会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 5. 发明授权
    • Light source unit for exposure apparatus
    • 曝光设备用光源单元
    • US4670824A
    • 1987-06-02
    • US875445
    • 1986-06-17
    • Kouji KukiTsutomu Kuniyasu
    • Kouji KukiTsutomu Kuniyasu
    • H01J9/227G03B41/00
    • H01J9/2274
    • A light source unit for an exposure unit is provided. The unit comprises a cylindrical light-emitting tube and a screen sleeve which has a slit in the circumferential direction and with which the tube is covered through water filled therebetween. According to the invention, the light source unit has the two opposite edges of the slit in the screen sleeve that are in the axial direction partly extended downward to the outer periphery of the light-emitting tube so that a flat exposure pattern is obtained that is small in the radial direction at the periphery of the surface to be exposed to light. Further, a more favorable effect can be obtained by the provision of an attenuating filter on the outer periphery of the screen sleeve for the purpose of shielding a part of the light from the light source in the axial direction.
    • 提供了一种用于曝光单元的光源单元。 该单元包括圆柱形发光管和屏幕套筒,其在圆周方向上具有狭缝,并且通过其中填充有水的管覆盖该管。 根据本发明,光源单元具有屏幕套筒中的狭缝的两个相对的边缘,其沿轴向方向部分地向下延伸到发光管的外周边,从而获得平坦的曝光图案,其为 在表面的周边处径向方向较小以暴露于光。 此外,为了屏蔽来自光源的光轴的一部分的目的,通过在屏幕套筒的外周设置衰减滤波器,可以获得更有利的效果。
    • 6. 发明申请
    • Display device
    • 显示设备
    • US20080024052A1
    • 2008-01-31
    • US11826637
    • 2007-07-17
    • Hideyuki ShintaniTsutomu Kuniyasu
    • Hideyuki ShintaniTsutomu Kuniyasu
    • H01J1/62
    • H01J29/02H01J31/127
    • An electron emission display having a rear board and a front board is apt to cause electric discharge between scanning lines formed on the rear board and an anode formed on the front board. In the electron emission display, the rear board and the front board are each constituted by a flat board and are disposed so that the respective plane surfaces are opposed to each other. Scanning lines and data lines are formed on the plane surface of the rear board. The scanning lines each have an upper surface opposed to the front board and connecting surfaces adjacent to the upper surface and inclined at an angle of 15° to 75° relative to the upper surface. Since the scanning lines are each provided with such inclined connecting surfaces, it is possible to suppress electric discharge between the anode and the scanning lines.
    • 具有后板和前板的电子发射显示器容易在形成在后板上的扫描线和形成在前板上的阳极之间发生放电。 在电子发射显示器中,后板和前板各自由平板构成,并且各个平面彼此相对设置。 扫描线和数据线形成在后板的平面上。 扫描线各自具有与前板相对的上表面和与上表面相邻的连接表面,并相对于上表面以15°至75°的角度倾斜。 由于扫描线均设置有这样的倾斜连接表面,所以可以抑制阳极和扫描线之间的放电。
    • 8. 发明申请
    • Image display device
    • 图像显示装置
    • US20080211382A1
    • 2008-09-04
    • US11986945
    • 2007-11-27
    • Tsutomu KuniyasuTakahiro UenoGo SaitouHiroshi Kawasaki
    • Tsutomu KuniyasuTakahiro UenoGo SaitouHiroshi Kawasaki
    • H01J1/62
    • H01J29/04H01J29/925H01J31/127
    • The present invention achieves a desired white color temperature without deteriorating white uniformity and without lowering brightness in a field emission display (FED). A width of a green phosphor is set larger than a width of a red phosphor or a width of a blue phosphor and, at the same time, a distance between the center of the red phosphor and the center of the green phosphor is set larger than a distance between the center of the blue phosphor and the center of the red phosphor. Due to such a constitution, black matrix widths between the respective phosphors are set to a fixed value. Simultaneously, positions of electron sources are set in conformity with the positions of the respective phosphors. Due to such a constitution, it is possible to realize a desired white color temperature without deteriorating landing tolerance of electron beams or without lowering a utilization efficiency of a phosphor screen.
    • 本发明实现了所期望的白色温度,而不会使场致发射显示(FED)中的白度均匀性下降,而不降低亮度。 将绿色荧光体的宽度设定为大于红色荧光体的宽度或蓝色荧光体的宽度,同时将红色荧光体的中心与绿色荧光体的中心之间的距离设定为大于 蓝色荧光体的中心与红色荧光体的中心之间的距离。 由于这样的结构,各荧光体之间的黑矩阵宽度被设定为固定值。 同时,电子源的位置被设定为与各个荧光体的位置一致。 由于这样的结构,可以实现期望的白色温度,而不会降低电子束的着陆容限或不降低荧光屏的利用效率。