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    • 2. 发明授权
    • Analytical element
    • 分析要素
    • US4937047A
    • 1990-06-26
    • US31698
    • 1987-03-27
    • Morio KobayashiSeiji HidakaTakashi IshiharaIsao HagaHiroshi Iwadate
    • Morio KobayashiSeiji HidakaTakashi IshiharaIsao HagaHiroshi Iwadate
    • C12Q1/32C12Q1/40C12Q1/50C12Q1/52G01N33/52
    • C12Q1/40C12Q1/32C12Q1/50C12Q1/52G01N33/525C12Q2326/92G01N2333/904Y10S435/805
    • An analytical element for analyzing a specific component in a liquid sample, comprising a light-transmissive and liquid-impermeable support having thereon successively a first reagent layer and a second reagent layer, and a porous spreading layer provided above said second reagent layer, and containing an electron transport agent, a dye-forming precursor material, an oxidized type coenzyme, a buffering agent and at least one reagent capable of converting said oxidized type coenzyme to a reduced type coenzyme through a specific component in a liquid sample, wherein said oxidized type coenzyme is contained in said porous spreading layer, and a lactate dehydrogenase inhibitor is contained in at least one of said second reagent layer and said porous spreading layer.According to this invention, error originating from LDH and lactic acid present in a biological liquid sample can be eliminated and the accuracy of analysis can be improved.
    • 一种用于分析液体样品中的特定组分的分析元件,包括其上连续具有第一试剂层和第二试剂层的透光和液体不可渗透的载体,以及设置在所述第二试剂层上方的多孔扩散层, 电子传递剂,染料形成前体材料,氧化型辅酶,缓冲剂和能够通过液体样品中的特定成分将所述氧化型辅酶转化为还原型辅酶的至少一种试剂,其中所述氧化型 所述多孔扩散层中含有辅酶,在所述第二试剂层和所述多孔扩散层中的至少一个中含有乳酸脱氢酶抑制剂。 根据本发明,可以消除来自生物液体样品中存在的LDH和乳酸的误差,并且可以提高分析的准确性。
    • 6. 发明授权
    • Thin film multilayered electrode of high frequency electromagnetic field
coupling
    • 高频电磁场耦合薄膜多层电极
    • US6148221A
    • 2000-11-14
    • US604952
    • 1996-02-27
    • Youhei IshikawaSeiji Hidaka
    • Youhei IshikawaSeiji Hidaka
    • H01L39/12H01P1/20H01P1/203H01P3/06H01P3/08H01P3/12H01P3/18H01P7/08H01P1/201
    • H01P7/082H01L39/128H01P1/20H01P1/203H01P3/06H01P3/088H01P3/18
    • A plurality of TEM mode transmission lines (L2-L5) are structured by pairs of thin film conductors (21 and 22, 22 and 23, 23 and 24, and 24 and 25) which sandwich thin film dielectrics (31 to 34) by alternately stacking the thin film conductor (21 to 25) and the thin film dielectric (31 to 34). The phase velocities of TEM mode waves which are propagated at least by two of the transmission lines (L2 to L5) are substantially equal to each other. The thickness of each of the thin film conductors (21 to 25) is smaller than the skin depth of the frequency used so that the electromagnetic fields of at least two TEM mode transmission lines among the TEM mode transmission lines (L2 to L5) are coupled to each other. In this way, the skin depth can be increased effectively. The conductor loss and the surface resistance can be reduced significantly as compared to those of the conventional electrode. By use of this electrode, a transmission line, a resonator, a filter, and a high frequency device are structured.
    • PCT No.PCT / JP94 / 00357 Sec。 371日期1996年2月27日 102(e)日期1996年2月27日PCT 1994年3月7日PCT公布。 公开号WO95 / 06336 日期:1995年3月2日多个TEM模式传输线(L2-L5)由夹持薄膜电介质(31)的薄膜导体(21,22,22,23,23,24,24和25)构成, 至34),通过交替堆叠薄膜导体(21〜25)和薄膜电介质(31〜34)。 至少由传输线(L2至L5)传播的TEM模式波的相速度基本相等。 每个薄膜导​​体(21至25)的厚度小于使用的频率的趋肤深度,使得TEM模式传输线(L2至L5)中的至少两个TEM模式传输线的电磁场耦合 对彼此。 以这种方式,可以有效地提高皮肤深度。 与常规电极相比,导体损耗和表面电阻可以显着降低。 通过使用该电极,构成传输线,谐振器,滤波器和高频器件。
    • 7. 发明授权
    • Dielectric resonator device comprising a dielectric resonator and thin
film electrode layers formed thereon
    • 介质谐振器装置,包括介质谐振器和形成在其上的薄膜电极层
    • US6016091A
    • 2000-01-18
    • US987273
    • 1997-12-09
    • Seiji HidakaNorifumi MatsuiKazuhiko KubotaTomoyuki Ise
    • Seiji HidakaNorifumi MatsuiKazuhiko KubotaTomoyuki Ise
    • H01P7/06H01P1/20H01P1/208H01P7/10
    • H01P1/2084H01P7/10
    • A dielectric resonator device has a dielectric member. Electrodes are respectively formed on the upper and lower surfaces of the dielectric member. The dielectric resonator device resonates at a mode having electric field components in a direction perpendicular to the upper and lower surface of the dielectric member. The electrodes formed on the dielectric member are each formed of a thin film multi layered electrode produced by alternately laminating thin film electrode layers and thin film dielectric layers. Each thin film dielectric layer which is sandwiched between the thin film multi layered electrode layers serves as a dielectric resonator. Accordingly, the thin film multi layered electrode acts as a laminated structure of a plurality of dielectric resonators. Thus, a current distributes over the plurality of thin film electrode layers, thereby alleviating the current concentration on the surface of the dielectric member. As a consequence, conduction losses of the overall resonator unit are reduced.
    • 介质谐振器装置具有电介质构件。 电极分别形成在电介质构件的上表面和下表面上。 介质谐振器装置以与电介质构件的上表面和下表面垂直的方向具有电场分量的模式谐振。 形成在电介质部件上的电极均由薄膜电极层和薄膜电介质层交替层叠而成的薄膜多层电极形成。 夹在薄膜多层电极层之间的每个薄膜电介质层用作介质谐振器。 因此,薄膜多层电极用作多个介质谐振器的叠层结构。 因此,电流分布在多个薄膜电极层上,从而减轻电介质构件的表面上的电流集中。 因此,整个谐振器单元的传导损耗减小。
    • 8. 发明授权
    • Multi-layer thin-film electrode, for a high-frequency transmission line,
resonator, and filter
    • 多层薄膜电极,用于高频传输线,谐振器和滤波器
    • US5920243A
    • 1999-07-06
    • US868198
    • 1997-06-03
    • Yohei IshikawaSeiji HidakaNorifumi MatsuiTomoyuki Ise
    • Yohei IshikawaSeiji HidakaNorifumi MatsuiTomoyuki Ise
    • H01P1/203H01P3/06H01P3/08H01P3/18H01P7/08H01P7/00
    • H01P1/20363H01P3/06H01P3/088H01P3/18H01P7/082H01P7/084
    • A multi-layer thin-film electrode comprises thin conductor films and thin dielectric films each being alternately laminated on a dielectric substrate, in which an electro-magnetic field generated in the dielectric substrate and that generated in each of the thin dielectric films have substantially the same phase at a predetermined frequency. According to the multi-layer thin-film electrode of the present invention, adhesive conductor films that more readily form metallic oxide as compared with the thin conductor films are provided between the dielectric substrate and the thin conductor films adjacent thereto and between each of the thin conductor films and the thin dielectric film adjacent thereto, respectively, and an increase in the surface reactance of the thin conductor films caused by the adhesive conductor film formation is canceled by correcting the thickness of each of the thin dielectric films based on the dielectric constant of the thin dielectric film and the dielectric substrate and the thickness of at least one of the adhesive conductor films.
    • 多层薄膜电极包括薄导电膜和薄电介质膜,它们各自交替地层叠在电介质基板上,其中在电介质基板中产生的电磁场和在每个薄介电膜中产生的电磁场具有基本上 相同的相位。 根据本发明的多层薄膜电极,在电介质基板和与其相邻的薄导体膜之间以及在每个薄的薄膜电极之间设置与薄导电膜相比更容易形成金属氧化物的粘合导体膜 导体膜和与其相邻的薄电介质膜,并且由粘合导体膜形成引起的薄导体膜的表面电抗的增加通过基于介电常数校正每个薄介电膜的厚度来消除 薄介电膜和电介质基板以及至少一个粘合导体膜的厚度。
    • 9. 发明授权
    • Damping force control apparatus
    • 阻尼力控制装置
    • US08489279B2
    • 2013-07-16
    • US12605873
    • 2009-10-26
    • Seiji HidakaAkihito Yamamoto
    • Seiji HidakaAkihito Yamamoto
    • B60G17/016
    • B60G17/018B60G17/0165B60G17/08B60G2400/102B60G2400/252B60G2400/91B60G2500/10B60G2500/104B60G2600/11B60G2600/184B60G2600/1875B60G2800/162B60G2800/916
    • A damping force control apparatus includes a damping force control device controlling a damping force of a shock absorber provided between a sprung mass and an unsprung mass of each wheel of a vehicle, a detection device detecting at least an acceleration of the sprung mass in an up-down direction and a relative displacement between the sprung mass and the unsprung mass, a damping coefficient calculation device calculating a damping coefficient to be applied to the damping force control by the damping force control device based on detected results of the detection device, a sensed acceleration increment calculation device calculating a sensed acceleration increment corresponding to an increment of sense according to the Weber Fechner law on the basis of the detected results of the detection device, and a modification device modifying the damping coefficient in accordance with a sensed acceleration increment calculated by the sensed acceleration increment calculation device.
    • 阻尼力控制装置包括:阻尼力控制装置,其控制设置在车辆的每个车轮的簧上质量块和非簧下质量之间的减震器的阻尼力;检测装置,至少检测弹簧质量的加速度 根据检测装置的检测结果,衰减系数计算装置计算由阻尼力控制装置对阻尼力控制施加的阻尼系数的阻尼系数计算装置, 加速度增量计算装置,根据检测装置的检测结果,根据韦伯费希勒定律计算对应于感觉增量的感测加速度增量;以及修正装置,根据由 感测加速度增量计算装置。