Abstract:
According to an embodiment, an electronic device comprises: a communication module comprising communication circuitry, a memory, and at least one processor. The memory stores instructions which, when executed, cause the at least one processor to control the electronic device to: transmit, to a first electronic device through the communication module, first response data obtained by processing a first speech input corresponding to a first utterance received from the first electronic device, identify a second electronic device including circuitry configured to detect a second utterance associated with the first response data within a designated time after the first utterance, transmit a wake-up signal to the second electronic device, receive, from the second electronic device, a speech input corresponding to an utterance obtained by a microphone turned on based on the wake-up signal, identify whether the received speech input corresponding to the utterance is a second speech input corresponding to the second utterance, obtain second response data obtained by processing the second speech input based on the first speech input and the first response data in response to identifying that the received speech input corresponding to the utterance is the second speech input corresponding to the second utterance, and transmit the second response data to at least one of the first electronic device or the second electronic device through the communication module.
Abstract:
According to an embodiment of the disclosure, an electronic device may include a speaker, a microphone, a wireless communication circuit, and at least one processor connected to the speaker, the microphone, and the wireless communication circuit. The at least one processor may be configured to: in response to a user's voice command received through the microphone, perform a task corresponding to the voice command, based on an information amount contained in a result of the task, determine a type of the result to be visually appropriate or auditorily appropriate, and based on the type of the result, determine a device for providing the result as a screen device or a speaker.
Abstract:
A semiconductor package including a first semiconductor chip including a substrate having a front surface and a rear surface opposite to each other, front pads on the front surface, through-electrodes electrically connected to the front pads, passing through the substrate, and protruding onto the rear surface, and rear pads on the through-electrodes, a first dielectric layer covering at least a portion of the first semiconductor chip, the first dielectric layer surrounding, on the rear surface of the substrate, a portion of a side surface of each of the through-electrodes and a side surface of each of the rear pads, on the rear surface of the substrate, at least one first alignment structure within the first dielectric layer around the first semiconductor chip, and a second semiconductor chip on the first dielectric layer may be provided.
Abstract:
According to an embodiment disclosed in the present document, a gesture-based command execution method may comprise the operations of: acquiring a command from a user by using a sensor; in response to acquisition of the command, controlling an actuator so that the user can be included in a FoV of a camera module, and thus changing a capturing direction of the camera module; acquiring first gesture information on the user's moving gesture through the camera module at a first time point and a second time point; at the second time point, controlling the actuator so that the FoV can be changed, on the basis of a direction determined by the first gesture information; acquiring space information corresponding to the changed FoV through the camera module; controlling the actuator so that the user can be included in a FoV of the camera module, at a third time point after the second time point; acquiring second gesture information on the user's moving gesture through the camera module after the third time point; and when all the pieces of gesture information are acquired as an input, executing the command on the basis of a designated area determined by the acquired gesture information and the acquired space information.
Abstract:
A message processing operation of an electronic device that includes a processor is provided. The message processing operation includes running an application for processing a message, providing a screen displaying a first unread message and a second unread message through the application, and processing message read confirmation of the first unread message at a first time and processing message read confirmation of the second unread message at a second time that is different from the first time.
Abstract:
A method for controlling a signal related to an external device and an electronic device therefor are provided. The electronic device includes a transceiver, a memory, and at least one processor. The at least one processor is configured to control to receive a broadcasted request signal for registering an external device, from the external device via the transceiver, identify whether a nonaudible frequency signal is received from the external device, and provide a message for registering the external device based on the nonaudible frequency signal being received.
Abstract:
A semiconductor package may include a first redistribution structure, a first semiconductor chip on the first redistribution structure, a first molding layer covering the first semiconductor chip, first connection structures on the first redistribution structure and extending in a vertical direction while passing through the first molding layer, a second redistribution structure on the first semiconductor chip, a second semiconductor chip on the second redistribution structure, and a metal layer on the second semiconductor chip. The metal layer may be in contact with an upper surface of the second semiconductor chip.
Abstract:
An electronic device is provided. The electronic device includes an ultrasonic sensor, an electromagnetic wave sensor, a memory for storing at least one instruction, and a processor electronically connected to the memory, wherein the processor is configured to control an ultrasonic sensor to emit ultrasonic waves in a direction of clothing, based on the ultrasonic waves, which are reflected by the clothing, are received through the ultrasonic sensor, acquire sound information based on the received ultrasonic waves, control the electromagnetic wave sensor to emit the electromagnetic waves in the direction of the clothing, based on the ultrasonic waves, which are reflected by the clothing, are received through the ultrasonic sensor, acquire spectrum information based on the received electromagnetic waves, and input the sound information and the spectrum information in a neural network model to acquire contamination level information about the clothing.
Abstract:
Disclosed is a server including a communication circuit, a memory, and a processor. The processor is be configured to store identification information and location information of at least one external device in the memory, to receive identification information of an Internet of Things (IoT) device nearby the at least one external device from the at least one external device, using the communication circuit, and to store the identification information of the IoT device in association with the identification information and the location information of the at least one external device in the memory as a database.
Abstract:
A method for selecting a serving cell by a user equipment (UE) to which the inter-site carrier aggregation (CA) technology is according to the intensity of a reception signal of each carrier wave is provided. However, in order to improve resource usage and a throughput of the entire cells, a method is performed in which a PCell and an SCell are selected considering the intensity of a reception signal and a load between cells, the SCell is activated, and loads of the PCell and the SCell are adjusted. The method can balance an inter-cell traffic load, and eventually, increase usage of the entirety of a network and improve a throughput.