Abstract:
An electronic device is provided. The electronic device includes an image sensor including at least one phase detection pixel, and a control unit operatively coupled to the image sensor. The control unit is configured to obtain image information and phase difference information about at least one subject through the image sensor, to identify a plurality of pieces of distance information corresponding to a plurality of regions associated with the image information, based on the phase difference information, and to process the image information, based on the distance information.
Abstract:
The present disclosure includes an electronic device and a method thereof. The electronic device includes a display, an ambient light sensor, and at least one processor, operatively connected to the display and the ambient light sensor. The at least one processor is configured to detect, by using the ambient light sensor, ambient light of the electronic device during a first duration in a state in which the display is turned off, identify a setting for being used for the ambient light sensor, based at least in part on a characteristic of the ambient light, detect, by using the ambient light sensor, ambient light of the electronic device during a second duration based at least in part on the identified setting, and control a function of the display, based at least in part on the characteristic of the ambient light detected during the second duration.
Abstract:
A method and apparatus for processing biometric information in an electronic device including a processor that operates at a normal mode or at a secure mode, the method comprising, detecting a biometric input event from a biometric sensor module at normal mode, creating biometric data based on sensed data from the biometric sensor module at the secure mode, performing biometric registration or biometric authentication based on the created biometric data at the secure mode, and providing result information of biometric registration or biometric authentication at the normal mode.
Abstract:
An electronic device and method are disclosed herein. The electronic device includes a sensor and a processor. The processor implements the method, including measuring infrared light corresponding to a user using the sensor, and detecting biometric information of the user if the infrared information satisfies a predetermined condition.
Abstract:
Disclosed is an electronic device includes a housing, a display within the housing, and exposed through a surface of the housing, a light emitting unit and a light receiving unit within the housing, and a processor electrically coupled with the display, the light emitting unit and the light receiving unit. The light emitting unit includes at least one light source for outputting light of at least one wavelength band. The light receiving unit includes at least one region for receiving the light of the at least one wavelength band. The processor is configured to control a function of the light emitting unit and/or the light receiving unit based on at least one mode. Other embodiments are disclosed.
Abstract:
A method for determining a heart rate (HR) using an infrared rays (IR) sensor and an electronic device is provided. An image is received using an IR sensor, at least one region of interest (ROI) for measuring the HR is determined in the received image, and the HR is determined based on the at least one determined ROI.
Abstract:
Provided is a stretchable supercapacitor and a method of manufacturing the same. The stretchable supercapacitor includes a separator between first and second current collectors. The first and second current collectors each including an active material. The second current collector is on the first current collector. The separator includes an electrolyte. Each of the separator, the first current collector and the second current collector includes an elastic polymer layer. The first and second current collectors may each have a 3-dimensional nano-pore structure. The stretchable supercapacitor may further include a first electrode in contact with the first current collector and a second electrode in contact with the second current collector. The elastic polymer layers may include at least one of styrene-b-butadiene-b-styrene (SBS), polyurethane, polyurethane acrylate, acrylate polymer, acrylate terpolymer, and silicone-based polymer.
Abstract:
An electronic device, and an operation method thereof, are disclosed. The electronic device may include a memory; and a processor configured to execute at least one operating system executed in a first region allowing an operation based on a first authority; execute at least one application executed in a second region allowing an operation based on a second authority; receive a first authority policy from a server; obtain a second authority policy from the at least one application; and in response to detection of access to at least one device resource by the at least one application, configure authority of access to the at least one device resource, according to a third authority policy based on the first authority policy and the second authority policy, by using an authority determination module executed in a third region allowing an operation based on a third authority.
Abstract:
A method and apparatus for processing biometric information in an electronic device including a processor that operates at a normal mode or at a secure mode, the method comprising, detecting a biometric input event from a biometric sensor module at normal mode, creating biometric data based on sensed data from the biometric sensor module at the secure mode, performing biometric registration or biometric authentication based on the created biometric data at the secure mode, and providing result information of biometric registration or biometric authentication at the normal mode.
Abstract:
Disclosed is a display device and a method for controlling a device. The display device includes a plurality of light emitting diode (LED) modules arranged in a matrix, a plurality of driver integrated circuits (ICs) configured to drive the plurality of LED modules, and a controller connected to a plurality of first line driver ICs arranged on a first line, among the plurality of driver ICs, and configured to provide a signal for controlling the plurality of driver ICs through the plurality of first line driver ICs arranged on the first line. Each of the plurality of driver ICs is connected to at least one adjacent driver IC. The signal for controlling each of the plurality of driver ICs comprises, for each LED module corresponding to each of the plurality of driver ICs, a channel signal for controlling each channel of the LED module, and a scan signal for controlling each scan line of the LED module.