High-power klystrons. The benchmark in scientific research. State-of-the-art RF sources for your accelerator

Similar documents
RF Solutions for Science.

TECHNICAL SPECIFICATION Multi-beam S-band Klystron type BT267

RF Power Generation II

Pulsed Klystrons for Next Generation Neutron Sources Edward L. Eisen - CPI, Inc. Palo Alto, CA, USA

INFN School on Electron Accelerators. RF Power Sources and Distribution

A HIGH POWER LONG PULSE HIGH EFFICIENCY MULTI BEAM KLYSTRON

A New 4MW LHCD System for EAST

Detailed Design Report

Operating Experience and Reliability Improvements on the 5 kw CW Klystron at Jefferson Lab

14 GHz, 2.2 kw KLYSTRON GENERATOR GKP 22KP 14GHz WR62 3x400V

Design, Fabrication and Testing of Gun-Collector Test Module for 6 MW Peak, 24 kw Average Power, S-Band Klystron

18 GHz, 2.2 kw KLYSTRON GENERATOR GKP 24KP 18GHz WR62 3x400V

Keysight N9355/6 Power Limiters 0.01 to 18, 26.5 and 50 GHz High Performance Power Limiters. Technical Overview

Development of Multiple Beam Guns for High Power RF Sources for Accelerators and Colliders

UNIT-3 Part A. 2. What is radio sonde? [ N/D-16]

TEST RESULTS OF THE 84 GHZ / 200 KW / CW GYROTRON

Evaluation of Performance, Reliability, and Risk for High Peak Power RF Sources from S-band through X-band for Advanced Accelerator Applications

DESIGN AND PERFORMANCE OF L-BAND AND S-BAND MULTI BEAM KLYSTRONS

Development of High Power Vacuum Tubes for Accelerators and Plasma Heating

IOT RF Power Sources for Pulsed and CW Linacs

RF plans for ESS. Morten Jensen. ESLS-RF 2013 Berlin

Pulses inside the pulse mode of operation at RF Gun

Examples of Successful Collaboration Between CPI and DOE Labs. Todd Treado CPI December 2013

Keysight N9355/6 Power Limiters 0.01 to 18, 26.5 and 50 GHz High Performance Power Limiters. Technical Overview

SRS and ERLP developments. Andrew moss

Pseudospark-sourced Micro-sized Electron Beams for High Frequency klystron Applications

Agilent Series Harmonic Mixers

IOT OPERATIONAL EXPERIENCE ON ALICE AND EMMA AT DARESBURY LABORATORY

Towards an X-Band Power Source at CERN and a European Structure Test Facility

ADVANCED HIGH-POWER MICROWAVE VACUUM ELECTRON DEVICE DEVELOPMENT

ACP 15 / 28 / 40 SERIES 2 COMPACT DRY ROUGHING PUMPS

Keysight Technologies Millimeter Wave Frequency Extenders From Virginia Diodes Inc. for the Keysight X-Series Signal Analyzers. Technical Overview

Development of high power gyrotron and EC technologies for ITER

XFEL High Power RF System Recent Developments

SPINNER BROADCAST EXPLANATION OF THE MULTI CHANNEL COMBINER SPECIFICATIONS

45 MW, 22.8 GHz Second-Harmonic Multiplier for High-Gradient Tests*

Recent ITER-Relevant Gyrotron Tests

Next Linear Collider. The 8-Pack Project. 8-Pack Project. Four 50 MW XL4 X-band klystrons installed on the 8-Pack

Agilent N9355/6 Power Limiters 0.01 to 18, 26.5 and 50 GHz

Status of RF Power and Acceleration of the MAX IV - LINAC

CPI Gyrotrons For Fusion EC Heating

KLYSTRON GUN ARCING AND MODULATOR PROTECTION

Lecture 17 Microwave Tubes: Part I

CEPC Klystron Development

Low-Energy Electron Linacs and Their Applications in Cargo Inspection

The PEFP 20-MeV Proton Linear Accelerator

since 1990 COMPANY PROFILE

High Brightness Injector Development and ERL Planning at Cornell. Charlie Sinclair Cornell University Laboratory for Elementary-Particle Physics

K3672BCD EEV High Power Amplifier Klystron for UHF Television Service

The. Radio History. How and Why Quincy, IL Became the Digital Capitol of the World. By Tom Yingst

Karin Rathsman, Håkan Danared and Rihua Zeng. Report from RF Power Source Workshop

CEBAF 8 kw CW KLYSTRON SPECIFICATION EE0043, Rev. H January 15, 1998

RF considerations for SwissFEL

SLS RF operation report 2003

Exceptional performance

DC ELV Accelerators: Development and Application

OF THIS DOCUMENT IS W8.MTO ^ SF6

Keysight Technologies ad Integrated RF Test Solution

Empirical Model For ESS Klystron Cathode Voltage

RF Power Klystrons & 20 Year Look. R. Nelson 7/15/15

L-Band RF R&D. SLAC DOE Review June 15 th, Chris Adolphsen SLAC

X-Band Klystron Development at

GENCOA Key Company Facts. GENCOA is a private limited company (Ltd) Founded 1995 by Dr Dermot Monaghan. Located in Liverpool, UK

TOSHIBA Industrial Magnetron E3328

Tutorial: Trak design of an electron injector for a coupled-cavity linear accelerator

5 Project Costs and Schedule

Status of KEK X-band Test Facility and its future plans

2 Work Package and Work Unit descriptions. 2.8 WP8: RF Systems (R. Ruber, Uppsala)

Agilent 86120B, 86120C, 86122B Multi-Wavelength Meters. Data Sheet

MULTIS L72. Operating instructions

Spear3 RF System Sam Park 11/06/2003. Spear3 RF System. High Power Components Operation and Control. RF Requirement.

STATUS OF THE SWISSFEL C-BAND LINEAR ACCELERATOR

Klystron Tubes. Two forms of such a device, also called linear beam klystron, are given in the following figure.

Low Frequency Gyrotrons for Fusion

3 cerl. 3-1 cerl Overview. 3-2 High-brightness DC Photocathode Gun and Gun Test Beamline

The Elettra Storage Ring and Top-Up Operation

Performance of a DC GaAs photocathode gun for the Jefferson lab FEL

Experience with the Cornell ERL Injector SRF Cryomodule during High Beam Current Operation

DEVELOPMENT OF X-BAND KLYSTRON TECHNOLOGY AT SLAC

650MHz/800kW Klystron Development at IHEP

MULTIS LMp / LMg. Systèmes de Coupure et de Protection Switching and Protection Systems

Agilent 86120B, 86120C, 86122A Multi-Wavelength Meters Technical Specifications

Rack mounted telephone- and leased line modem for industrial applications

DEVELOPMENT OF A 10 MW SHEET BEAM KLYSTRON FOR THE ILC*

SECTION I INTRODUCTION

GA A26497 SOLID-STATE HIGH-VOLTAGE CROWBAR UTILIZING SERIES-CONNECTED THYRISTORS

Status of CTF3. G.Geschonke CERN, AB

R&S ZVA-Zxx Millimeter-Wave Converters Specifications

APD modules. APD module integrated with peripheral circuits. C12703 series. Selection guide. Block diagram

Agilent 11713A Attenuator/Switch Driver

Test Report. Product Name: Access Point Model No.: MS-6809 FCC ID: DoC

Flow Switch. Flow Switch

IOTD2100 IOT Amplifier for UHF Television Service

System Professional broadcast equipment provider in Asia

CS Series Motorized Coaxial Transfer Switches

RF POWER GENERATION FOR FUTURE LINEAR COLLIDERS* 1. Introduction

Status of BESSY II and berlinpro. Wolfgang Anders. Helmholtz-Zentrum Berlin for Materials and Energy (HZB) 20th ESLS-RF Meeting

150-MW S-Band Klystron Program at the Stanford Linear Accelerator Center1

This work was supported by FINEP (Research and Projects Financing) under contract

Artisan Technology Group is your source for quality new and certified-used/pre-owned equipment

Transcription:

> High- klystrons The benchmark in scientific research State-of-the-art RF sources for your accelerator Thales has been one of the leading manufacturers of RF and microwave sources for decades, and is a trusted partner to the international scientific community. The world s most prestigious research organizations and labs count on our solutions for both fundamental and applied research. Today, our high- klystrons are still the preferred RF energy source for particle accelerators and are used in demanding configurations. Thales applies a proactive R&D policy to develop the new competencies and products needed to meet the requirements of new-generation facilities. Our ful test systems underpin the development of a range of products offering unrivaled and bandwidth. Working closely with our customers, Thales delivers custom-tailored solutions and turnkey systems, along with a full array of integration, support and on-site development services. www.thalesgroup.com

A wide range of products to cover all your TV 2022 30 MW peak/60 kw average in L-band. TH 2128 & TH 2100 60 MW peak/20 kw average in S-band. TH 2173 F & K 5 MW peak/36 kw average in S-band. High peak klystrons with RF pulse length below 50 µs Part Number Average Efficiency Gain RF Pulse duration voltage current Magnet Shielding Flange Output type GHz MW kw % db µs kv A TV 2022B 20.0 60 42 49 10.0 239 199 TH 20100 - SF6 1.300 TV 2022D 30.0 60 42 50 7.0 275 245 TH 20100 - SF6 TV 2022F 25.0 25 42 50 10.0 260 228 TH 20100 - SF6 1.500 TH 2170 20.0 10 42 49 5.0 235 215 TH 20100 - SF6 TH 2163 7.5 8 48 48 6.0 150 105 TH 20578A (3) EIA 284F SF6 TH 2163A 10.0 10 48 50 3.5 168 124 TH 20578A (3) EIA 284F SF6 TH 2128 35.0 18 43 53 5.0 280 291 TH 20700SH Varian Vacuum 2.856 TH 2128A 45.0 7 44 53 2.5 305 335 TH 20700SH Slac Vacuum TH 2128C/D 45.0 10 44 54 4.5 305 335 TH 20700SH Slac/Varian Vacuum TH 2128E 30.0 24 43 53 5.0 261 270 TH 20700SH Varian SF6 TH 2128L 60.0 9 42 54 1.5 348 410 TH 20700SH Varian Vacuum TH 2173F 5.0 36 50 50 17.0 122 84 TH 20444 (2) EIA 284F SF6 TH 2173K 5.0 36 50 50 17.0 122 84 TH 20444 (2) EIA 284F SF6 TH 2157 7.5 8 48 48 6.0 150 105 TH 20578 (3) EIA 284F TH 2157A 10.0 10 48 50 3.5 168 124 TH 20578 (3) EIA 284F SF6 or air 2.998 TH 2100 37.0 17 45 55 4.5 279 295 TH 20700SH EIA 284F SF6 TH 2100C 45.0 20 44 55 4.5 305 335 TH 20700SH EIA 284F SF6 TH 2100L 60.0 9 42 54 1.5 348 410 TH 20700SH EIA 284F SF6 TH 2132 45.0 20 44 54 4.5 305 335 TH 20700DL EIA 284F SF6 TH 2155 30.0 50 43 53 3.0 261 267 TH 20252B EIA 284F SF6 Number of RF output ports = 2 (2) Built-in shielded collector (3) Available on request

needs TH 1802 Multi klystron 10 MW peak/150 kw average at 1.3 GHz. TH 2179 2.8 MW peak up to 210 kw average at 0.352 GHz. High peak klystrons with RF long pulse (above 50 µs) Part Number Average Efficiency Gain RF Pulse duration voltage current Magnet Shielding Flange Output type GHz MW kw % db µs kv A TH 2179 2.80 10 53 42 1500 107 50.0 Built-in Built-in EIA 2300F Air 0.3520 TH 2179A 2.80 210 53 42 1500 107 50.0 Built-in Built-in EIA 2300F Air TH 2089K 1.60 144 59 42 1500 105 25.0 Built-in Built-in EIA 2300F Air 0.4025 TH 2177 2.50 200 58 45 1330 131 34.0 Built-in Built-in EIA 2100F Air 0.8050 TH 2169 0.55 50 65 50 1500 75 11.3 TH 20618 Built-in EIA 1150F Air TH 2168A 5.00 450 53 50 1500 135 70.0 TH 20614 TH 20623A EIA1150F SF6 or air TH 2104C 5.00 100 46 44 2000 125 88.0 TH 20277A - SF6 TH 2104D 5.00 250 45 46 500 126 89.0 TH 20277A - SF6 1.3000 TH 2104U 10.00 250 45 47 250 167 136.0 TH 20277A - SF6 TH 1801 10.00 150 63 47 1500 116 136.0 TH 20584 - SF6 TH 1802 10.00 150 63 47 1500 116 136.0 Built-in Built-in Air Number of RF output ports = 2

High peak klystrons / CW operation TH 2167 Klystron 300 kw CW at 401 MHz. TH 2161 Klystron 300 kw CW at 500 MHz. Part Number Efficiency Gain voltage current Magnet Flange Output type GHz kw % db kv A 0.350 TH 2089F 1100 62 40 94 19.0 Built-in EIA 2300F Atm. pressure 0.352 TH 2089B 1300 65 40 100 20.0 Built-in EIA 2300F Atm. pressure 0.401 TH 2167 300 63 37 54 8.8 Built-in 1/2 height EIA 2300F Atm. pressure TH 2161/C 180 61 40 44 6.7 Built-in EIA 1800F Atm. pressure 0.500 TH 2161A 250 63 40 49 8.1 Built-in EIA 1800F Atm. pressure TH 2161B 310 61 42 52 10.0 Built-in EIA 1800F Atm. pressure 0.500 TH 2178 800 62 40 75 17.6 Built-in DESY1800 Atm. pressure 2.450 TH 2174 50 59 48 27 3.2 TH 20049 EIA 340F Atm. pressure 4.900 TH 2166 50 50 49 26 4.3 TH 20610 UDR 48 Atm. pressure Klystron characteristics Power/Pulse length

needs RF Accessory windows Part number Average MW kw MHz Flange (vacuum side) Flange (pressure side) 325 TH 20548C 2.0 100 350 TH 20548B 750 352 TH 20548A 1000 402 TH 20616 2.5 300 EIA 2100F (2) EIA 2100F 500 TH 20536A 500 EIA 1800F (2) EIA 1800F 805 1300 2856 or 2998 2998 4899 TH 20615 2.5 300 EIA 975F EIA 975F TH 20141 20.0-30.0 25-60 TH 20617 5.0 250 Special 650 (2) TH 20698 10.0 130 Special 650 TH 20674 11.0 47 SLAC MALE EIA 284F TH 20279B 35.0 17 EIA 284F TH 20279C 35.0-45.0 17-20 TH 20279D 35.0 25 EIA 284F TH 20611 60 UDR 48 UDR 48 CW operation (2) 1/2 height The klystron environment Klystrons are high-efficiency linear amplifiers, with high gain and narrow bandwidth, designed to operate at frequencies from UHF to millimetric bandwidth. To ensure efficiency, klystrons have to be integrated in a very specific environment, demanding expertise in high-voltage operation, cooling, RF and electromagnetic radiation (X-rays). Heat removal Insulation Oil Electrical supply Ion pumps Cathode heating Electromagnet HV Anode modulating Output P out Operators Air-cooling Window Gun Radiation X-ray ECM RF Ambiance Atm. pressure Humidity Temperature Tube protection Magnetic field Water-cooling Collector Body Window Electromagnet Interfaces Mechanical Hydraulic Electrical Input Power P in Installation Dimensions Weight Easy to install Power Supply I, V Transportation Vibration Handling

Production centers focused on innovation Thales s RF and microwave sources are designed, developed and built in two production centers, certified to ISO 9001:2000 and ISO 14001. Spanning 55,000 square meters, including 3,200 square meters of clean rooms, the Thonon and Vélizy plants in France are recognized as European centers of expertise. Building on sustained relations with leading research labs, coupled with the continual expansion of our product and service range, we guarantee the long-term success of our industrial partnerships. While maintaining our R&D focus on innovative solutions, we have also enhanced our production facilities to anticipate the upcoming needs of the scientific community. For example, the recent qualification of a 3.2 MW industrial test station enables us to condition and test all RF sources, including long-pulse and very-high- tubes. A worldwide network at your service UNITED STATES Totowa, NJ SWEDEN Stockholm UNITED-KINGDOM Basingstoke FRANCE Vélizy Thales Sales offices For more information: rfms.marketing@thalesgroup.com THALES MICROWAVE & IMAGING SUB-SYSTEMS 2, rue Marcel Dassault - BP 23 78141 Vélizy-Villacoublay Cedex - France Tel: + 33 (0)1 30 70 35 00 - Fax: + 33 (0)1 30 70 35 35 ITALY Roma RUSSIA Moscow GERMANY Ulm INDIA New Delhi Thales Electron Devices S.A. - Société anonyme au capital de 30 998 925 euros - 340 723 626 RCS Versailles Siège social: 2, rue Marcel Dassault - 78140 Vélizy-Villacoublay - France SOUTH KOREA KDJ VISION - Seoul JAPAN Tokyo CHINA Shanghai S.135B/2012.03 - Crédits photos : DESY, Thales. This document cannot be considered to be a contractual specification. This information herein may be modified without notice.