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    • 41. 发明授权
    • Automatic ice making machine
    • 自动制冰机
    • US4619117A
    • 1986-10-28
    • US818304
    • 1986-01-13
    • Yoshinori Ito
    • Yoshinori Ito
    • F25C1/04F25C1/00
    • F25C1/045
    • In an automatic ice making machine which comprises a freezing chamber formed to define a plurality of open bottom freezing cells, a water plate provided under the freezing chamber for supplying water to be frozen to by spraying the same into the freezing cells, a water tank provided under the water plate for storing a necessary amount of water to be frozen for one freezing cycle, a water inlet valve connected to a feed pipe for supplying water to the water tank, and a water inlet valve controlling timer circuit for controlling the opening and closing of the water inlet valve, and wherein during a defrosting operation, the water plate and the water tank are caused to be inclined downwardly so as to discharge ice cubes the water inlet valve controlling timer circuit comprises a first means for permitting the water inlet valve to open for a first set period of time, a second means for permitting the water inlet valve to open for a second set period of time which is shorter than the first set period of time, and a changeover means which selects the first means only during an initial freezing cycle and switches to the second means during the second and subsequent freezing cycles. The present automatic ice making machine can perform economical freezing operations with such advantages that an insufficient or excessive supply of water to be frozen is not incurred and that ice cubes formed are of proper form, weight, and the like.
    • 一种自动制冰机,其特征在于,包括形成为限定多个开口底部冷冻室的冷冻室,设置在所述冷冻室下方的用于将冷冻水供给到冷冻室中的水盘, 在用于储存必需量的待冷冻一个冷冻循环的水的水盘下方,连接到用于向水箱供水的供给管的进水阀和用于控制开闭的进水阀控制定时器电路 的进水阀,并且其中在除霜操作期间,使所述水盘和所述水箱向下倾斜以排出冰块,所述进水阀控制定时器回路包括第一装置,用于允许所述进水阀 打开第一设定时间段,第二装置,用于允许进水阀打开比第一设定时间短的第二设定时间段 以及仅在初始冷冻循环期间选择第一装置的切换装置,并且在第二和随后的冷冻循环期间切换到第二装置。 本自动制冰机可以进行经济的冷冻操作,其优点是不会产生不能或过量的待冷冻水,并且形成的冰块具有适当的形状,重量等。
    • 44. 发明授权
    • Developing device provided with thickness-regulation member resistant to abrasion
    • 具有耐磨损的厚度调节构件的显影装置
    • US08521055B2
    • 2013-08-27
    • US13233595
    • 2011-09-15
    • Yoshinori Ito
    • Yoshinori Ito
    • G03G15/08
    • G03G15/0812
    • A developing device includes a casing having an opening extending in a first direction, a developing roller, a thickness-regulation portion, a sealing member and a contact portion. The thickness-regulation portion includes a thin-plate member and a regulating portion. The thin-plate member has a base end portion fixed to the casing and a free end portion to which the regulating portion is fixed. The thin-plate member has a lateral end extending in a second direction. The regulating portion has an end face extending in a direction. The sealing member is disposed on the thin-plate member and in intimate contact with the end face of the regulating portion. The contact portion is fixed on the thin-plate member at a position closer to the lateral end than the sealing member to the lateral end and made of a material whose hardness is higher than that of the sealing member.
    • 显影装置包括具有沿第一方向延伸的开口的壳体,显影辊,厚度调节部分,密封构件和接触部分。 厚度调节部分包括薄板构件和调节部分。 薄板构件具有固定到壳体的基端部和固定有限制部的自由端部。 薄板构件具有沿第二方向延伸的横向端。 调节部具有沿一个方向延伸的端面。 密封构件设置在薄板构件上并与调节部的端面紧密接触。 所述接触部分在与所述密封构件相比侧端更靠近侧端的位置固定在所述薄板构件上,并且由硬度高于所述密封构件的材料制成。
    • 46. 发明授权
    • Image processing method, pattern detection method, pattern recognition method, and image processing device
    • 图像处理方法,图案检测方法,图案识别方法和图像处理装置
    • US08447076B2
    • 2013-05-21
    • US12394593
    • 2009-02-27
    • Takahisa YamamotoYoshinori ItoMasao Yamanaka
    • Takahisa YamamotoYoshinori ItoMasao Yamanaka
    • G06K9/00
    • G06K9/00221
    • An image processing device clips a plurality of partial images from an image, and calculates difference values of pixel values between a target pixel and surrounding pixels surrounding the target pixel in the partial images. Then, the image processing device decides parameter values corresponding to respective surrounding pixels based on identification information that identifies the partial image from among the plurality of the partial images and the difference values, and calculates a feature amount corresponding to the target pixel using the parameter value decided. Then, the image processing device obtains a feature amount of the partial images by calculating the feature amount with the above-described steps, using each pixel in the partial images as the target pixels.
    • 图像处理装置从图像剪辑多个部分图像,并且计算目标像素与部分图像中的目标像素周围的周围像素之间的像素值的差分值。 然后,图像处理装置基于从多个部分图像和差分值中识别出部分图像的识别信息来决定与各周围像素对应的参数值,并使用参数值计算与目标像素对应的特征量 决定了 然后,图像处理装置使用部分图像中的每个像素作为目标像素,通过利用上述步骤计算特征量来获得部分图像的特征量。
    • 47. 发明授权
    • Calculation processing apparatus and control method thereof
    • 计算处理装置及其控制方法
    • US07978905B2
    • 2011-07-12
    • US12602628
    • 2008-06-11
    • Takahisa YamamotoMasami KatoYoshinori Ito
    • Takahisa YamamotoMasami KatoYoshinori Ito
    • G06K9/62
    • G06N3/08
    • A calculation processing apparatus, which executes calculation processing based on a network composed by hierarchically connecting a plurality of processing nodes, assigns a partial area of a memory to each of the plurality of processing nodes, stores a calculation result of a processing node in a storable area of the partial area assigned to that processing node, and sets, as storable areas, areas that store the calculation results whose reference by all processing nodes connected to the subsequent stage of that processing node is complete. The apparatus determines, based on the storage states of calculation results in partial areas of the memory assigned to the processing node designated to execute the calculation processing of the processing nodes, and to processing nodes connected to the previous stage of the designated processing node, whether or not to execute a calculation of the designated processing node.
    • 执行基于通过分层连接多个处理节点组成的网络的计算处理的计算处理装置,将多个处理节点中的每个处理节点的存储器的部分区域分配,将处理节点的计算结果存储在可存储 分配给该处理节点的部分区域的区域,并且存储存储连接到该处理节点的后续阶段的所有处理节点的参考的计算结果的存储区域。 该装置基于分配给指定用于执行处理节点的计算处理的处理节点的存储器的部分区域中的计算结果的存储状态以及连接到指定处理节点的前一级的处理节点,确定是否 或者不执行指定的处理节点的计算。
    • 48. 发明申请
    • DATA CORRECTION APPARATUS AND METHOD
    • 数据校正装置及方法
    • US20110158542A1
    • 2011-06-30
    • US12974633
    • 2010-12-21
    • Masami KatoYoshinori ItoTakahisa Yamamoto
    • Masami KatoYoshinori ItoTakahisa Yamamoto
    • G06K9/46G06K9/40
    • G06K9/00281G06K9/03G06T1/00
    • A data correction apparatus which corrects data associated with an image of an object projects vector data obtained by connecting data to be corrected to each other onto a subspace to generate a dimensionally reduced projection vector, and executes dimension restoration processing in which the dimensionality of the projection vector is restored to generate dimensionally restored vector data, thereby generating a plurality of dimensionally restored vector data for each type of fluctuation. The data correction apparatus determines the fluctuation of the object based on the projection vector, integrates the plurality of dimensionally restored vector data with each other based on the determination result, and outputs the integration result as corrected data.
    • 一种数据校正装置,其校正与对象的图像相关联的数据,通过将要被校正的数据相互连接获得的向量数据投射到子空间上,以生成尺寸减小的投影向量,并执行尺寸恢复处理,其中投影的维度 向量被恢复以生成尺寸恢复的矢量数据,从而为每种类型的波动产生多个维度恢复的矢量数据。 数据校正装置基于投影向量来确定对象的波动,基于确定结果将多个尺寸恢复的矢量数据相互积分,并将积分结果作为校正数据输出。
    • 49. 发明申请
    • IMAGE PROCESSING APPARATUS AND METHOD, AND COMPUTER-READABLE STORAGE MEDIUM
    • 图像处理装置和方法以及计算机可读存储介质
    • US20110091113A1
    • 2011-04-21
    • US12901364
    • 2010-10-08
    • Yoshinori ItoMasami KatoTakahisa Yamamoto
    • Yoshinori ItoMasami KatoTakahisa Yamamoto
    • G06K9/68
    • G06K9/6206G06K9/00248G06K9/00315G06T3/0093
    • An image processing apparatus classifies a variation of a target object included in an image from a specific state as one of a plurality of types of attributes, and holds, for each variation attribute, a correction parameter for spatial transformation that corrects the target object to the specific state. The image processing apparatus generates an input image vector by vectorizing at least a partial region of the input image, and determines a variation attribute by detecting a variation of the target object from the specific state in the input image. Then, the image processing apparatus generates a transformed image vector by performing the spatial transformation on the input image vector, using a correction parameter selected based on the determined variation attribute from among the correction parameters held for respective variation attributes.
    • 图像处理装置将来自特定状态的图像中包含的目标对象的变化分类为多种属性之一,并且对于每个变形属性,保持用于将目标对象修正为的空间变换的校正参数 具体状态。 图像处理装置通过对输入图像的至少一部分区域进行向量化生成输入图像矢量,并且通过检测目标对象与输入图像中的特定状态的变化来确定变化属性。 然后,图像处理装置使用从根据各个变化属性保持的校正参数中基于所确定的变化属性选择的校正参数,对输入图像矢量进行空间变换来生成变换后的图像矢量。
    • 50. 发明申请
    • TITANIUM ELECTRODE MATERIAL AND SURFACE TREATMENT METHOD OF TITANIUM ELECTRODE MATERIAL
    • 钛电极材料的钛电极材料与表面处理方法
    • US20100233587A1
    • 2010-09-16
    • US12709935
    • 2010-02-22
    • Toshiki SATOJun SuzukiYoshinori ItoJun Hisamoto
    • Toshiki SATOJun SuzukiYoshinori ItoJun Hisamoto
    • H01M8/00
    • H01M4/8657H01M4/8803H01M4/8817H01M4/8867H01M4/92H01M4/921H01M8/0206H01M2008/1095
    • It is an object of the present invention to provide a titanium electrode material which is low in cost and is excellent in electric conductivity, corrosion resistance and hydrogen absorption resistance, and a surface treatment method of a titanium electrode material. A titanium electrode material includes: on the surface of a titanium material including pure titanium or a titanium alloy, a titanium oxide layer having a thickness of 3 nm or more and 75 nm or less, and having an atomic concentration ratio of oxygen and titanium (O/Ti) at a site having the maximum oxygen concentration in the layer of 0.3 or more and 1.7 or less; and an alloy layer including at least one noble metal selected from Au, Pt, and Pd, and at least one non-noble metal selected from Zr, Nb, Ta, and Hf, having a content ratio of the noble metal and the non-noble metal of 35:65 to 95:5 by atomic ratio, and having a thickness of 2 nm or more, on the titanium oxide layer. The surface treatment method of a titanium electrode material includes a titanium oxide layer formation step, an alloy layer formation step, and a heat treatment step.
    • 本发明的目的是提供一种成本低且导电性,耐腐蚀性和耐氢吸收性优异的钛电极材料以及钛电极材料的表面处理方法。 钛电极材料包括:在包括纯钛或钛合金的钛材料的表面上,具有3nm以上且75nm以下的氧化钛层,并且具有氧和钛的原子浓度比( O / Ti)在层中的最大氧浓度为0.3以上且1.7以下的部位; 以及包含选自Au,Pt和Pd中的至少一种贵金属和选自Zr,Nb,Ta和Hf中的至少一种非贵金属的合金层,其具有贵金属和非金属的含量比, 在氧化钛层上的原子比为35:65〜95:5的贵金属,厚度为2nm以上。 钛电极材料的表面处理方法包括氧化钛层形成步骤,合金层形成步骤和热处理步骤。