronic document comprising the guide information using the display. Other embodiments may be possible.
Abstract:
According to various embodiments, a content casting method of an electronic device may comprise: an operation of obtaining a content list including a plurality of pieces of content information from an external server; an operation of selecting at least one piece of content from the content list on the basis of at least one of the state of a user, the type of content, and the state of an external electronic device; and an operation of transmitting information on the selected at least one piece of content to the external electronic device so as to cause the external electronic device to play the selected at least one piece of content through a short-range wireless network. Additional various embodiments identified through the specification are possible.
Abstract:
A system is disclosed. A system according to an embodiment may comprise a network interface, at least one processor, and at least one memory. The at least one memory may store instructions that, when executed, cause the at least one processor to: receive a first request for calling a first chatbot in connection with chatting based on text and/or speech through the network interface; request the first chatbot to join the chatting; receive a second request for calling a second chatbot in connection with the chatting through the network interface; request the second chatbot to join the chatting; receive a third request comprising a task related to the first chatbot and unrelated to the second chatbot; provide the third request to the first chatbot and the second chatbot after the first chatbot and the second chatbot join the chatting; receive a first response related to the task from the first chatbot; receive a second response indicating failure of the task or inability regarding the task from the second chatbot; and provide only the first response through the network interface. Additional various embodiments identified through the specification are possible.
Abstract:
Disclosed is a display driver circuit including a resolution analyzer that detects a size of a portion of screen input data received from a processor, and acquires a setting related to scaling of the screen input data based on the detected size, and an image processor that generates screen output data corresponding to a resolution of the display panel based on the acquired setting, and supplies the generated screen output data to a display panel. Various embodiments identified herein may be realized.
Abstract:
A method for processing a voice input and a system therefor are provided. The system includes a microphone, a speaker, a processor, and a memory. The processor, in a first operation, receives a first voice input including a first wake-up keyword, selects a first response model based on the first voice input, receives a second voice input after the first voice input, processes the second voice input, using an NLU module, generates a first response based on the processed second voice input, in a second operation, receives a third voice input including a second wake-up keyword different from the first wake-up keyword, selects a second response model based on the third voice input, receives a fourth voice input after the third voice input, processes the fourth voice input, using the NLU module, and generates a second response based on the processed fourth voice input.
Abstract:
An electronic device includes a display panel, a display driver IC (DDI), a gate driver, a light-emission driver, and a processor. The display panel includes multiple data lines, multiple gate signal lines, and light-emission signal lines. The DDI drives the display panel. The gate driver applies gate scan signals to the multiple gate signal lines, based on control of the DDI. The light-emission driver applies light-emission signals to the multiple light-emission signal lines, based on control of the DDI. The processor controls the DDI. The processor controls a first scan speed of the gate scan signals to be different from a second scan speed of the light-emission signals.
Abstract:
An electronic device includes a microphone, a speaker, a processor operatively connected to the microphone and the speaker, and a memory electrically connected to the processor and storing instructions that, when executed by the processor, cause the processor to receive a sound through the microphone, analyze the received sound, determine a song associated with the sound, and a kind of output sound based on at least in part on a result of the analyzing, generate an output sound based on the kind of output sound, and output the generated output sound through the speaker.