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    • 54. 发明授权
    • Operation circuit and operation control method thereof
    • 操作电路及其操作控制方法
    • US07272585B2
    • 2007-09-18
    • US11434779
    • 2006-05-17
    • Osamu NomuraTakashi MorieTeppei Nakano
    • Osamu NomuraTakashi MorieTeppei Nakano
    • G06N3/00G06N3/02G06J1/00
    • G06N3/049G06N3/063H03K7/08H03K9/08H03M5/08
    • A product-sum operation circuit includes a pulse width/digital conversion circuit (9) which converts a pulse signal having a pulse width representing an operand value into a digital signal, a sorting circuit (4) which outputs, in descending or ascending order of magnitude, a plurality of operand values Xi converted into digital signals by the pulse width/digital conversion circuit (9), and an accumulated sum circuit (1) which multiplies each operand value output from the sorting circuit (4) by a corresponding operand value Wi and calculates the accumulated sum of multiplication results. The pulse width/digital conversion circuit (9) includes a counter (10) which counts a clock and outputs a count value as a digital signal, and n trailing edge latch circuits (11-0-11-(n−1)) each of which latches a common count value output from the counter at the trailing edge of the input pulse signal.
    • 产品总和运算电路包括将具有表示操作数值的脉冲宽度的脉冲信号转换为数字信号的脉冲宽度/数字转换电路(9),分选电路(4),按照下列或者升序排列 由脉冲宽度/数字转换电路(9)转换为数字信号的多个操作数值Xi以及将从分选电路(4)输出的每个操作数值乘以相应的操作数值的累积和电路(1) Wi并计算乘积结果的累加和。 脉冲宽度/数字转换电路(9)包括对时钟进行计数的计数器(10),并输出作为数字信号的计数值,以及n个后沿锁存电路(11〜0-11〜(n-1)) 其在输入脉冲信号的后沿锁存从计数器输出的公共计数值。
    • 57. 发明授权
    • Unburned carbon-containing refractory material and vessel for molten metal
    • 未燃烧的含碳耐火材料和熔融金属容器
    • US06464932B1
    • 2002-10-15
    • US09555359
    • 2000-05-30
    • Osamu NomuraYasuhiro HoshiyamaAtsushi Torigoe
    • Osamu NomuraYasuhiro HoshiyamaAtsushi Torigoe
    • C04B3500
    • C04B35/103B22D41/02C04B35/013C04B35/043
    • An unburned carbon-containing refractory suitable for lining a molten metal container, which can prevent deformation of the outer steel shell, improve the life of the container, suppress reduction in molten steel temperature, and minimize energy losses without sacrificing the life of the wear lining. A molten metal container capable of reducing energy losses and having stable durability is also provided. The unburned carbon-containing refractory contains a refractory aggregate and 30% by weight or less of a carbon raw material containing at least graphite, wherein the carbon content X (% by weight) and the thermal conductivity &lgr;(W/m° C.) of the refractory satisfy the relationship: &lgr;≦0.8X+7, and the refractory contains 20 parts by weight or more of a refractory aggregate having an apparent porosity of 10% or smaller and a greater size than 1 mm per 100 parts by weight of the total of the refractory aggregate and the carbon raw material.
    • 适用于内衬熔融金属容器的未燃烧的含碳耐火材料,其能够防止外部钢壳的变形,从而改善了容器的使用寿命,抑制了钢水温度的降低,并且能够最大限度地减少能量损失,同时不牺牲耐磨衬垫的使用寿命 。 还提供了能够降低能量损失并具有稳定的耐久性的熔融金属容器。 未燃烧的含碳耐火材料含有耐火骨料和至少含有石墨的30重量%以下的碳原料,其中碳含量X(重量%)和热导率羔羊(W / m℃) 的耐火材料满足以下关系:lambd <= 0.8X + 7,并且耐火材料包含20重量份或更多的表观孔隙率为10%或更小和大于1mm的耐热骨料,每100重量份 的耐火骨料和碳原料的总量。
    • 58. 发明授权
    • Method of molding a molding resin on a substrate having openings, switch substrate with a molding resin, method of forming a switch pattern on a switch substrate, and a switch substrate
    • 在具有开口的基板上成型模制树脂的方法,具有模制树脂的开关基板,在开关基板上形成开关图案的方法以及开关基板
    • US06388211B1
    • 2002-05-14
    • US09471376
    • 1999-12-23
    • Osamu NomuraNobuyuki YagiKozo Morita
    • Osamu NomuraNobuyuki YagiKozo Morita
    • H01H158
    • H01H1/40B29C45/14344B29C45/14639H01H1/403H01H11/0056H01H2019/006H05K3/0014H05K3/202H05K3/22Y10T29/49105
    • A substrate (10), a first mold (200) and a second mold (250) are prepared, and a plurality of switch patterns (14), (18) are provided by providing openings (pattern-removal portions) (A) in such a manner that a pattern (11), which has been formed on the surface of the substrate (10), is divided into a plurality of patterns to form A switch substrate. Next, the switch substrate (1) is clamped between the first mold (200) and the second mold (250). At such time, the side of the switch substrate (1) provided with the switch patterns (14), (18) is brought into surface contact with an abutting surface (201) of the first mold (200) and, at the same time, a cavity (253) provided in the second mold (250) opposes the other side of the switch substrate. Next, a molten molding resin is charged into the cavity (253) provided in the second mold (250) to thereby fill the cavity (253) and the openings (A) of the substrate with the molding resin. After the molding resin hardens, the first mold (200) and the second mold (250) are separated and the switch substrate (1), which will have the molding resin case 40 attached thereto, is extracted.
    • 制备基板(10),第一模具(200)和第二模具(250),并且通过提供多个开关图案(图案去除部分)(A) 已经形成在基板(10)的表面上的图案(11)被分成多个图案以形成A开关基板的方式。 接下来,将开关基板(1)夹在第一模具(200)和第二模具(250)之间。 此时,具有开关图案(14),(18)的开关基板(1)的一侧与第一模具(200)的抵接面(201)表面接触,并且同时 设置在第二模具(250)中的空腔(253)与开关基板的另一侧相对。 接下来,将熔融成型树脂装入设置在第二模具(250)中的空腔(253)中,从而用模塑树脂填充基板的空腔(253)和开口(A)。 在模制树脂硬化之后,分离第一模具(200)和第二模具(250),并且将具有附着于其上的模制树脂壳体40的开关基板(1)被提取。
    • 60. 发明授权
    • Blood reservoir
    • BLOOD RESERVOIR
    • US5160332A
    • 1992-11-03
    • US457785
    • 1990-01-02
    • Osamu Nomura
    • Osamu Nomura
    • A61M1/18A61M1/14A61M1/36
    • A61M1/3627
    • A blood reservoir serves to suppress generation of air bubbles in blood in an extracorporeal blood circulation circuit. The blood reservoir includes a blood storage chamber for temporarily storing the blood, the blood storage chamber having blood inlet and outlet ports, and a fluid-permeable blood spouting inhibitor disposed over the blood inlet port. Since the blood flows into the blood storage chamber through the blood spouting inhibitor, the blood is prevented from being spouted into the blood reservoir, so that air bubbles are prevented from being generated in the blood.
    • PCT No.PCT / JP88 / 00680 Sec。 371 1990年1月2日第 102(e)日期1990年1月2日PCT提交1988年7月6日PCT公布。 第WO89 / 00055号公报 日期为1989年12月1日。血库用于抑制体外血液循环中血液中的气泡的产生。 血液储存器包括用于临时存储血液的血液存储室,具有血液入口和出口的血液存储室以及设置在血液入口上的流体可渗透的血液喷射抑制剂。 由于血液通过血液喷射抑制剂流入血液储存室,所以能够防止血液喷射到血液储存器中,防止血液中产生气泡。