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    • 41. 发明申请
    • PRINTING METHOD AND PRINTING APPARATUS
    • 印刷方法和印刷装置
    • US20080100855A1
    • 2008-05-01
    • US11846820
    • 2007-08-29
    • Masahiko YoshidaTatsuya NakanoBunji IshimotoToru MiyamotoHirokazu NunokawaYoichi Kakehashi
    • Masahiko YoshidaTatsuya NakanoBunji IshimotoToru MiyamotoHirokazu NunokawaYoichi Kakehashi
    • G06F15/00
    • B41J2/2128B41J11/0065G06K15/102G06K2215/0085
    • A printing method includes determining a first correction value corresponding to a first print mode, determining a second correction value corresponding to a second print mode, and correcting an ink ejection amount of each row region individually, using a combined correction value obtained by combining the first correction value and the second correction value. The first print mode is a print mode that is applied to a front end area, with respect to a transport direction, of a medium. Dot rows are formed extending in a nozzle movement direction that is perpendicular to the transport direction, on a plurality of row regions lined up in the transport direction. The dot rows are formed by repeating a movement ejection operation of ejecting ink onto the medium while moving nozzles in the movement direction, and a transport operation of transporting the medium in the transport direction. The first correction value is for correcting an ejection amount of the ink in each row region individually. The second print mode is a print mode that is applied to a middle area, with respect to the transport direction, of the medium. The second correction value is for correcting an ejection amount of the ink in each row region individually. The correction of the ejection amount using the combined correction value is carried out in a coexistent segment in which certain row regions and another row regions are coexistent. The certain row regions are row regions in which the dot rows are formed by the first print mode. The other row regions are row regions in which the dot rows are formed by the second print mode.
    • 打印方法包括:确定与第一打印模式对应的第一校正值,确定与第二打印模式相对应的第二校正值,以及使用通过组合第一打印模式获得的组合校正值来单独校正每个行区域的喷墨量 校正值和第二校正值。 第一打印模式是应用于媒体的相对于传送方向的前端区域的打印模式。 在沿输送方向排列的多个行区域上沿着与输送方向垂直的喷嘴移动方向形成有点列。 点列是通过重复在移动方向上移动喷嘴的同时将墨喷射到介质上的移动喷射操作形成的,以及在传送方向上传送介质的传送操作。 第一校正值用于单独地校正每行区域中的墨的喷射量。 第二打印模式是应用于介质相对于传送方向的中间区域的打印模式。 第二校正值用于单独地校正每行区域中的墨的喷射量。 使用组合校正值的喷射量的校正在其中某些行区域和另一个行区域共存的共存段中执行。 某些行区域是其中通过第一打印模式形成点行的行区域。 其他行区域是其中通过第二打印模式形成点行的行区域。
    • 43. 发明申请
    • Image processing device and image processing method
    • 图像处理装置及图像处理方法
    • US20060109308A1
    • 2006-05-25
    • US11284284
    • 2005-11-21
    • Toru Miyamoto
    • Toru Miyamoto
    • B41J2/21
    • H04N1/4057
    • An image processing device includes a binarization unit for converting a pixel value of image data into binary data, the pixel value showing a gradation value of a pixel, the image data including a plurality of pixels, the pixels being laid out as a matrix, the binary data showing a dot radius of a unit dot, the unit dot being laid out with lower resolution than the maximum print resolution at least in a direction of print media feeding direction; an expansion dot generation unit for generating print control data on the basis of the binary data obtained by the binarization unit, the print control data including data showing dot radii of a standard dot and an expansion dot, the standard dot being formed at a location, the location being determined on the basis of the unit dot, the expansion dot being formed at a different location to the standard dot; and an output unit for outputting to a image forming device the print control data generated by the expansion dot generation unit, the image forming device having a plurality of nozzles, the nozzle ejecting an ink dot; wherein a density of an image including the standard dot and the expansion dot is approximately equal to a density of an image including the unit dot.
    • 图像处理装置包括:二值化单元,用于将图像数据的像素值转换为二进制数据,所述像素值表示像素的灰度值,所述图像数据包括多个像素,所述像素布置为矩阵; 显示单位点的点半径的二进制数据,该单位点至少在打印介质输送方向的方向上以比最大打印分辨率更低的分辨率布置; 扩展点产生单元,用于根据由二值化单元获得的二进制数据产生打印控制数据,打印控制数据包括表示标准点的点半径的数据和扩展点,标准点形成在一个位置, 所述位置是基于所述单位点确定的,所述扩展点形成在与所述标准点不同的位置处; 以及输出单元,用于向图像形成装置输出由扩展点生成单元生成的打印控制数据,图像形成装置具有多个喷嘴,喷嘴喷射墨点; 其中包括标准点和扩展点的图像的浓度近似等于包括单位点的图像的浓度。
    • 44. 发明授权
    • Method of manufacturing decoder circuit
    • 解码电路的制造方法
    • US4910162A
    • 1990-03-20
    • US361347
    • 1989-06-05
    • Kazuo YasakaYutaka ShinagawaToru Miyamoto
    • Kazuo YasakaYutaka ShinagawaToru Miyamoto
    • G11C17/00G11C16/06H01L21/768H01L21/8246H01L27/112
    • H01L27/112H01L21/76886
    • In a semiconductor integrated circuit device, such as a ROM having an instruction program set therein, in which an order for selecting word lines is variously different depending upon written information; a method of manufacture which can shorten a production process after the determination of the instruction program or the circuit arrangement of a decoder without adding to a manufacturing step is disclosed. Concretely, the method comprises the steps of providing selector switch elements which serve to select decode signal lines in accordance with address signals received from pairs of complementary address signal lines, each pair including a true line and a bar line, in a decoder forming region of a semiconductor substrate; providing a conductor film which is connected to input terminals of the selector switch elements and which is extended under regions for forming the true lines and the bar lines; providing an interlayer insulator film on the selector switch elements and the conductor film; forming contact holes in the interlayer insulator film on the conductor film so as to reach the conductor film; and connecting either of the true lines and the bar lines to the conductor film through the contact holes.
    • 在诸如其中设置有指令程序的ROM的半导体集成电路器件中,其中用于选择字线的顺序根据书面信息而各不相同; 公开了一种制造方法,其可以在确定指令程序之后缩短生产过程或者在不增加制造步骤的情况下解码解码器的电路布置。 具体地说,该方法包括以下步骤:提供选择器开关元件,该选择器开关元件用于根据从补码地址信号线对中接收的地址信号选择解码信号线,每对互补地址信号线包括真线和条线, 半导体衬底; 提供连接到选择器开关元件的输入端并在用于形成真线和条线的区域下延伸的导体膜; 在选择器开关元件和导体膜上提供层间绝缘膜; 在导体膜上的层间绝缘膜中形成接触孔,以到达导体膜; 并且通过接触孔将真线和条线之一连接到导体膜。
    • 45. 发明申请
    • VEHICLE COURSE ESTIMATION DEVICE
    • 车辆课程估算装置
    • US20130218462A1
    • 2013-08-22
    • US13499057
    • 2011-05-06
    • Toru MiyamotoAkihide Tachibana
    • Toru MiyamotoAkihide Tachibana
    • G01C21/34
    • G01C21/34B60W30/143B60W30/18154B60W2540/20
    • There is provided a vehicle course estimation device capable of estimating the course of a vehicle accurately. For this purpose, a vehicle course estimation device includes: a direction indicator sensor which detects an operating state of a direction indicator of a vehicle; a distance detection section which detects a distance between the vehicle and an intersection located at a travel direction side of the vehicle; a reference speed calculation section which calculates a reference speed, which is a speed for the vehicle to arrive at the intersection after a predetermined time, on the basis of the distance between the vehicle and the intersection located at the travel direction side of the vehicle, which has been detected by the distance detection section, when an operation of the direction indicator is detected by the direction indicator sensor; and a course estimation section which estimates a course of the vehicle on the basis of a speed of the vehicle with respect to the reference speed calculated by the reference speed calculation section.
    • 提供了能够准确地估计车辆的路线的车辆路线估计装置。 为此,车辆行驶路线估计装置包括:方向指示器传感器,其检测车辆的方向指示器的操作状态; 距离检测部,其检测位于车辆的行进方向侧的车辆与交叉路口之间的距离; 参考速度计算部,其基于车辆与位于车辆的行进方向侧的交叉路口之间的距离来计算作为车辆在规定时间之后到达交叉口的速度的基准速度, 当由方向指示器传感器检测到方向指示器的操作时,由距离检测部分检测到; 以及路线估计部,其基于由基准速度计算部计算出的基准速度,基于车辆的速度来估计车辆的行驶路线。
    • 46. 发明授权
    • Line printing device and method performing color conversion and halftoning on image data subjected to correction based on correction vectors associated with a pixel row and reference color
    • 线打印装置和方法,对基于与像素行和参考颜色相关联的校正矢量进行校正的图像数据进行颜色转换和半色调
    • US08432587B2
    • 2013-04-30
    • US13045837
    • 2011-03-11
    • Toru Miyamoto
    • Toru Miyamoto
    • H04N1/58H04N1/60
    • B41J2/2146H04N1/6038H04N1/6041
    • For each of a plurality of reference colors located at prescribed coordinates in a first color space (e.g., the RGB color space), there are associated, on an individual pixel row basis, correction vectors indicating correction amounts in the first color space. For each pixel datum of image data of first tone values (e.g., 256 tone values) of the first color space prior to a color conversion process, a correction process is carried out on the basis of the correction vector that has been associated with the pixel row to which a given pixel belongs, the correction vector also being associated with the reference color of a location surrounding the coordinates that indicate the pixel data in the first color space. The color conversion process and the halftoning process are carried out on image data composed of the pixel data that has been subjected to the correction process.
    • 对于位于第一颜色空间(例如RGB颜色空间)中的规定坐标处的多个参考颜色中的每一个,在单个像素行的基础上,与指示第一颜色空间中的校正量的校正向量相关联。 对于在颜色转换处理之前的第一颜色空间的第一色调值(例如,256个色调值)的图像数据的每个像素数据,基于已经与像素相关联的校正向量执行校正处理 给定像素所属的行,校正矢量也与指示第一颜色空间中的像素数据的坐标周围的位置的参考颜色相关联。 对由经过校正处理的像素数据构成的图像数据进行色彩转换处理和半色调处理。
    • 49. 发明授权
    • Method of calculating correction value, correction value calculating program, and liquid ejecting apparatus
    • 计算校正值的方法,校正值计算程序和液体喷射装置
    • US08104857B2
    • 2012-01-31
    • US12384973
    • 2009-04-09
    • Toru TakahashiToru Miyamoto
    • Toru TakahashiToru Miyamoto
    • B41J29/38
    • B41J29/393
    • A method of calculating a correction value includes forming a test pattern in which a dot row formed A method of calculating a correction value includes forming a test pattern in which a dot row formed by aligning dots in a direction intersecting a predetermined direction is aligned in the predetermined direction on a medium and forming information on the test pattern on the medium, calculating a correction value of the first nozzle group based on the pattern included in read-out data values in a case where the information included in the read-out data values represents that the test pattern is formed by a first nozzle group, and calculating a correction value of a second nozzle group based on the test pattern included in the read-out data values in a case where the information included in the read-out data values represents that the test pattern is formed by the second nozzle group.
    • 计算校正值的方法包括形成其中形成点行的测试图案。计算校正值的方法包括形成测试图案,其中通过在与预定方向相交的方向上对齐点形成的点列在 在介质上形成预定方向,并且形成关于介质上的测试图案的信息,在包含在读出数据值中的信息的情况下,基于包含在读出数据值中的图案来计算第一喷嘴组的校正值 表示测试图案由第一喷嘴组形成,并且在包括在读出数据值中的信息的情况下,基于包括在读出数据值中的测试图案来计算第二喷嘴组的校正值 表示测试图案由第二喷嘴组形成。