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324MHz FETS RFQ RF measurement and components By Aaron Cheng 18 December 2006
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2 Overview 1. Bead-pull measurement 2. RF coupler preliminary design approach
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3 Bead pull measurements ISIS copper cold model in Imperial College
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4 Bead pull measurements Bead pull results on ISIS copper cold model
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5 Bead pull measurements Bead pull results on ISIS copper cold model
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6 Bead pull measurements LabVIEW beadpull measurement control program
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7 Presentation on ‘High Power RF couplers’ by James Rogers in ASTeC Investigate on coax structure to match 50ohm impedance @ 324MHz investigate waveguide-to-coax transition RF energy transferred from klystron to RFQ via waveguide, waveguide-coax transition, RF window and RF input coupler. @ waveguide-coax transition structure, coupling @ lowest mode TE101 Study klystron output waveguide-coax transition structure (magnetic field coupling); Current waveguide size is WR2300 Implementing a doorknob structure (electric field coupling) RF coupler preliminary design approach
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8 Coax matching. Outer diameter of insulation fixed @ 40mm (KF flange size on RFQ), modelled as vacuum Optimized conductor to obtain 50ohm match inner diameter = 17.4mm
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9 RF coupler preliminary design approach Studying klystron o/p T-struc wg- coax Coupler varied in distance from waveguide end-plate and in height S11 = -3.32dBS21 = -2.589dB
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10 RF coupler preliminary design approach Studying doorknob wg-coax Increased wg length Coupler varied in distance from waveguide end-plate and in height S11 = -22.59dBS21 = -0.717dB
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11 Summary 1.Bead pull measurement almost ready to go. Other issues are finding suitable bead 2.Waveguide-Coax transition design started and on-going. Current status: Electric field probing show promising results Investigate into half-height wg, different T-shape geometry, conductor with cooling pipes etc. 3.Other tasks: Microwave signal generator and amplifier in the process of purchasing: Delivers 20W-50W to drive klystron and RF control purposes
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