Abstract:
A wearable device includes a communication circuit, at least one sensor, and a processor, wherein the processor is configured to identify a distance between the wearable device and an external electronic device through the communication circuit, during identifying that a user wearing the wearable device is sleeping, compare data obtained through the at least one sensor to first reference data to identify a first state of the user while the user is sleeping based at least in part on identifying that the distance that is less than a reference distance, and compare the data to second reference data to identify a second state of the user while the user is awake, which is distinct to the first reference data based at least in part on identifying that the distance that is greater than or equal to the reference distance.
Abstract:
A semiconductor device includes a substrate including a cell region and a peripheral region, interconnection lines on the cell region and the peripheral region, the interconnection lines being spaced apart from the substrate in a first direction perpendicular to a top surface of the substrate, a lower insulating layer on the cell region and the peripheral region, the lower insulating layer covering the interconnection lines, and a top surface of the lower insulating layer on the cell region being at a lower height than top surfaces of uppermost interconnection lines of the interconnection lines, and data storage patterns on the lower insulating layer on the cell region, the data storage patterns being horizontally spaced apart from each other, and the data storage patterns being connected directly to the top surfaces of the uppermost interconnection lines on the cell region.
Abstract:
An electronic device may include a housing and a PhotoPlethysmoGram (PPG) sensor disposed inside the housing. The PPG sensor may include a first Light Emitting Diode (LED) configured to generate light in a first wavelength band, a second LED configured to generate light in a second wavelength band, a third LED configured to generate light in a third wavelength band, a fourth LED configured to generate light in a fourth wavelength band, and a light receiving module including at least one photo diode. The electronic device may include a processor operatively coupled with the PPG sensor and a memory operatively coupled with the processor. The memory may include instructions that, when executed, cause the processor to measure optical densities of the light generated by the first LED to the fourth LED, and calculate a blood glucose value based at least in part on the measured optical densities.
Abstract:
According to certain embodiments, an electronic device comprises a short-range communication module, a processor operatively connected to the short-range communication module, and a memory operatively connected to the processor, wherein the memory may store instructions which, when executed, cause the processor to: confirm that the electronic device is inserted into a first external electronic device; obtain setting information regarding a Bluetooth communication connection from the first external electronic device by using the short-range communication module; confirm whether a condition for setting address information of the electronic device is satisfied; and on the basis of confirming that the condition is satisfied, set the address information of the electronic device by using the setting information. Various other embodiments are possible.
Abstract:
An electronic device and a method of an electronic device are provided. The electronic device includes a satellite positioning circuit, at least one sensor for sensing an azimuth or movement of the electronic device, and a processor configured to identify the movement of the electronic device by using a plurality of location information received through the satellite positioning circuit, identify first azimuth information corresponding to the movement of the electronic device, based at least on determining that the movement of the electronic device corresponds to a designated movement, and calibrate second azimuth information obtained using the at least one sensor, based at least on the first azimuth information.
Abstract:
An electronic device comprising: an ultraviolet (UV) light sensor; and a processor configured to: generate a plurality of initial UV light measurements by using the UV light sensor, wherein each of the plurality of initial UV light measurements is associated with a respective orientation of the electronic device; and select a reference UV light measurement from the plurality.
Abstract:
An apparatus and a method for preventing an accident in a portable terminal are provided. The method includes obtaining environmental situation information from a sensor, detecting a dangerous object by analyzing the environmental situation information, extracting at least one of a notice service mapped to the dangerous object and a control service mapped to the dangerous object, and executing the at least one of the extracted notice service and the extracted control service.
Abstract:
An electronic device for body temperature measurement and an operation method thereof are provided. The electronic device includes memory storing one or more computer programs, a communication circuit, at least one sensor, and one or more processors communicatively coupled to the memory, the communication circuit, and the at least one sensor, wherein the one or more computer programs include computer-executable instructions that, when executed by the one or more processors individually or collectively, cause the electronic device to detect, through the communication circuit or the at least one sensor, a plurality of electronic devices which a user is wearing or with which a user is coming in contact, determine a representative electronic device from among the plurality of electronic devices on the basis of measurement context information, and acquire body temperature information of the user by using the representative electronic device.
Abstract:
An electronic device includes a hinge structure, a first housing, second housing foldably connected to the hinge structure and configured to be foldable with respect to the first housing, a first display disposed from at least a part of a first surface to at least a part of a third surface, a second display, a first sensor configured to collect sensor data related to movement of the first housing, a second sensor configured to collect sensor data related to movement of the second housing, and a processor operatively connected with the first display, the second display, the first sensor, and the second sensor. The processor is configured to identify a folding angle between the first housing and the second housing by using the first sensor and the second sensor.
Abstract:
An example electronic device may include a plurality of antennas for wireless communication, a processor configured to scan to identify whether there is at least one portable device using the plurality of antennas, define a three-dimensional recognition space based on a first signal for space setting transmitted from a portable device identified by the scan, calculate a position of the identified portable device in the recognition space based on a second signal transmitted from the identified portable device, and generate exercise content based on the position of the identified portable device, and a display module, including a display, configured to display the exercise content.