DIN EN 14777-2005 Space engineering - Multipaction design and test English version EN 14777 2004《航天工程 Multipaction设计和试验》.pdf
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1、Oktober 2005DEUTSCHE NORM Normenausschuss Luft- und Raumfahrt (NL) im DINPreisgruppe 26DIN Deutsches Institut f r Normung e.V. Jede Art der Vervielf ltigung, auch auszugsweise, nur mit Genehmigung des DIN Deutsches Institut f r Normung e. V., Berlin, gestattet.ICS 49.140?=“ 9575528www.din.deXDIN EN
2、14777Raumfahrttechnik Multipaction Konzeption und Test;Englische Fassung EN 14777:2004Space engineering Multipaction design and test;English version EN 14777:2004Systmes sol et oprations Conception et test prenant en compte l effet Multipactor;Version anglaise EN 14777:2004Alleinverkauf der Normen d
3、urch Beuth Verlag GmbH, 10772 Berlin www.beuth.deGesamtumfang 72 SeitenDIN EN 14777:2005-10 2 Nationales Vorwort Die European Cooperation for Space Standardization (ECSS), eine Einrichtung zur Erstellung eines kohrenten, einheitlichen Normenwerkes zur Anwendung in allen europischen Raumfahrtprojekte
4、n, hat am 1996-11-13 vom Europischen Komitee fr Normung (CEN) das Mandat (M/237) erhalten, fr den CEN-Subsector T02 Aerospace Europische Normen (EN) auszuarbeiten. Aufgrund der zwischen ISO/TC 20/SC 14 Raumfahrt und ECSS vereinbarten A-Liaison werden die Normungsprogramme dieser Partner abgestimmt u
5、nd die Abstimmungsregeln gem Abschnitt 5.2 der Wiener Vereinbarung angewendet. Die vorliegende Norm EN 14777:2004 wurde von CEN/CS T02 auf Basis der ECSS-E-20-01 erarbeitet. EUROPEAN STANDARD NORME EUROPENNE EUROPISCHE NORM EN 14777 July 2004 ICS 49.140 English version Space engineering - Multipacti
6、on design and test Systmes sol et oprations - Conception et test prenant en compte leffet Multipactor Raumfahrttechnik Multipaction Konzeption und Test This European Standard was approved by CEN on 29 April 2004. CEN members are bound to comply with the CEN/CENELEC Internal Regulations which stipula
7、te the conditions for giving this European Standard the status of a national standard without any alteration. Up-to-date lists and bibliographical references concerning such national standards may be obtained on application to the Central Secretariat or to any CEN member. This European Standard exis
8、ts in three official versions (English, French, German). A version in any other language made by translation under the responsibility of a CEN member into its own language and notified to the Central Secretariat has the same status as the official versions. CEN members are the national standards bod
9、ies of Austria, Belgium, Cyprus, Czech Republic, Denmark, Estonia, Finland, France, Germany, Greece, Hungary, Iceland, Ireland, Italy, Latvia, Lithuania, Luxembourg, Malta, Netherlands, Norway, Poland, Portugal, Slovakia, Slovenia, Spain, Sweden, Switzerland and United Kingdom. EUROPEAN COMMITTEE FO
10、R STANDARDIZATION COMIT EUROPEN DE NORMALISATION EUROPISCHES KOMITEE FR NORMUNG Management Centre: rue de Stassart, 36 B-1050 Brussels 2004 CEN All rights of exploitation in any form and by any means reserved worldwide for CEN national Members. Ref. No. EN 14777:2004: EEN 14777:2004 (E) 2 Contents P
11、age Foreword. 5 Introduction 6 1 Scope . 7 2 Normative references . 7 3 Terms, definitions and abbreviated terms . 8 3.1 Terms and definitions. 8 3.2 Abbreviated terms 10 4 Verification 10 4.1 Verification process 10 4.2 Verification levels . 11 4.3 Verification plan 11 4.3.1 Introduction . 11 4.3.2
12、 Generation and updating . 11 4.3.3 Description 11 4.4 Verification routes 12 4.5 Classification of component type . 12 4.6 Single carrier . 13 4.6.1 General. 13 4.6.2 Margins 13 4.6.3 Route to demonstrate conformance . 14 4.7 Multi-carrier . 16 4.7.1 General. 16 4.7.2 Threshold above equivalent CW
13、peak power 16 4.7.3 Threshold below equivalent CW peak power. 16 4.7.4 Route to demonstrate conformance . 17 5 Design analyses 19 5.1 General. 19 5.2 Field analysis 19 5.3 Critical region identification 19 5.4 Multipaction sensitivity analysis. 20 5.5 Venting analysis 21 5.6 Inspection 21 6 Test con
14、ditions . 21 6.1 Cleanliness 21 6.2 Pressure. 21 6.3 Temperature 21 6.4 Frequencies. 22 6.5 Pulse duration . 22 6.5.1 General. 22 6.5.2 CW units. 22 6.5.3 Pulse units. 23 6.6 Electron seeding . 23 6.6.1 CW test. 23 6.6.2 Pulsed test. 23 6.6.3 Multi-carrier test 23 6.6.4 Seeding sources . 23 EN 14777
15、:2004 (E) 3 7 Methods of detection 24 7.1 General .24 7.2 Detection methods 24 7.3 Detection method parameters24 7.3.1 Sensitivity.24 7.3.2 Rise time.25 8 Test procedures.25 8.1 Test configurations .25 8.2 Test facility validation .25 8.3 Test execution26 8.3.1 General .26 8.3.2 Test procedure.26 8.
16、4 Acceptance criteria .27 8.4.1 General .27 8.4.2 Multi-carrier test.27 Annex A (informative) Multipaction background 28 A.1 Physics of multipaction 28 A.2 Other physical processes.29 A.3 RF operating environment29 A.4 Parallel plate multipaction35 A.5 Coaxial line multipaction 40 Annex B (informati
17、ve) Component venting 43 B.1 Introduction43 B.2 Discharge dependence on pressure43 B.3 Test example43 B.4 Venting dimensions 44 B.5 Venting hole calculations .44 B.6 Payload vacuum 44 B.7 Venting model used 44 B.8 Pumping conductance of a venting hole 45 B.9 Ultimate pressure 46 B.10 Venting experim
18、ent .48 B.11 Venting guidelines.48 Annex C (normative) Cleaning, handling, storage and contamination.50 C.1 Generic processes 50 C.2 Cleaning, handling and storage.50 C.3 Contaminants.52 Annex D (normative) Electron seeding 55 D.1 Introduction55 D.2 CW test .55 D.3 Pulsed test55 D.4 Multi-carrier te
19、st.55 D.5 Types of seeding source 57 Annex E (informative) Test methods58 E.1 Introduction58 E.2 General test methods58 E.3 Transient tests methods .62 E.4 Test facility validation .69 Bibliography70 Figures Figure 1 Routes to conformance for single carrier.15 Figure 2 Routes to conformance for mult
20、i-carrier case18 EN 14777:2004 (E) 4 Figure 3 The susceptibility zone boundaries for aluminium, copper, silver, gold and alodine 1200. 20 Figure A.1 Total secondary electron emission as a function of energy of the incident electron. 36 Figure A.2 Multipaction susceptibility zones for parallel plates
21、 of aluminum 37 Figure A.3 Multipaction thresholds for all materials studied, plotted in a single graph as labeled 42 Figure B.1 The basic venting model 45 Figure E.1 Generic close to carrier noise multipaction test site 59 Figure E.2 Principal multipaction test set-up for nulling detection method .
22、 61 Figure E.3 Test configuration (mode 1). 63 Figure E.4 Test configuration (mode 2). 64 Figure E.5 Detected envelope of a five carrier waveform . 66 Figure E.6 Charge probe. 68 Tables Table A.1 Worst case mode order for susceptible gaps for gold 31 Table A.2 Worst case mode order for susceptible g
23、aps for silver. 32 Table A.3 Worst case mode order for susceptible gaps for aluminium 33 Table A.4 Worst case mode order for susceptible gaps for alodine . 34 Table A.5 Worst case mode order for susceptible gaps for copper 35 Table A.6 Constants for the most used materials . 40 Table A.7 Critical vo
24、ltages for multipaction in 50 coaxial lines 41 Table B.1 Outgassing rate for space components used in space applications 46 EN 14777:2004 (E) 5 Foreword This document (EN 14777:2004) has been prepared by CEN. This European Standard shall be given the status of a national standard, either by publicat
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