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CVD diamond rod and its application in the high power TWT

机译:CVD金刚石棒及其在大功率TWT中的应用

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In a helix type TWT, dielectric material is used to support the helix and provide a thermal path from the helix to the barrel. The dielectric support material, however, undesirably alters the electric field pattern of an RF wave on the helix, reducing the field strength inside the helix where the electron beam-wave interaction takes place. Thus, to optimize the beam-to-RF conversion efficiency, it is most desirable to use a low dielectric constant material and a minimum amount of material to support the helix. Diamond is an electrical insulator and is also a good thermal conductor, having a thermal conductivity of approximately six times that of copper. Thus in addition to providing the required attenuation within the slow wave structure, the use of diamond also provides a good thermal path for the removal of excess heat generated during operation of the tube from its interior. A breadboard TWT recently demonstrated CVD diamond can replace the traditional BeO rod and be used in the wideband high power TWT to improve the heat dissipation greatly. The technology is very simple and the cost is very low.
机译:在螺旋型TWT中,介电材料用于支撑螺旋,并提供从螺旋到筒的热路径。然而,电介质支撑材料不期望地改变了螺旋上的RF波的电场模式,从而降低了在螺​​旋内发生电子束-波相互作用的螺旋内的场强。因此,为了优化束到RF的转换效率,最希望使用低介电常数的材料和最少量的材料来支撑螺旋。金刚石既是电绝缘体,又是良好的导热体,其导热系数约为铜的六倍。因此,除了在慢波结构内提供所需的衰减之外,使用金刚石还提供了良好的热路径,用于从管内部消除在管的操作期间产生的多余热量。面包板TWT最近证明了CVD金刚石可以替代传统的BeO棒,并用于宽带大功率TWT中,从而大大改善了散热性能。该技术非常简单,成本也很低。

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