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    • 4. 发明授权
    • Image reading and converting apparatus
    • 图像读取和转换装置
    • US4706128A
    • 1987-11-10
    • US679237
    • 1984-12-07
    • Hiroshi TaniokaYoshitaka OginoYutaka InoueMasataka NaitoKimiaki Hayakawa
    • Hiroshi TaniokaYoshitaka OginoYutaka InoueMasataka NaitoKimiaki Hayakawa
    • H04N1/024H04N1/207H04N1/04H04N1/10
    • H04N1/02463H04N1/024H04N1/207
    • There is provided an image forming apparatus comprising: a readout sensor for reading out an original which is illuminated by a light source; a converter for converting image information which is read out by the readout sensor to a binary signal; printing heads for recording the image information on a recording paper in response to an output of the converter; and a driver for relatively carrying the readout sensor with regard to the original or recording paper. A plurality of sets of those readout sensors, converters and printing heads are arranged in a line on the same substrate. An amount of scan movement of this apparatus is detected and the driving operations of the light source and the image readout sensor or printing head are synchronized for every unit moving amount, so that occurrence of variation in concentration of the reproduced image and a risk of fire can be prevented. Also, a remarkable energy saving effect can be obtained in case of driving the apparatus by a battery.
    • 提供一种图像形成装置,包括:读出传感器,用于读出由光源照射的原稿; 用于将由读出传感器读出的图像信息转换为二进制信号的转换器; 用于响应于所述转换器的输出将所述图像信息记录在记录纸上的打印头; 以及用于相对于原始或记录纸携带读出传感器的驱动器。 多组这些读出传感器,转换器和打印头在同一基板上排列成一行。 检测到该装置的扫描移动量,并且每单位移动量同步光源和图像读出传感器或打印头的驱动操作,从而发生再现图像的浓度变化和发生火灾的风险 可以防止。 此外,在通过电池驱动装置的情况下可以获得显着的节能效果。
    • 7. 发明授权
    • Image process apparatus, image process method and storage medium
    • 图像处理装置,图像处理方法和存储介质
    • US06661921B2
    • 2003-12-09
    • US09287312
    • 1999-04-07
    • Hiroshi Tanioka
    • Hiroshi Tanioka
    • G06K946
    • H04N1/40093G06K9/00H04N1/409H04N1/56
    • An image processing apparatus capable of performing high-quality image reproduction to even low-density and color characters in an original is provided. The character is recognized from an image, the character of the original is expanded into a dot font based on the recognition result, and the image is reproduced. Furthermore, the character density of the original is detected, a character style of the character used in the reproduction image is determined according to the detected character density, a size of the character used in the reproduction image is determined according to the detected character density, and density of the character used in the reproduction image is also determined according to the detected character density. Furthermore, a color of the character of the original is detected, and a color of the character used in the reproduction image is determined according to the detected character color.
    • 提供了能够对原稿中的均匀低密度和彩色字符进行高品质图像再现的图像处理装置。 从图像识别字符,基于识别结果将原稿的字符扩展为点字体,并且再现图像。 此外,检测原稿的字符密度,根据检测到的字符浓度确定再现图像中使用的字符的字符样式,根据检测到的字符密度来确定再现图像中使用的字符的大小, 并且再现图像中使用的字符的密度也根据检测到的字符密度来确定。 此外,检测原件的字符的颜色,并且根据检测到的字符颜色来确定在再现图像中使用的字符的颜色。
    • 9. 发明授权
    • Image processing method and apparatus thereof
    • 图像处理方法及其装置
    • US6067088A
    • 2000-05-23
    • US649470
    • 1996-05-17
    • Hiroshi TaniokaYoshinobu Umeda
    • Hiroshi TaniokaYoshinobu Umeda
    • G06T5/40G06T15/50G06T5/00
    • G06T15/506G06T5/009
    • An image processor which processes an image signal using a DSP (digital signal processor), wherein a shading correction process, a logarithmic transformation process, an edge emphasizing process, a density adjustment process and a binarization process of the like are performed utilizing the DSP and a look-up table outside the DSP. An image signal is input in an order of raster scanning, and each pixel data of the image signal is set to an input register of the DSP. Calculations necessary for shading correction are performed in parallel on the pixel data by a plurality of ALUs in the DSP, and a logarithmic transformation is performed on the calculation results utilizing the look-up table. Further, the logarithmically-transformed signal is input to the DSP and set to the input register for an edge emphasizing process which is performed by the plurality of ALUs. The result is again input to the look-up table for a density adjustment process and input to the DSP for binarization and subsequent output.
    • 使用DSP(数字信号处理器)处理图像信号的图像处理器,其中使用DSP和/或DSP来执行阴影校正处理,对数变换处理,边缘强调处理,密度调整处理和二值化处理等 DSP外的查表。 以光栅扫描的顺序输入图像信号,并且图像信号的每个像素数据被设置为DSP的输入寄存器。 通过DSP中的多个ALU对像素数据并行地进行阴影校正所需的计算,并且使用查找表对计算结果执行对数变换。 此外,将对数变换后的信号输入到DSP中,并设定为由多个ALU执行的边缘强调处理的输入寄存器。 结果再次输入到查找表中进行密度调整处理,并输入到DSP进行二值化和后续输出。