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    • 11. 发明申请
    • EAR THERMOMETER
    • 耳塞温度计
    • US20110164654A1
    • 2011-07-07
    • US12995897
    • 2009-05-20
    • Hideki Tanaka
    • Hideki Tanaka
    • G01J5/02
    • G01J5/02A61B5/01G01J5/025G01J5/026G01J5/028G01J5/04G01J5/049G09G3/18G09G3/3406G09G2300/0426G09G2320/064G09G2330/022G09G2330/025
    • The present invention provides an ear thermometer that irradiates liquid crystal with backlight without increasing a battery capacity, to make a body temperature displayed with the liquid crystal easily visible even in a dark place. An MCU 1 displays a body temperature measured by a body temperature measuring part (3) on a liquid crystal display part (5), controls, through input/output ports (P1, P2), a backlight emitting part (7) in such a way that the light quantity of the backlight irradiating the liquid crystal display part (5) from the backlight emitting part (7) is maximized for a first predetermined time, controls the backlight emitting part (7) in such a way that the quantity of the backlight keeps, for a second predetermined time that follows the first predetermined time, a predetermined level that is lower than the maximum, and controls the backlight emitting part (7) in such a way that the quantity of the backlight is zeroed after the second predetermined time elapses.
    • 本发明提供了一种在不增加电池容量的情况下用背光照射液晶的耳温度计,即使在黑暗的地方也能使液晶显示出容易可见的体温显示。 MCU 1将通过体温测量部件(3)测量的体温显示在液晶显示部件(5)上,通过输入/输出端口(P1,P2)控制这样的背光源发射部件(7) 从背光源发射部分(7)照射液晶显示部分(5)的背光的光量在第一预定时间内被最大化的方式,以这样的方式控制背光源发射部分(7) 在第一预定时间之后的第二预定时间保持低于最大值的预定电平,并且控制背光源发射部分(7),使得背光源的量在第二预定时间之后被归零 时间过去了
    • 12. 发明授权
    • Method of producing electrode for capacitor
    • 电容器用电极的制造方法
    • US07935380B2
    • 2011-05-03
    • US11016855
    • 2004-12-21
    • Kiyonori HinokiKazuo KataiYousuke MiyakiHideki Tanaka
    • Kiyonori HinokiKazuo KataiYousuke MiyakiHideki Tanaka
    • B05D5/12
    • H01G11/28H01G11/38H01G11/86Y02E60/13Y02T10/7022
    • The present invention provides a method of producing an electrode for an electric double layer capacitor, which yields the electrode with an electrode layer having a higher density by calendering treatment. A method of producing an electrode for a capacitor, which comprises at least a current collector and an electrode layer on the current collector, the method comprising the steps of: applying an electrode layer coating material which comprises at least a carbon material, a binder and a solvent, onto the current collector to form an electrode coating layer; drying the electrode coating layer on the current collector to set the amount of the solvent remaining in the electrode coating layer within a range of 5 to 35% by weight of the layer; and subjecting the electrode coating layer after the drying to calendering treatment to yield an electrode layer.
    • 本发明提供一种双电层电容器用电极的制造方法,其通过压延处理产生具有较高密度的电极层的电极。 一种电容器用电极的制造方法,其至少包括集电体上的集电体和电极层,所述方法包括以下步骤:施加至少包含碳材料,粘合剂和 溶剂,在集电体上形成电极涂层; 干燥电极集电体上的电极涂层,将电极涂层中保留的溶剂量设定在该层的5〜35重量%的范围内; 将干燥后的电极被覆层进行压延处理,得到电极层。
    • 16. 发明授权
    • NMR spectrometer
    • NMR光谱仪
    • US07570057B2
    • 2009-08-04
    • US12014908
    • 2008-01-16
    • Mitsuyoshi TsuchiyaHideo TsukamotoFumio IidaToshiyuki ShiinoHideki Tanaka
    • Mitsuyoshi TsuchiyaHideo TsukamotoFumio IidaToshiyuki ShiinoHideki Tanaka
    • G01V3/00
    • G01R33/3806G01R33/28G01R33/30G01R33/3875
    • An object of the present invention is to solve the bending of an NMR probe and a room temperature shim coil so that they can be positioned easily. In the NMR spectrometer including split-pair magnets and a cross bore, a high rigidity straight pipe to which an NMR probe and a room temperature shim coil are attached so as to make an integral object, is provided. The outer diameter of the straight pipe is smaller than the inner diameter of a horizontal bore into which the room temperature shim coil and the probe are inserted. After the room temperature shim coil and the NMR probe are attached to the straight pipe by bolts, respectively, the integral object is inserted into the horizontal bore (a room temperature space) of the NMR spectrometer. The room temperature shim coil and the probe may be attached to different straight pipes.
    • 本发明的目的是解决NMR探针和室温垫片的弯曲,使得它们能够容易地定位。 在包括分离对磁体和交叉孔的NMR光谱仪中,提供了附接有NMR探针和室温垫片线圈以形成整体物体的高刚性直管。 直管的外径小于插入室温垫片和探头的水平孔的内径。 室温垫片和NMR探针分别通过螺栓连接到直管上,整体被插入到NMR光谱仪的水平孔(室温空间)中。 室温垫片和探头可以连接到不同的直管上。
    • 18. 发明授权
    • Aqueous resin composition, aqueous coating material containing the composition, coating provided by the material, and metal plate coated with the material
    • 水性树脂组合物,含有该组合物的水性涂料,由该材料提供的涂层以及涂有该材料的金属板
    • US07452938B2
    • 2008-11-18
    • US11075709
    • 2005-03-10
    • Osamu MorimotoHideki TanakaKayoko TakinoKatsuya ShimenoYasunari Hotta
    • Osamu MorimotoHideki TanakaKayoko TakinoKatsuya ShimenoYasunari Hotta
    • C08L61/10C08L67/04C08K3/28
    • C08L67/00C08L61/06C09D161/06C09D167/00Y10T428/31681C08L2666/18C08L61/04
    • There is provided an aqueous resin composition excellent in settability, flexibility, retort resistance, hygienicity, sprayability and dispersibility in water, and used to coat an internal surface of a can. The aqueous resin composition contains: polyester resin having a specific structure in a molecular chain thereof and/or at a terminal of the molecular chain, the polyester resin having added thereto an opened ring of a compound having a molecule with a carboxylic anhydride group therein, at least no less than 10% by mole of the compound being a compound having a molecule with no less than two carboxylic anhydride groups, the polyester resin having a resin acid value of 150 to 800 eq/106 g and a number-average molecular weight of 5,000 to 100,000; resol-type phenol resin corresponding to a copolymer of a formaldehyde and a phenol compound containing no less than 50% by weight of a phenol compound having no less than three reactive point with formaldehyde, the resol-type phenol resin having no less than one alkoxy methyl group on average per aromatic nucleus; a basic compound; and water, or water and an organic solvent.
    • 提供了一种水溶性树脂组合物,其具有优异的固化性,柔软性,耐蒸煮性,卫生性,喷雾性和在水中的分散性,并且用于涂覆罐的内表面。 水性树脂组合物含有:在其分子链中和/或分子链末端具有特定结构的聚酯树脂,其中加入具有其中具有羧酸酐基团的分子的化合物的开环, 至少不少于10摩尔%的具有不少于2个羧酸酐基团的分子的化合物,所述聚酯树脂的树脂酸值为150至800当量/ 10 6 g,数均分子量为5,000〜100,000; 对应于甲醛和含有不少于50重量%的与甲醛不少于3个反应点的酚化合物的酚化合物的共聚物的甲阶酚醛树脂型酚醛树脂,甲阶酚醛型酚醛树脂具有不少于一个烷氧基 每个芳香核平均甲基; 一个基本的化合物; 和水,或水和有机溶剂。
    • 19. 发明授权
    • Ear-type clinical thermometer
    • 耳式体温计
    • US07410290B2
    • 2008-08-12
    • US11375554
    • 2006-03-13
    • Hideki Tanaka
    • Hideki Tanaka
    • A61B5/00G01J5/20
    • G01K1/18G01J5/04G01J5/046G01J5/049G01J5/06G01K7/16
    • A probe of an ear-type clinical thermometer 20 comprises a first heat insulation member 210 made of a resin material and a second high heat insulation member 220 made of a resin material that is connected to a distal end of the first heat insulation member 210 by conventional coupling means. The second high heat insulation member 220 is tapered forwardly and is provided on the distal end with a concave surface 221. A protection cover 230 sheathes the first heat insulation member 210 and second high heat insulation member 220. A thermistor fine lead wire 240 is embedded in the first heat insulation member 210 and second high heat insulation member 220 so that a turning end portion 241 of the wire 240 is bridged over the concave surface 221 of the second high heat insulation member 220 to be exposed above the concave surface 221. An ultrafast responsivity thermistor 250 is mounted substantially on a center of the turning end portion 241 of the thermistor fine lead wire 240.
    • 耳式体温计20的探头包括由树脂材料制成的第一绝热构件210和由树脂材料制成的第二高隔热构件220,第二隔热构件220通过第一隔热构件210的远端连接到第一绝热构件210的远端 常规耦合装置。 第二高隔热构件220向前渐缩,并且在远端设置有凹面221。 保护盖230包覆第一隔热构件210和第二高隔热构件220。 第一隔热构件210和第二高隔热构件220嵌入热敏电阻精细引线240,使得线240的转向端部241跨越第二高隔热构件220的凹面221 暴露在凹面221的上方。 超快速响应热敏电阻250基本上安装在热敏电阻细导线240的转动端部241的中心。