MAIN LINAC CRYOMODULE DESIGN REVIEW INPUT COUPLER September 5, 2012V. Veshcherevich.

Slides:



Advertisements
Similar presentations
Interface of Plug-Compatible Cryomodule Components KEK Norihito Ohuchi 2008/3/41GDE-Sendai Meeting.
Advertisements

30 th September 2004 High Power RF Couplers James Rogers High Power RF Couplers ELSRF Daresbury Laboratory.
Superconducting Spoke Resonator Cavities and Cryomodules
Progress and Plan for Superconducting RF Cavity RF Group.
Possible Assembly and Test of the Crab cryomodule in SM18 at CERN P. Maesen LHC Crab Cav meeting, 17 Sep’ 09 LHC-CC09Cryomodule Assembly & Test Stand.
3.9GHz Coupler Cold End Robustness Study Will Couplers survive on-site and overseas shipping? D. Olis, G. Galasso, M. McGee.
Possible proposed designs Part I : general considerations SPL power coupler March 16, 2010Eric Montesinos / CERN-BE-RF-SR.
Internal Cryomodule Instrumentation Sensors, Actuators, Heaters, and Wiring ERL Main Linac Cryomodule 9/5/2012 Peter Quigley Internal Design Review.
324MHz FETS RFQ RF measurement and components By Aaron Cheng 18 December 2006.
Status of 325MHz coupler S. Kazakov 11/29/ MHz coupler structure.
SPIE Conference - Photonics Applications in Industry and Research, Warsaw, 30 August, The RF Power Coupler Development Program at LAL-Orsay and.
Superconducting Accelerating Cryo-Module Tests at DESY International Workshop on Linear Colliders 2010 (ECFA-CLIC-ILC Joint Meeting) Denis Kostin, MHF-SL,
Coupler without copper coating S. Kazakov 11/13/2013.
Status of vacuum & interconnections of the CLIC main linac modules C. Garion TE/VSC TBMWG, 9 th November 2009.
SRF Results and Requirements Internal MLC Review Matthias Liepe1.
23 Jan 2007 LASA Cryogenics Global Group 1 ILC Cryomodule piping L. Tavian for the cryogenics global group.
TDR Part 2: 3.3 Cavity Integration (10 pages) H. Hayano Baseline Design based on the meeting discussion.
ELECTROMAGNETIC, THERMAL, AND STRUCTURAL ANALYSIS OF RF CAVITIES USING ANSYS 2.1 GHz 3-Cell Cavity Cliff Brutus 6/15/15 Job Name: 2.1ghz_Symmetry_
201 MHz NC RF Cavity R&D for Muon Cooling Channels
RF power & FPC status Eric Montesinos, CERN BE-RF on behalf of all people involved, great thanks to all of them !
Summary of AWG7 SCRF technologies Eiji Kako Wolf-Dietrich Moeller Akira Yamamoto Hitoshi Hayano Tokyo, Nov
Internal Cryomodule Instrumentation ERL Main Linac Cryomodule 10/10/2015 Peter Quigley, MLC Design Review.
Status of the Fermilab Cold BPM R&D Manfred Wendt Fermilab 10/1/20091LCWA09 Main Linac WG.
CRYOGENICS FOR MLC Cryogenic Piping in the Module Eric Smith External Review of MLC October 03, October 2012Cryogenics for MLC1.
704MHz Warm RF Cavity for LEReC Binping Xiao Collider-Accelerator Department, BNL July 8, 2015 LEReC Warm Cavity Review Meeting  July 8, 2015.
A general comment first: The questions ITRP has posed to the proponents focus largely upon technical issues for the linear collider. These are important.
July LEReC Review July 2014 Low Energy RHIC electron Cooling Sergey Belomestnykh SRF and RF systems.
IHEP High Power Input Coupler Activity Report First Mini-workshop on IHEP 1.3 GHz Superconducting RF project June 10th, 2009, Beijing IHEP High Power Input.
Antenna Adjustment SPL Cold Test. Measurement Setup Q ext for input and pick-up antenna determined by S 21 using a critical coupled reference antenna.
Rossana Bonomi ESS Cryomodule Status Meeting, 9/1/2013.
1.3GHz Input Coupler for ILC
2.1 GHz Warm RF Cavity for LEReC Binping Xiao Collider-Accelerator Department, BNL June 15, 2015 LEReC Warm Cavity Review Meeting  June 15, 2015.
1 HIGH ENERGY ACCELERATOR RESEARCH ORGANIZATION KEKB Review Committee/ NAKAI Hirotaka KEK Crab Cavity - Cryogenics - KEKB Crab Cavity Group - presented.
Cavity Measurements By Aaron Cheng 4 May Overview RF measurements Waveguide-coax transition.
1Matthias LiepeAugust 2, 2007 Future Options Matthias Liepe.
Date 2007/Oct./23 FNAL-GDE-Meeting Global Design Effort 1 Cryomodule Interface Definition (FNAL-GDE-Meeting) N. Ohuchi.
Eric Montesinos - CERN - First SPL collaboration meeting - CERN December 11th 2008 First SPL collaboration meeting Experience with the LHC Main power Coupler.
Longitudinal HOM damping estimations for SPL cavity. status W. Weingarten 26 July 20101SPL Cavity WG Meeting.
Summery of the power coupler session at the LCWS13 workshop E. Kako W.-D. Möller H. Hayano A. Yamamoto All members of SCRF WG November 14, 2013.
704 MHz warm cavity November 4, 2015 A.Zaltsman: SRF & warm RF components for LEReC1  A single cell 704 MHz warm cavity is used to correct the beam energy.
CRYOGENICS FOR MLC Cryogenic Principle of the Module Eric Smith External Review of MLC October 03, October 2012Cryogenics for MLC1.
Date 2007/Sept./12-14 EDR kick-off-meeting Global Design Effort 1 Cryomodule Interface definition N. Ohuchi.
Lutz Lilje XFEL Coupler Some Comments. XFEL Coupler WEBEX Lutz Lilje DESY Status TTF III Coupler  has shown full ILC performance  has not.
Plug compatibility discussion TILC09 cavity integration session H. Hayano.
Preparation procedure and RF processining of cERL-ML power coupler at KEK Hiroshi Sakai, Takaaki Furuya, Masato Sato, Kenji Shinoe, Kensei Umemori, Kazuhiro.
Power couplers Timergali Khabiboulline (FNAL) FNAL-LBNL meeting on NGLS April 13, 2012.
CW Cryomodules for Project X Yuriy Orlov, Tom Nicol, and Tom Peterson Cryomodules for Project X, 14 June 2013Page 1.
Ralf Eichhorn CLASSE, Cornell University. I will not talk about: Cavities (Nick and Sam did this) HOM absorbers (did that yesterday) Power couplers (see.
LHC Beampipes Ray Veness / AT-VAC FP XII 08Beam Vacuum- R.Veness.
Ralf Eichhorn Cornell on behalf of Paul Bishop, Benjamin Bullock, Brian Clasby, Holly Conklin, Joe Conway, Brendan Elmore, Fumio Furuta, Andriy Ganshyn,
HiLumi-LHC/LARP Crab Cavity System External Review 5-6 May 2014, BNL SPS - RF Power and Coupler status Erk Jensen, Eric Montesinos, CERN BE-RF.
Overview of CW input coupler for ERL
Low Beta Cryomodule Development at Fermilab Tom Nicol March 2, 2011.
Superconducting Accelerating Cryo-Module Tests at DESY TESLA Technology Collaboration (TTC) Meeting, February 28 - March , Milano, Italy Denis Kostin,
RFQ coupler S. Kazakov 07/28/2015. Requirements: Coupler requirements Expected problems: Heating (loop, ceramic window, etc.) Multipactor Solutions: Appropriate.
IFMIF Power Coupler for HWR Superconducting cavities SRF LINAC GROUP H. Jenhani 1, N. Bazin 1, P. Bosland 1, B. Branas 2, P. Brédy 1, P. Carbonnier 1,
Shuichi NoguchiTTC Meeting at Milano, Injector Cryomodule for cERL at KEK Cavity 2 Prototypes were tested. Input Coupler 2 Couplers were tested.
Prototype Cryomodule FDR Ken Premo 21 – 22 January 2015 High Power Coupler Design.
325 MHz Superconducting Spoke Cavity Coupler status. T. Khabiboulline Power Coupler design for Superconducting Spoke cavities. Originally.
PIP-II SSR1 Cryomodule Technical Issues Leonardo Ristori TTC Meeting
Power Couplers, HOM Couplers and Tuners for the XFEL
SNS Fundamental Power Coupler History
V. Veshcherevich Cornell University
Main Coupler R&D at DESY
CEPC Input Coupler Discuss 6th IHEP-KEK SCRF Collaboration Meeting
CEPC-650MHz Cavity Cryomodule
V. Veshcherevich Cornell University
Tom Peterson, Fermilab 6 December 2011
Cryomodule Design for CW Operation 3.9 GHz considerations
Higher power couplers at Helmholtz-Zentrum Berlin
Presentation transcript:

MAIN LINAC CRYOMODULE DESIGN REVIEW INPUT COUPLER September 5, 2012V. Veshcherevich

September 5, 2012 Bellows Air Cooling Waveguide Flange Cold Ceramic Window Instrumentation Port Pump Port 40K Flange 5K Intercept Cavity Flange (2K) Cavity Flange (2K) Antenna (Solid Copper) Antenna (Solid Copper) Warm Ceramic Window 300K Flange Most of the Parts: 316 Stainless Steel with 5 m Copper Coating 2MLC Design Review INPUT COUPLER 40K He Gas Cooling 40K He Gas Cooling

September 5, 20123MLC Design Review INPUT COUPLER Operating frequency1.3 GHz Maximum power (CW)5 kW Q ext (fixed)6.5×10 7 Cold coaxial line impedance 70 Ohm Warm coaxial line impedance 46 Ohm Cold coax line outer diameter 40 mm Warm coax line outer diameter 62 mm Main Parameters of the Coupler

September 5, 20124MLC Design Review Heat Load on Cryogenics Static Heat Load Dynamic Heat Load Full Heat Load To 2 K0.05 W0.06 W0.11 W To 5 K0.64 W0.32 W0.96 W To 40 K3.78 W5.94 W9.72 W INPUT COUPLER

September 5, 20125MLC Design Review INPUT COUPLER Parts of Coupler

September 5, 20126MLC Design Review INPUT COUPLER Cryomodule with Coupler VAT Valve Coupler Port Ion Pump Cold Cathode Gauge