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    • 34. 发明授权
    • Work conveying system
    • 工作输送系统
    • US06702099B2
    • 2004-03-09
    • US10225438
    • 2002-08-22
    • Tetsunori OtaguroKazuyuki MatsumuraTakafumi Iseri
    • Tetsunori OtaguroKazuyuki MatsumuraTakafumi Iseri
    • B65G4734
    • H01L21/67706H01L21/67727H01L21/6773H01L21/67733H01L21/67736
    • A work conveying system eliminates gravitational deflection of an extended articulated arm of a vertical mover. The conveying system includes a horizontal mover which carries the vertical mover and a work holder for delivering a workpiece to various apparatuses without dislocation. In conveying a workpiece horizontally, the vertical mover folds compactly to minimize air disturbance. Plural arm elements of the articulated arm overlap and are connected together in an alternate manner at their respective end portions, and the articulated arm is extended and contracted by pivotal movement of the arm elements, driven by a single drive unit. The horizontal mover is movable in an arbitrary horizontal plane within the upper ceiling space within the clean room. Shafts in the articulated arm and a rotary drive unit in the work holder have hollow interiors which are intercommunicated and at a negative pressure.
    • 工作输送系统消除了垂直移动器的延伸关节臂的重力偏转。 输送系统包括一个水平移动器,其承载垂直移动器和一个工件保持器,用于将工件传送到各种设备而不脱位。 在水平传送工件时,垂直移动器紧凑地折叠以最小化空气扰动。 铰接臂的多个臂元件在其各自的端部处以交替的方式重叠并且连接在一起,并且铰接臂通过由单个驱动单元驱动的臂元件的枢转运动而伸展和收缩。 水平移动器可在洁净室内的上部天花板空间内的任意水平面上移动。 铰接臂中的轴和工作架中的旋转驱动单元具有相互通信并处于负压的中空内部。
    • 35. 发明授权
    • Silica particles surface-treated with silane, process for producing the same and uses thereof
    • 用硅烷表面处理的二氧化硅颗粒,其制造方法及其用途
    • US06521290B1
    • 2003-02-18
    • US09312054
    • 1999-05-17
    • Muneo KudoShoji IchinoheAtsushi AsamiMitsuo AsaiKazuyuki MatsumuraMasaki Tanaka
    • Muneo KudoShoji IchinoheAtsushi AsamiMitsuo AsaiKazuyuki MatsumuraMasaki Tanaka
    • B05D700
    • C08K9/06
    • Fine silica particles surface-treated with a silane and having primary particles having a particle diameter of from 0.01 to 5 &mgr;m, which fine silica particles fulfill the following conditions (i) and (ii), a process for their production and an organic resin composition containing such particles as a component are provided. (i) When an organic compound which is liquid at room temperature and has a dielectric constant of from 1 to 40 F/m and fine silica particles are mixed in a weight ratio of 5:1 and shaked, the fine silica particles disperse uniformly in the organic compound, and (ii) the quantity of primary particles remaining as primary particles when methanol is evaporated under heating by means of an evaporator from a dispersion prepared by dispersing the fine silica particles in methanol and thereafter the particles are held at a temperature of 100° C. for 2 hours, is in a percentage of at least 20% based on the quantity of primary particles originally present. The present fine silica particles are highly dispersible and low aggregative, and the organic resin composition containing them is useful for obtaining films having a good transparency and superior blocking resistance, slip properties and scratch resistance.
    • 二氧化硅微粒用硅烷表面处理,具有粒径为0.01〜5μm的一次粒子,二氧化硅微粒满足下述条件(i)和(ii),其制造方法和有机树脂组合物 提供含有作为组分的颗粒。 (i)当室温下介电常数为1〜40F / m的有机化合物和二氧化硅微粒以5:1的重量比混合并摇动时,二氧化硅微粒分散在 有机化合物,和(ii)当通过蒸发器从通过将二氧化硅微粒分散在甲醇中制备的分散体在蒸发器中加热蒸发甲醇时剩余的一次颗粒的量,然后将颗粒保持在 100℃,2小时,以原始存在的一次粒子的量为至少20%的百分比。 本发明的二氧化硅微粒高分散性和低聚集性,含有它们的有机树脂组合物可用于获得具有良好透明性和优异的抗粘连性,滑爽性和耐划伤性的膜。
    • 39. 发明授权
    • Solution temperature control device in cell observation chamber
    • 细胞观察室溶液温度控制装置
    • US08017383B2
    • 2011-09-13
    • US10572747
    • 2004-09-13
    • Kouichi NoguchiKazuyuki MatsumuraTakesi MitsunagaShiro Kanegasaki
    • Kouichi NoguchiKazuyuki MatsumuraTakesi MitsunagaShiro Kanegasaki
    • C12M1/34C12M3/00
    • G02B21/34G02B21/30Y10S435/809
    • A solution temperature control device in a biological cell observing chamber (30) used for the detection of chemotaxis and chemotactic cell separator, comprising a first temperature controller (62) and a second temperature controller (63). The first temperature controller (62) measures the temperature of a solution filled in a pair of wells and a flow passage in the chamber and controls the temperature to a specified temperature, and the second temperature controller (63) measures the temperature of a heating part (64) which heats the chamber (30) from the outside to indirectly heat the solution filled in the pair of wells and the flow passage and controls the temperature to a specified preheat temperature. Since the state and quantity of cells moving from one well to the other through the flow passage while holding the temperature of the solution at a specified temperature can be accurately observed and measured, accuracy for controlling the temperature of the solution can be remarkably increased.
    • 用于检测趋化性和趋化细胞分离器的生物细胞观察室(30)中的溶液温度控制装置,包括第一温度控制器(62)和第二温度控制器(63)。 第一温度控制器(62)测量填充在一对井中的溶液的温度和腔室中的流动通道,并将温度控制在指定温度,第二温度控制器(63)测量加热部件 (64),其从外部加热所述室(30)以间接加热填充在所述一对井和所述流动通道中的溶液,并将所述温度控制到指定的预热温度。 由于可以精确地观察和测量细胞在将溶液的温度保持在规定温度的同时通过流路从一个孔移动到另一个孔的状态和数量,因此可以显着提高用于控制溶液温度的精度。