Abstract:
An image capturing apparatus is provided with an image capturing unit and a generating unit. The image capturing unit includes an imaging sensor and captures a subject image to generate RAW data. The generating unit generates a moving image file including moving image data made up of a plurality of sets of RAW data which is generated by the image capturing unit, and incidental information data corresponding to each of the sets of RAW data and including at least one of image capturing information regarding the RAW data and property information of the RAW data. Accordingly, it is possible to generate the moving image data which is easy to be handled in image processing or image quality adjustment.
Abstract:
The noise reduction device includes an image storage unit, a blackout image processing unit, and a noise processing unit. The image storage unit captures image data obtained by imaging a field with an image sensor, and stores the image data therein. The blackout image processing unit captures blackout image data obtained by imaging by the image sensor that is shaded, and extracts a specific noise component of the blackout image data. The noise processing unit reduces a noise in the image data based on the specific noise component of the blackout image data.
Abstract:
A CCD captures a subject image having passed through a taking lens and an image processing circuit performs various types of image pre-treatment including gamma correction and white balance on image data corresponding to n lines×m rows output by the CCD. The image processing circuit also performs format processing on the data. The data are then compressed at a compression circuit. The white balance adjustment and the like are implemented in line sequence at a line processing circuit which engages in signal processing in pixel sequence in units of individual lines in the output from the CCD. The image data having undergone the pre-treatment are then subjected to format processing prior to JPEG compression, at a block processing circuit that engages in signal processing in units of individual blocks each ranging over an n×m (N>n, M>m) block. In other words, the signal processing is performed in block sequence.
Abstract translation:CCD捕获通过拍摄镜头的被摄体图像,并且图像处理电路对由CCD输出的n行×m行对应的图像数据执行包括伽马校正和白平衡的各种图像预处理。 图像处理电路还对数据执行格式处理。 然后在压缩电路处压缩数据。 白平衡调整等在线CCD处理电路中以线性处理电路实现,该线路处理电路以CCD的输出中的各行为单位以像素为单位进行信号处理。 在经过预处理的图像数据之前,在JPEG压缩之前进行格式化处理,在块处理电路中进行信号处理,该单元以每个范围为n×m(N> n,M> m )块。 换句话说,以块的顺序执行信号处理。
Abstract:
A CCD captures a subject image having passed through a taking lens and an image processing circuit performs various types of image pre-treatment including gamma correction and white balance on image data corresponding to n lines×m rows output by the CCD. The image processing circuit also performs format processing on the data. The data are then compressed at a compression circuit. The white balance adjustment and the like are implemented in line sequence at a line processing circuit which engages in signal processing in pixel sequence in units of individual lines in the output from the CCD. The image data having undergone the pre-treatment are then subjected to format processing prior to JPEG compression, at a block processing circuit that engages in signal processing in units of individual blocks each ranging over an n×m (N>n, M>m) block. In other words, the signal processing is performed in block sequence.
Abstract:
An electronic camera of the present invention includes an image pickup device, a positional data generating section, a memory, and an image processing section. The image pickup device includes a light-receiving plane photoelectrically converting a subject image. On the image pickup device any given partial image area is readable from a maximal image area. The positional data generating section generates positional data on the partial image area to the maximal image area. The memory holds a first edge enhancing filter used for data on the entire image and a second edge enhancing filter whose filter size is set smaller than that of the first edge enhancing filter. The image processing section performs, using the second edge enhancing filter, edge enhancement processing on data on a partial image extracted from the partial image area based on the positional data.
Abstract:
The noise reduction device includes an image storage unit, a blackout image processing unit, and a noise processing unit. The image storage unit captures image data obtained by imaging a field with an image sensor, and stores the image data therein. The blackout image processing unit captures blackout image data obtained by imaging by the image sensor that is shaded, and extracts a specific noise component of the blackout image data. The noise processing unit reduces a noise in the image data based on the specific noise component of the blackout image data.
Abstract:
An image processing device includes an interpolation color processing circuit receiving images of continuous frames to perform interpolation and color processing thereon, a storage part cyclically storing a plurality of frames of images being processed and having been processed by the interpolation color processing circuit, a plurality of image compression processing circuits reading the images of frames processed by the interpolation color processing circuit to perform image compression processing on the images and being cyclically started up for each of frames to perform parallel processing, and a compression data storage part storing compression data processed by the image compression processing circuit. The image processing device can solve a problem of a prior art in that long processing time is required because image compression processing is heavier than interpolation processing and color processing.
Abstract:
The digital camera includes: a storage unit that stores a plurality of images captured by an image sensor when a multiple exposure photographic mode is set; a gain impartation unit that imparts, to the plurality of captured images, gains based upon the number of shots of multiple exposure photography and determined so that their sum equals unity; and a combination unit that creates a multiple exposure photographic image by combining the plurality of images, after the gains have been imparted by the gain impartation unit.
Abstract:
Image data photographed by an image capturing apparatus is temporarily stored in a volatile memory. The volatile memory temporarily is supplied with power from a battery to store the image data temporarily. The remaining capacity of the battery is detected, and a maintainable time of the image data maintained in the volatile memory is calculated based on the detected remaining capacity of the battery. The calculated maintainable time is displayed on a display.
Abstract:
The noise reduction device includes an image storage unit, a blackout image processing unit, and a noise processing unit. The image storage unit captures image data obtained by imaging a field with an image sensor, and stores the image data therein. The blackout image processing unit captures blackout image data obtained by imaging by the image sensor that is shaded, and extracts a specific noise component of the blackout image data. The noise processing unit reduces a noise in the image data based on the specific noise component of the blackout image data.