1966•IEEE Transactions on Electron DevicesRequires access

Improvement of traveling-wave tube efficiency through period tapering

N.H. Pond, Robert J. Twiggs

Open publisher page 9 citations

Abstract

The results of an experimental program with period tapering of the slow-wave structure of a traveling-wave tube which yielded a significant improvement in the efficiency of high-power TWTs are discussed. A method is outlined whereby these results may be applied to other tubes to improve efficiency. The study utilized a novel traveling-wave tube with a helical interaction structure independent of, and outside of, the vacuum envelope. This allowed the use of many different slow-wave structures with the same vacuum envelope; it resulted in fewer variables and greatly increased the number of experiments that could be performed.

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What this paper is about

The results of an experimental program with period tapering of the slow-wave structure of a traveling-wave tube which yielded a significant improvement in the efficiency of high-power TWTs are discussed. A method is outlined whereby these results may be applied to other tubes to improve efficiency. The study utilized a novel traveling-wave tube with a helical interaction structure independent of, and outside of, the vacuum envelope. This allowed the use of many different slow-wave structures with the same vacuum envelope; it resulted in fewer variables and greatly increased the number of experiments that could be performed.

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Available abstract

The results of an experimental program with period tapering of the slow-wave structure of a traveling-wave tube which yielded a significant improvement in the efficiency of high-power TWTs are discussed. A method is outlined whereby these results may be applied to other tubes to improve efficiency. The study utilized a novel traveling-wave tube with a helical interaction structure independent of, and outside of, the vacuum envelope. This allowed the use of many different slow-wave structures with the same vacuum envelope; it resulted in fewer variables and greatly increased the number of experiments that could be performed.

Key concepts: Tapering, Traveling-wave tube, Tube (container), Traveling wave, Envelope (radar), Power (physics), Optics, Vacuum tube

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