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    • 61. 发明申请
    • PERCUTANEOUS ABSORPTION TYPE PATCH
    • PERCUTANEOUS吸收型PATCH
    • US20100189751A1
    • 2010-07-29
    • US12666435
    • 2008-03-19
    • Toru SekiguchiKaname NakaharaToru Watanabe
    • Toru SekiguchiKaname NakaharaToru Watanabe
    • A61K9/70
    • A61K9/703A61F2013/00646A61K9/7038A61K9/7084A61L15/44A61L15/58A61L2300/256A61L2300/406A61L2300/41A61L2300/428A61L2300/608A61M35/006Y10T428/1495
    • A percutaneous absorption type patch adapted to be applied to a skin surface of a patient. The percutaneous absorption type patch comprises: a stratum-corneum release member constituted from a sheet-like first supporting substrate and a pressure-sensitive adhesive layer laminated on the first supporting member; a medicinal-components administration member constituted from a sheet-like second supporting substrate, a medicinal-components retention layer laminated on the second supporting substrate, and a protect layer laminated on the medicinal-components retention layer; and a sheet-like handling member interposed between the stratum-corneum release member and the medicinal-components administration member. An edge portion of the handling member is coupled to or integrated with both the first supporting substrate and the protect layer. Operations of peeling the stratum-corneum release member from the skin surface of the patient and peeling the protect layer from the medicinal-components retention layer are carried out at a time by pulling the handling member toward an operating direction.
    • 适合施用于患者皮肤表面的经皮吸收型贴剂。 经皮吸收型贴片包括:由片状第一支撑基板和层叠在第一支撑部件上的压敏粘合剂层构成的角质层释放部件; 由片状第二支撑基板,层叠在第二支撑基板上的药物保持层和层叠在药剂保持层上的保护层构成的药物成分给药部件, 以及插入在角质层释放构件和药物成分给药构件之间的片状处理构件。 处理构件的边缘部分与第一支撑衬底和保护层两者耦合或一体化。 通过沿着操作方向拉动处理构件,一次执行从患者皮肤表面剥离角质层释放构件并从保护层剥离保护层的操作。
    • 63. 发明申请
    • RESONANT CIRCUIT, METHOD OF PRODUCING SAME, AND ELECTRONIC DEVICE
    • 谐振电路,其制造方法和电子设备
    • US20090315646A1
    • 2009-12-24
    • US12486669
    • 2009-06-17
    • Toru Watanabe
    • Toru Watanabe
    • H03H9/02
    • H03H3/0073H03H3/0076H03H9/02409H03H9/02433H03H9/2426H03H9/2457H03H2009/02511
    • A resonant circuit includes a substrate; a MEMS resonator including a fixed electrode and a movable electrode formed above the substrate and having a first terminal and a second terminal, the movable electrode having a movable portion opposing at least a part of the fixed electrode; and a voltage applying unit applying a bias voltage to the MEMS resonator, the voltage applying unit including a voltage divider circuit that includes a compensation resistance formed of a same layer as that of the movable portion to allow a resistance value to be changed by a thickness of the layer and a reference resistance formed of a layer different from that of the movable portion and connected to the compensation resistance to output a junction potential between the compensation resistance and the reference resistance to at least one of the first and the second terminals of the MEMS resonator.
    • 谐振电路包括基板; MEMS谐振器,包括固定电极和可动电极,其形成在所述基板上并具有第一端子和第二端子,所述可动电极具有与所述固定电极的至少一部分相对的可动部分; 以及向所述MEMS谐振器施加偏置电压的施加电压单元,所述电压施加单元包括分压电路,所述分压电路包括由与所述可动部分相同的层形成的补偿电阻,以允许电阻值改变厚度 以及由与可动部分不同的层形成的参考电阻并连接到补偿电阻,以将补偿电阻和参考电阻之间的结电位输出到第一和第二端子中的至少一个 MEMS谐振器。
    • 69. 发明授权
    • Fiber-reinforced composite hollow structure, method for production thereof, and apparatus therefor
    • 纤维增强复合中空结构体及其制造方法及其设备
    • US06607798B1
    • 2003-08-19
    • US09530502
    • 2000-07-20
    • Toru WatanabeShigehiro MatsunoNaoyuki KondoTakayuki HoshinoHidenori Nomura
    • Toru WatanabeShigehiro MatsunoNaoyuki KondoTakayuki HoshinoHidenori Nomura
    • B29D2300
    • B32B27/12B29C70/525B29L2023/00B32B1/00B32B3/20B32B5/28B32B27/302B32B27/36B32B2325/00B32B2355/02B32B2367/00E04G1/153Y10T428/12479Y10T428/13Y10T428/1328Y10T428/1352Y10T428/1376Y10T428/249953
    • Center cores are formed by extrusion-molding ABS resin. Seven pieces of the center cores, which are juxtaposed to each other in the horizontal direction, are supplied by a pultruder, and reinforcing long-fibers impregnated with an unsaturated polyester resin are allowed to pass through dispersion guides and squeezing nozzles, to thus squeezing-mold a fiber-reinforced composite hollow structure having FRP made legs. A final squeezing nozzle is disposed in a cross head die through a cooling jacket, and the hollow structure thus molded is allowed to pass therethrough to be covered with the ABS resin in a state in which the outer periphery of the hollow structure is heated. The hollow structure thus covered is subjected to cooled-sizing through a plurality of horizontal and vertical pairs of rollers, and then cured in a hot curing tank. The surface covered with the ABS resin is subjected to a surface-treatment of imparting irregularities for giving an antislipping function to the surface. A thermoplastic resin-made protective cap is fitted to an end of the center core. The apparatus for manufacturing a composite hollow structure has a plurality of pairs of rotatable and heat-resisting sizing rollers. The plurality of pairs of the sizing rollers are disposed in the pultruding direction while being gradually cooled in the order from those positioned on the upstream side to those positioned on the downstream side for sizing the softened outer layer covering the outer periphery of the intermediate layer.
    • 中心芯通过挤出成型ABS树脂形成。 七个在水平方向上相互并列的中心芯由拉拔机提供,并且使浸渍有不饱和聚酯树脂的增强长纤维通过分散导向器和挤压喷嘴,从而挤压 - 模制具有FRP制成的腿的纤维增强复合中空结构。 最后挤压喷嘴通过冷却套管设置在十字头模具中,并且在加热中空结构的外周的状态下,使由此模制的中空结构被允许穿过其被ABS树脂覆盖。 如此覆盖的中空结构通过多个水平和垂直的辊对进行冷却定型,然后在热固化罐中固化。 用ABS树脂覆盖的表面进行表面处理,赋予表面防滑功能。 热塑性树脂制保护帽安装在中心芯的一端。 用于制造复合中空结构的装置具有多对可旋转和耐热的上浆辊。 多个定型辊成对设置在拉拔方向上,同时从位于上游侧的位置到位于下游侧的位置逐渐冷却,以便对覆盖中间层的外周的软化外层进行定径。