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TY - CONF AU - Miller, S.J. AU - Ao, H. AU - Bird, B. AU - Bryant, G.D. AU - Bullock, B. AU - Bultman, N.K. AU - Casagrande, F. AU - Compton, C. AU - Facco, A. AU - Hartung, W. AU - Hulbert, J.D. AU - Kelly, M.P. AU - Morris, D.G. AU - Ostroumov, P.N. AU - Popielarski, J.T. AU - Popielarski, L. AU - Reaume, M.A. AU - Saito, K. AU - Shuptar, M. AU - Simon, J. AU - Stark, S. AU - Tousignant, B.P. AU - Wei, J. AU - Wenstrom, J.D. AU - Witgen, K. AU - Xu, T. AU - Zheng, Z. ED - Yamazaki, Yoshishige ED - Facco, Alberto ED - McCausey, Amy ED - Schaa, Volker RW TI - Design of a FRIB Half-Wave Pre-Production Cryomodule J2 - Proc. of LINAC2016, East Lansing, MI, USA, 25-30 September 2016 C1 - East Lansing, MI, USA T2 - Linear Accelerator Conference T3 - 28 LA - english AB - The driver linac for the Facility for Rare Isotope Beams (FRIB) will require the production of 48 cryomodules (CMs). In addition to the β=0.085 quarter-wave CM, FRIB has completed the design of a β=0.53 half-wave CM as a pre-production prototype. This CM will qualify the performance of the resonators, fundamental power couplers, tuners, and cryogenic systems of the β=0.53 half-wave design. In addition to the successful systems qualification; the β=0.53 CM build will also verify the FRIB bottom up assembly and alignment method on a half-wave CM type. The lessons learned from the β=0.085 pre-production CM build including valuable fabrication, sourcing, and assembly experience have been applied to the design of β=0.53 half-wave CM. This paper will report the design of the β=0.53 half-wave CM as well as the CM interfaces within the linac tunnel. PB - JACoW CP - Geneva, Switzerland SP - 795 EP - 797 KW - linac KW - cryogenics KW - vacuum KW - alignment KW - solenoid DA - 2017/05 PY - 2017 SN - 978-3-95450-169-4 DO - 10.18429/JACoW-LINAC2016-THPRC013 UR - http://jacow.org/linac2016/papers/thprc013.pdf ER -