Abstract:
Disclosed is an electronic device including: a USB connector connected to a USB plug of an external device; a high-speed interface; a voltage source for supplying a voltage to the high-speed interface; a first circuit portion connected to a ground portion, and has a second impedance higher than a first impedance of the high-speed interface; and a processor. The processor is configured to monitor the external device by using the high-speed interface in a first interval of a first frame, form a disconnection sensing path by forming a connection between the first circuit portion and a second circuit portion of the external device, and use the disconnection sensing path to determine whether the connection between the USB connector and the USB plug has been disconnected. The second circuit portion may have a fourth impedance higher than a third impedance of an external high-speed interface. Various other embodiments are also possible.
Abstract:
A method and an apparatus for acquiring additional information of an electronic device including a camera are provided. The method includes displaying a preview image when the camera is driven and collecting information and situation information about a subject, extracting shutter attribute information according to the collected information; displaying a shutter button corresponding to the shutter attribute information, and storing the preview image received from the camera, the situation information, and the shutter attribute information in response to a selection of a user for the shutter button.
Abstract:
A refrigerator including an inner case having an inner case opening, an outer case having an outer case opening, a mounting frame having a passage between the inner case opening and the outer case opening, an insulation in an insulating space where one end of the passage of the mounting frame is at the inner case opening of the inner case and another end of passage of the mounting frame is at the outer case opening, a thermoelectric element including a heat-absorbing surface and a heat-generating surface, a cooling sink in contact with the heat-absorbing surface so as to exchange heat with the heat-absorbing surface, and a heat sink in contact with the heat-generating surface so as to exchange heat with the heat-generating surface, wherein the cooling sink and the heat sink are respectively coupled to the mounting frame.
Abstract:
An electronic device may include: a housing including a front plate oriented in a first direction, a rear plate oriented in a second direction opposite the first direction, and a side member enclosing at least a part of a space between the front plate and the rear plate. The electronic device further including a display disposed to be visible through the front plate; a printed circuit board disposed between the display and the rear plate; a support structure having a first face oriented in the first direction and supporting the display and a second face oriented in the second direction and supporting the printed circuit board,; a conductive member disposed between the support structure and the rear plate; and a sealing structure disposed between the conductive member and the rear plate, the sealing structure extending along a periphery of the conductive member and formed in a closed curve shape.
Abstract:
Disclosed are an electronic device and method for detecting the proximity of an object. In an embodiment, the electronic device includes a communication module, a sound emitter, a sound receiver, and a processor. The processor receives at least one part of a voice signal from a calling party through the communication module, and determines whether there is a voice idle time in the at least one part of the voice signal. When the voice idle time is present in the at least one part of the voice signal, the processor outputs a sound wave in an inaudible frequency band through the sound emitter during the voice idle time. Then the processor receives, through the sound receiver, sound wave in the inaudible frequency band reflected from an object. Next, the processor may detect whether the object is proximate to the electronic device using the reflected sound wave in the inaudible frequency band
Abstract:
According to one general aspect, a system may include a plurality of data nodes. Each data node may include either or both of a first storage medium and a second storage medium that is slower than the first storage medium. Each data node may be configured to store a piece data in either the first storage medium or the second storage medium. The system may be configured to store a plurality of copies of an active piece of data within two or more data nodes. A fast copy of the active piece of data may be stored by a first storage medium of a first data node. One or more slow copies of the active piece of data may be stored by respective second storage mediums of one or more respective other data nodes.
Abstract:
An electronic device, according to various embodiments, includes: an application processor including an audio processing module and a voice recognition module; a mic; a speaker; and a sensor hub. While the audio processing module included in the application processor is in a sleep state, the sensor hub generates an ultrasonic signal and provides the ultrasonic signal to the speaker so that the speaker outputs a first signal including the ultrasonic signal therethrough; receives, from the voice recognition module, a second signal inputted through the mic; and determines whether an object is near the electronic device, at least on the basis of the first signal and the second signal.
Abstract:
An electronic device and method are disclosed herein. The electronic device includes a communication circuit, a processor, and a memory. The processor implements the method, including: receiving, from each of one or more external devices receiving a voice signal of a user, via the communication circuit, a first probability value based on usage frequency, and a second probability value based on signal-to-noise (SNR) magnitude, calculating final probability values for each of the one or more external devices, based on respective first and second probability values of each of the one or more external devices, and selecting an external device from among the one or more external devices having a highest final probability value from among the calculated final probability values.
Abstract:
According to various embodiments, provided is a control operation comprising: receiving a first utterance from a device; determining a specific category corresponding to the received first utterance from among a plurality of categories; determining a first domain for processing of the first utterance from among a plurality of domains related to the determined specific category; acquiring information enabling an operation corresponding to the first utterance to be performed based on the determined first domain; receiving a second utterance from the device; identifying whether processing of the second utterance is possible in the determined first domain; based on identifying that the processing of the second user utterance based on the first domain is not possible, checking a second domain among the plurality of domains, and identifying whether processing of the second utterance based on the second domain is possible; and based on identifying that the processing of the second utterance based on the second domain is possible, acquiring information enabling an operation corresponding to the second utterance to be performed based on the second domain. An operation of determining a domain corresponding to a user utterance of the electronic device may be performed using an artificial intelligence model.
Abstract:
An electronic device is provided. The electronic device includes a housing, a display that is visually exposed through one surface of the housing and that includes a display panel including a pixel array and a layer group including a plurality of layers stacked on the display panel, a printed circuit board disposed in the housing, a piezo unit attached to a rear surface of the display panel, and a flexible printed circuit board (FPCB) that is connected to the piezo unit and that extends to the printed circuit board, the flexible printed circuit board including a coil that surrounds at least part of the piezo unit.