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    • 3. 发明授权
    • Electric-component mounting system
    • 电气部件安装系统
    • US07043824B2
    • 2006-05-16
    • US10137434
    • 2002-05-03
    • Shinsuke SuharaToshiya Ito
    • Shinsuke SuharaToshiya Ito
    • B23P19/00
    • H05K13/0452H05K13/041H05K13/0413Y10T29/49128Y10T29/4913Y10T29/53178Y10T29/53183Y10T29/53187Y10T29/53261
    • An electric-component mounting system wherein a determining device is operated for presently required operations of working devices disposed on a common main body, to determine a cycle-time-determinant working device which determines a cycle time of the system such that the cycle time is determined by a required operating time of the cycle-time-determinant working device as calculated when the presently required operation is performed at predetermined maximum acceleration and deceleration values or a predetermined maximum operating speed, and a slowdown device determines actual acceleration and deceleration values or an actual operating speed of each of non-cycle-time-determinant working device, so as to be lower than the predetermined maximum acceleration and deceleration values or operating speed thereof, such that the presently required operation of each non-cycle-time-determinant working device can be completed within the cycle time determined by the cycle-time-determinant working device.
    • 一种电气部件安装系统,其中,确定装置被操作用于当前对设置在公共主体上的工作装置的所需操作,以确定周期时间决定因素工作装置,其确定系统的周期时间,使得周期时间为 由当前要求的操作在预定的最大加速度和减速度值或预定的最大运行速度下执行的循环时间决定因素工作装置的所需工作时间确定,并且减速装置确定实际的加速和减速值或 每个非循环时间决定因素工作装置的实际操作速度低于预定的最大加速和减速值或其操作速度,使得每个非循环时间决定因素工作的当前需要的操作 设备可以在循环时间决定因素工作确定的周期内完成 设备。
    • 6. 发明授权
    • Electric-component mounting system for mounting electric component on a circuit substrate
    • 电气部件安装系统,用于将电气部件安装在电路基板上
    • US06952869B2
    • 2005-10-11
    • US10025802
    • 2001-12-26
    • Shinsuke SuharaToshiya ItoHirokazu Koike
    • Shinsuke SuharaToshiya ItoHirokazu Koike
    • H05K13/00H05K13/04H05K13/08B23P19/00
    • H05K13/0015H05K13/041H05K13/0452H05K13/08Y10T29/49004Y10T29/4913Y10T29/49131Y10T29/53087Y10T29/53174Y10T29/53178Y10T29/53191
    • An electric-component mounting system including a component-holding device for holding an electric component, a board-supporting device for supporting a printed-wiring board on which the electric component is mounted, a first relative-movement device operable to move the component-holding device and the board-supporting device relative to each other in a first direction parallel to a surface of the board supported by the board-supporting device, a second relative-movement device operable to move the component-holding device and the board-supporting device relative to each other in a second direction which intersects the surface of the board; and a control device including a positioning portion operable to select one of a plurality of different control targets which is used for the first relative-movement device to establish a predetermined relative position between the component-holding device and the board-supporting device, and wherein the positioning portion selects one of the different control targets, depending upon a pattern of control of an operating speed of the first relative-movement device.
    • 一种电气部件安装系统,包括用于保持电气部件的部件保持装置,用于支撑其上安装有电气部件的印刷电路板的板支撑装置,可操作以使部件保持装置移动的第一相对运动装置, 保持装置和板支撑装置相对于彼此平行于由板支撑装置支撑的板的表面的第一方向相对移动;第二相对运动装置,其可操作以将部件保持装置和板支撑 装置相对于彼此在与板的表面相交的第二方向上; 以及控制装置,其包括定位部,其可操作以选择用于所述第一相对移动装置的多个不同控制对象中的一个,以在所述部件保持装置和所述板支撑装置之间建立预定的相对位置,并且其中 定位部根据第一相对移动装置的操作速度的控制模式,选择不同的控制对象之一。
    • 8. 发明授权
    • Synthetic thermoplastic resin extruded foams and methods for producing the same
    • 合成热塑性树脂挤出泡沫及其制备方法
    • US06528548B2
    • 2003-03-04
    • US09926153
    • 2001-09-13
    • Takahiro HayashiKenkichi TanakaToshiya ItoTakahiro Tayauchi
    • Takahiro HayashiKenkichi TanakaToshiya ItoTakahiro Tayauchi
    • C08J912
    • C08J9/125C08J2201/03C08J2325/06
    • An object is to provide a synthetic thermoplastic resin extruded foams having excellent thermal insulating properties and a method for producing the same, in which environment friendly water is used as a blowing agent in the most effective way while reducing the amount of blowing agents that affect the environment, and it is feasible to improve the production ratio of small cells in foams made up of large cells and small cells. A synthetic thermoplastic resin extruded foams having a foam density of 15 to 50 kg/m3 and an excellent cell structure which has an average call size of 0.7 mm or smaller or which mainly comprises small cells having a cell size of 0.25 mm or smaller and large cells having a cell size of 0.3 to 1 mm; and a method for producing the foams are provided, wherein the foams contains 0.2 to 10 parts by weight of bentonite, and water is used as a blowing agent.
    • 本发明的目的是提供具有优异绝热性能的合成热塑性树脂挤出泡沫及其制造方法,其中以最有效的方式将环境友好的水用作发泡剂,同时减少影响发泡剂的量 环境,可以提高由大细胞和小细胞构成的泡沫体中的小细胞的生产率。一种泡沫密度为15〜50kg / m 3的合成热塑性树脂挤出泡沫体和具有 平均通话尺寸为0.7mm以下,或者主要包括电池尺寸为0.25mm以下的小电池,电池尺寸为0.3〜1mm的大电池; 提供了一种泡沫体的制造方法,其中,泡沫体含有0.2〜10重量份的膨润土,使用水作为发泡剂。
    • 9. 发明授权
    • Particle size distribution measuring apparatus
    • 粒度分布测量装置
    • US06252658B1
    • 2001-06-26
    • US09415152
    • 1999-10-08
    • Yoshiaki TogawaTatsuo IgushiToshiya ItoYukio Sakai
    • Yoshiaki TogawaTatsuo IgushiToshiya ItoYukio Sakai
    • G01N1502
    • G01N15/0211G01N2021/4711
    • A particle size distribution measuring apparatus includes a source of laser light for providing a laser beam to a sample cell that can hold a sample to be measured. A condenser lens converges the laser beam towards the sample cell along an optical axis. The position on the other side of the sample cell is a ring detector unit that can be aligned with the optical axis to measure light intensity at relatively small scattering angles from contact with particles in the sample cell. An array of detectors can be operatively positioned on a substrate with appropriate amplifying multiplying and analog to digital conversion capacity for measuring light intensity at relatively large scatter angles. The outputs of the ring detector unit and the array of detectors can be used to determine the particle size distribution of particles in the sample.
    • 粒度分布测量装置包括用于向可以容纳待测样品的样品池提供激光束的激光源。 聚光透镜将激光束沿着光轴会聚到样品池。 样品池的另一侧的位置是可以与光轴对准的环形探测器单元,以便在与样品池中的颗粒接触的相对小的散射角度下测量光强度。 检测器阵列可以可操作地定位在基板上,具有适当的放大倍数和模数转换能力,用于以较大的散射角测量光强度。 环检测器单元和检测器阵列的输出可用于确定样品中颗粒的粒度分布。