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    • 21. 发明授权
    • Method of producing anisotropic optical element
    • 制造各向异性光学元件的方法
    • US07595099B2
    • 2009-09-29
    • US11372261
    • 2006-03-10
    • Masanori UmeyaHiroyuki NishimuraTakanori AonoTakuya Yamazaki
    • Masanori UmeyaHiroyuki NishimuraTakanori AonoTakuya Yamazaki
    • C09K19/00C09K19/06C09K19/52
    • C09K19/02C09K19/38C09K2019/0448C09K2219/03Y10T428/10Y10T428/1036
    • The present invention provides a method of producing simply and precisely an anisotropic optical element having optical properties that are anisotropic with respect to a direction of a normal to an element plane. After forming an uncured film by applying flatwise a radiation-polymerizable cholesteric liquid crystal to a substrate (step 101), the film is heated to convert the cholesteric phase of the liquid crystal in the film into an isotropic phase (step 102). Thereafter, the isotropic phase of the liquid crystal in the film is converted into the cholesteric phase thereof, with a gas blown on the film from a predetermined direction (step 103). By doing so, the liquid crystal is oriented in such a manner that a mean direction of directions of helical axes (a main direction of helical axes) in liquid crystal domains in the film is tilted, relative to a direction of a normal to a film plane, along a stream of the gas blown. Lastly, the liquid crystal in the film is polymerized with the phase of the liquid crystal in the film maintained cholesteric (step 104). By this, the above-described state of orientation of the liquid crystal in the film is fixed as it is, and there is produced an anisotropic optical element having optical properties that are anisotropic with respect to the direction of the normal to the element plane.
    • 本发明提供简单且准确地制造各向异性光学元件的方法,所述各向异性光学元件具有相对于元件平面的法线方向是各向异性的光学特性。 通过将可放射线聚合的胆甾型液晶平面地涂布到基板上形成未固化的膜(步骤101)之后,加热膜,将膜中的液晶的胆甾醇相转变为各向同性相(步骤102)。 此后,将薄膜中的液晶的各向同性相转化为胆甾醇相,并从预定方向吹入薄膜上(步骤103)。 通过这样做,液晶被定向成使得膜中的液晶畴中的螺旋轴的方向的平均方向(螺旋轴的主方向)相对于膜的法线方向倾斜 飞机沿着气流吹动。 最后,膜中的液晶与保持胆甾醇的膜中的液晶相聚合(步骤104)。 由此,膜的液晶的上述取向状态是原样固定的,并且产生具有相对于元件平面的法线方向具有各向异性的光学性质的各向异性光学元件。
    • 24. 发明授权
    • Electronic component mounting method
    • 电子元件安装方法
    • US09521792B2
    • 2016-12-13
    • US13813794
    • 2011-06-21
    • Teppei KawaguchiTakahiro NodaTakuya YamazakiToru ChikumaYoshiyuki Hattori
    • Teppei KawaguchiTakahiro NodaTakuya YamazakiToru ChikumaYoshiyuki Hattori
    • H05K13/02H05K13/04
    • H05K13/02H05K13/0434H05K13/0452Y10T29/4913Y10T29/53174
    • In an electronic component mounting method, electronic components are picked up from a component supply unit in which two tray supply mechanisms are arranged, and mounted on substrates. In the method, both of the tray supply mechanisms are allowed to hold trays storing therein the electronic components to be mounted on the substrates. If shortage of the components occurs in one tray supply mechanism during a component mounting process, a target for picking up the electronic components is switched to the other tray supply mechanism. If use stop setting indicating that the pickup of the electronic components is no longer conducted is enabled in one tray supply mechanism, the controller prohibits an access of a mounting head to the one tray supply mechanism, and permits an operation access of an operator to a tray housing unit of the one tray supply mechanism.
    • 在电子部件安装方法中,从配置有两个托盘供给机构的部件供给部拾取电子部件,并安装在基板上。 在该方法中,允许托盘供给机构保持在其中存储要安装在基板上的电子部件的托盘。 如果在部件安装处理期间在一个托盘供给机构中发生部件的不足,则用于拾取电子部件的目标切换到另一个托盘供给机构。 如果在一个托盘供给机构中使能表示电子部件的拾取不再被进行的停止设置,则控制器禁止安装头进入一个托盘供给机构,并且允许操作者对操作者进行操作 一个托盘供应机构的托盘容纳单元。
    • 25. 发明申请
    • Image display program and image display apparatus
    • 图像显示程序和图像显示装置
    • US20090128569A1
    • 2009-05-21
    • US12287417
    • 2008-10-08
    • Takuya Yamazaki
    • Takuya Yamazaki
    • G06T15/70
    • G06T5/20
    • An image display method for displaying an image of a character in a virtual space configures a computer to execute steps of, a parameter setting step for setting parameters concerning movement of the character, a reference unit time setting step for setting a reference unit time of stepwise change of the parameters, a minimal unit time setting step for setting a minimal unit time of a equally divided time of reference unit time, a basic setting step of parameters, for setting the parameters for each reference unit time, and for allocating the parameters for each minimal unit time, a smoothing step for setting a smoothed parameters for each said minimal unit time, the parameters being allocated to the minimal unit time, and a display step for displaying the object according to said parameters set in the smoothing step for each minimal unit time.
    • 一种用于在虚拟空间中显示字符的图像的图像显示方法,用于配置计算机,以执行用于设置关于字符的移动的参数的参数设置步骤的步骤,用于设置逐步的参考单位时间的参考单元时间设置步骤 参数的更改,用于设定参考单位时间的等分时间的最小单位时间的最小单位时间设定步骤,用于设定各参考单位时间的参数的参数的基本设定步骤,以及分配用于 每个最小单位时间,平滑步骤,用于为每个所述最小单位时间设置平滑参数,分配给最小单位时间的参数;以及显示步骤,用于根据在平滑步骤中为每个最小值设置的所述参数显示对象 单位时间。
    • 28. 发明授权
    • Contact construction for DC loads and switching device having the contact construction
    • 具有接触结构的直流负载和开关装置的接触结构
    • US07012492B2
    • 2006-03-14
    • US10853501
    • 2004-05-25
    • Tetsuya MoriTakuya YamazakiKazuhiro TsutsuiSusumu Sato
    • Tetsuya MoriTakuya YamazakiKazuhiro TsutsuiSusumu Sato
    • H01H51/22
    • H01H9/443H01H1/023H01H1/02372H01H1/02376H01H1/04
    • A contact construction and switching device for DC loads that can be repeatedly used while minimizing problems such as cut-off failure, locking and deposition due to an abnormal continuation of an arc between the contacts, burning and destruction of the contacts, and an increase in contact resistance has a construction that includes a stationary contact and a movable contact that are opposite to each other, and a magnetic unit which applies a magnetic field orthogonal to the moving direction of the movable contact. In the contact construction, the anode-side contact is made of an AgSnO2-based alloy which contains at least Ag and SnO2, and the cathode-side contact is made of one of an AgNi-based alloy which contains at least Ag and Ni and an AgCuO-based alloy which contains Ag and CuO. The switching device has the above-mentioned contact construction.
    • 用于直流负载的接触结构和开关装置,其可以重复使用,同时最小化由于触点之间的电弧异常继续,触点的烧毁和破坏等导致的切断故障,锁定和沉积等问题, 接触电阻具有包括彼此相对的固定触点和可动触点的结构,以及施加与可动触头的移动方向正交的磁场的磁性单元。 在接触结构中,阳极侧接触由至少包含Ag和SnO 2 2的AgSnO 2 O 2基合金制成,并且制造阴极侧接触 至少包含Ag和Ni的AgNi基合金和含有Ag和CuO的AgCuO基合金之一。 开关装置具有上述接触结构。