PPT-Klystron Modulator Systems for CLIC 500
Author : celsa-spraggs | Published Date : 2016-06-02
NLCJLC Revisited Progress in technology for increased efficiency cost estimate NLC Initial Baseline Design 75 MW Klystron approx 2000 per LINAC Solenoid focussing
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Klystron Modulator Systems for CLIC 500: Transcript
NLCJLC Revisited Progress in technology for increased efficiency cost estimate NLC Initial Baseline Design 75 MW Klystron approx 2000 per LINAC Solenoid focussing 25kW per klystron 55 efficiency. A. . Vardanyan. 22.06.2012. RF System. The AREAL RF system . will consist . of 3 RF stations: . Each RF station has a 1 klystron, and HV modulator, a low-level RF system, preamplifier and an interlock and control system. . Dr. Davide . Aguglia. , TE/EPC. CLIC Project Meeting #12, CERN. 24. th. May 2013. Work Package description & Specifications. R&D strategy and collaborations. . Solutions under study. Ongoing work. I. Syratchev, CERN. State of art: L-band 10 MW MBK klystrons for ILC. . In terms of achieved efficiency at 10 MW peak RF power level, the existing MBK klystrons provides values very close to the 70%, as is specified in CLIC CDR.. David Townsend. President of CLIC. Chair, Save the Dam Working Group. Who is CLIC ?. Chiputneticook Lakes International Conservancy (CLIC). Founded in 1992. Non-Profit incorporated under laws of Maine. Overview. . Patrick Krejcik. Yuantao . Ding, Joe Frisch. . Layout of the Undulator to Dump Beam Line . OTRDMP. Simulation . example - Yuantao Ding. . low charge 20pC soft x-rays. head. FEL ON. . John Moss. Lead Engineer, . Linac. RF. February 17, 2016. Linac. RF Overview. Performance and Availability. Klystrons. High Power Circulators. Low Level Radio . Frequency Systems. Equipment Obsolescence. D. Valuch, A. . Mikkelsen. , G. . Ravida. , O. Brunner. LHC RF power system. Total 16 klystrons Thales TH2167. 400.8 MHz, 330 kW, at nominal 58 kV, 9.2 A . One . klystron per cavity. Four klystrons supplied by one HV supply. G. Riddone, 02/02/2010. 1. Content. Introduction to RF . structures and . components. Fabrication baseline procedure for accelerating structures . Application to CERN ac. structure fabrication. Fabrication of PETS . 3 . TeV. Many new agreements for X-band development and machines recently . One new coll. inst. (Canadian Light Source, Saskatoon) . WEB pages . Nikos . Kokkinis. has taken over as . responsible from . Michael Read. Calabazas Creek Research. Presented at CERN Aug 30, 2013. mike@calcreek.com. PPM Focusing. Eliminates large magnet power supplies. Reduces operating and capital costs. Conventional klystron magnet power supplies can consume more than 4% of average power of klystron. I. Syratchev. The new bunching technology has a potential to boost klystron efficiency to the 90% level. . The first conceptual/ technological S-band MBK prototype is now being built in Russia.. PPM, 52 kV, 7MW, Duty cycle 0.002, . Eckoldt. CERN . Accelerator. School. Baden, May 2014. Structure. Why long pulses?. Where are long pulse modulators used? . Basics. RF-Station. Klystron. Modulators. Passive . components. Active. . components. rf. test stand at CERN. J. Kovermann. , G. . McMonagle. , S. Doebert, N. Catalan-Lasheras, I. Syratchev, W. Wuensch,. G. . Riddone. , . S.Curt. , S. Rey, L. . Timeo. , E. Paju, K. . Schirm. , M. . accelerating structure design. 21/10/2010. A.Grudiev. (CERN). RF design constraints for CLIC. Beam dynamics (BD) constraints based on the simulation of the main . linac. , BDS and beam-beam collision at the IP:.
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