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首页> 外文期刊>IEEE Transactions on Consumer Electronics >A magnetic deflection up-date: field equations, CRT geometry, the distortions and their corrections
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A magnetic deflection up-date: field equations, CRT geometry, the distortions and their corrections

机译:磁偏转的最新动态:磁场方程,CRT几何形状,畸变及其校正

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The evolution of the magnetic deflection yoke to wide angles and high performance, and the modification of cathode-ray-tube (CRT) structures has responded to ever-more-demanding performance in diverse applications. This article probes the past to extract those basics by which precise deflection performance of CRT systems may be calculated. Development of beam-patch plots from a yoke's magnetic-field plot leads to a simplified equivalent constant-strength field. The characteristics of yoke behavior are established. An ideal yoke configuration, which does not distort the electron beam's focused spot, is identified. Its angular deflection is proportional to field strength; response is linear. A unified treatment of diverse CRT geometries provides precise deflection equations. Geometric distortion components are identified, their equations developed, and correction methods described.
机译:磁偏转系统向宽角度和高性能的演进以及对阴极射线管(CRT)结构的修改已响应了在各种应用中日益增长的性能要求。本文探讨了过去,以提取可用来计算CRT系统精确偏转性能的那些基础知识。从磁轭的磁场图发展出束斑图可以简化等效的恒定强度场。建立了磁轭行为的特征。确定了一种理想的磁轭配置,该配置不会使电子束的聚焦点变形。它的角偏转与场强成正比。响应是线性的。各种CRT几何形状的统一处理提供了精确的挠曲方程式。确定几何失真分量,开发其方程式,并描述校正方法。

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