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    • 95. 发明申请
    • SECURITY POLICY MANAGEMENT DEVICE, SECURITY POLICY MANAGEMENT SYSTEM, AND STORAGE MEDIUM
    • 安全政策管理设备,安全政策管理系统和存储介质
    • US20090319480A1
    • 2009-12-24
    • US12134457
    • 2008-06-06
    • Kazuo Saito
    • Kazuo Saito
    • G06F17/30G06F21/00
    • G06F21/6218
    • Policy information stores policy setting information and identification information of a policy in correlation with each other, the policy setting information correlating setting content of the policy with each data type information indicating whether data for which the policy is set is original data or derived data. A data information storage stores identification information of data for which a policy is set in correlation with the data and identification information of the policy attached to the data, and information for identifying that the data is the derived data. A searching unit identifies, in response to a searching request, identification information of a policy correlated to the data whose identification information is designated in the searching request, identifies whether target data of the searching request is the original data or the derived data.
    • 策略信息存储相关的策略设置信息和策略的识别信息,策略设置信息将策略的设置内容与指示策略被设置的数据的数据类型信息是原始数据还是派生数据相关联。 数据信息存储器存储与数据相关联的策略设置的数据的标识信息和附加到数据的策略的标识信息,以及用于识别数据是导出数据的信息。 搜索单元响应于搜索请求识别与在搜索请求中指定了识别信息的数据相关联的策略的识别信息,识别搜索请求的目标数据是原始数据还是派生数据。
    • 96. 发明申请
    • Current steering type single flux quantum circuit
    • 电流导向型单通量子电路
    • US20060290553A1
    • 2006-12-28
    • US11335475
    • 2006-01-20
    • Futoshi FurutaKazuo Saito
    • Futoshi FurutaKazuo Saito
    • H03M1/12
    • H03K3/38H03K5/24H03M1/12
    • Disclosed is a single flux quantum circuit that uses a flux quantum as an information carrier, which generates a SFQ clock signal with little clock jitter and supplies the SFQ clock signal to a SFQ function circuit of the SFQ circuit. A SFQ function circuit is configured to include a current steering type single flux quantum circuit that is capable of concurrently achieving both a conversion function of converting a current signal into a SFQ signal and a comparator function of outputting a SFQ data signal in response to the amount of a to-be-compared current. At the same time, a SFQ clock signal oscillation circuit for generating a SFQ clock signal in response to the amount of DC voltage is formed.
    • 公开了使用通量量子作为信息载体的单通量量子电路,其产生具有小时钟抖动的SFQ时钟信号,并将SFQ时钟信号提供给SFQ电路的SFQ功能电路。 SFQ功能电路被配置为包括能够同时实现将电流信号转换成SFQ信号的转换功能的电流导向型单通量量子电路和响应于该量的SFQ数据信号输出SFQ数据信号的比较器功能 的比较电流。 同时,形成用于响应于DC电压量产生SFQ时钟信号的SFQ时钟信号振荡电路。
    • 98. 发明授权
    • Fuel cell separator and process for producing the same
    • 燃料电池分离器及其制造方法
    • US06998189B2
    • 2006-02-14
    • US10170466
    • 2002-06-14
    • Kazuo SaitoAtsushi Hagiwara
    • Kazuo SaitoAtsushi Hagiwara
    • H01M8/02B29C71/00
    • H01M8/0226H01M8/0213H01M8/0221H01M2300/0082Y02P70/56Y10T29/49108
    • A fuel cell separator which is low in cost and high in hydrophilicity and electrical conductivity and a process for producing the fuel cell separator. The fuel cell separator is characterized in that by using a starting material for a fuel cell separator subjected to a hydrophilization treatment in a hydrophilizing gas, the surface contact angle of the fuel cell separator as measured by a sessile drop method using water is in a range of 3 to 70°; and the process of the present invention for producing a fuel cell separator is characterized in that a starting material for the fuel cell separator after molding or machining is subjected to a hydrophilization treatment in a hydrophilizing gas and thereby the surface contact angle of the fuel cell separator as measured by a sessile drop method using water is controlled at 3 to 70°.
    • 具有成本低,亲水性和导电性高的燃料电池用隔板以及燃料电池隔板的制造方法。 燃料电池用隔板的特征在于,通过使用在亲水化气体中进行亲水化处理的燃料电池隔板的原料,通过使用水的静滴法测定的燃料电池隔板的表面接触角在一定范围内 3〜70°; 本发明的燃料电池用隔板的制造方法的特征在于,在成型或机械加工后的燃料电池用隔板的原料在亲水化气体中进行亲水化处理,燃料电池隔板的表面接触角 通过使用水的静滴法测量,控制在3至70°。
    • 100. 发明申请
    • Moisture stabilization for a fuel cell power plant sysem
    • 燃料电池发电厂的水分稳定系统
    • US20050112429A1
    • 2005-05-26
    • US10723200
    • 2003-11-26
    • William CollinsKazuo SaitoAlbert Grasso
    • William CollinsKazuo SaitoAlbert Grasso
    • B01J8/00B01J10/00H01M20060101H01M2/00H01M2/14H01M8/00H01M8/04H01M8/06H01M8/18
    • H01M8/0612H01M8/04007H01M8/04141
    • An arrangement and process are provided for regulating the humidification or dew point of inlet air supplied (124, 224, 324, 424) to combustion-supported reaction means (20, 120) of a fuel processing system in a fuel cell power plant (110, 210, 310, 410). In addition to flowing exhaust gas(es) (28, 128) in heat and energy exchange relation with inlet air through a primary energy recovery device (ERD) (30) of the gas/gas type, a supplemental ERD (50) of the gas/liquid (water) type uses water temperature to passively condense moisture from a gas stream, either of inlet air or of exhaust gas, to regulate the dew point of the air supplied to the combustion-supported reaction means (20, 120). The supplemental ERD (50) may have a gas channel (134) and a water channel (132) separated by an enthalpy exchange barrier (136), and may be relatively upstream or downstream of the primary ERD (30) relative to the flow of inlet air through the latter to regulate dew point indirectly or directly, respectively.
    • 提供了一种布置和方法,用于将燃料电池发电厂(110)中的燃料处理系统的燃烧支持的反应装置(20,120)的供给入口空气(124,224,324,424)的加湿或露点调节 ,210,310,410)。 除了通过气体/气体类型的一次能量回收装置(ERD)(30)将废气(28,128)与入口空气的热和能量交换关系流动,除了气体/气体类型的补充ERD(50) 气/液(水)型使用水温从入口空气或废气中的任一种的气流中被动地冷凝水分,以调节供应到燃烧支持的反应装置(20,120)的空气的露点。 辅助ERD(50)可以具有通过焓交换屏障(136)分离的气体通道(134)和水通道(132),并且可以相对于主要ERD(30)的流动相对上游或主要ERD(30)的下游 进口空气通过后者分别间接或直接调节露点。