Paper |
Title |
Page |
THP085 |
Equipping FLASH with MTCA.4-based LLRF System |
1126 |
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- J. Branlard, V. Ayvazyan, Ł. Butkowski, M.K. Grecki, M. Hoffmann, F. Ludwig, U. Mavrič, S. Pfeiffer, K.P. Przygoda, H. Schlarb, Ch. Schmidt, H.C. Weddig
DESY, Hamburg, Germany
- W. Cichalewski, D.R. Makowski, A. Piotrowski
TUL-DMCS, Łódź, Poland
- K. Czuba, I. Rutkowski, D. Sikora, Ł. Zembala, M. Żukociński
Warsaw University of Technology, Institute of Electronic Systems, Warsaw, Poland
- I.M. Kudla
NCBJ, Świerk/Otwock, Poland
- K. Oliwa, W. Wierba
IFJ-PAN, Kraków, Poland
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The Free-Electron Laser in Hamburg (FLASH) is now equipped with a MicroTCA-based (MTCA.4) low-level radio frequency (LLRF) system, to replace the previous VME system and to serve as a test bench for the European X-ray Free Electron Laser (XFEL) LLRF system. This paper presents details on the new FLASH LLRF system setup, including installations inside the radiation prone tunnel environment. The benefits and preliminary results of the newly installed system are also given.
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THP086 |
LLRF System Design and Performance for XFEL Cryomodules Continuous Wave Operation |
1129 |
|
- J. Branlard, V. Ayvazyan, Ł. Butkowski, K.P. Przygoda, H. Schlarb, J.K. Sekutowicz
DESY, Hamburg, Germany
- W. Cichalewski, A. Piotrowski
TUL-DMCS, Łódź, Poland
- W. Jałmużna
Embedded Integrated Control Systems GmbH, Hamburg, Germany
- J. Szewiński
NCBJ, Świerk/Otwock, Poland
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The Cryomodule Test Bench (CMTB) at DESY is equipped with a 100 kW Inductive Output Tube (IOT) allowing the test of superconducting cryomodules in continuous wave (CW) operation mode. Although significantly different from the nominal pulsed operation mode of the European X-Ray Free Electron Laser (XFEL), CW operation can be handled by the same Low-level Radio Frequency (LLRF) system, within minor firmware modifications. The hardware details of the LLRF setup at CMTB, the firmware and software architecture and performance results from the last CW test are presented in this contribution.
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