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    • 3. 发明授权
    • Liquid crystal display device
    • 液晶显示装置
    • US5303072A
    • 1994-04-12
    • US722550
    • 1991-06-26
    • Mamoru TakedaSadayoshi HottaIchiro YamashitaTatsuhiko TamuraYoneharu Takubo
    • Mamoru TakedaSadayoshi HottaIchiro YamashitaTatsuhiko TamuraYoneharu Takubo
    • G02F1/1362G09G3/36G02F1/133
    • G02F1/13624G09G3/3648G09G3/3659G02F1/136213G09G2300/0809G09G2310/0205G09G2330/08
    • An improved arrangement of a liquid crystal display device is provided in which the redundancy of a known but unwanted TFT (thin film transistor) defect is suppressed so that the yield per finished liquid crystal display device product can be increased without deterioration in the picture quality. Each pixel of the liquid crystal display device arranged at an intersection of one of scanning lines and one of signal lines is provided with two or three TFTs and also, a storage capacitor which is formed of a portion of a gate insulating layer and is sandwiched between its electrode and a preceding scanning line in the previous row using no extra masking procedure. The source, drain and gate electrodes of both the first and third TFTs are respectively coupled to the same signal line, the electrode of the same pixel and the adjacent scanning lines. The gate, source and drain electrodes of the second TFT are respectively coupled to the same scanning line to which the gate electrode of the first TFT is coupled, the electrode of the same pixel and the electrode of a succeeding pixel provided on the opposite side of the scanning line with respect to the same pixel. The arrangement also has a scanning driver circuit capable of activating two scanning lines at the same time for a sequential one-by-one scanning operation, whereby no fault in a reproduced image will be perceived in spite of the presence of a defective TFT.
    • 提供了一种液晶显示装置的改进布置,其中已知但不期望的TFT(薄膜晶体管)缺陷的冗余被抑制,使得可以在不降低图像质量的情况下提高每一个完成的液晶显示装置的产量。 布置在扫描线和信号线之一的交点处的液晶显示装置的每个像素都设置有两个或三个TFT,以及由栅极绝缘层的一部分形成并夹在 其电极和前一行中的前一扫描线不使用额外的屏蔽程序。 第一和第三TFT的源极,漏极和栅极电极分别耦合到相同的信号线,相同像素的电极和相邻的扫描线。 第二TFT的栅极,源极和漏极电极分别耦合到与第一TFT的栅电极耦合的相同的扫描线,相同像素的电极和设置在第二TFT的相反的一侧的后续像素的电极 相对于相同像素的扫描线。 该布置还具有能够同时激活两条扫描线以进行逐次扫描操作的扫描驱动电路,由此即使存在有缺陷的TFT,也不会感觉到再现图像中的故障。
    • 5. 发明授权
    • Metal halide lamp
    • 金卤灯
    • US06545413B1
    • 2003-04-08
    • US09168966
    • 1998-10-09
    • Kiyoshi TakahashiMakoto HoriuchiMamoru Takeda
    • Kiyoshi TakahashiMakoto HoriuchiMamoru Takeda
    • H01J1704
    • H01J61/827H01J61/125
    • A fill material 201 enclosed in an arc tube 201 with an inner diameter of 10.8 mm includes ScI3, argon, and mercury. A distance between electrodes 202 is set at 2.2 mm, and a distance between the inner wall of the arc tube 201 and the electrodes 202 is set at approximately 5.4 mm, which is approximately twice the distance between the electrodes 202. The lamp of the present invention is capable of forming thin arc and thereby achieving high luminance since only the metallic elements having an ionization potential of 6 eV or higher is contained in the fill material 207. The restriction of the short distance between the electrodes serves to stabilize arc. Scandium in the fill material serves to achieve a good color reproduction characteristic.
    • 封装在内径为10.8mm的电弧管201中的填充材料201包括ScI3,氩和汞。 电极202之间的距离设定为2.2mm,电弧管201的内壁和电极202之间的距离设定为大约5.4mm,大约是电极202之间的距离的两倍。本发明的灯 本发明能够形成薄弧,从而实现高亮度,因为仅在填充材料207中包含具有6eV或更高电离电位的金属元素。电极之间的短距离的限制用于稳定电弧。 填充材料中的钪用于实现良好的色彩再现特性。
    • 8. 发明授权
    • High-pressure discharge lamp and manufacturing method thereof
    • 高压放电灯及其制造方法
    • US6132279A
    • 2000-10-17
    • US39424
    • 1998-03-16
    • Makoto HoriuchiYuriko KanekoMamoru Takeda
    • Makoto HoriuchiYuriko KanekoMamoru Takeda
    • H01J9/32H01J61/30H01J61/36H01J9/00H05B33/10
    • H01J9/326H01J61/30H01J61/368H01J61/82H01J61/84
    • A method for manufacturing a high-pressure discharge lamp of the double-ended type having excellent resistance to high-pressure and wherein the internal diameter of a portion of the high-pressure discharge lamp where a light-emitting section and a side tube are adjacent can be reduced without restricting the maximum diameter of an electrode on a side where it projects into the light-emitting section. An electrode assembly 105 is arranged within an evacuated glass bulb 2 such that an end of electrode 102 where a coil 102b is wound is positioned within the light-emitting section 3. In this condition, the portion where the light-emitting section 3 and the side tube 4a (4b) are adjacent is heated by a burner 300. The internal diameter of the side tube 4a (4b) can thereby be formed with a reduced-diameter section 7, whose diameter is smaller than that of the electrode rod 102a without restricting the diameter at the location of the coil 102b.
    • 一种双端型高压放电灯的制造方法,其具有优异的耐高压性,并且其中发光部和侧管相邻的高压放电灯的一部分的内径 可以在不限制其突出到发光部的一侧的电极的最大直径的情况下进行减小。 电极组件105布置在真空玻璃灯泡2内,使得缠绕线圈102b的电极102的端部位于发光部分3内。在这种情况下,发光部分3和 侧管4a(4b)相邻的侧管4a(4b)被燃烧器300加热。因此,侧管4a(4b)的内径可以形成为直径小于直径的部分7,其直径小于电极棒102a的直径, 限制线圈102b的位置处的直径。