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    • 52. 发明申请
    • PRINTED SUBSTRATE DESIGN SYSTEM, AND PRINTED SUBSTRATE DESIGN METHOD
    • 印刷基板设计系统和印刷基板设计方法
    • US20140181770A1
    • 2014-06-26
    • US14234550
    • 2012-07-27
    • Masashi OgawaKen Morishita
    • Masashi OgawaKen Morishita
    • G06F17/50
    • G06F17/5081G06F17/5036G06F17/5068G06F2217/82H05K1/023H05K1/0231H05K1/025H05K3/0005
    • A printed substrate design system designs a substrate configuration of a printed substrate on which an IC and a passive component are mounted, and a cable is connected to the printed substrate. The printed substrate design system includes: an input unit that receives input of printed substrate design information; an EMI characteristic derivation unit that derives an EMI characteristic from the input printed substrate design information received by the input unit, the EMI characteristic being a characteristic of EMI occurring from the printed substrate; a determination criteria storage unit that stores an EMI allowable condition being a condition of an allowable EMI characteristic of the printed substrate; an EMI condition determination unit that compares the EMI characteristic derived by the EMI characteristic derivation unit with the EMI allowable condition stored in the determination criteria storage unit, the EMI condition determination unit determining whether the EMI characteristic of the printed substrate satisfies the EMI allowable condition; a substrate configuration change unit that changes an internal configuration of the printed substrate in a case where the EMI condition determination unit has determined that the EMI allowable condition is not satisfied, the substrate configuration change unit setting design information of the printed substrate with the re-changed structure to design information for deriving the EMI characteristic in the EMI characteristic derivation unit; and an output unit that outputs a printed substrate configuration that satisfies the EMI allowable condition in a case where the EMI condition determination unit has determined the EMI allowable condition is satisfied.
    • 印刷基板设计系统设计其上安装有IC和无源部件的印刷基板的基板结构,并且电缆连接到印刷基板。 印刷基板设计系统包括:输入单元,其接收印刷基板设计信息的输入; EMI特性导出单元,其从输入单元接收的输入印刷基板设计信息中导出EMI特性,EMI特性是从印刷基板发出的EMI的特征; 确定标准存储单元,其存储作为所述印刷基板的容许EMI特性的条件的EMI容许条件; EMI条件确定单元,其将由EMI特征导出单元导出的EMI特性与存储在确定标准存储单元中的EMI可允许条件进行比较; EMI条件确定单元,确定印刷基板的EMI特性是否满足EMI允许条件; 衬底构造改变单元,其在EMI条件确定单元已经确定不允许EMI可允许条件的情况下改变印刷衬底的内部构造,衬底构造改变单元将印刷衬底的设计信息重新设置, 改变结构以设计用于导出EMI特性推导单元中的EMI特性的信息; 以及输出单元,其在EMI条件确定单元已经确定了EMI允许条件的情况下输出满足EMI允许条件的印刷基板结构。
    • 53. 发明申请
    • INK JET PRINTING APPARATUS AND INK TANK
    • 墨水印刷设备和墨水罐
    • US20110227972A1
    • 2011-09-22
    • US13040839
    • 2011-03-04
    • Suguru TaniguchiKenjiro WatanabeMasashi Ogawa
    • Suguru TaniguchiKenjiro WatanabeMasashi Ogawa
    • B41J2/195
    • B41J2/1752B41J2/17546
    • Provided is an ink jet printing apparatus that receives light from the light emitting part of the ink tank in the light receiving part; on the basis of a result of the light reception, determines an attachment position of the ink tank; and controls the light from the light emitting part to inform the ink tank state, wherein the light emitting part has a plurality of light emitting elements that can respectively emit lights having different peak emission wavelengths. A peak sensitivity wavelength of the light receiving part is in the range not less than 760 nm and not more than 1100 nm; at least one of the plurality of light emitting elements has a peak emission wavelength in the range not less than 760 nm, and at least one has a peak emission wavelength in the range of 400 to 760 nm.
    • 提供了一种从光接收部分中的墨罐的发光部分接收光的喷墨打印装置; 基于光接收的结果,确定墨盒的安装位置; 并且控制来自发光部分的光以通知墨盒状态,其中发光部分具有能够分别发射具有不同峰值发射波长的光的多个发光元件。 光接收部的峰值灵敏度波长在不小于760nm且不大于1100nm的范围内; 多个发光元件中的至少一个具有不小于760nm的峰值发射波长,并且至少一个具有在400至760nm范围内的峰值发射波长。
    • 54. 发明申请
    • Method, Apparatus and Program for Creating a Power Pin Model of a Semiconductor Integrated Circuit
    • 用于创建半导体集成电路的电源引脚模型的方法,装置和程序
    • US20080215303A1
    • 2008-09-04
    • US11914066
    • 2006-05-09
    • Masashi OgawaHiroshi Wabuka
    • Masashi OgawaHiroshi Wabuka
    • G06F17/50
    • G06F17/5036
    • A method of creating a power pin model of an LSI having appropriate analysis accuracy in consideration of information on positions within the LSI is provided. A divided cell size decision unit automatically decides a divided cell size of the LSI from power supply circuit network wire information, transistor structure information, analysis frequency information, size information, and element arrangement information of the LSI as well as from a semiconductor integrated circuit entire power pin model. A model creation unit allocates a model of an active section and a model of an internal capacitance section, including the positional information, within the LSI to the cells at an appropriate proportion, and a model coupling unit couples the models in each cell to create a power pin model of the LSI. Here, the size of each divided cell is determined to be electrically sufficiently smaller than a wavelength corresponding to an upper limit analysis frequency derived from power supply circuit network wire information, transistor structure information, and analysis frequency information.
    • 提供了考虑到关于LSI内的位置的信息来创建具有适当分析精度的LSI的电源引脚模型的方法。 分割单元尺寸决定单元根据LSI的电源电路网络线信息,晶体管结构信息,分析频率信息,尺寸信息和元件配置信息,以及半导体集成电路的全部自动决定LSI的分割单元尺寸 电源引脚型号。 模型创建单元以适当的比例将分散在LSI内的包括位置信息的内部电容部分的模型和模型耦合到单元中,模型耦合单元将每个单元中的模型耦合以产生 LSI的电源引脚型号。 这里,每个分割单元的尺寸被确定为充分小于对应于从电源电路网线信息,晶体管结构信息和分析频率信息导出的上限分析频率的波长。
    • 59. 发明授权
    • Hard macro array
    • 硬宏阵列
    • US06492119B1
    • 2002-12-10
    • US09664408
    • 2000-09-18
    • Masashi Ogawa
    • Masashi Ogawa
    • G01N33531
    • B01L3/508B01J2219/00274B01L3/5023B01L2300/069B01L2300/0819B01L2300/123Y10S435/969
    • A macro array comprises a film-shaped hard porous body and a plurality of spots, which contain test substances and are arrayed on the film-shaped hard porous body. The film-shaped hard porous body may be constituted of a surface layer region, which is provided with through-pores having a comparatively small mean pore diameter, and a base layer region, which is provided with through-pores having a comparatively large mean pore diameter. The surface of the film-shaped hard porous body, on which surface the spots are to be arrayed, may be coated with an auxiliary substance for promoting fixation of the test substances to the surface of the film-shaped hard porous body.
    • 宏阵列包括膜状硬质多孔体和多个斑点,其含有测试物质并排列在膜状硬质多孔体上。 膜状硬质多孔体可以由设置有平均孔径较小的贯通孔的表层区域和基底区域构成,该基底区域设置有具有较大平均孔隙的通孔 直径。 可以在其上排列有斑点的表面上的膜状硬质多孔体的表面涂覆辅助物质,以促进测试物质固定在膜状硬质多孔体的表面上。
    • 60. 发明授权
    • Analysis element and method for analyzing glycated hemoglobin content
ratio
    • 分析元素及分析糖化血红蛋白含量的方法
    • US5882935A
    • 1999-03-16
    • US544133
    • 1995-10-17
    • Kikuo HiraiHiroshi ShinokiMasashi OgawaYoshihiko Makino
    • Kikuo HiraiHiroshi ShinokiMasashi OgawaYoshihiko Makino
    • G01N33/53G01N33/52G01N33/542G01N33/72H01L21/302H01L21/304H01L21/306H01L21/76
    • G01N33/723G01N33/721
    • An analysis element for analyzing both amounts of glycated hemoglobin and total hemoglobin in an aqueous liquid sample to determine glycated hemoglobin content ratio in the sample. The element comprises a substrate layer for receiving a reaction mixture after the completion of an immunological reaction between the glycated hemoglobin in the sample and an enzyme-labelled antibody against the glycated hemoglobin, and a reagent layer. The substrate layer contains a non-diffusible substrate which forms a diffusible material in the presence of the enzyme of the enzyme-labelled antibody, the activity of the enzyme being effected relative to the steric hindrance due to the immunological reaction. The reagent layer contains a reagent composition for reacting with the diffusible material to form a dye detectable colorimetrically in a wavelength range which is not effected by an absorption spectrum of the hemoglobin. The total hemoglobin retained in the substrate layer and the dye formed in the reagent layer are colorimetrically analyzed separately, and the glycated hemoglobin content ratio is calculated from respective values. An analysis method using this analysis element is also provided.
    • 分析元素,用于分析含水液体样品中糖化血红蛋白和总血红蛋白的量,以测定样品中糖化血红蛋白含量的比例。 该元件包括用于在样品中的糖化血红蛋白和糖化血红蛋白的酶标记抗体完成后的反应混合物和试剂层的基底层。 底物层含有在酶标记抗体的酶存在下形成可扩散材料的非扩散性底物,该酶的活性相对于由于免疫反应引起的空间位阻影响。 试剂层含有用于与可扩散材料反应的试剂组合物,以形成可在不受血红蛋白的吸收光谱影响的波长范围内比色测定的染料。 分别保留在基材层中的总血红蛋白和形成在试剂层中的染料,并根据各值计算糖化血红蛋白含量比。 还提供了使用该分析元素的分析方法。