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ABOUT FORMS OF ELECTRONIC AND IONIC DEVICES WITH THERMIONIC CATHODES.

机译:关于带有热阴极的电子和离子设备的形式。

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摘要

The miniaturization of electronic and ionic devices with thermionic cathodes and thc improvement of their vacuum properties are questions of very great interest to the electronic engineer. However there have bcen no proposals so far to analyse the problem of miniaturization of such devices In a fundamental way. The present work suggests a choice of the geometrical shape of the cathode, the anode and the envelope of the device, that may help towards such a fundamcnlal approach.It is shown that a design, in which the cathode and the envelope of the tube are made of thm prismatic shape and the anode coincides with the cnvclope, offers a slriknrg advantage over the conventional cylindrical design, in respect of over-all size. The use of the prismatic shape will lead to considerable economy in msterials and may facilitate simpler prodoct~ont echn~ques. I n respect of the miin criteria of vacuum, namely the grade of vacuum, the internal volume occupied by residualudgases, the evolution of gases in the internal space and the diffusion of gases from outside into the devicc, it is shown that the prismatic form is at least as good as, ifudnot somewhat superior lo, the cylindrical form.In the actual construction of thin prismatic tubes, manv practical problems will arise, the most important being the mechanical strength and stablity of the structure. But the changeover from the conventional cylindrical to the new prirmaiic form, with its basic advantages, is a development that merits close attention.
机译:具有热电子阴极的电子和离子设备的小型化及其真空性能的改善是电子工程师非常感兴趣的问题。然而,到目前为止,尚无提议以基本方式分析此类设备的小型化问题。本工作建议选择阴极,阳极和装置外壳的几何形状,这可能有助于实现这种基础方法。结果表明,在设计中,阴极和管的外壳是在整体尺寸方面,它由棱柱形的形状制成,阳极与cnvclope重合,与传统的圆柱设计相比,具有更大的优势。棱柱形的使用将导致可观的经济性,并且可以简化产品。考虑到真空的最小标准,即真空的等级,残留 udgas占据的内部体积,内部空间中的气体的演化以及气体从外部向腔体的扩散,表明棱柱形在薄的棱柱管的实际结构中,会出现一些实际的问题,其中最重要的是结构的机械强度和稳定性。但是,从传统的圆柱体到新的普密迈形式的转变,凭借其基本优势,是一项值得密切关注的发展。

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