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    • 1. 发明申请
    • Method and apparatus for testing a TFT array for a liquid crystal panel
    • 用于测试液晶面板的TFT阵列的方法和装置
    • US20070176623A1
    • 2007-08-02
    • US11518767
    • 2006-09-11
    • Yasuhiro Miyake
    • Yasuhiro Miyake
    • G01R31/00
    • G09G3/006G09G3/3648
    • A method for testing a liquid crystal display panel wherein there are, disposed in matrix form, pixels comprising liquid crystal elements in which a liquid crystal material is sealed between opposing electrodes, this method for testing a liquid crystal display panel being characterized in that it comprises a first charging step for applying a first voltage between the opposing electrodes of the liquid crystal element of the pixel under test; a second charging step for applying a second voltage of the opposite polarity of the first voltage between the opposing electrodes of the liquid crystal element of the pixel under test; and a measuring step for discharging the charge that has accumulated in the electrodes of the liquid crystal element of the pixel under test after the second charging step, and measuring the amount of charge discharged.
    • 一种用于测试液晶显示面板的方法,其中以矩阵形式设置包括其中液晶材料被密封在相对电极之间的液晶元件的像素,该液晶显示面板的测试方法的特征在于它包括 第一充电步骤,用于在被测试像素的液晶元件的相对电极之间施加第一电压; 第二充电步骤,用于在被测试像素的液晶元件的相对电极之间施加与第一电压相反极性的第二电压; 以及测量步骤,用于在第二充电步骤之后,对在被测试像素的液晶元件的电极中累积的电荷进行放电,并测量放电量。
    • 4. 发明授权
    • Optical time domain reflectometer, and optical fiber measuring method and optical fiber measuring system using the same
    • 光时域反射计,光纤测量方法和光纤测量系统使用相同
    • US07620513B2
    • 2009-11-17
    • US11791623
    • 2006-10-31
    • Norio NakayamaYasuhiro MiyakeYoshifumi ImazuShigeo HoriKeita Masuhara
    • Norio NakayamaYasuhiro MiyakeYoshifumi ImazuShigeo HoriKeita Masuhara
    • G06F19/00
    • G01M11/3136
    • In order to easily and efficiently carry out various characteristic evaluations of optical fibers which have been laid down, a table file which is for carrying out association of optical fibers serving as measuring objects with measured data when the optical fibers have been measured, based on optical fiber management information provided in advance of undertaking a cable laying/maintenance construction, such as various types of information on the optical fibers serving as measuring objects, and information on a construction site, and the like, is created at an external terminal. An OTDR measures the optical fibers serving as measuring objects based on the table file created at the external terminal, and stores measured result data in which the measured optical fibers and measured data of the optical fibers have been associated with one another, and edited result data expressing edited contents when the table file and the measured result data have been edited. The external terminal generates a report based on the measured result data and the edited result data stored in the OTDR.
    • 为了容易且有效地进行已经铺设的光纤的各种特性评价,在基于光学测量的光纤被测量时,用于执行用作测量对象的光纤与测量数据的关联的台文件 在进行电缆铺设/维护建造之前提供的光纤管理信息,例如在用作测量对象的光纤上的各种信息,以及关于施工现场的信息等等。 OTDR基于在外部端子处创建的表格文件测量用作测量对象的光纤,并且存储测量的光纤和光纤的测量数据彼此相关联的测量结果数据,并且编辑结果数据 当表文件和测量结果数据已被编辑时,表达编辑的内容。 外部终端根据测量结果数据和存储在OTDR中的编辑结果数据生成报告。
    • 6. 发明授权
    • Conveyance apparatus
    • 输送装置
    • US06959801B2
    • 2005-11-01
    • US10777325
    • 2004-02-12
    • Kenichi ShibataTomoki SawadaToshio NiiNoboru ShimomuraYasuhiro Miyake
    • Kenichi ShibataTomoki SawadaToshio NiiNoboru ShimomuraYasuhiro Miyake
    • B23P19/00B23P21/00B62D65/18B65G47/24
    • B62D65/18B65G2201/0294
    • A conveyance apparatus of the present invention includes, on top of a movable body capable of moving along a fixed path, attachable and detachable supporting members capable of supporting a conveyance object prior to processing, and a fixed supporting member capable of supporting the conveyance object after processing in a state where the attachable and detachable supporting members have been detached, and the movable body includes accommodating sections capable of accommodating the attachable and detachable supporting members which has been detached. The conveyance object prior to assembly processing can be conveyed while it is supported by the attachable and detachable supporting members, by using the movable body (common element). In addition, the conveyance object after assembly can be conveyed while it is supported by the fixed supporting member, by detaching the attachable and detachable supporting members and accommodating the same in the accommodating section.
    • 本发明的输送装置在能够沿着固定路径移动的可移动体的上方包括能够在处理之前能够支撑输送物体的可附接和可拆卸的支撑构件,以及能够支撑输送物体的固定支撑构件, 在可拆卸的支撑部件已经被拆卸的状态下进行处理,并且可移动体包括能够容纳已经拆卸的可拆卸的支撑部件的容纳部。 在组装处理之前的输送物体可以通过使用可移动体(公共元件)由可附接和可拆卸的支撑构件支撑的同时传送。 此外,组装后的输送对象可以在其被固定支撑构件支撑的同时传送,通过拆卸可附接和可拆卸的支撑构件并将其容纳在容纳部分中。
    • 8. 发明申请
    • Method and device for measuring drive current of thin film transistor array
    • 测量薄膜晶体管阵列驱动电流的方法和装置
    • US20050104830A1
    • 2005-05-19
    • US10982992
    • 2004-11-05
    • Masayuki KogureYasuhiro Miyake
    • Masayuki KogureYasuhiro Miyake
    • G01R31/26G01R19/00G01R31/00G02F1/133G09G3/00G09G3/20G09G3/30G09G3/32G09G3/36H01L29/786H01L51/50H05B33/14
    • G09G3/3233G09G3/006G09G3/2011G09G2300/0842G09G2320/0233G09G2320/029G09G2320/043
    • A measurement method for measuring a pixel drive signal of a TFT array comprising multiple pixels arranged in array form and an array drive current line for supplying the pixel drive current to each of these multiple pixels and wherein the array drive current flowing to this array drive signal line comprises this pixel drive current component and an offset current component, this measurement method characterized in that it comprises an array drive current measurement step wherein this array drive current when each of the pixels under test is driven is measured in succession for part or all of the pixels under test of these multiple pixels at a pre-determined time interval; an offset current measurement step wherein the above-mentioned offset current component is measured when this array drive current measurement step is not executed; an offset current calculation step wherein when this array current of a pixel under test is being measured, this offset current is calculated from these results of measuring multiple offset currents; and a pixel drive current calculation step wherein this pixel drive current of each of these multiple pixels is calculated from the difference between the measurement results of this array current measurement step and the calculation results of this offset current calculation step.
    • 一种用于测量包括以阵列形式布置的多个像素的TFT阵列的像素驱动信号的测量方法和用于将像素驱动电流提供给这些多个像素中的每一个的阵列驱动电流线,并且其中流过该阵列驱动信号的阵列驱动电流 该测量方法的特征在于,其包括阵列驱动电流测量步骤,其中当所测试的每个像素被驱动时的该阵列驱动电流部分或全部被连续地测量 以预定的时间间隔对这些多个像素进行测试的像素; 偏移电流测量步骤,其中当不执行该阵列驱动电流测量步骤时测量上述偏移电流分量; 偏移电流计算步骤,其中当测量被测像素的阵列电流时,从测量多个偏移电流的这些结果计算该偏移电流; 以及像素驱动电流计算步骤,其中根据该阵列电流测量步骤的测量结果与该偏移电流计算步骤的计算结果之间的差计算这些多个像素中的每一个的像素驱动电流。