Bach M, Meigen T, Strasburger H ( 1997) Raster-scan cathode ray tubes for vision research – limits of resolution in space, time and intensity, and some solutions. 巴赫男,蝇吨,斯特拉斯堡尔的H(1997)光栅扫描的视觉研究阴极射线管-在空间分辨率的限制,时间和强度,以及一些解决办法。
Eight intercepted containers of hazardous electronic waste namely waste computer monitors and television sets with cathode ray tubes had been returned to Japan. 较早前截获载有有害电子废物的八个货柜巳运回日本,货柜载有阴极射线管的废电脑显示器及电视机。
In cathode ray tubes, the small area on the screen surface which is bombarded by the electron beam. 在阴极射线管中,屏幕表面上受到电子束轰击的小区域。
Lead blended into the glass of cathode ray tubes, electronic components, and fluorescent tubes; 阴极射线管、电子部件和荧光管玻璃中的铅;
The use of DC electricity is another source of static electric fields, e.g.rail systems using DC, and televisions and computer screens with cathode ray tubes. 使用直流电是产生静电磁场的另一个原因,例如铁路系统使用直流电,电视和计算机屏幕带有阴极放射管。
Cathode ray tubes for oscilloscopes 用于示波器的阴极射线管
High Luminance and High Resolution MAO Phosphor Screens Used in 12.7 cm Projection Cathode Ray Tubes 高亮度高分辨率12.7cmMAO荧光屏CRT投影管
Characteristics and Circuit Design of Camel Cathode Ray Tubes 双峰式显示管的特点及电路设计
The effects of space charge and thermal velocity are taken into account, and Monte Carlo Method ( MCM) is proposed to deal with the rotationally symmetrical electron emission systems in cathode ray tubes. 本文应用蒙特卡洛法研完了旋转对称电子发射系统并考虑了空间电荷和热速度效应。
With the development of the instruments of displays such as CRT, VFD, FED and PTV in recent years, the quantity and quality of the phosphor for cathode ray tubes increased greatly. 近年来,随着CRT、PTV、VFD和FED等显示显像器材的发展,阴极射线荧光粉的应用水平不断提高。
Field Emission Display ( FED) is one of the cathode ray fluorescent display devices, falls into the catalogue of flat panel display ( FPD). Nowadays, FEDs using nano-carbon tubes ( CNT-FED) as cathode ejecting materials are the most hotspot in research field. 场致发射显示器(FieldEmissionDisplay,FED)是一种阴极发射荧光显示装置,属于薄板平面显示器范畴,近年来以碳纳米管作为场发射冷阴极的CNT-FED为目前研究的热点。
The luminescent thin films have very good optical properties. They have been extensively investigated due to their potential applications in cathode ray tubes, flat panel display devices, field emission displays, communications devices, luminescent solar concentrators and so on. 发光薄膜具有良好的光学性质,在阴极射线管、平板显示器、场发射管、通讯设备以及发光太阳能聚光器中毫无疑问的具有很大的潜在应用价值。