Abstract:
A method of operating an electronic device for image interpolation is provided. The method includes estimating a direction of pixels using a plurality of filters respectively corresponding to a plurality of angles, correcting the direction of the pixels using a direction of neighboring pixels, determining whether the direction estimation has an error according to a direction distribution of the neighboring pixels, and when the direction estimation is determined to have error, correcting the error in the direction estimation.
Abstract:
A method for communicating data by an electronic device is provided. The method includes transmitting a signal including audio/video (A/V) data to a first external electronic device through a first communication module, while connected with the first external electronic device, generating data or a signal unrelated to the A/V data or receiving the data or signal unrelated to the A/V data from an external electronic device other than the first external electronic device, and providing an audio or a video through a display or an embedded sound device based on at least a portion of the data or the signal unrelated to the A/V data or transmitting the at least a portion of the data or the signal unrelated to the A/V data to a second external electronic device through a second communication module.
Abstract:
A method and an apparatus are provided in which an image sensor, operatively coupled with an electronic device, is operated in a first state based on a determination that the image sensor is to be operated in a low power mode. When the image sensor is operating in the first state, a setup value corresponding to a photographing mode is preserved, and the image sensor is refrained from outputting a stream of data.
Abstract:
A method for communicating data by an electronic device is provided. The method includes transmitting a signal including audio/video (A/V) data to a first external electronic device through a first communication module, while connected with the first external electronic device, generating data or a signal unrelated to the A/V data or receiving the data or signal unrelated to the A/V data from an external electronic device other than the first external electronic device, and providing an audio or a video through a display or an embedded sound device based on at least a portion of the data or the signal unrelated to the A/V data or transmitting the at least a portion of the data or the signal unrelated to the A/V data to a second external electronic device through a second communication module.
Abstract:
A method comprising: capturing, by an electronic device, a first incident light sample and generating an image based on the first incident light sample; capturing, by the electronic device, a second incident light sample and identifying a light source type associated with the second incident light sample; and adjusting a white balance of the image according to the light source type.
Abstract:
A method comprising: capturing, by an electronic device, a first incident light sample and generating an image based on the first incident light sample; capturing, by the electronic device, a second incident light sample and identifying a light source type associated with the second incident light sample; and adjusting a white balance of the image according to the light source type.
Abstract:
An apparatus and method for detecting flicker in a camera module is provided. The method including generating a first image frame and a second image frame, setting up a first sampling area in the first image frame and a second sampling area in the second image frame, sampling a plurality of horizontal lines from among all of the horizontal lines contained in each of the first sampling area and the second sampling area, accumulating brightness values of pixels located on each of the sampled horizontal lines to generate first accumulated brightness values for the first image frame and second accumulated brightness values for the second image frame, and detecting flicker based on the first accumulated values and the second accumulated values, wherein the first sampling area and the second sampling area have the same sizes and the same horizontal starting points but have different vertical starting points.
Abstract:
A method for communicating data by an electronic device is provided. The method includes transmitting a signal including audio/video (A/V) data to a first external electronic device through a first communication module, while connected with the first external electronic device, generating data or a signal unrelated to the A/V data or receiving the data or signal unrelated to the A/V data from an external electronic device other than the first external electronic device, and providing an audio or a video through a display or an embedded sound device based on at least a portion of the data or the signal unrelated to the A/V data or transmitting the at least a portion of the data or the signal unrelated to the A/V data to a second external electronic device through a second communication module.
Abstract:
An apparatus and a method for automatically adjusting a focus in an image capturing device are provided. The method includes generating an image by capturing a subject through a lens when a flash unit is enabled, dividing the image into a plurality of windows, determining a brightest window from among the plurality of windows, and setting an Auto Focus (AF) detection area for performing an AF function centering on the determined window.
Abstract:
A method and an apparatus are provided for processing an image of an image signal projected through a digital camera lens. The apparatus includes an image sensor module to transform an optical signal projected through the digital camera lens into an electric signal, to generate and output an image signal. The apparatus includes a light receiving module to receive a light source, wherein the light receiving module is disposed close to the image sensor module. The apparatus also includes a light source characteristic detector to detect a frequency of the light source received by the light receiving module. The apparatus further includes an auto color adjustment controller to identify a kind of light source based on the frequency of the light source, and control a white balance gain of the image signal based on the kind of the light source.