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    • 81. 发明授权
    • Software safety execution system
    • 软件安全执行系统
    • US07690023B2
    • 2010-03-30
    • US10498318
    • 2002-12-03
    • Kazuhiko KatoYoshihiro Oyama
    • Kazuhiko KatoYoshihiro Oyama
    • H04L29/06
    • G06F21/53G06F21/606G06F2221/2141
    • A secure software execution mechanism appropriate for software circulation is provided. At a sender site 312, an executable file 332 and a data file 334 processed by the executable file are encapsulated. The remaining two files 336 and 338 do not physically exist in a pot 320 at the sender site, and an archive file 320 is transferred to a receiver site 314. At the receiver site 314, intangible files 336 and 338 within a pot may be mapped to a file 354 in a local file system or a file 356 within another pot 350 and processed using a file 334 in a pot or the mapped file 354 or 356 by executing a program 332, in conformity with the specification of a security policy 340.
    • 提供了适用于软件流通的安全软件执行机制。 在发送者站点312处,封装了由可执行文件处理的可执行文件332和数据文件334。 剩余的两个文件336和338在物理上不存在于发送站点处的盆320中,归档文件320被传送到接收者站点314.在接收站站点314,可以映射一个锅内的无形文件336和338 到本地文件系统中的文件354或另一个罐350内的文件356,并且通过执行程序332,使用文件334或者映射文件354或356中的文件334进行处理,这符合安全策略340的规范。
    • 82. 发明申请
    • Heat processing apparatus
    • 热处理设备
    • US20090136888A1
    • 2009-05-28
    • US11922010
    • 2006-06-12
    • Ken NakaoKazuhiko Kato
    • Ken NakaoKazuhiko Kato
    • F27B9/04B21D53/02F27B14/14
    • C23C16/46C23C16/4411C23C16/54H01L21/324H01L21/67098H01L21/67103H01L21/67109Y10T29/4935
    • The present invention is a heat processing apparatus comprising: a processing vessel that receives a plurality of objects to be processed in a tier-like manner to subject the objects to be processed to a predetermined heating process; a tubular heater disposed to surround the processing vessel, the tubular heater being capable of heating the objects to be processed; an exhaust heat system for discharging an atmosphere in a space between the heater and the processing vessel; and a cooling unit that blows-out a cooling fluid into the space to cool the processing vessel. The heater has a tubular heat insulating member, and a heating resistor arranged on an inner circumference of the heat insulating member. The cooling unit has a plurality of blowing nozzles embedded in the heat insulating member. Each of the blowing nozzles is formed in such a manner that an inlet orifice of the blowing nozzle and an outlet orifice thereof are not linearly aligned to each other.
    • 本发明是一种热处理装置,包括:处理容器,其以层状方式接收待处理的多个物体,以对被处理物进行预定的加热处理; 管状加热器,其设置成围绕处理容器,所述管状加热器能够加热被处理物体; 用于排出加热器和处理容器之间的空间中的气氛的排气系统; 以及将冷却流体吹入空间以冷却处理容器的冷却单元。 加热器具有管状绝热构件和布置在绝热构件的内周上的加热电阻器。 冷却单元具有嵌入绝热构件中的多个吹出喷嘴。 每个喷吹嘴都以这样的方式形成,使得喷嘴的入口孔和出口孔彼此不直线对准。
    • 83. 发明申请
    • METHOD OF FORMING GAS DIFFUSION LAYER FOR FUEL CELL
    • 燃料电池形成气体扩散层的方法
    • US20090089989A1
    • 2009-04-09
    • US11911188
    • 2007-02-07
    • Keiji HashimotoKazuhiko Kato
    • Keiji HashimotoKazuhiko Kato
    • H01M8/02
    • H01M8/0254B21D31/043H01M8/023H01M8/0232H01M2008/1095Y02P70/56Y10T29/10
    • A collector 12 which serves as a gas diffusion layer for a fuel cell; i.e., a metal lath MR, is formed by a method consisting of a first step and a second step. In the first step, while an upper blade UH is positioned at a first machining position along the width direction of a stainless steel sheet S, generally hexagonal through holes are formed in the stainless steel sheet S at two positions which are biased from each other by a machining pitch. In the second step, while the upper blade UH is positioned at a second machining position along the width direction of the stainless steel sheet S, generally hexagonal through holes are formed in the stainless steel sheet S at two positions which are biased from each other by the machining pitch. The first step and the second step are alternated repeatedly, thereby forming the metal lath MR having a uniform shape and a predetermined thickness.
    • 用作燃料电池的气体扩散层的集电体12; 即金属板条MR由通过第一步骤和第二步骤组成的方法形成。 在第一步骤中,当上刀片UH沿着不锈钢板S的宽度方向位于第一加工位置时,通过在不锈钢板S中形成六边形的通孔,该两个位置通过相互偏置的两个位置 加工间距。 在第二步骤中,当上刀片UH位于沿着不锈钢板S的宽度方向的第二加工位置时,在不锈钢板S中,通过六边形通孔形成两个相互偏压的位置, 加工间距。 第一步骤和第二步骤重复地交替,从而形成具有均匀形状和预定厚度的金属板条MR。
    • 86. 发明授权
    • Active vibration damping actuator and active damping apparatus using the same
    • 主动减振执行机构及使用其的主动减振装置
    • US07128311B2
    • 2006-10-31
    • US10808891
    • 2004-03-24
    • Katsuhiro GotoHajime MaenoKazuhiko KatoKei OkumuraKouichi MaedaTetsuo MikasaHirotomi NemotoHiroaki UeKen Iinuma
    • Katsuhiro GotoHajime MaenoKazuhiko KatoKei OkumuraKouichi MaedaTetsuo MikasaHirotomi NemotoHiroaki UeKen Iinuma
    • F16F5/00
    • F16F13/264F16F2230/0005
    • A vibration damping actuator including: a cup-shaped housing; an output member disposed spaced apart from an opening end of the housing; a guide rod disposed on the output member and positioned inserted into a guide hole; a coil member provided to one of the housing and the output member; an armature disposed on an other of the housing and the output member, the armature being adapted to exert actuating force on the output member; an annular fixing member arranged about the output member; a support rubber plate disposed between the annular fixing member and the output member; and a positioning projection formed at an inside peripheral edge of the fixing member by projecting the inside peripheral edge of the fixing member in cylindrical configuration in an axial direction towards an inside of the housing. The positioning projection is disposed at a location situated inward by a predetermined distance from the opening of the housing for positioning the fixing member relative to the housing.
    • 一种减震致动器,包括:杯形壳体; 输出构件,其与所述壳体的开口端间隔开设置; 引导杆,设置在所述输出构件上并定位成插入到引导孔中; 线圈构件,其设置在所述壳体和所述输出构件中的一个上; 设置在所述壳体和所述输出构件中的另一个上的衔铁,所述衔铁适于在所述输出构件上施加致动力; 围绕所述输出构件布置的环形固定构件; 设置在所述环形固定构件和所述输出构件之间的支撑橡胶板; 以及定位突起,其形成在所述固定构件的内周边缘处,通过使所述固定构件的内周缘沿轴向朝向所述壳体的内部突出。 定位突起设置在位于壳体的开口内侧预定距离内的位置处,用于相对于壳体定位固定构件。
    • 87. 发明申请
    • Sequential data examination method
    • 顺序数据检查方法
    • US20060069955A1
    • 2006-03-30
    • US11179838
    • 2005-07-12
    • Mizuki OkaKazuhiko Kato
    • Mizuki OkaKazuhiko Kato
    • G06F11/00
    • G06F21/316
    • The present invention aims at providing a sequential data examination method which can increase data examination accuracy compared with the prior art. The similarity is calculated between a layered network model generated from learning sequential data to be learned and a layered network model generated from testing sequential data to be tested. Based on the similarity, it is determined whether or not the testing sequential data to be tested belong to one or more categories. A network model for each layer of the layered network model is constructed by multiplying an element of the feature vector and its corresponding Eigen co-occurrence matrix.
    • 本发明旨在提供一种与现有技术相比可以提高数据检查精度的顺序数据检查方法。 在从要学习的学习顺序数据生成的分层网络模型和从测试的测试顺序数据生成的分层网络模型之间计算相似度。 基于相似度,确定要测试的测试顺序数据是否属于一个或多个类别。 通过将特征向量的元素与其对应的特征同现矩阵相乘,构建分层网络模型的每个层的网络模型。
    • 89. 发明授权
    • Fluid-filled vibration-damping device and method of controlling the same
    • 流体填充减振装置及其控制方法
    • US06708963B2
    • 2004-03-23
    • US10194616
    • 2002-07-11
    • Naoki NishiKazuhiko KatoHideki Matsuoka
    • Naoki NishiKazuhiko KatoHideki Matsuoka
    • F16F1300
    • F16F13/268
    • A vibration-damping device including: an elastic body connecting a first and a second mounting member: a pressure receiving and equilibrium chambers partially defined by the elastic body and a flexible diaphragm, filled with a non-compressible fluid and held in fluid communication through a first orifice passage and a second orifice passage that is tuned higher than the first orifice passage. A shut-off valve mechanism operable to selectively allow and inhibit fluid flows through the second orifice passage, an elastic oscillation plate partially defining the pressure-receiving chamber so that a fluid pressure in the pressure-receiving chamber acts on one surface of the elastic oscillation plate, and a working air chamber partially defined by the other surface of the elastic oscillation plate and oscillated by a periodic air pressure change in the working air chamber, are also incorporated. A method of controlling the same is also disclosed.
    • 1.一种减震装置,包括:连接第一和第二安装构件的弹性体:由所述弹性体部分地限定的受压和平衡室以及柔性隔膜,所述柔性隔膜填充有不可压缩流体,并通过 第一孔口通道和第二孔口通道,其被调谐成高于第一孔口通道。 截止阀机构,其可操作以选择性地允许和阻止通过第二孔通道的流体流动;弹性振动板,其部分地限定受压室,使得受压室中的流体压力作用在弹性振荡的一个表面上 板和由弹性振动板的另一表面部分限定并由工作空气室中的周期性空气压力变化振荡的工作空气室也被并入。 还公开了一种控制该方法的方法。
    • 90. 发明授权
    • Dynamic damper
    • 动态阻尼器
    • US06682060B2
    • 2004-01-27
    • US10284687
    • 2002-10-31
    • Kazuhiko KatoSeiya Asano
    • Kazuhiko KatoSeiya Asano
    • F16F700
    • F16F15/1442Y10T464/50
    • A dynamic damper includes a cylindrical mass metal element, a cylindrical elastic-body attachment portion, a cylindrical elastic-body connection portion, and an elastic-body covering portion. The elastic-body attachment portion is formed from a rubber elastic body and coaxially disposed inside the mass metal element while a predetermined radial distance is maintained therebetween. The elastic-body connection portion is formed from a rubber elastic body and disposed between the mass metal element and the elastic-body attachment portion so as to connect them. The elastic-body covering portion covers the outer circumferential surface of the mass metal element. The elastic-body connection portion and the elastic-body covering portion are not bonded to the mass metal element. A plurality of protrusions are formed and arranged circumferentially on the inner circumferential surface of the mass metal element.
    • 动态阻尼器包括圆柱形质量金属元件,圆柱形弹性体附接部分,圆柱形弹性体连接部分和弹性体覆盖部分。 弹性体安装部由橡胶弹性体形成,同轴地配置在质量金属元件的内部,同时保持规定的径向距离。 弹性体连接部由橡胶弹性体形成,并且配置在质量金属元件与弹性体安装部之间,以将它们连接起来。 弹性体覆盖部覆盖该金属元件的外周面。 弹性体连接部和弹性体覆盖部未接合到质量金属元件。 在该金属元件的内周面上周向形成有多个突起。