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A theory of the attenuator-coated helical slow-wave structure of a traveling-wave tube

机译:行波管的衰减器涂层螺旋慢波结构的理论

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A theory of the attenuator-coated helical slow-wave structure of a traveling-wave tube has been developed by considering the helix turns to be effectively shorted by a resistive coating. Power propagating down the structure is interpreted for the interaction impedance in the presence of the attenuator-coating losses. The dependence of the attenuation and phase propagation constants as well as the interaction impedance on the surface resistivity of the coating, the operating frequency, the thickness/proximity of the envelope, the permittivity of the dielectric, and the pitch of the helix have been studied for two situations in which the attenuator coating is applied: (1) inside a dielectric tube that the helix fits into, the whole enclosed in a metal envelope: and (2) over a dielectric tube enclosure for the helix.
机译:通过考虑通过电阻涂层有效地缩短螺旋线匝,已经开发了行波管的衰减器涂层螺旋慢波结构的理论。在衰减器涂层损耗的存在下,沿结构传播的功率被解释为相互作用的阻抗。研究了衰减和相位传播常数以及相互作用阻抗对涂层表面电阻率,工作频率,包络线的厚度/接近度,电介质的介电常数和螺旋线间距的依赖性。适用于两种情况下的衰减器涂层:(1)将螺旋线放入其中的电介质管内部,将其整体封装在金属外壳中;以及(2)在螺旋线的电介质管外壳上。

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