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TY - CONF AU - Chen, G. AU - Calabretta, L. AU - Caruso, A.C. AU - Chao, C. AU - Karamyshev, O. AU - Karamysheva, G.A. AU - Liu, G. AU - Long, X.Y. AU - Morozov, N.A. AU - Peng, Z. AU - Samsonov, E. AU - Shirkov, G. AU - Song, Y. AU - Wang, Y.S. AU - Wei, C.S. AU - Xu, M. AU - Yang, Q. AU - Zhang, X. AU - Zhao, Y. ED - Koscielniak, Shane ED - Satogata, Todd ED - Schaa, Volker RW ED - Thomson, Jana TI - Research and Development of RF System for SC200 Cyclotron J2 - Proc. of IPAC2018, Vancouver, BC, Canada, April 29-May 4, 2018 C1 - Vancouver, BC, Canada T2 - International Particle Accelerator Conference T3 - 9 LA - english AB - A 200MeV compact isochronous superconducting cyclotron, named SC200, for proton therapy is under development by collaboration of ASIPP (Hefei, China) and JINR (Dubna, Russia). The radio frequency (RF) system as one of most significant subsystems in cyclotron consists of acceleration cavity, low level RF, RF source and transmission network. SC200 has two cavities connected in the centre, which are operated at 91.5 MHz with second harmonic. To meet the required acceleration voltage, the cavities have been carefully designed with comprised choices between several aspects, such as Q factor, mechanic stability and so on. The low-level RF (LLRF) system has been implemented by using the FPGA to achieve the significant accelerating voltage with an amplitude stability of <0.2% and a phase stability of < 0.1 degree. The cavity and LLRF system have been tested outside of cyclotron, the results will be presented. For future, the commissioning of whole RF system will be started after the assembly of SC200 at the end of 2019. PB - JACoW Publishing CP - Geneva, Switzerland SP - 3616 EP - 3618 KW - cavity KW - LLRF KW - cyclotron KW - simulation KW - acceleration DA - 2018/06 PY - 2018 SN - 978-3-95450-184-7 DO - 10.18429/JACoW-IPAC2018-THPAL004 UR - http://jacow.org/ipac2018/papers/thpal004.pdf ER -