Abstract:
A method of controlling an electronic device is provided which includes electrically connecting a battery with an external power source using a first switch such that a first portion of a first current supplied from the external power source is supplied to a system circuit of the electronic device and a second portion of the first current is supplied to the battery, determining whether a specified condition is satisfied, electrically disconnecting the battery from the external power source using the first switch and electrically connecting the battery with a resistor using a second switch, if the specified condition is satisfied, verifying an electrical characteristic of a current applied to the resistor while the battery is electrically disconnected from the external power source and is electrically connected with the resistor, and determining whether an operation of the battery is abnormal, based at least on a part of the electrical characteristic.
Abstract:
An electronic device includes a housing that comprises a first surface, a second surface, and a side surface, the housing having at least one through-hole formed on the side surface, a flexible polymer layer that comprises a first part that is parallel to the first surface, a second part extending from the first part along the side surface, and a third part extending from the second part and inserted between the first part and the second surface, the polymer layer having at least one opening that passes through the second part and the third part, a plurality of display elements disposed on the flexible polymer layer, a display driving circuit, and at least one conductive line coupled to the polymer layer, extends along the second part, and is arranged around the opening, the through-hole and the opening being at least partially aligned with each other.
Abstract:
Provided are image sensors. An image sensor includes a pixel array comprising pixels configured to output signal voltages, each of the pixels comprising first and second photodiodes, first and second transfer transistors connected to the first and second photodiodes, respectively, and a floating diffusion node to which the first and second transfer transistors are connected; a ramp voltage generator configured to generate a ramp voltage that decreases with a slope according to a ramp clock to have a first gain; a correlation double sampler (CDS) configured to compare the ramp voltage with the signal voltages to output a comparison signal; a counter configured to count the comparison signal according to a counter clock to output a digital signal; and a digital scaling unit configured to scale the digital signal to have a second gain.
Abstract:
An RGBW image sensor, a binning method in an image sensor, and a computer readable medium for performing the method are provided, and the binning method in an image sensor includes selecting one or more binning target pixels for each of a red pixel, a green pixel, a blue pixel, and a white pixel, constituting a pixel array of an RGBW image sensor with a uniform array pattern, generating binning pixel data for each of the red pixel, the green pixel, the blue pixel, and the white pixel, based on pieces of pixel data corresponding to the binning target pixel, and rearranging pixels, represented by the binning pixel data, to be equal to the entirety or a portion of the uniform array pattern and to be equally spaced apart from each other.
Abstract:
An electronic device according to an embodiment may comprise: a display having a content display area logically divided into a plurality of areas; and a processor functionally connected to the display. The processor may be configured to: display a first content in a first area; display, in a second area, a status window for providing an indication of a status of the electronic device or an application executed in the electronic device; move the first area in a predetermined direction in response to a predetermined event; and display a second content corresponding to the status in a third area on the basis of at least the movement of the first area. In addition, various embodiments recognized through the specification are also possible.
Abstract:
An electronic device includes a housing comprising a first surface, a second surface, and a side surface, a touch screen display positioned inside the housing, wherein the display comprises a display panel and a touch panel that is separated from or integrated with the display panel, a conductive member (conductor) forming at least a portion of the side surface, at least one substantially transparent conductive pattern that is integrated into the display, a ground member (ground) interposed between the first surface and the second surface, a wireless communication circuit including a port electrically coupled to the conductive member, and a processor electrically coupled to the display and the wireless communication circuit. The substantially transparent conductive pattern is electrically coupled to the port of the wireless communication circuit and/or the ground member.
Abstract:
An electronic device includes an image signal processor and a memory. The image signal processor receives a signal of a first code value that corresponds to an active pixel included in an active area, calculates a correction value based on a second code value associated with a first area and a third code value associated with a second area, and calculates an output code value based on the first code value and the correction value. The first area and the second area are different from the active area. The correction value includes a component of the third code value in proportion to a distance between the active pixel and the first area and includes a component of the second code value in proportion to a distance between the active pixel and the second area.
Abstract:
An electronic device, a method of controlling performance of the electronic device, and a chipset thereof is provided. The electronic device includes a sensor module configured to measure an internal temperature of the electronic device, a surface temperature predicting module to predict a surface temperature of the electronic device using the measured internal temperature, and a processor to control at least a portion of performance of the electronic device based on the predicted surface temperature. The method includes measuring an internal temperature of the electronic device; predicting a surface temperature of the electronic device using the measured internal temperature; and controlling at least a portion of performance of the electronic device based on the predicted surface temperature.
Abstract:
An image sensor includes a pixel array including a plurality of pixels; a ramp signal generator configured to generate a ramp signal; a plurality of first attenuators with each first attenuator connected to a respective column of the plurality of pixels, and each first attenuator configured to receive a pixel signal from a respective pixel belonging to a selected row; a plurality of second attenuators with each second attenuator corresponding to a respective column, and each second attenuator configured to receive the ramp signal from the ramp signal generator; and a plurality of analog-to-digital converters configured to output digital signals by comparing first signals output from the plurality of first attenuators and second signals output from the plurality of second attenuators, in which each of the plurality of first attenuators and each of the plurality of second attenuators comprises a first capacitor and a second capacitor.
Abstract:
An image sensor includes first and second column lines, and a read circuit configured to receive pixel signals through the first and second column lines. The first column line and the second column line each include a main wire, a first wire between one end of the main wire and the first interlayer connection region, and a second wire connected with an opposite end of the main wire. A first distance between the first and second column lines is longer than a second distance between a connection point of the first column line and the first interlayer connection region and a connection point of the second column line and the first interlayer connection region. A length of the first wire of the first column line is greater than a length of the first wire of the second column line.