Author: Greg, D.B.
Paper Title Page
THSH202 Design and Implementation of the LLRF System for LCLS-II 1969
 
  • C. Serrano, K.S. Campbell, L.R. Doolittle, Q. Du, G. Huang, J.A. Jones, V.K. Vytla
    LBNL, Berkeley, California, USA
  • S. Babel, A.L. Benwell, M. Boyes, G.W. Brown, D. Cha, J.H. De Long, J.A. Diaz Cruz, D.B. Greg, B. Hong, R.S. Kelly, A.L. McCollough, M. Petree, A. Ratti, C.H. Rivetta
    SLAC, Menlo Park, California, USA
  • R. Bachimanchi, C. Hovater, D.J. Seidman
    JLab, Newport News, Virginia, USA
  • B.E. Chase, E. Cullerton, J. Einstein, J.P. Holzbauer, D.W. Klepec, Y.M. Pischalnikov, W. Schappert
    Fermilab, Batavia, Illinois, USA
 
  Funding: This work was supported by the LCLS-II Project and the U.S. Department of Energy, Contract n. DE-AC02-76SF00515
The SLAC Na­tional Ac­cel­er­a­tor Lab­o­ra­tory is build­ing LCLS-II, a new 4 GeV CW su­per­con­duct­ing (SCRF) linac as a major up­grade of the ex­ist­ing LCLS. The SCRF linac con­sists of 35 ILC style cry­omod­ules (eight cav­i­ties each) for a total of 280 cav­i­ties. Ex­pected cav­ity gra­di­ents are 16 MV/m with a loaded QL of ~ 4 x 107. Each in­di­vid­ual RF cav­ity will be pow­ered by one 3.8 kW solid state am­pli­fier. To en­sure op­ti­mum field sta­bil­ity a sin­gle source sin­gle cav­ity con­trol sys­tem has been cho­sen. It con­sists of a pre­ci­sion four chan­nel cav­ity re­ceiver and two RF sta­tions (For­ward, Re­flected and Drive sig­nals) each con­trol­ling two cav­i­ties. In order to reg­u­late the res­o­nant fre­quency vari­a­tions of the cav­i­ties due to He pres­sure, the tun­ing of each cav­ity is con­trolled by a Piezo ac­tu­a­tor and a slow step­per motor. In ad­di­tion the sys­tem (LLRF-am­pli­fier-cav­ity) was mod­eled and cav­ity mi­cro­phonic test­ing has started. This paper will de­scribe the main sys­tem el­e­ments as well as test re­sults on LCLS-II cry­omod­ules.
 
DOI • reference for this paper ※ https://doi.org/10.18429/JACoW-ICALEPCS2017-THSH202  
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