PLSII LINAC RF CONDITIONING STATUS
J. Y. Huang, Woonbong Hwang, K.R.Kim, S.H.Kim, S. H. Nam, W. Namkung, S.S.Park, S.J.Park, Y.J.Park, Sangyun Shin
Abstract
J. Y. Huang, Woonbong Hwang, K.R.Kim, S.H.Kim, S. H. Nam, W. Namkung, S.S.Park, S.J.Park, Y.J.Park, Sangyun Shin
Abstract
PLS linac has been upgraded in energy from 2.5 to 3.0 GeV. A klystron supplies RF power of 80 MW to four acceleration structures through a SLED. But our machine is not enough RF power to get 3 GeV beam energy. So we have changed the RF scheme in four modules as a klystron supplies RF power of 80 MW two accelerating structures through a SLED. There were several problems during the RF conditioning and beam operation. So we will describe the conditioning results and the current status in this paper.
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PLS linac has been upgraded in energy from 2.5 to 3.0 GeV. A klystron supplies RF power of 80 MW to four acceleration structures through a SLED. But our machine is not enough RF power to get 3 GeV beam energy. So we have changed the RF scheme in four modules as a klystron supplies RF power of 80 MW two accelerating structures through a SLED. There were several problems during the RF conditioning and beam operation. So we will describe the conditioning results and the current status in this paper.
Key concepts: Klystron, Linear particle accelerator, RF power amplifier, Radio frequency, Beam (structure), Power (physics), Acceleration, Electrical engineering