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   楔形阴极 的翻译结果: 查询用时:0.008秒
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楔形阴极
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  “楔形阴极”译为未确定词的双语例句
     The electrostatic field capacitance between the electrodes of a vacuum micro triode system is simulated by finite element method on the basis of electrostatic and the field emission theory of vacuum microelectronics.
     以静电学基本原理、场致发射原理为基础 ,用有限元法在求得圆锥形、楔形阴极真空微电子三极管内静电场各点场强的前提下 ,考虑以往计算中忽略的各电极之间、栅极厚度对器件电容的影响进行极间电容的计算。
短句来源
  相似匹配句对
     CATHODE PROTECTION
     阴极保护
短句来源
     The Replacement of Cathodic-Cleaning Preparation
     阴极清洗剂的替换
短句来源
     CATHODIC POLARIZATION BEHAVIOR IN THE WEDGE-SHAPED CREVICE OF X-42 STEEL IN NS4 SOLUTION
     研究NS4溶液中X-42钢楔形缝隙的阴极极化行为
短句来源
     (2) wedge-shaped diffuser;
     (2)楔形扩压器;
短句来源
     The Design on Wedge Lock
     楔形锁紧装置的研制
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  wedge cathode
The dependence of the perveance on the wedge angle in the wedge cathode-flat anode system is determined.
      


Simulation of wedge cathode vacuum microtriodes is presented. The characteristics of vacuum microelectronic devices are given by analyzing the results and calulating the relevant parameters.

本文对楔形阴极的真空微电子三极管进行了计算机模拟,实现了真空微电子器件的性能分析.通过对模拟结果的分析,总结了楔形阴极的真空微电子三极管的性能,计算了有关参数并提出优化设计方案.

The electrostatic field capacitance between the electrodes of a vacuum micro triode system is simulated by finite element method on the basis of electrostatic and the field emission theory of vacuum microelectronics. The grid cathode capacitance of wedge cathode and cone cathode vacuum micro triodes is calculated from the distribution of charge density in the system including the influence of other electrodes and the thickness of grid which had always been neglected in previous calculations. The relation...

The electrostatic field capacitance between the electrodes of a vacuum micro triode system is simulated by finite element method on the basis of electrostatic and the field emission theory of vacuum microelectronics. The grid cathode capacitance of wedge cathode and cone cathode vacuum micro triodes is calculated from the distribution of charge density in the system including the influence of other electrodes and the thickness of grid which had always been neglected in previous calculations. The relation between the capacitance and the geometrical parameter is discussed in order to find better devices geometry for high frequency application. The simulated results are in agreement with the experiment results reported.

以静电学基本原理、场致发射原理为基础 ,用有限元法在求得圆锥形、楔形阴极真空微电子三极管内静电场各点场强的前提下 ,考虑以往计算中忽略的各电极之间、栅极厚度对器件电容的影响进行极间电容的计算。通过计算多导体系统电荷密度较为精确地求得了圆锥形、楔形阴极真空微电子三极管的极间电容 ,讨论了器件各几何参数与电容的关系 ,对器件的优化设计与高频应用具有指导作用。模拟结果与已报道的实验结果符合较好

 
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