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An S-band fluid-cooled helix TWT

机译:S带液冷螺旋TWT

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摘要

The use of moving fluids in a hollow helix structure supported by hollow ceramics is shown to simultaneously provide helix cooling, selective losses for suppressing backward wave oscillations, and low dielectric loading. The same structure using a different fluid is a high-power attenuator. The 50 PSI input fluid passes through parallel hollow ceramic supports into and through a half-turn of the hollow helix and then out through other ceramic supports on the opposite side of the helix to the fluid output. The effect of the fluid in the helix is to provide excellent cooling (1500 watts/inch at 20°C rise in the fluid) with a large safety factor. The RF losses of the fluid in the ceramics are dependent upon the wall thickness of the ceramic and the electrical conductivity of the fluid. Using water as the coolant in a specific design provides a highly frequency-selective loss which prevents backward-wave oscillations. A slight modification of ceramic inner dimension and utilization of a higher conductivity fluid provides an attenuator capable of dissipating over 5 kilowatts.
机译:已显示在由空心陶瓷支撑的空心螺旋结构中使用运动流体可同时提供螺旋冷却,用于抑制反向波振荡的选择性损耗以及低介电负载。使用不同流体的相同结构是高功率衰减器。 50 PSI输入流体通过平行的空心陶瓷支架进入空心螺旋线并旋转半圈,然后通过螺旋线另一侧与流体输出相反的其他陶瓷支架流出。螺旋中流体的作用是提供出色的冷却效果(在20°C时流体上升1500瓦/英寸),并且安全系数大。陶瓷中流体的RF损耗取决于陶瓷的壁厚和流体的电导率。在特定的设计中,使用水作为冷却剂会产生很高的频率选择性损耗,从而可以防止反向波振荡。陶瓷内部尺寸的略微修改和较高电导率流体的利用提供了能够耗散超过5千瓦的衰减器。

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