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    • 4. 发明授权
    • Thin film transistor array with light shield layer
    • 具有遮光层的薄膜晶体管阵列
    • US06249011B1
    • 2001-06-19
    • US09513925
    • 2000-02-28
    • Seiichi Matsumoto
    • Seiichi Matsumoto
    • H01L29784
    • H01L29/78633
    • In a thin film transistor array, on a transparent insulating substrate made of glass or the like, a plurality of scanning lines is formed of a first conductive film. A plurality of signal lines is formed of a second conductive film and pixel electrodes are formed on a gate insulating film in a region enclosed with adjacent scanning lines and adjacent signal lines. Thin film transistors are coupled to the pixel electrodes, and light shielding films are formed of the first conductive film and form light shielding overlap portions with peripheral portions facing the signal lines of respective pixel electrodes via the gate insulating film. The light shielding film has portions near the both ends thereof along the signal line projected toward a side of the signal line to form correction overlap portions which overlap the signal lines via the gate insulating film. This allows a correction of an interruption in the signal lines to be effectuated without increasing load to the process and without adversely affecting display.
    • 在薄膜晶体管阵列中,在由玻璃等制成的透明绝缘基板上,多条扫描线由第一导电膜形成。 多个信号线由第二导电膜形成,并且像素电极形成在由相邻扫描线和相邻信号线包围的区域中的栅极绝缘膜上。 薄膜晶体管耦合到像素电极,并且光屏蔽膜由第一导电膜形成并且经由栅极绝缘膜形成与各个像素电极的信号线相对的周边部分的遮光重叠部分。 遮光膜沿着朝向信号线的一侧投影的信号线的两端附近具有部分,以形成经由栅极绝缘膜与信号线重叠的校正重叠部分。 这允许校正信号线中的中断,而不会增加对该过程的负担并且不会不利地影响显示。
    • 5. 发明授权
    • Thin film transistor array and method for fabricating the same
    • 薄膜晶体管阵列及其制造方法
    • US06211534B1
    • 2001-04-03
    • US09310574
    • 1999-05-12
    • Seiichi Matsumoto
    • Seiichi Matsumoto
    • H01L310376
    • G02F1/136204H01L27/1214
    • A TFT array for a liquid crystal display device in which inferiority due to electrification or abnormal discharge during fabrication process can be decreased. The TFT array comprises TFTs for display each connected to a respective one of pixel electrodes disposed in a matrix, gate wirings, signal lines, a common conductor line on the gate wiring side, a common conductor line on the signal line side, nonlinear elements respectively disposed between the gate wirings and the common conductor line on the gate wiring side and between the signal lines and the common conductor line on the signal line side. A gate electrode of a TFT in each of the nonlinear elements is formed separately from the corresponding common conductor line and is electrically coupled thereto via contact holes and a third conductor layer. A source/drain electrode of a TFT in each of the nonlinear elements is formed seprately from the corresponding common conductor line and is electrically coupled thereto via contact holes and the third conductor layer.
    • 一种用于液晶显示装置的TFT阵列,其可以减少由于在制造过程中带电或异常放电而导致的劣化。 TFT阵列包括用于显示的TFT,每个TFT分别连接到布置在矩阵中的像素电极,栅极布线,信号线,栅极布线侧的公共导体线,信号线侧的公共导体线,非线性元件 设置在栅极布线和栅极布线侧的公共导体线之间以及信号线与信号线侧的公共导体线之间。 每个非线性元件中的TFT的栅极电极与相应的公共导线分开形成,并通过接触孔和第三导体层与其电耦合。 每个非线性元件中的TFT的源极/漏极电极与相应的公共导体线分开形成,并通过接触孔和第三导体层与其电耦合。
    • 6. 发明授权
    • Antistatic hose
    • 防静电软管
    • US4870535A
    • 1989-09-26
    • US202242
    • 1988-06-06
    • Seiichi Matsumoto
    • Seiichi Matsumoto
    • F16L11/11B65G53/52F16L11/115F16L11/127F16L59/153H05F3/02
    • H05F3/02B65G53/52F16L11/112F16L11/1185F16L59/153
    • An antistatic hose is provided, including an inner layer of insulation material having a cylindrical configuration; a first electrically conductive fiber spirally arranged within the inner layer; a second electrically conductive fiber longitudinally arranged within the inner layer and electrically connected to the first electrically conductive fiber at the crossing points therewith; a linear reinforcing member spirally wound around the external surface of the inner layer and adhered thereto; and a member for covering both the inner layer and the reinforcing member and adhered thereto. The antistatic hose is able to prevent a material conducted by the hose from being charged by static electricity and also to discharge the static electricity from the material. In addition, an anti-collapse characteristic is achieved by the spirally wound reinforcing member and the cover member strongly adhered to both the inner layer and the reinforcing member to prevent separation therebetween.
    • 提供了一种抗静电软管,包括具有圆柱形构造的绝缘材料的内层; 螺旋地布置在内层内的第一导电纤维; 纵向地布置在所述内层内并且与所述第一导电纤维在其交叉点处电连接的第二导电纤维; 螺旋地缠绕在内层的外表面上并粘附到其上的线性加强构件; 以及用于覆盖内层和加强构件并粘附到其上的构件。 防静电软管能够防止由软管传导的材料被静电充电,并且还可以从材料中排出静电。 此外,通过螺旋缠绕的加强构件和盖构件牢固地粘附到内层和加强构件两者来实现防崩裂特性,以防止它们之间的分离。
    • 8. 发明授权
    • Exposure control apparatus for a camera
    • 相机曝光控制装置
    • US3973267A
    • 1976-08-03
    • US534578
    • 1974-12-19
    • Teiji HashimotoSeiichi MatsumotoTetsuya TaguchiTakehiko KiyoharaTokuichi Tsunekawa
    • Teiji HashimotoSeiichi MatsumotoTetsuya TaguchiTakehiko KiyoharaTokuichi Tsunekawa
    • G03B7/081G03B7/085G03B7/08
    • G03B7/085
    • The present invention relates to an exposure control apparatus for a camera which is so designed that the output terminal of the light measuring circuit of the brightness of the object to be photographed having a photo electric transducing means is connected to one input terminal of an operation amplifier. The output of the photographing information setting circuit, having a variable resistance means for setting other photographing informations than the information of the brightness of the object to be photographed, is connected to the other input terminal of the above mentioned operation amplifier. This is done in such a manner that proper exposure conditions can be obtained by means of the output of the exposure control circuit connected to the output of the above mentioned operation amplifier. Each input signal to the operational amplifier is adjusted by a bias signal which is controlled in accordance with ambient temperature conditions.
    • 本发明涉及一种照相机的曝光控制装置,其被设计成使得具有光电转换装置的被拍摄对象的亮度的光测量电路的输出端子连接到运算放大器的一个输入端 。 具有用于设置其他拍摄信息的可变电阻装置的拍摄信息设置电路的输出与被拍摄对象的亮度的信息相连接,连接到上述运算放大器的另一输入端。 这样可以通过连接到上述运算放大器的输出的曝光控制电路的输出来获得适当的曝光条件。 通过根据环境温度条件控制的偏置信号来调整到运算放大器的每个输入信号。