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    • 1. 发明申请
    • TRANSISTOR ARRAY SUBSTRATE AND DISPLAY PANEL
    • 晶体管阵列和显示面板
    • US20090239321A1
    • 2009-09-24
    • US12477710
    • 2009-06-03
    • Satoru SHIMODATomoyuki ShirasakiJun OguraMinoru Kumagai
    • Satoru SHIMODATomoyuki ShirasakiJun OguraMinoru Kumagai
    • H01L21/02H01L33/00
    • H01L27/124
    • A transistor array substrate includes a plurality of driving transistors which are arrayed in a matrix on a substrate. The driving transistor has a gate, a source, a drain, and a gate insulating film inserted between the gate, and the source and drain. A plurality of signal lines are patterned together with the gates of the driving transistors and arrayed to run in a predetermined direction on the substrate. A plurality of supply lines are patterned together with the sources and drains of the driving transistors and arrayed to cross the signal lines via the gate insulating film. The supply line is electrically connected to one of the source and the drain of the driving transistor. A plurality of feed interconnections are formed on the supply lines along the supply lines, respectively.
    • 晶体管阵列基板包括在基板上排列成矩阵的多个驱动晶体管。 驱动晶体管具有插入栅极和源极和漏极之间的栅极,源极,漏极和栅极绝缘膜。 多个信号线与驱动晶体管的栅极一起被图案化并排列成在衬底上沿预定方向运行。 多个供电线与驱动晶体管的源极和漏极一起被图案化,并被排列成经由栅极绝缘膜与信号线交叉。 电源线与驱动晶体管的源极和漏极之一电连接。 在供给线上分别沿供给线形成多个供给互连。
    • 5. 发明申请
    • PRODUCTION APPARATUS AND PRODUCTION METHOD OF LIGHT EMITTING DEVICE
    • 发光装置的生产装置和生产方法
    • US20110225799A1
    • 2011-09-22
    • US13048376
    • 2011-03-15
    • Satoru SHIMODAIsao Ebisawa
    • Satoru SHIMODAIsao Ebisawa
    • B23P19/00
    • B41M1/04B41F5/24B41F31/18H01L51/0004H01L51/56Y10T29/49888Y10T29/52
    • The apparatus manufactures a light emitting device provided with a plurality of light emitting elements arranged on a substrate. The apparatus comprises: a rotating plate cylinder provided with a flexographic plate for printing ink that forms an organic layer of the light emitting elements on the substrate; an intermediate transfer member that contacts the flexographic plate to transfer the ink; a head unit that supplies the ink to the intermediate transfer member; a storage unit that stores as an ink replenishment pattern a region in which the ink is removed from the intermediate transfer member by the transfer of the ink from the intermediate transfer member to the flexographic plate; and a control unit that supplies the ink from the head unit to the region of the ink replenishment pattern on a surface of the intermediate transfer member.
    • 该装置制造设置有布置在基板上的多个发光元件的发光装置。 该装置包括:旋转印版滚筒,设置有用于印刷油墨的柔版印版,所述柔性印版在所述基板上形成所述发光元件的有机层; 中间转印部件,其与柔版印版接触以转印油墨; 将墨水供给到中间转印部件的头单元; 存储单元,其通过将油墨从中间转印构件转印到柔性版上,将作为墨水补充图案的区域存储在墨水从中间转印部件移除的区域中; 以及控制单元,其将来自头单元的墨水供应到中间转印部件的表面上的墨水补充图案的区域。
    • 6. 发明申请
    • APPLICATION DEVICE AND DRIVING METHOD THEREOF
    • 应用设备及其驱动方法
    • US20110052826A1
    • 2011-03-03
    • US12859300
    • 2010-08-19
    • Satoru SHIMODA
    • Satoru SHIMODA
    • B05D1/02B05C5/00
    • B05C5/0208
    • An application device wherein a liquid is applied to an application target region of a substrate disposed on a supporting table by moving a discharge section including a nozzle hole which discharges the liquid in a first direction relative to the supporting table; a displacement amount of the discharge section in a second direction which crosses the first direction is detected while the discharge section moves relative to the supporting table in the first direction; and one of the discharge section and the supporting table is moved in an offset direction which offsets the displacement amount while the discharge section is moved relative to the supporting table in the first direction, so as to control the displacement.
    • 一种应用装置,其中通过移动包括相对于支撑台在第一方向排出液体的喷嘴孔的排出部分将液体施加到设置在支撑台上的基板的施加目标区域; 在排出部沿着第一方向相对于支撑台移动的同时检测排出部在与第一方向交叉的第二方向上的位移量; 并且排出部和支撑台中的一个沿偏移方向移动,该偏移方向抵消了排出部分在第一方向上相对于支撑台移动的位移量,以便控制位移。
    • 7. 发明申请
    • PIXEL DRIVE APPARATUS, LIGHT EMITTING APPARATUS, AND DRIVE CONTROL METHOD FOR THE LIGHT EMITTING APPARATUS
    • 像素驱动装置,发光装置和发光装置的驱动控制方法
    • US20100328297A1
    • 2010-12-30
    • US12824438
    • 2010-06-28
    • Satoru SHIMODA
    • Satoru SHIMODA
    • G09G5/00G09G3/30
    • G09G3/3233G09G3/3291G09G2300/0842G09G2300/0866G09G2310/0216G09G2320/0285G09G2320/0693G09G2330/02
    • An offset voltage generating circuit sets an offset voltage through binary search based on a voltage value of the initial voltage, and a voltage controlling circuit generates an output voltage which is a predetermined gradation voltage added with the offset voltage, and applies a voltage based on the output voltage to a control terminal of a drive transistor. A current comparison circuit applies a supply voltage from a power supply to the other end of current path of the drive transistor. The current comparison circuit compares the current value of a reference current corresponding to the gradation voltage with a current value of the current flowing in the current path of the drive transistor at this time. The offset voltage generating circuit acquires a specific offset voltage corresponding to variation of the characteristic of the drive transistor based on a result of comparison performed by the current comparison circuit.
    • 偏移电压发生电路基于初始电压的电压值通过二次搜索设定偏移电压,电压控制电路产生作为与偏移电压相加的预定灰度电压的输出电压,并施加基于 输出电压到驱动晶体管的控制端子。 电流比较电路将来自电源的电源电压施加到驱动晶体管的电流路径的另一端。 电流比较电路将与灰度级电压对应的基准电流的电流值与此时在驱动晶体管的电流通路中流动的电流的电流值进行比较。 偏移电压发生电路基于由当前比较电路进行的比较的结果获取与驱动晶体管的特性的变化相对应的特定偏移电压。