Abstract:
Provided are a method of determining a location of a device and/or an electronic device for performing the method. An electronic device according to various example embodiments may include a processor, a communication module which may communicate with a device stored in a memory, wherein the memory which is electronically connected to the processor and stores the device and an instruction to be executed by the processor, and the memory, when operated by the processor, may identify a location of the electronic device in a plurality of areas where the device may be located, determine a candidate location of the device in the plurality of areas based on a signal received from the device and the location of the electronic device, collect a control history of the device using the communication module, and determine the location of the device among the candidate locations based on the control history and the location of the electronic device.
Abstract:
A method and apparatus are provided for displaying a three dimensional (3D) image in a mobile communication terminal. The method includes displaying an image comprising at least one object; sensing a touch gesture selecting an object for changing a three dimensional depth of the object among the at least one object with the image displayed; checking the three dimensional depth of the selected object; determining the three dimensional depth of the selected object based on the checked three dimensional depth; and displaying the selected object reflecting the determined three dimensional depth.
Abstract:
An electronic device is provided. The electronic device includes a communication module, a processor, and a memory storing instructions, the electronic device receives information indicating that a first external electronic device entered a designated space, from at least one anchor in the designated space, in response to receiving the information, establishes a communication connection with the first external electronic device using the communication module, after establishing the communication connection with the first external electronic device, receives a request of use authority of a first device among devices positioned in the designated space from the first external electronic device, identifies use authority set for the first external electronic device, based on information on the first device and information on the first external electronic device, and transmits information to the first external electronic device and the first device so the set use authority is applied to the first external electronic device.
Abstract:
A wearable electronic device and method are disclosed, including a display, a biometric sensor, a communication circuitry, and a processor. The processor implements the method, including: receiving a transmission including air quality information from an external electronic device equipped with a gas sensor, detecting, via a biometric sensor, biometric information of a user, identifying, via at least one processor, a dangerous situation based at least partly on the air quality information and the biometric information, and displaying a notification message indicating the identified dangerous situation through at least one of a display of the wearable electronic device, or the external electronic device, based on the identification of the dangerous situation.
Abstract:
A trustzone graphic rendering method in an operating system (OS) divided into a normal world (NWD) and a secure world (SWD) corresponding to a trustzone. The trustzone graphic rendering method includes generating an image resource used to generate a trustzone user interface (UI) in the NWD, transmitting the image resource from the NWD to the SWD, and generating the trustzone UI in the SWD, by separating and editing the image resource including a plurality of objects, wherein the separating and editing is performed in units of objects.
Abstract:
A ring-type wearable electronic device is provided. The ring-type wearable electronic device includes a ring-shape housing including a first housing portion and a second housing portion coupled to the first housing portion, wherein the second housing portion is configured to contact a finger of a user wearing the ring-type wearable electronic device, a first light source including a plurality of light emitters disposed in the ring-shape housing, and configured to emit light of red wavelength and infrared wavelength bands towards the finger, a first sensor disposed in the ring-shape housing, and configured to receive light emitted by the first light source, a second sensor disposed in the ring-shape housing, and configured to receive light emitted by the first light source, wherein the first sensor is positioned farther from the first light source than the second sensor is positioned from the first light source, a flexible printed circuit board (FPCB) disposed in the ring-shape housing, wherein the first light source, the first sensor, and the second sensor are disposed on the FPCB at least partially bent corresponding to the ring-shape housing, at least one processor including a processing circuitry, and memory storing instructions, wherein the instructions, when executed by the at least one processor individually or collectively, cause the ring-type wearable electronic device to: emit, by the first light source at a first time, first light of red wavelength and infrared wavelength bands, the first light being configured to reach the first sensor through the finger, based on the first light emitted by the first light source at the first time, obtain first information corresponding to part of the first light that is received by the first sensor via the finger, emit, by the first light source at a second time different from the first time, second light of red wavelength and infrared wavelength bands, the second light being configured to reach the second sensor through the finger, based on the second light emitted by the first light source at the second time, obtain second information corresponding to part of the second light that is received by the second sensor via the finger, and acquire an oxygen saturation information of the user based on at least one of the first information or the second information.
Abstract:
According to an embodiment, an electronic device may include a first battery, charging circuitry, communication circuitry, a display, and at least one processor, wherein the at least one processor is configured to, based on identifying that a wearable electronic device being mounted in the electronic device, wirelessly transmit power to the wearable electronic device using the charging circuitry; display, on the display, at least one of first state information of the first battery and second state information of a second battery included in the wearable electronic device while wirelessly transmitting the power; display at least one object corresponding to at least one function related to the wearable electronic device on the display; and based on identifying an input to a first object among the at least one object, transmit a control signal for causing the wearable electronic device to execute a first function corresponding to the first object to the wearable electronic device through the communication circuitry.
Abstract:
An electronic device may include a communication module communicating with at least one of a first external electronic device and a second external electronic device, wherein the first external electronic device may perform a first operation, a database storing information related to at least one associated device and at least one associated operation for controlling the at least one associated device with a specified command in response to a specified operation of the first external electronic device, wherein the at least one associated device may include the second external electronic device and wherein the at least one associated operation may include a second operation, and at least one processor, wherein the at least one processor may identify that a first operation of the first external electronic device is executed, identify, from the database, a second external electronic device that is an associated device corresponding to the first operation of the first external electronic device and a second operation that is an associated operation in response to identifying that the first external electronic device is located in a specified space and satisfies an associated operation execution condition, and transmit a command for executing the second operation to the second external electronic device through the communication module.
Abstract:
An electronic device may include a temperature sensor, a display, and a processor operatively connected to the temperature sensor, wherein the processor may be configured to: in response to identifying, by using the temperature sensor that the ambient temperature of the electronic device is changed beyond a preconfigured level within a predetermined time, measure the internal temperature of the electronic device; and in response to identifying, through comparison, that the measured internal temperature of the electronic device is lower than the ambient temperature of the electronic device by more than a predetermined level, control at least one component inside the electronic device to perform control to raise the internal temperature of the electronic device to a preconfigured first level.
Abstract:
An operating method of an electronic device includes receiving a request to control of at least one application that is providable by the electronic device, obtaining second information according to a machine learning model based on first information corresponding to a history of use regarding the at least one application and at least one support element. The machine learning model predicts at least a probability of use of the at least one support element which supports execution of the at least one application based on the first information, and the method executes a function corresponding to the request to control the at least one application to be provided by the electronic device, based on the second information including at least the probability of use of the at least one support element which supports the execution of the at least one application.