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    • 71. 发明授权
    • Image processing apparatus, image processing method, program, and storage medium
    • 图像处理装置,图像处理方法,程序和存储介质
    • US07646925B2
    • 2010-01-12
    • US11229560
    • 2005-09-20
    • Shinichi KatoNaoki ItoOsamu Iinuma
    • Shinichi KatoNaoki ItoOsamu Iinuma
    • G06K9/36G06K9/46
    • H04N1/41H04N1/3875H04N1/646
    • An image forming apparatus having a reduction layout function has as its object to suppress any image degradation in recompressed image data. To achieve this object, an image processing method of this invention has the following arrangement. More specifically, an image processing method of generating reduced layout image data by using a plurality of image data as configured image data includes a step (step S1008) of decoding the plurality of configured image data which are compressed by using individual compression parameters, a step (step S1007) of extracting, on the basis of the compression parameters of the plurality of configured image data, a common compression parameter to compress the plurality of configured image data and assigning the common compression parameter, a step (step S1009) of recompressing the plurality of configured image data by using the assigned common compression parameter, and a step of compositing the plurality of recompressed configured image data as image data in a single page (step S1010) and outputting the image data (step S1012).
    • 具有缩小布局功能的图像形成装置的目的是抑制再压缩图像数据中的任何图像劣化。 为了实现该目的,本发明的图像处理方法具有以下结构。 更具体地,通过使用多个图像数据作为配置图像数据来生成缩小布局图像数据的图像处理方法包括:通过使用各个压缩参数对被压缩的多个配置图像数据进行解码的步骤(步骤S1008),步骤 (步骤S1007),根据多个配置图像数据的压缩参数,提取用于压缩多个配置图像数据并分配公共压缩参数的公共压缩参数,步骤(步骤S1009),对 通过使用所分配的公共压缩参数来配置多个配置的图像数据,以及将多个重新压缩的配置图像数据作为图像数据合成到一个页面中的步骤(步骤S1010)并输出图像数据(步骤S1012)。
    • 73. 发明申请
    • METHOD AND APPARATUS FOR PROCESSING SEMICONDUCTOR WAFER AFTER IMPURITY IMPLANTATION
    • 在植被后加工半导体波长的方法和装置
    • US20090275212A1
    • 2009-11-05
    • US12404434
    • 2009-03-16
    • Shinichi KATO
    • Shinichi KATO
    • H01L21/42B05C11/00
    • H01L21/2686H01L21/26513H01L21/67115
    • A semiconductor wafer implanted with impurities is loaded into a chamber. After oxygen gas is introduced around the semiconductor wafer, the semiconductor wafer is irradiated with a flash of light from flash lamps for an irradiation time not shorter than 0.1 milliseconds and not longer than 100 milliseconds, to thereby momentarily raise the surface temperature of the semiconductor wafer up to not lower than 800° C. and not higher than 1300° C. Since the temperature rises in an extremely short time, it is possible to activate the impurities while suppressing thermal diffusion thereof. Further, since an extremely thin oxide film is formed on a surface of the semiconductor wafer, this film serves as a protection film in a subsequent cleaning process, to prevent removal of the impurities.
    • 将注入了杂质的半导体晶片装入室内。 在半导体晶片周围引入氧气之后,用闪光灯的闪光照射半导体晶片,照射时间不短于0.1毫秒且不超过100毫秒,从而瞬间提高半导体晶片的表面温度 高达800℃以上1300℃以下。由于温度在极短时间内上升,因此能够抑制杂质的热扩散。 此外,由于在半导体晶片的表面上形成极薄的氧化膜,该膜在随后的清洗过程中用作保护膜,以防止杂质的去除。
    • 74. 发明授权
    • Image processing system and image processing method
    • 图像处理系统和图像处理方法
    • US07596271B2
    • 2009-09-29
    • US11174570
    • 2005-07-06
    • Hiroyuki YaguchiShinichi Kato
    • Hiroyuki YaguchiShinichi Kato
    • G06K9/00
    • G06F17/30271
    • This invention provides an image processing system and image processing method which can specify and save an input image which matches a predetermined pattern and also simplify the determination process. Vector data is generated from image information input by a scanner. Keyword information to inhibit reuse, which is contained in the image information, is input. The similarity between the input vector data and the keyword information is determined. Only when it is determined that the vector data is similar to the keyword information, the generated vector data is stored in a storage device.
    • 本发明提供了一种图像处理系统和图像处理方法,其可以指定和保存与预定图案匹配的输入图像,并且还简化确定处理。 矢量数据是由扫描仪输入的图像信息生成的。 输入包含在图像信息中的抑制重用的关键字信息。 确定输入向量数据和关键字信息之间的相似度。 只有当确定向量数据类似于关键字信息时,所生成的矢量数据才被存储在存储装置中。
    • 78. 发明申请
    • CHEWING DETERMINATION KIT AND CHEWING DETERMINATION METHOD
    • CHEWING确定试剂盒和茶叶测定方法
    • US20090053671A1
    • 2009-02-26
    • US12190785
    • 2008-08-13
    • Masao ABIRUShinichi Kato
    • Masao ABIRUShinichi Kato
    • A61C19/04
    • A23G3/368A23G3/48
    • To provide a chewing evaluation method capable of easily measuring chewing by an easy method without using a special expensive apparatus, together with a chewing determination kit, the chewing determination kit comprises testing food which contains ascorbic acid, an ascorbic acid derivative, and/or ethanol as detection components, and an indicator reacted with the components, based on a fact that there appears a difference in a leaching out state of components for chewing determination depending on a chewing degree when testing food containing the components for chewing determination is used as a factor which is necessary for chewing determination in a wide sense but lacks in the conventional chewing determination method.
    • 为了提供能够容易地通过简单的方法测量咀嚼的咀嚼评估方法,而不使用特别昂贵的装置,与咀嚼确定试剂盒一起,咀嚼测定试剂盒包括测试含有抗坏血酸,抗坏血酸衍生物和/或乙醇的食物 作为检测组分,以及与组分反应的指示剂,基于以下事实:当测试含有咀嚼测定组分的食物时,根据咀嚼度在咀嚼测定中出现组分浸出状态的差异被用作因子 这是咀嚼测定在广义上所必需的,但在常规咀嚼测定方法中缺乏。
    • 79. 发明授权
    • Storage system
    • 存储系统
    • US07409605B2
    • 2008-08-05
    • US11114198
    • 2005-04-26
    • Shinichi KatoHidehiro Nagaya
    • Shinichi KatoHidehiro Nagaya
    • G06F11/00
    • G06F11/0781G06F11/0727G06F11/0748G06F11/079
    • The failure management sections of a host computer and a storage unit are connected through a failure reporting interface. When a failure occurs in the storage unit, the failure information is notified from the failure management section of the storage unit to the failure management section of the host computer through the failure reporting interface, and the failure management section of the host computer deletes the failure information detected by software in the host computer based on the failure information from the storage unit. In this manner, the management of the failure information in the storage system can be unified by the service processor of the host computer. Consequently, it becomes possible to determine whether a failure generated in a host computer is a secondary failure or tertiary failure and to show the defect part indicating information minimum necessary for the maintenance and replacement.
    • 主机和存储单元的故障管理部分通过故障报告接口连接。 当存储单元发生故障时,故障信息从存储单元的故障管理部通过故障报告接口通知主机的故障管理部,主机的故障管理部删除故障 基于来自存储单元的故障信息在主计算机中由软件检测的信息。 以这种方式,存储系统中的故障信息的管理可以由主计算机的服务处理器统一。 因此,可以确定在主计算机中产生的故障是二次故障还是三次故障,并且显示指示维护和更换所必需的最小信息的缺陷部分。