Abstract:
A particle counter may include a housing having an inlet, an outlet, and a window therebetween. The inlet and the outlet may be configured such that a fluid can be flowed therethrough. A plurality of light sources may be arranged outside the housing to provide lights of different wavelengths into the housing through the window. Sensors may be provided outside the housing to detect fractions of the lights scattered by a bubble and/or a particle in the fluid. A control part may be configured to monitor intensities of the lights detected by the sensors and to analyze a difference in intensity between the scattered lights, thereby distinguishing the particles from the bubbles in the fluid.
Abstract:
An electronic device includes a memory storing pre-connection information; a first modem; a second modem; and a processor operatively connected to the memory, the first modem, and the second modem, wherein the processor is configured to: establish a first wireless communication connection with a base station, using the first modem, and establish a second wireless communication connection with a terminal in a vehicle, using the second modem, based on at least one piece of the pre-connection information, and wherein the pre-connection information comprises at least one of access frequency band information, system information, radio resource control (RRC) initial configuration value information, and registered device identification information.
Abstract:
A user equipment includes: a communication circuit configured to perform a communication connection with an external electronic device; at least one processor; and a memory configured to store instructions executed during operations of the at least one processor, wherein the at least one processor is configured to: control the communication circuit to transmit, to the external electronic device, device information related to a first target task of the user equipment; and in response to receiving, from the external electronic device, first result data generated by using computing resources of the external electronic device, perform the first target task, based on the first result data, and wherein the first result data is generated based on the device information allocated to the computing resources of the external electronic device.
Abstract:
A processor-implemented method with battery state estimation includes: determining a state variation of a battery using a voltage difference between a sensed voltage of the battery and an estimated voltage of the battery that is estimated by an electrochemical model corresponding to the battery; updating an internal state of the electrochemical model based on the determined state variation of the battery; and estimating state information of the battery based on the updated internal state of the electrochemical model.
Abstract:
A method of determining an optimized value set of parameters for a target operation of a battery includes: setting a first value set of the respective parameters as a default value set; acquiring a first performance indicator by performing a simulation of the target operation according to the first value set; generating candidate second value sets having at least one value in the first value set changed; acquiring second performance indicators respectively corresponding to the candidate second value sets by performing simulations of the target operation according to the respective candidate second value sets; selecting one of the candidate second value sets as a second value set based on the second performance indicators; determining that the second performance indicator corresponding to the second value set satisfies a performance condition of the battery, and in response using the second value set as the optimized value set of the parameters.
Abstract:
An electronic device includes: a display panel including a plurality of light-emitting elements and a fingerprint sensing region; a fingerprint sensor disposed below the fingerprint sensing region; and at least one processor electrically connected to the display panel or the fingerprint sensor, and configured to identify an occurrence of an event that causes an operation of receiving a fingerprint through the fingerprint sensor to be executed, obtain a first image of the fingerprint by controlling the display panel such that light-emitting elements disposed in a first light-emitting region within the fingerprint sensing region output light, obtain a second image of the fingerprint by controlling the display panel such that light-emitting elements disposed in a second light-emitting region that does not overlap the first light-emitting region output light, and determine whether the fingerprint is a three-dimensional object, by using the first image and the second image.
Abstract:
An image sensor includes a first pixel group on a substrate and including a plurality of first pixels, a second pixel group on the substrate and including a plurality of second pixels, where at least one of the plurality of first pixels and at least one of the plurality of second pixels are adjacent in a first direction, a first autofocus pixel group between the first pixel group and the second pixel group, the first autofocus pixel group including a first autofocus pixel adjacent to the first pixel group and a second autofocus pixel adjacent to the second pixel group, a first color filter on the first autofocus pixel and the second autofocus pixel, a second color filter on the plurality of second pixels, and a light-shield pattern that separates the first color filter and the second color filter.
Abstract:
An electronic device may include: a communication module supporting wireless communication; and a processor. The processor may be configured to: establish, through the communication module, a first communication link with a first external electronic device, and a second communication link with a second external electronic device; acquire first audio data and second audio data on the basis of a command for outputting stereo audio; transmit the first audio data to the first external electronic device by using the first communication link, and transmit the second audio data to the second external electronic device by using the second communication link; and in response to identification of at least one of a communication deterioration in the second external electronic device, releasing of a connection, and releasing of wearing by a user, transmit the first audio data and the second audio data to the first external electronic device by using the first communication link so that the first external electronic device transmits the second audio data to the second external electronic device.
Abstract:
A display apparatus includes a display panel including: a pixel array in which pixels including a plurality of light-emitting elements are arranged in a plurality of row lines and sub-pixel circuits provided for each of the plurality of light-emitting elements and providing a driving current to the light-emitting elements. The display apparatus also includes a drive unit is configured to: set image data voltages to the sub-pixel circuits of the display panel in a row line order during a data setting period for each row line; and drive the sub-pixel circuits to provide the driving current to the light-emitting elements of the pixel array in the row line order based on a sweep signal sweeping from a first voltage to a second voltage and the set image data voltages during a light-emitting period for each row line.
Abstract:
A display device includes a display panel including: a transparent substrate; an inorganic light emitting element provided on the transparent substrate and configured to emit a light toward the transparent substrate; a first insulating layer provided on the inorganic light emitting element; and a thin film transistor provided on the first insulating layer; and a driver integrated circuit (IC) configured to drive the display panel, wherein at least a portion of the thin film transistor overlaps at least a portion of the inorganic light emitting element.