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    • 61. 发明授权
    • Computer system, program, and method for assigning computational resource to be used in simulation
    • 用于分配计算资源的计算机系统,程序和方法用于仿真
    • US09037448B2
    • 2015-05-19
    • US13387243
    • 2010-07-16
    • Yasuhiro ItoYasuo SugureShigeru OhoHideaki Kurata
    • Yasuhiro ItoYasuo SugureShigeru OhoHideaki Kurata
    • G06F9/44G06F11/36G06F9/50
    • G06F11/3664G06F9/5055
    • The cost necessary for introducing and maintaining a development environment that includes multiple simulators is suppressed, and a sharing of designing information is promoted, to make parameter adjustment of simulators easy. Provided is a service that unifies development environment on a computer provided with: a working computer system that can guarantee that there is no leaking of designing files; a user behavior monitoring system that collects utilization history of simulators or software, for each of the users, and selects development process of each of the users from the collected information; and a dynamic computational-resource distribution system that can conduct an automatic optimization of a complex simulation configuration, from information collected by the aforementioned user behavior monitoring system.
    • 引入和维护包含多个模拟器的开发环境所需的成本被抑制,并且提高了设计信息的共享,从而使模拟器的参数调整变得容易。 提供了一种将计算机上的开发环境统一起来的服务,它具有:可以保证设计文件不泄漏的工作计算机系统; 用户行为监控系统,用于为每个用户收集模拟器或软件的利用历史,并从收集的信息中选择每个用户的开发过程; 以及动态计算资源分配系统,可以从上述用户行为监控系统收集的信息中进行复杂模拟配置的自动优化。
    • 62. 发明授权
    • Alkaline battery separator, process for production thereof and alkaline batteries
    • 碱性电池隔板,其制造方法和碱性电池
    • US08486554B2
    • 2013-07-16
    • US12443047
    • 2007-09-27
    • Yasuhiro ItoYoshihiko KondoMasanao Tanaka
    • Yasuhiro ItoYoshihiko KondoMasanao Tanaka
    • H01M2/14
    • H01M2/162H01M2/1686H01M10/24
    • An alkaline battery separator comprises a fused fiber layer, and a fine fiber layer adjacent to the fused fiber layer and comprising fine fibers and second fusible fibers, which are fused in the fine fiber layer, wherein part of the fine fibers are incorporated into the fused fiber layer, so that in determining a delamination strength between the fused fiber layer and the fine fiber layer, delamination occurs in the fine fiber layer and therefore the determination results in failure. A process for manufacturing the separator includes preparing a fused fiber sheet, preparing a slurry containing fine fibers and second fusible fibers, scooping up the slurry with the fused fiber sheet, to thereby incorporate part of the fine fibers into the fused fiber sheet, and fusing the second fusible fibers in the fused fiber sheet.
    • 碱性电池隔板包括熔融纤维层和与熔融纤维层相邻的细纤维层,并且包含细纤维和第二可熔纤维,其熔合在细纤维层中,其中部分细纤维加入熔融 纤维层,因此在确定熔融纤维层与细纤维层之间的分层强度时,细纤维层发生分层,因此测定结果为失败。 制造隔膜的方法包括制备熔融纤维片材,制备含有细纤维的浆料和第二可熔纤维,用熔融纤维片材舀起浆料,从而将一部分细纤维加入熔融纤维片材中,并将熔融 熔融纤维片中的第二个可熔纤维。
    • 64. 发明申请
    • PUNCTURE REPAIR KIT
    • 打孔修理工具包
    • US20130000777A1
    • 2013-01-03
    • US13505883
    • 2010-10-20
    • Yoshihide KojimaWen San ChouYasuhiro Ito
    • Yoshihide KojimaWen San ChouYasuhiro Ito
    • B65B31/00
    • B29C73/166B29C73/025B29L2030/00B60S5/04
    • Disclosed is a puncture repair kit in which a bottle unit is positioned with greater stability. A puncture repair kit (1) comprises a compressor device (2), and a bottle unit (3) in which a cap (6) is attached to an opening (5) in a bottle container (4) which houses a puncture sealing agent. The compressor device (2) comprises a compressed air discharge port (8). The cap (6) comprises an air intake port (27) for feeding compressed air from the compressed air discharge port (8) into the bottle container (4), and a sealing agent/compressed air removal port (7) for removing puncture sealing agent and compressed air in succession from the bottle container (4) by feeding in compressed air. The compressed air discharge port (8) and the air intake port (27) can be directly connected.
    • 公开了一种穿刺修复套件,其中瓶单元被定位成具有更大的稳定性。 一种穿刺修复用具(1),包括压缩机装置(2)和瓶单元(3),其中,在容纳穿刺密封剂的瓶容器(4)中的开口(5)上安装有盖(6) 。 压缩机装置(2)包括压缩空气排出口(8)。 盖(6)包括用于将压缩空气从压缩空气排出口(8)供给到瓶容器(4)中的进气口(27)和用于去除穿刺密封的密封剂/压缩空气排出口(7) 药剂和压缩空气通过进入压缩空气从瓶容器(4)连续地进行。 压缩空气排出口(8)和进气口(27)可以直接连接。
    • 66. 发明申请
    • ULTRASONIC DIAGNOSTIC APPARATUS
    • 超声诊断设备
    • US20110213249A1
    • 2011-09-01
    • US13037538
    • 2011-03-01
    • Masahiko NakataEiji KasaharaMasaru MurashitaYasuhiro Ito
    • Masahiko NakataEiji KasaharaMasaru MurashitaYasuhiro Ito
    • A61B8/14
    • A61B8/08A61B8/0866A61B8/0883G01S7/52074
    • An ultrasonic diagnostic apparatus which can measure a time difference of motion between a plurality of sites of a cardiac muscle for the heart of a fetus is provided. On a tomographic image of the heart, a user sets a plurality of observation points. Each observation point is tracked, and a plurality of displacement waveforms representing a temporal displacement of the plurality of observation points are generated. A time difference between a plurality of representative points is calculated between the plurality of displacement waveforms. Such a time difference is displayed as a numerical value or as a graph. The representative point is a peak point, a zero-cross point, an inflection point, or the like. The plurality of observation points are set along conduction pathways in the heart for the electric signal.
    • 提供一种超声波诊断装置,其可以测量胎儿心脏的心肌的多个部位之间的运动时间差。 在心脏的断层图像上,用户设定多个观察点。 跟踪每个观察点,并且生成表示多个观察点的时间位移的多个位移波形。 在多个位移波形之间计算多个代表点之间的时间差。 这样的时间差被显示为数值或图形。 代表点是峰值点,零交叉点,拐点等。 多个观察点沿着电信号的心脏中的传导路径设置。
    • 67. 发明授权
    • Battery separator and battery comprising same
    • 电池分离器和包含它的电池
    • US07923143B2
    • 2011-04-12
    • US11340095
    • 2006-01-26
    • Masanao TanakaToshiaki TakaseYasuhiro ItoYoshihiko Kondo
    • Masanao TanakaToshiaki TakaseYasuhiro ItoYoshihiko Kondo
    • H01M2/18H01M2/16D04H1/00
    • D04H1/48D04H1/49D21H13/14D21H13/16D21H15/10H01M2/162Y10T442/611
    • A battery separator comprising a nonwoven fabric, wherein the nonwoven fabric contains (1) superfine fibers having a fiber diameter of 3 μm or less, (2) noncircular fine fibers having a noncircular cross-sectional shape and having a fiber diameter of 3 to 5 μm (excluding 3 μm), the fiber diameter meaning a diameter of a circle having an area the same as that of the noncircular cross-sectional shape, and (3) polypropylene based high-strength composite fibers containing a fusible component on the surface thereof and having a tensile strength of 4.5 cN/dtex or more, and the fusible component contained in the polypropylene based high-strength composite fibers is fused, and a battery comprising the battery separator are disclosed. A battery separator of the present invention has a high electrolyte-holding capacity and is capable of effectively preventing a short circuit, even if the separator is designed to be thinner to enhance the capacity of a battery.
    • 1.一种电池用隔膜,其特征在于,上述无纺布含有(1)纤维直径为3μm以下的超细纤维,(2)具有非圆形截面形状且纤维直径为3〜5的非圆形细纤维 μm(不含3μm),纤维直径是指具有与非圆形截面形状相同的圆的直径,(3)在其表面含有可熔成分的聚丙烯系高强度复合纤维 拉伸强度为4.5cN / dtex以上,聚丙烯系高强度复合纤维中所含的熔融成分熔融,并且公开了包含电池隔板的电池。 本发明的电池用隔膜具有高的电解液保持能力,能够有效地防止短路,即使将隔膜设计得更薄以增强电池的容量。
    • 68. 发明申请
    • IMAGE PROCESSING APPARATUS AND IMAGE PROCESSING METHOD
    • 图像处理装置和图像处理方法
    • US20100321539A1
    • 2010-12-23
    • US12788854
    • 2010-05-27
    • Yasuhiro Ito
    • Yasuhiro Ito
    • H04N5/217
    • H04N5/2351H04N5/23206H04N5/2353
    • A plurality of images captured in different exposure times are aligned in order of exposure time, and pairs each of two images adjacent on the line are set. Common regions in long- and short-time images contained in a pair of interest are specified based on the pixel value distributions of the respective images. A location error correction amount for the long-time image is calculated to make the common regions match each other when the long- and short-time images are composited with each other. The long-time image undergoes image processing based on the location error correction amount. A composite image is generated by compositing a plurality of images obtained by performing image processing for each pair. The generated composite image is output.
    • 以不同曝光时间拍摄的多个图像以曝光时间的顺序对齐,并且设置在该行上相邻的两个图像中的每一个。 基于相应图像的像素值分布来指定包含在感兴趣对中的长时间和短时间图像中的公共区域。 计算长时间图像的位置误差校正量,以便在长时间和短时间图像彼此合成时使公共区域彼此匹配。 长时间图像基于位置误差校正量进行图像处理。 通过合成通过对每对执行图像处理而获得的多个图像来生成合成图像。 输出生成的合成图像。
    • 69. 发明申请
    • ALKALINE BATTERY SEPARATOR, PROCESS FOR PRODUCTION THEREOF AND ALKALINE BATTERIES
    • 碱性电池分离器,其生产工艺和碱性电池
    • US20100092853A1
    • 2010-04-15
    • US12443047
    • 2007-09-27
    • Yasuhiro ItoYoshihiko KondoMasanao Tanaka
    • Yasuhiro ItoYoshihiko KondoMasanao Tanaka
    • H01M2/14
    • H01M2/162H01M2/1686H01M10/24
    • An alkaline battery separator comprises a fused fiber layer, and a fine fiber layer adjacent to the fused fiber layer and comprising fine fibers and second fusible fibers, which are fused in the fine fiber layer, wherein part of the fine fibers are incorporated into the fused fiber layer, so that in determining a delamination strength between the fused fiber layer and the fine fiber layer, delamination occurs in the fine fiber layer and therefore the determination results in failure. A process for manufacturing the separator includes preparing a fused fiber sheet, preparing a slurry containing fine fibers and second fusible fibers, scooping up the slurry with the fused fiber sheet, to thereby incorporate part of the fine fibers into the fused fiber sheet, and fusing the second fusible fibers in the fused fiber sheet.
    • 碱性电池隔板包括熔融纤维层和与熔融纤维层相邻的细纤维层,并且包含细纤维和第二可熔纤维,其熔合在细纤维层中,其中部分细纤维加入熔融 纤维层,因此在确定熔融纤维层与细纤维层之间的分层强度时,细纤维层发生分层,因此测定结果为失败。 制造隔膜的方法包括制备熔融纤维片材,制备含有细纤维的浆料和第二可熔纤维,用熔融纤维片材舀起浆料,从而将一部分细纤维加入熔融纤维片材中,并将熔融 熔融纤维片中的第二个可熔纤维。