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    • 1. 发明授权
    • Lamp
    • US06791247B1
    • 2004-09-14
    • US09890200
    • 2001-07-26
    • Toshio Takahashi
    • Toshio Takahashi
    • H01J188
    • H01K1/02
    • The lamp of the invention has three lead rods (6, 7, 8) and two filament structure bodies (13). Each of the two filament structure bodies has three filaments (13a, 13b, 13c). All the filaments (13a, 13b, 13c) are arranged around the outside of the three lead rods (6, 7, 8). Since light from each of the filaments (13a, 13b, 13c) reaches outside of the lamp (1) without the light travel being hindered by the three rods (6, 7, 8), the light from the filaments (13a, 13b, 13c) is uniformly radiated.
    • 本发明的灯具有三个引线杆(6,7,8)和两个灯丝结构体(13)。 两个长丝结构体中的每一个都具有三个长丝(13a,13b,13c)。 所有的细丝(13a,13b,13c)围绕三个引线杆(6,7,8)的外侧布置。 由于来自各灯丝(13a,13b,13c)的光到达灯(1)的外部,光行不受三根棒(6,7,8)的阻碍,所以来自灯丝(13a,13b,13c) 13c)均匀辐射。
    • 6. 发明授权
    • Robust lamp filament
    • 坚固的灯丝
    • US06465939B1
    • 2002-10-15
    • US09453731
    • 1999-12-02
    • Patrick C. WardRobert E. Cassidy
    • Patrick C. WardRobert E. Cassidy
    • H01J188
    • H01J1/18
    • A robust coiled filament electrode for a fluorescent lamp used in high vibration environments. A cylindrical mandrel is placed within coils in each end of a coiled filament electrode. The mandrel and the coiled filament electrode are held by a mounting post. The mounting post is bent over and crimped, holding the mandrel and coiled filament electrode. The mandrel extends inward between the two mounting posts, providing support for the coiled filament electrodes. The coiled filament electrode may be made by method or process of chemically dissolving selected portions of a mandrel. Lamp life is extended, as well as the variance between lamp life is substantially reduced. The present invention is particularly applicable to applications in avionics.
    • 用于高振动环境的荧光灯的坚固的卷绕灯丝电极。 将圆柱形心轴放置在线圈中的螺旋丝状电极的每一端中。 心轴和螺旋丝状电极由安装柱保持。 安装柱弯曲并卷曲,保持心轴和卷绕的细丝电极。 心轴在两个安装柱之间向内延伸,为卷绕的细丝电极提供支撑。 卷绕的丝状电极可以通过化学溶解心轴的选定部分的方法或工艺制成。 灯泡寿命延长,灯泡使用寿命的差异也大大降低。 本发明特别适用于航空电子设备的应用。
    • 8. 发明授权
    • Discharge space structure of plasma display panel and method of fabricating its barrier
    • 等离子体显示面板的放电空间结构及其屏障的制造方法
    • US06239551B1
    • 2001-05-29
    • US09090406
    • 1998-06-04
    • Myung-Ho Park
    • Myung-Ho Park
    • H01J188
    • H01J9/242H01J11/12H01J11/36
    • A discharge space structure of a plasma display panel is provided in which rays generated by a cell are not diffused into neighboring cells but sent to the front of the panel, to prevent color spread in the same stripe, improving luminance of the plasma display panel. The plasma display panel is constructed in such a manner that the front and back substrates, parallel to each other, are combined using frit glass, a dielectric layer is formed on display electrodes arranged on the front substrate, a protective layer formed on the dielectric layer, address electrodes are arranged on the back substrate, barriers are formed between the address electrodes, and a fluorescent layer is formed between the barriers, in which each discharge space defined by the fluorescent layer is formed in a hemispheric shape, to send rays generated by the fluorescent layer to the front of the panel.
    • 提供了一种等离子体显示面板的放电空间结构,其中由单元产生的光线不扩散到相邻单元格中,而是发送到面板的前面,以防止在同一条纹中扩展颜色,提高等离子体显示面板的亮度。 等离子体显示面板以这样的方式构成:使用熔结玻璃彼此平行的前基板和后基板,在布置在前基板上的显示电极上形成电介质层,形成在电介质层上的保护层 地址电极布置在后基板上,在寻址电极之间形成阻挡层,并且在屏障之间形成荧光层,其中由荧光层限定的每个放电空间以半球形状形成,以发射由 荧光层到面板的前面。
    • 9. 发明授权
    • Electron beam apparatus
    • 电子束装置
    • US06803715B1
    • 2004-10-12
    • US09512359
    • 2000-02-24
    • Hideaki MitsutakeHisao TajimaYoshihisa Sanou
    • Hideaki MitsutakeHisao TajimaYoshihisa Sanou
    • H01J188
    • H01J29/864H01J5/03H01J9/185H01J9/242H01J29/028H01J2201/3165H01J2329/863H01J2329/864H01J2329/8645H01J2329/8655H01J2329/866H01J2329/8665
    • A spacer, which is an atmospheric pressure resistant structure for a vacuum container, can be easily assembled, and the manufacturing costs that accompany the installation of the spacer are reduced. A rear plate, which includes a substrate on which electron-emitting devices are mounted, is located opposite a face plate that is irradiated by electrons emitted by the electron-emitting devices, so that together these two units constitute one part of the vacuum container. A spacer is positioned as an atmospheric pressure resistant structure in the vacuum container. Blocks are bonded to both ends of the spacer, and with these blocks, the spacer is self-supported. Both ends of the spacer are tapered, and are used to reduce the stress that is imposed on the bottoms of the spacer and the blocks by the rear plate and the face plate while air is discharged from the vacuum container.
    • 作为用于真空容器的耐大气压结构的间隔件可以容易地组装,并且减少了间隔件安装所带来的制造成本。 包括其上安装电子发射器件的衬底的后板与由电子发射器件发射的电子照射的面板相对,使得这两个单元一起构成真空容器的一部分。 间隔件在真空容器中被定位为耐大气压结构。 块结合到间隔物的两端,并且利用这些块,间隔物是自支撑的。 间隔件的两端是锥形的,并且用于在空气从真空容器排出空气的同时减小由隔板和面板施加在间隔件和块体的底部上的应力。
    • 10. 发明授权
    • Surface discharge lamp and system
    • 表面放电灯和系统
    • US06724134B1
    • 2004-04-20
    • US10106336
    • 2002-03-26
    • Raymond B. Schaefer
    • Raymond B. Schaefer
    • H01J188
    • H01J61/00H01J61/80
    • A high intensity discharge lamp includes a dielectric substrate, a first electrode near the dielectric substrate, a second electrode spaced from the first electrode and near the dielectric substrate, with a discharge gas contained and enclosed by a shaped reflector and window. The reflector shapes are adapted to the particular process. The lamp to be used in volumetric chambers with high reflectivity walls and in arrangements of multiple lamps for high processing rates and long penetration lengths. Erosion of the dielectric is controlled by the use of high-pressure gases, and filtration and the use of electric fields reduce lamp contamination. The dielectric and electrodes are gas cooled on the outside and through the use of perforated electrodes. A small diameter tubular dielectric is used to increase light emission, improve re-imaging capability and increase the electrical impedance.
    • 高强度放电灯包括电介质基板,电介质基板附近的第一电极,与第一电极间隔开并且靠近电介质基板的第二电极,放电气体由成形的反射器和窗口包围并包围。 反射器形状适应于特定的工艺。 用于具有高反射率壁的容积室中的灯和用于高加工速率和长穿透长度的多个灯的布置。 通过使用高压气体来控制电介质的侵蚀,并且过滤和使用电场减少灯污染。 电介质和电极在外部气体冷却,并通过使用穿孔电极。 使用小直径管状电介质来增加发光,提高再成像能力并增加电阻抗。