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    • 1. 发明授权
    • Clock recovery circuit with memory storage level comparison with high,
medium and low thresholds
    • 具有高,中,低阈值的存储器存储级别的时钟恢复电路
    • US5274681A
    • 1993-12-28
    • US859038
    • 1992-03-27
    • Hiroki YamadaToru Shibuya
    • Hiroki YamadaToru Shibuya
    • H04N1/21H04J3/06H04N1/00H04N1/41H04N7/56H04L7/00
    • H04J3/062H04J3/0632H04N19/85H04N7/56
    • A coded image signal is received and stored into a first-in-first-out memory on a bit-parallel word basis and the storage level of the memory is compared with high, medium and low threshold values. A first positive trimming value is generated when the storage level is higher than the high threshold, a second positive trimming value when it lies between the high and medium thresholds, a first negative trimming value when it is lower than the low threshold, and a second negative trimming value when it lies between the low and medium thresholds. Differential sampling clock rate is received and combined with each trimming value in an adder whose output is subtractively combined with a frequency variation of the line clock rate to produce a corrected differential sampling and line clock rate. The latter is integrated to produce a frequency control signal that drives a voltage-controlled oscillator whose output is used to drive the memory for reading the coded image signal on a bit-parallel word basis.
    • 编码图像信号以比特并行字为基础接收并存储到先进先出存储器中,并且将存储器的存储级别与高,中和低阈值进行比较。 当存储电平高于高阈值时,产生第一正修整值,当第二正修整值位于高和中阈值之间时产生第二正修整值,当低于阈值时为第一正修整值,当第一正修整值低于低阈值时,产生第二正修整值,第二正修整值 当它位于低和中等阈值之间时,负修整值。 在加法器中接收差分采样时钟速率并将其与每个调整值组合,其输出与线路时钟速率的频率变化相减,以产生校正的差分采样和线路时钟速率。 后者被集成以产生频率控制信号,其驱动压控振荡器,其输出用于驱动存储器,以比特并行字为基础读取编码图像信号。
    • 3. 发明授权
    • Resin member for valve
    • 阀门用树脂部件
    • US08366073B2
    • 2013-02-05
    • US10575111
    • 2004-10-08
    • Hiroki YamadaYusuke Koizumi
    • Hiroki YamadaYusuke Koizumi
    • F16K25/00
    • C08G18/797C08F290/06C08G18/671C08G18/683C08J5/00C08K3/36C08L75/16F16K27/0218Y10T428/31511
    • To provide a light-weight resin member, for a valve, which has high strength and can be used in a high-temperature atmosphere, and is also excellent in chemical resistance and corrosion resistance.A resin member for a valve, which is produced by molding a molding material having a tensile strength of 80 to 400 MPa at normal temperature, and a resin member for a valve, which is produced by molding a molding material having a tensile strength of 75 to 350 MPa at 120° C. are disclosed. There is also disclosed a resin member for a valve, which is produced by molding a molding material comprising a resin composition containing an epoxy acrylate resin (A) having a hydroxyl value of 60 to 100, a polyisocyanate compound (B) having 0.1 to 1.5 isocyanate groups per one hydroxyl group of the epoxy acrylate resin (A), a curing agent (C) and an internal mold release agent (D), and 20 to 70% by weight of a fiber reinforcing material (E).
    • 为了提供一种用于具有高强度且可在高温气氛中使用的阀的轻质树脂构件,并且也具有优异的耐化学性和耐腐蚀性。 一种阀的树脂构件,其通过在常温下成型具有80〜400MPa的拉伸强度的成型材料和通过模制拉伸强度为75的成型材料制成的阀的树脂构件而制造的阀 在120℃下为350MPa。 还公开了一种用于阀的树脂构件,其通过模制包含含有羟值为60至100的环氧丙烯酸酯树脂(A)的树脂组合物的成型材料,具有0.1至1.5的多异氰酸酯化合物(B) 环氧丙烯酸酯树脂(A),固化剂(C)和内部脱模剂(D)的每一个羟基的异氰酸酯基和20〜70重量%的纤维增强材料(E)。
    • 7. 发明申请
    • Detailed data associating program, detailed data associating apparatus, and detailed data associating method
    • 详细数据关联程序,详细数据关联装置和详细数据关联方法
    • US20090319545A1
    • 2009-12-24
    • US12461866
    • 2009-08-26
    • Yoshihiro TakagiMasayuki MiuraHiroki Yamada
    • Yoshihiro TakagiMasayuki MiuraHiroki Yamada
    • G06F17/30
    • G06Q10/10G06Q10/06
    • A method for associating detailed data is to aggregate the detailed data by using an aggregation key when detailed data generated in relation to a business is accumulated in a predetermined journal in a format that can identify an aggregation key and segments. The method includes storing the association between the segments as a business pattern; outputting the business pattern to an output unit so as to explicitly show the association between the segments, and associating an input business event name with each segment; outputting the business event name to the output unit and associating an input journal name with the business event name; and outputting the journal name to the output unit and associating an input rule with the journal name, the rule specifying which record in a journal identified by the journal name the detailed data identified by the business event name is.
    • 用于关联详细数据的方法是当以可识别聚合密钥和段的格式在预定日志中累积关于业务生成的详细数据时,通过使用聚合密钥来聚合详细数据。 该方法包括将段之间的关联存储为业务模式; 将所述业务模式输出到输出单元,以便明确地显示所述段之间的关联,并且将输入的业务事件名称与每个段相关联; 将所述业务事件名称输出到所述输出单元并将输入的日志名称与所述业务事件名称相关联; 并将日志名称输出到输出单元,并将输入规则与日志名称相关联,该规则指定由日志名称标识的日志中由哪个业务事件名称标识的详细数据。
    • 8. 发明申请
    • Resin member for valve
    • 阀门用树脂部件
    • US20070042190A1
    • 2007-02-22
    • US10575111
    • 2004-10-08
    • Hiroki YamadaYusuke Koizumi
    • Hiroki YamadaYusuke Koizumi
    • B32B27/38
    • C08G18/797C08F290/06C08G18/671C08G18/683C08J5/00C08K3/36C08L75/16F16K27/0218Y10T428/31511
    • To provide a light-weight resin member, for a valve, which has high strength and can be used in a high-temperature atmosphere, and is also excellent in chemical resistance and corrosion resistance. A resin member for a valve, which is produced by molding a molding material having a tensile strength of 80 to 400 MPa at normal temperature, and a resin member for a valve, which is produced by molding a molding material having a tensile strength of 75 to 350 MPa at 120° C. are disclosed. There is also disclosed a resin member for a valve, which is produced by molding a molding material comprising a resin composition containing an epoxy acrylate resin (A) having a hydroxyl value of 60 to 100, a polyisocyanate compound (B) having 0.1 to 1.5 isocyanate groups per one hydroxyl group of the epoxy acrylate resin (A), a curing agent (C) and an internal mold release agent (D), and 20 to 70% by weight of a fiber reinforcing material (E).
    • 为了提供一种用于具有高强度且可在高温气氛中使用的阀的轻质树脂构件,并且也具有优异的耐化学性和耐腐蚀性。 一种阀的树脂构件,其通过在常温下成型具有80〜400MPa的拉伸强度的成型材料和通过模制拉伸强度为75的成型材料制成的阀的树脂构件而制造的阀 在120℃下为350MPa。 还公开了一种用于阀的树脂构件,其通过模制包含含有羟值为60至100的环氧丙烯酸酯树脂(A)的树脂组合物的成型材料,具有0.1至1.5的多异氰酸酯化合物(B) 环氧丙烯酸酯树脂(A),固化剂(C)和内部脱模剂(D)的每一个羟基的异氰酸酯基和20〜70重量%的纤维增强材料(E)。
    • 9. 发明授权
    • Arenavirus receptor and methods of use
    • US6083911A
    • 2000-07-04
    • US208707
    • 1998-12-10
    • Kevin P. CampbellMichael HenryHiroki YamadaRoger WilliamsonWei CaoMichael Oldstone
    • Kevin P. CampbellMichael HenryHiroki YamadaRoger WilliamsonWei CaoMichael Oldstone
    • A61K38/17A61K35/34A61K38/16
    • A61K38/177
    • Disclosed is a method for inhibiting the binding of an arenavirus to a cellular receptor. The method involves providing, in soluble form, a reagent comprising .alpha.-dystroglycan or a portion thereof, the reagent being characterized by the ability to bind to the arenavirus thereby inhibiting the binding of the arenavirus to the cellular receptor. The reagent is contacted with an arenavirus particle prior to infection of a cell by the arenavirus particle. Also disclosed are methods for treating an arenavirus infection in a patient and preventing an arenavirus infection in an individual at risk. These methods involve providing a therapeutic composition comprising .alpha.-dystroglycan or a portion thereof which is characterized by the ability to bind to arenaviruses, thereby inhibiting the binding of arenaviruses to a cellular receptor; and administering the composition to the patient or individual at risk. Arenaviruses to which the methods of the present invention apply include, without limitation, Lymphocyte Choriomeningitis Virus, Lassa fever virus, Mobala, and Oliveros. In another aspect, the disclosure relates to an embryonic stem cell line, and cells derived therefrom, which is homozygous for a disrupted dystroglycan gene, wherein the disruption prevents the synthesis of functional dystroglycan in the cells. Applications of the dystroglycan null embryonic stem cells include producing dystroglycan or a portion thereof in the cells and also for identifying portions of dystroglycan necessary for arenavirus infection. Also disclosed is a method for identifying antiviral compounds which interfere specifically with the binding of arenavirus and .alpha.-dystroglycan, comprising providing a binding assay system for the determination of binding of arenavirus and .alpha.-dystroglycan. The candidate antiviral compounds are introduced into the binding assay system and antiviral compounds which substantially inhibit binding of arenavirus to .alpha.-dystroglycan are identified.