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    • 1. 发明授权
    • Radio communication system
    • 无线通信系统
    • US07389938B2
    • 2008-06-24
    • US11449777
    • 2006-06-09
    • Shigeru HatakeyamaShigeru YamazakiHiroki MurayamaKouichi Hirano
    • Shigeru HatakeyamaShigeru YamazakiHiroki MurayamaKouichi Hirano
    • G06K19/05
    • G06K7/0008G06K7/10178
    • It is to provide a radio communication system capable of performing highly reliable reading/writing communication even though the RFID tags face in the random directions. The radio communication system comprises an RFID tag used for identification, a reader/writer for performing transmission and reception of information between the RFID tag by radio waves, and a plurality of reflecting plates in a space where a plurality of RFID tags are accumulated. The reflecting plates direct traveling direction of the radio wave irradiated from the reader/writer towards the RFID tags. A part of the radio waves irradiated from an antenna of the reader/writer is directed to travel three-dimensionally towards the space by the effect of the reflecting plates. Moreover, the radio waves traveling in the same direction among the reflected radio waves by the plurality of reflecting plates together allow attenuation caused due to distance to be reduced extremely.
    • 即使RFID标签面向随机方向,也能够提供能够进行高可靠性的读/写通信的无线通信系统。 无线电通信系统包括用于识别的RFID标签,用于通过无线电波在RFID标签之间执行信息发送和接收的读取器/写入器以及在多个RFID标签被积聚的空间中的多个反射板。 反射板将从读取器/写入器辐射的无线电波的行进方向直接朝向RFID标签。 从读取器/写入器的天线照射的无线电波的一部分被反射板的作用三维地朝向该空间行进。 此外,通过多个反射板在反射的无线电波中以相同的方向行进的无线电波一起允许由于距离引起的衰减被极大地降低。
    • 3. 发明授权
    • Glucose-containing preparation
    • 含葡萄糖的制剂
    • US06399110B1
    • 2002-06-04
    • US09485300
    • 2000-04-27
    • Takumi KikuchiKouichi Hirano
    • Takumi KikuchiKouichi Hirano
    • A01N5900
    • A61M1/287A61K45/06A61M1/282
    • A neutral glucose-containing preparation with excellent stability and a near physiological pH, as a transfusion preparation with minimal glucose degradation by-products and a greatly reduced formic acid content; specifically, a glucose-containing preparation comprising separately housed first and second solutions, the first and second solutions satisfying the following conditions: (a) the first solution contains 2-50% glucose, and its pH is adjusted to 3-5 with an organic acid buffer solution; (b) the second solution contains an alkalizing agent, and has a pH value of 8-13 as a pH adjustor for the first solution; and (c) the glucose concentration is 1-15% in the preparation solution obtained by mixing the first solution and second solution, and the pH of the solution is in a range of 6-8. It is used particularly as a peritoneal perfusate, such as a perfusate for Continuous Ambulatory Peritoneal Dialysis (CAPD).
    • 具有优异的稳定性和接近生理pH的中性含葡萄糖制剂,作为具有最低葡萄糖降解副产物和大大降低的甲酸含量的输液制剂; 具体地说,包含单独容纳的第一和第二溶液的含葡萄糖的制剂,第一和第二溶液满足以下条件:(a)第一溶液含有2-50%的葡萄糖,其pH值用有机物调节至3-5 酸缓冲溶液;(b)第二溶液含有碱化剂,pH值为8-13作为第一溶液的pH调节剂; 和(c)在通过混合第一溶液和第二溶液获得的制剂溶液中葡萄糖浓度为1-15%,溶液的pH在6-8的范围内。特别是用作腹膜灌洗液, 例如连续动态腹膜透析(CAPD)的灌注液。
    • 5. 发明授权
    • Push button switch
    • 按钮开关
    • US5199555A
    • 1993-04-06
    • US839638
    • 1992-02-21
    • Kouichi Hirano
    • Kouichi Hirano
    • H01H13/14
    • H01H13/14
    • A push button switch has a stem having a thin flange without requiring fabrication of synthetic material, thereby realizing a push button switch having good productivity and high reliability. To this end, a push button switch has a housing (10) having an opening, a fixed contact (17) exposed on the inner bottom surface, a movable contact (13) disposed to face said fixed contact (17), a stem (15) having a flange portion around its main body and being mounted on the housing (10) movably in an up-and-down direction, the movable contact (13) being contacted with the fixed contact (17) when said stem (15) is lowered, and the stem (15) being formed by a first metallic material (21) and a second metallic material (22), the first metallic material (21) having a through hole (21a) surrounded by a tapered surface (21b) and chiefly constituting the flange portion of the second metallic material (22) being press-fitted into the through hole (21a) on the first metallic material (21) so as to be press-fixed on the tapered surface (21b) of the first metallic material (21) through press processing.
    • 按钮开关具有具有薄凸缘的杆,而不需要制造合成材料,从而实现具有良好生产率和高可靠性的按钮开关。 为此,按钮开关具有具有开口的壳体(10),暴露在内底表面上的固定触点(17),与所述固定触点(17)相对设置的可动触头(13),杆( 15)具有围绕其主体的凸缘部分并且在上下方向上可移动地安装在壳体(10)上,当所述杆(15)与活塞(15)接触时,可动触头(13)与固定触头(17)接触, 所述杆(15)由第一金属材料(21)和第二金属材料(22)形成,所述第一金属材料(21)具有被锥形表面(21b)包围的通孔(21a) 并且主要构成第二金属材料(22)的凸缘部分被压配合在第一金属材料(21)上的通孔(21a)中,以便被压固在第一金属材料的锥形表面(21b)上 金属材料(21)。
    • 6. 发明申请
    • GAS SENSOR AND METHOD OF MANUFACTURING SAME
    • 气体传感器及其制造方法
    • US20100269568A1
    • 2010-10-28
    • US12765985
    • 2010-04-23
    • Keiji KANAOKaneo BumaMasato OzawaHirofumi NodaKouichi Hirano
    • Keiji KANAOKaneo BumaMasato OzawaHirofumi NodaKouichi Hirano
    • G01N33/00H01R43/00
    • G01N27/4075Y10T29/49117
    • The gas sensor includes a sensor element having electrode pads formed in its electrode forming surfaces at the proximal end portion thereof, an insert-holding insulator insert-holding the sensor element, a housing insert-holding the insert-holding insulator, and a terminal unit. The proximal end portion of the sensor element is held by the terminal unit which includes a pair of proximal end insulators formed with metal terminals at their inner surfaces, and a spring member pressing the proximal end insulators in a direction that they approach each other. Each of the proximal end insulators includes an insulator contact portion in contact with one of the electrode forming surfaces. The insulator contact portion is located closer to the proximal end of the sensor element than a terminal contact portion at which the metal terminal contacts a corresponding one of the electrode pads.
    • 气体传感器包括:传感器元件,其具有形成在其基端部的电极形成表面中的电极焊盘,保持有传感器元件的插入物保持绝缘体插入件,保持插入物保持绝缘体的端子单元 。 传感器元件的基端部由终端单元保持,该端子单元包括在其内表面上形成有金属端子的一对近端绝缘体,以及按它们彼此接近的方向按压近端绝缘体的弹簧构件。 每个近端绝缘体包括与电极形成表面中的一个接触的绝缘体接触部分。 绝缘体接触部分比金属端子接触相应的一个电极焊盘的端子接触部分更靠近传感器元件的近端。
    • 9. 发明申请
    • Radio communication system
    • 无线通信系统
    • US20060278706A1
    • 2006-12-14
    • US11449777
    • 2006-06-09
    • Shigeru HatakeyamaShigeru YamayakiHiroki MurayamaKouichi Hirano
    • Shigeru HatakeyamaShigeru YamayakiHiroki MurayamaKouichi Hirano
    • G06K7/08G06K7/00
    • G06K7/0008G06K7/10178
    • It is to provide a radio communication system capable of performing highly reliable reading/writing communication even though the RFID tags face in the random directions. The radio communication system comprises an RFID tag used for identification, a reader/writer for performing transmission and reception of information between the RFID tag by radio waves, and a plurality of reflecting plates in a space where a plurality of RFID tags are accumulated. The reflecting plates direct traveling direction of the radio wave irradiated from the reader/writer towards the RFID tags. A part of the radio waves irradiated from an antenna of the reader/writer is directed to travel three-dimensionally towards the space by the effect of the reflecting plates. Moreover, the radio waves traveling in the same direction among the reflected radio waves by the plurality of reflecting plates together allow attenuation caused due to distance to be reduced extremely.
    • 即使RFID标签面向随机方向,也能够提供能够进行高可靠性的读/写通信的无线通信系统。 无线电通信系统包括用于识别的RFID标签,用于通过无线电波在RFID标签之间执行信息发送和接收的读取器/写入器以及在多个RFID标签被积聚的空间中的多个反射板。 反射板将从读取器/写入器辐射的无线电波的行进方向直接朝向RFID标签。 从读取器/写入器的天线照射的无线电波的一部分被反射板的作用三维地朝向该空间行进。 此外,通过多个反射板在反射的无线电波中以相同的方向行进的无线电波一起允许由于距离引起的衰减被极大地降低。
    • 10. 发明授权
    • Gas sensor and method of manufacturing same
    • 气体传感器及其制造方法
    • US08449742B2
    • 2013-05-28
    • US12765985
    • 2010-04-23
    • Keiji KanaoKaneo BumaMasato OzawaHirofumi NodaKouichi Hirano
    • Keiji KanaoKaneo BumaMasato OzawaHirofumi NodaKouichi Hirano
    • G01N27/407
    • G01N27/4075Y10T29/49117
    • The gas sensor includes a sensor element having electrode pads formed in its electrode forming surfaces at the proximal end portion thereof, an insert-holding insulator insert-holding the sensor element, a housing insert-holding the insert-holding insulator, and a terminal unit. The proximal end portion of the sensor element is held by the terminal unit which includes a pair of proximal end insulators formed with metal terminals at their inner surfaces, and a spring member pressing the proximal end insulators in a direction that they approach each other. Each of the proximal end insulators includes an insulator contact portion in contact with one of the electrode forming surfaces. The insulator contact portion is located closer to the proximal end of the sensor element than a terminal contact portion at which the metal terminal contacts a corresponding one of the electrode pads.
    • 气体传感器包括:传感器元件,其具有形成在其基端部的电极形成表面中的电极焊盘,保持有传感器元件的插入物保持绝缘体插入件,保持插入物保持绝缘体的端子单元 。 传感器元件的基端部由终端单元保持,该端子单元包括在其内表面上形成有金属端子的一对近端绝缘体,以及按它们彼此接近的方向按压近端绝缘体的弹簧构件。 每个近端绝缘体包括与电极形成表面中的一个接触的绝缘体接触部分。 绝缘体接触部分比金属端子接触相应的一个电极焊盘的端子接触部分更靠近传感器元件的近端。