Abstract:
A wearable device may include a housing, a plurality of photo-sensors that are arranged on the housing or arranged to be exposed outside through the housing, and configure at least one array, and at least one processor, wherein the at least one processor is configured to obtain a plurality of biometric signals, based on outputting light through the plurality of photo-sensors, identify qualities of the obtained a plurality of biometric signals, determine, based on the identified qualities, at least one photo-sensor among the plurality of photo-sensors as a sensor for identification of biometric information, and identify biometric information, based on a biometric signal obtained from the at least one photo-sensor, and output the identified biometric information
Abstract:
Provided are an electronic device and method of voice command processing therefor. The electronic device may include: a housing having a surface; a display disposed in the housing and exposed through the surface; an audio input interface comprising audio input circuitry disposed in the housing; an audio output interface comprising audio output circuitry disposed in the housing; at least one wireless communication circuit disposed in the housing and configured to select one of plural communication protocols for call setup; a processor disposed in the housing and electrically connected with the display, the audio input interface, the audio output interface, the at least one wireless communication circuit, and a codec; and a memory electrically connected with the processor. The memory may store at least one codec supporting multiple modes associated with different frequency bands. The memory may store instructions that, when executed, cause the processor to perform operations comprising: setting up a call using the wireless communication circuit, selecting one of the multiple modes based on the selected communication protocol, selecting a speech recognition model based on the selected mode, receiving a voice command from the outside of the electronic device using the wireless communication circuit, and processing the voice command using the selected speech recognition model.
Abstract:
An electronic device is provided. The electronic device includes a plurality of distance sensors, an inertial sensor, a camera, a display, memory storing one or more computer programs, and a processor operatively connected to the plurality of distance sensors, the inertial sensor, the camera module, the display module, and the memory, wherein the one or more computer programs include computer-executable instructions that, when executed by processor, cause the electronic device to: identify, using the inertial sensor, whether a user wearing the electronic device on their head is walking, detect, in response to the user walking, a head rotation amount of the user using the inertial sensor, obtain a plurality of images through the camera on the basis of satisfying a head rotation condition based on the head rotation amount, measure an angle between a movement direction of the user and a gaze direction of the user on the basis of the plurality of images that are obtained, and activate among the plurality of distance sensors, at least one first distance sensor corresponding to the movement direction, when the measured angle exceeds a threshold.
Abstract:
According to an embodiment, a wearable device includes multiple sensors and a processor. The processor is designed to: identify a user's heart rate using a heart rate sensor in contact with a first body part; determine if the heart rate is at or above a reference level; provide a guide to contact a body temperature sensor with a designated second body part if the heart rate is high; acquire body temperature data via the sensor after the guide is given; and output a notification based on the acquired body temperature data.
Abstract:
An electronic device may include: an output module comprising output circuitry, a communication module comprising communication circuitry configured to communicate with at least one external device, a first sensor configured to sense a biometric signal, a second sensor configured to sense an inertial signal, and a processor operatively connected to the output module, the communication module, the first sensor, and the second sensor. The processor may be configured to determine a location of the electronic device for a body based on a signal transmitted or received with the at least one external device through the communication module in response to sensing the biometric signal, to determine a posture of the electronic device based on information obtained through the second sensor, to determine a measurement posture based on the location and the posture of the electronic device, and to provide a guide to correspond the measurement posture to a predetermined reference posture.
Abstract:
Various embodiments of the present invention relate to an electronic device and a screen control method for processing a user input by using the same, and according to the various embodiments of the present invention, the electronic device comprises: a housing; a touchscreen display located inside the housing and exposed through a first part of the housing; a microphone located inside the housing and exposed through a second part of the housing; at least one speaker located inside the housing and exposed through a third part of the housing; a wireless communication circuit located inside the housing; a processor located inside the housing and electrically connected to the touchscreen display, the microphone, the at least one speaker, and the wireless communication circuit; and a memory located inside the housing and electrically connected to the processor, wherein the memory stores a first application program including a first user interface and a second application program including a second user interface, wherein the memory stores instructions, and when the memory is executed, cause the processor to: display the first user interface on the display, while displaying the first user interface, receive a user input through at least one of the display or the microphone, wherein the user input includes a request for performing a task using the second application program, transmit data associated with the user input to an external server via the communication circuit, receive a response from the external server via the communication circuit, wherein the response includes information on a sequence of states of the electronic device to perform the task, and after receiving the response, display the second user interface on a first region of the display, based on the sequence of the states, while displaying a portion of the first user interface on a second region of the display. Other various embodiments, in addition to the various embodiments disclosed in the present invention, are possible.
Abstract:
A method and electronic device are disclosed herein. The electronic device includes a display and a processor which executes the method, including displaying at least two display regions on a display of the electronic device, displaying an execution screen of an application on one of the at least two display regions, and in response to detecting an input event for displaying a user interface, displaying the user interface on one of the at least two display regions.