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    • 7. 发明授权
    • Capacative loading compensating supports for a helix delay line
    • 能力加载补偿支持HELIX延迟线
    • US5132592A
    • 1992-07-21
    • US528052
    • 1990-05-23
    • Pierre NuguesDominique Henry
    • Pierre NuguesDominique Henry
    • H01J23/26H01P9/00H01P11/00
    • H01J23/26
    • Disclosed is a method for the construction of helix travelling wave tubes in which the helix is supported by insulating dielectric supports, wherein the dielectric supports, in turn, are supported by support-forming elements which project from the internal wall of the vacuum-tight casing surrounding the set, towards the helix, thus reducing the radial dimensions of the dielectric supports. In most of the embodiments, these novel support-forming elements are made of metallic material. The disclosed method greatly simplifies the construction of delay lines with low dispersion for travelling wave tubes with very great bandwidth while, at the same time, increasing the precision of assembly that can be obtained. An additional advantage of the reduction of the radial dimensions of the dielectric lies in an improvement of the possibilities of thermal conduction from the helix to the casing that surrounds the set. Another advantage of this reduction is the possibility of using costly dielectric materials such as diamond or boron nitride with face-centered cubic lattice structure.
    • 公开了一种用于构造螺旋行波管的方法,其中螺旋被绝缘电介质支撑件支撑,其中电介质支撑件又由从真空密封外壳的内壁突出的支撑形成元件支撑 围绕该组,朝向螺旋线,从而减小介电支撑件的径向尺寸。 在大多数实施例中,这些新颖的支撑形成元件由金属材料制成。 所公开的方法大大简化了具有非常大带宽的行波管的具有低色散的延迟线的构造,同时提高了可以获得的组装精度。 降低电介质的径向尺寸的另外的优点在于改善了从螺旋到围绕组的壳体的热传导的可能性。 这种减少的另一个优点是可以使用昂贵的介电材料,例如具有面心立方晶格结构的金刚石或氮化硼。