CERN ISOLDE / HIE ISOLDE 1 Isolde Target Modulator Prototype development prepared by T. Gharsa TE-ABT-EC CERN.

Slides:



Advertisements
Similar presentations
DC-DC Fundamentals 1.4 Charge Pump Regulator
Advertisements

AP Electricity Quiz Review
Sistan & Balouchestan Electric Power Distribution Company
The X-Ray Circuit.
MICE Refurbishment of CERN RF equipment for MICE M. Vretenar, CERN AB/RF.
Applications TPS MHz, 1.5A Current Limit, 92% Efficient Boost Converter for Battery Backu BOOST CONVERTER FOR BATTERY BACKUP CHARGING WITH ADJUSTABLE.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Three Port Marine Power Electronics Conversion System Mark Holveck Princeton.
STATIC Analyzer Sweep HVPS Requirements: –3 voltages to control the STATIC Electrostatic Analyzer –Programmable over -2V to +4kV with 0.01V resolution/noise.
Technical studies for the HIE- ISOLDE Frontend upgrade Jacobo Montaño Marie Curie Fellow; CATHI Project * The research project has been supported by a.
N. Voumard, AB-BT-EC LBDS Audit, CERN LBDS Trigger Signal Distribution Trigger Synchronization Unit (TSU) Trigger Fan Out (TFO) Power Trigger Unit.
31.March.2004 C. A. Martins, CERN AB/PO 1 Analysis of the possibility of using of a ALICE/LHCb type power converter in TT2A target test by Carlos DE ALMEIDA.
CERN ISOLDE facility 1 CATHI Final Review Meeting BARCELONA - SPAIN High Voltage and Front End prepared by R.A.Barlow TE-ABT-EC CERN Acknowledgement: B.
Development of new power supplies for J-PARC MR upgrade Yoshi Kurimoto (KEK) for J-PARC accelerator group.
Development of Solid State Long Pulse Klystron Modulators
Linac 6575 Modulator PFN Charging Power Supply Upgrade Minh Nguyen December 5, 2012.
01/2008©Copyright 2008 Desco Industries Inc / Critical Environment Ioniser cm CE Ioniser, 220V / cm CE Ioniser, 220V.
Front End Test Stand Klystron Commissioning Alan Letchford UKNF Plenary Meeting 22 nd April 2009.
Dr M A Panneerselvam, Professor, Anna University
An Assessment on Klystron Modulator Topologies for the ESS Project Carlos A. Martins (*), Karin Rathsman(**) (*) – Laval University, Dept. Electrical and.
CERN DC Spark System Capabilities Anders Korsbäck, BE-RF-LRF University of Helsinki.
Heliocentris Commercial Confidential 1 Integration of Industrial Fuel Cells in Technical Applications Using the NEXA ® Training System Dr. Claus Fischer.
Electronics for PS and LHC transformers Grzegorz Kasprowicz Supervisor: David Belohrad AB-BDI-PI Technical student report.
CATHI and the HIE-ISOLDE Design Study
LHC ARC Commissioning report during LS1 Agenda: VRGPE documentation (former VRJGE) Active Penning modification By-Pass Valves modification LHC ARC commissioning.
Design and operation of existing ZS B.Balhan, J.Borburgh, B.Pinget B.BalhanDesign and operation of existing ZS SPS ZS Electrostatic Septum Upgrade Review.
Design and Technical Challenges of the ILC Small Angle Interaction Regions October 19 th, 2006J. Borburgh, CERN, AB/BT Electrostatic separator limits With.
P-bar d-cel: keV antiproton pulses David Lunney CSNSM (IN2P3-CNRS) Université de Paris Sud, Orsay  introduction and concept  p-bar d-cel simulations.
CMS ECAL End Cap Meeting CERN 19 June to 23 June 2000 A.B.Lodge - RAL 1 ECAL End Cap High Voltage Cards and 2000 Electrical/Thermal Model. Progress on.
CERN ISOLDE facility 1 HIE ISOLDE – Workshop 2013 Targets and Front Ends “A new modulator system” Contribution: by T.Fowler, J.Schipper, B.Bleus, T.Gharsa/TE-ABT-EC.
Klystron Modulator for Proton Driver
HVPS Upgrade for ALS Storage Ring RF System -Disconnect Switch Status
MKI Erratics: Hardware and Electronics Related Aspects M.J. Barnes Acknowledgements: A.Antoine, R.A. Barlow, P. Burkel, E. Carlier, N. Magnin, V. Mertens.
Power Supply System for DRFS
Digital Microfluidics Control System II P Previous state - The previous control system is not self contained and uses a class AB amplifier which.
Kévin Pepitone 1CLIC project meeting, CERN, December 1st, 2015 Kevin PEPITONE, BE-RF Drive Beam Injector Gun.
Hybrid Power Controller (HPC) Final Presentation Senior Design II.
ELENA Fast Deflectors Generators N.Voumard, T. Gharsa.
22 Set 2009 EPPC 09 CERN September /14 Solid-State MARX Type Circuit for the ISOLDE Target Voltage Modulator L.M. Redondo*, J. Fernando Silva.
New plans for high power RF tests places at CERN O. Brunner BE/RF/KS – January ‘10.
ESS Linac Modifications for ESSnuSB Dave McGinnis Chief Engineer / Accelerator Division August 27, 2014.
ELENA EXTRACTION LINES W. Bartmann, D. Barna, M. Fraser, J. Jentzsch, R. Ostojic ELENA Commissioning discussion, 23th November, 2015.
Technology Department 1 ELENA Fast Deflectors status Nicolas Voumard, Jan Schipper TE/ABT/EC TCM 17/11/2015 1/11.
MTE: Statistics of kickers faults Etienne Carlier, Luis Feliciano, Laurent Ducimetière, Brennan Goddard, Luc Sermeus 1 19 October 2015 MTE internal review.
ELENA KICKERS AND SEPTA ELENA Meeting, Prepared by J. Borburgh, E. Carlier, A. Fowler, L. Sermeus TE/ABT.
Uninterruptible Power Supply Improves Reliability at The Australian Synchrotron Sean Murphy – ARW 2013 Melbourne.
Kévin Pepitone 1CLIC workshop, CERN, January 2016 Kevin PEPITONE, BE-RF LEETCHI: Drive Beam Electron Source.
Chapter 9 CAPACITOR.
Carlos A. Martins ESS – Accelerator Division - RF Electrical Power Systems June 2 th, 2014 Design, construction and measurement.
Long Pulse Klystron Modulators SML (Stacked Multi-Level) topology
New prototype modulator for the European XFEL Project (DESY) Pulse Step Modulator (PSM) Technology for long pulse applications.
High Voltage modulators ESS developments Carlos A. Martins ESS Accelerator Division, RF electrical power systems.
NMLTA Protection System Update -Loss Monitors- Arden Warner September 2 nd, 2009.
ESS Linac Upgrade Dave McGinnis Chief Engineer / Accelerator Division May 27, 2014.
Presentation CERN SPAIN | ITALY | FRANCE | GERMANY | MEXICO | USA | BRAZIL | UAE | QATAR | OMAN | SAUDI ARABIA jema.es.
RESONANT BASED SOLID STATE MARX GENERATOR
CERN LHC RF Power Systems
Different Types of Voltage Regulators with Working Principle.
Infrastructure status and plans at CERN 1) W. Weingarten/CERN TTC Milano 28 February - 3 March W. Weingarten/CERN 1)Most of the slides are based.
SENSORS.
Development of a Marx-Generator for the drive beam electron gun
Construction and Commissioning of Electronic Test Benches
Technical Session CERN ISOLDE – Workshop 2016
Development of the DC Electronics for the TAMUTRAP RFQ Cooler/Buncher Louis Cooper Cyclotron Institute Texas A&M University.
TE4862 Thyratron Power Triggering System for the CERN Kicker Systems
Modulators - Inductive adder. Technical description.
the CERN Electrical network protection system
TCM PS – SPS Thyratron Power Trigger Consolidation
POPS Strategy for Restarting & Repairing
Klystron Power Supplies for ILC
The Design Process.
Presentation transcript:

CERN ISOLDE / HIE ISOLDE 1 Isolde Target Modulator Prototype development prepared by T. Gharsa TE-ABT-EC CERN

Why modulate the target at ISOLDE ? 2 Precision high voltage (60kV +/-1V) has to be held at the target and ion source with respect to the grounded extraction electrode to provide the needed acceleration to the secondary ionized isotope beam. Ionization of air around the target during and immediately after beam impact discharges the effective target capacitance and reduces the target voltage level. To ensure extraction of short life-time isotopes this voltage is required to recover to its stable value within few milliseconds.

Existing HV modulator 3 Presently a custom-built positive 60kV d.c power supply (ASTEC) is connected via a pulse transformer and thyratron switch to a resonant circuit such that prior to beam impact the target is fully discharged by a resonant circuit in 35  s, which then restore the voltage close to its nominal value within a further 200  s [1]. Finally the load voltage returns to its nominal value +/- 1V within 5 to 6 ms still allowing the detection of very short life-time isotopes. [1] D.C. Fiander, A. Fowler, in 20 th Power Modulator Symposium, 1992, pp During critical period of beam impact the target voltage is modulated to zero.

Reasons for modulator upgrade 4 Heavier dynamic loading generated from secondary particles are observed with new target materials and neutron converters. Because of the limited power output of the power supply the recovery time cannot always be respected. Heavier dynamic loading is observed with new target material and neutron converter. Recovery time for the new modulator is challenging : - recovery 5ms (or less) even with neutron-converter targets - recovery time as fast as technically achievable, with 2ms being of "substantial" benefit

THE CHARGE PUMP (CP) MODULATOR 5 ADVANTAGES Best recovery time even with dynamic load Requires a single low current high precision power supply (High power supply not necessary) A single HV switch is required (compared to C modulator which uses 3) HV power amplifiers can be easily stacked in parallel to increase current output. DISADVANTAGES Target is not discharged at impact (risk of voltage breakdown) takes time to recharge buffer capacitor (~1s) between proton pulse

CP Modulator Prototype development 6 Custom built tank enclosure Tank is filled with dielectric oil Has a second ‘skin’ for oil leak protection Contains the buffer capacitor bank, HV precision divider, static and dynamic load Tank housing Capacitor bank 400nF 75kVdc (hivoltcapacitors) 75kVdc high precision divider VD75-20Y-BDSC-KC-BEA/PB/F (Ross Engineering) Viewing window Essex HV connector Oil temp gauge Pressure sensor Oil filter Filler cap EAPPC2014: A charge-pump 60kV modulator for the ISOLDE target extraction voltage, R. A. Barlow 1, B. Bleus 1, A. Fowler *1, H. Gaudillet 1, T. Gharsa 1, J. Schipper mm 3D model Tank housing High Precision 65kV - 40mA power supply Power amp. 1.4kV 100mA

CP Modulator prototype development mm Fig 2 : HV tank integration The CP modulator HV tank is assembled in B867 HV cage JURA 5 High voltage power supply (HVPS) Fig 4 : Storage capacitor & HV ROSS divider Fig 3 : Behlke HV switches & Dynamic load - Prototype HW completed as expected - Control HW and software under development (J. Schipper, R. Barlow) BUILDING 867, Prevessin, CERN

CONCLUSION 8 Target ionisation is becoming increasingly severe hence the need for a new type of modulator. A charge pump type modulator appears to be the best solution for fast recovery Serviceability and repair should be simpler with the new modulator technology. Prototype functionality still to be validated with test loads.

9