Abstract:
The data processing device includes an identification information displaying controller, a selecting controller, and a recording controller. The identification information displaying controller displays a plurality of identification information that is read from a storage medium and is indicative of respective ones of a plurality of different operating conditions. The selecting controller selects at least one of the plurality of identification information from the plurality of identification information. The recording controller records the at least one of the plurality of identification information, allowing a user to use at least one of the plurality of different operating conditions that corresponds to the at least one of the plurality of identification information.
Abstract:
According to an image processing method, an input value combination is received. The input value combination includes a plurality of input values for a plurality of primary colors and is indicative of image information. The received input value combination is converted into an output value combination that includes a plurality of output values for a plurality of components for printing, the plurality of components for printing including black, the output value for black being smaller than or equal to a value of an allowable black maximum. An image obtained by printing an output value combination, whose value for black being greater than zero (0) and smaller than or equal to the value of the allowable black maximum value, exhibits substantially the same gloss with another image obtained by printing an output value combination, whose output value for black being equal to zero (0).
Abstract:
An ink-jet recording apparatus, including: a cartridge mount on which an ink cartridge that stores ink is to be replaceably mounted; a recording head which ejects the ink toward a recording medium; an ink passage through which the ink is supplied from the cartridge mount to the recording head; an ink discharger which discharges the ink; and a controller including (a) a cartridge judgment section which judges whether the ink cartridge mounted on the cartridge mount is a subject cartridge that satisfies a predetermined condition or not and (b) a discharger control section which controls the ink discharger to discharge at least the ink in the ink passage when the cartridge judgment section has judged that the ink cartridge mounted on the cartridge mount is the subject cartridge.
Abstract:
An image forming apparatus includes a feeding roller and a recording unit. The feeding roller is rotatably disposed to convey the recording medium in a conveying direction, and includes a rotational axle that is eccentric and a peripheral surface having an actual external dimension that is different from a theoretical external dimension. The recording unit has a head length in the conveying direction. A method of compensating for an error of a conveyance distance of a recording medium in the image forming apparatus includes (1) printing a first image on the recording medium; (2) rotating the feeding roller N turns, N being a positive integer; (3) printing a second image on the recording medium after the feeding roller has been rotated N turns; and (4) determining difference of the actual external dimension from the theoretical external dimension, based on both the first image and the second image.
Abstract:
Input image data (255, 100, 50) is first converted into output image data (240, 110, 40) based on the color conversion properties of the input end device and the output device, and is subsequently converted into final output image data (255, 115, 40). The latter conversion satisfies the relationship of (240−40):(110−40)=(255−40):(115−40). By changing the highest-gradation-level color in the output image data into the maximum gradation value (255), the complementary color component is made zero in the output results of the output device, thereby reducing granularity Since the middle-gradation-level color is corrected, variations in color hue are reduced.
Abstract:
An amount of discrepancy between a theoretical paper feeding length and an actual paper feeding length is determined in advance, and a calibration value is determined based on the amount of discrepancy and stored in a ROM, for each of when a sheet of paper is fed while contacted by a sheet supply roller and when the sheet of paper is fed without contacted by the sheet supply roller. When a printing is performed on a sheet of paper, a feeding amount of the sheet of paper is calibrated based on one of the calibration values stored in the ROM.
Abstract:
An image-forming device has a recording unit, a conveying unit, a control unit, and a detecting unit. The recording unit has a plurality of recording elements provided at a predetermined pitch in a subscanning direction. The recording unit is movable in a main scanning direction orthogonal to the subscanning direction. The plurality of recording elements is capable of forming a dot on a recording medium, respectively. The predetermined pitch corresponds to a predetermined resolution. The conveying unit conveys the recording medium in the subscanning direction by a predetermined distance every time the recoding unit moves in the subscanning direction. The control unit sequentially selects a first distance n times (wherein n is a natural number) as the predetermined distance, and selects a second distance as the predetermined distance after the n times of selection of the first distance. The second distance is longer than the first distance The detecting unit detects an edge of the recording medium which extends in the subscanning direction only after the recording medium is conveyed by the second distance.
Abstract:
A first conversion table defines a plurality of grid points that are arranged in a predetermined color space. The grid points include a darkest grid point that is indicative of a darkest point among all the grid points. The grid points further include at least (N+1) number of grid points that are successively arranged in a predetermined direction from the darkest grid point, N being an integer greater than or equal to one (1), the grid points including an N-th grid point and an (N+1)-th grid point that are located N-th and (N+1)-th among the at least (N+1) number of grid points, respectively. The first conversion table lists up an intermediate-component-value combination at each grid point, the intermediate-component-value combination, at at least one grid point that is located between the darkest grid point and the (N+1)-th grid point in the predetermined direction and that includes the N-th grid point, being determined through interpolation based on the intermediate-component-value combination at the darkest grid point and on the intermediate-component-value combination at the (N+1)-th grid point.
Abstract:
An image processing device performs an error diffusion on multilevel input image data to generate multilevel output image data that has fewer levels than the multilevel input image data. The image processing device includes a plurality of setting devices, each of which sets a threshold value to be used at the error diffusion, a threshold value selecting device that randomly selects one of the plurality of setting devices with respect to each pixel to be processed and allows the selected setting device to set a threshold value with respect to the pixel to be processed when the image processing device performs the error diffusion, and a converting device that converts the pixel to be processed into multilevel output image data with fewer levels than multilevel input image data by the error diffusion, in accordance with the threshold value set by the setting device selected by the threshold value selecting device. The plurality of setting devices includes at least a first setting device and a second setting device that sets a threshold value which is higher than a threshold value set by the first setting device.
Abstract:
For each of the color components of an inputted continuous tone color image, densities of the pixels are successively compared with a threshold value, thereby converting the pixels into ON or OFF. A binary conversion error obtained during this conversion operation is distributed to neighboring pixels. A printing prohibiting matrix is previously set to determine several pixels to be compulsively turned OFF. The error diffusion conversion process is attained with using the printing prohibiting matrix, thereby reducing the number of turned ON pixels and limiting the amount of ink to be ejected.