ARINC 831-2009 ELECTROMAGNETIC COMPATIBILITY (EMC) RECOMMENDED PRACTICE《电磁兼容性(EMC)建议规范》.pdf
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1、 AN DOCUMENT Prepared by AEEC Published by AERONAUTICAL RADIO, INC. 2551 RIVA ROAD, ANNAPOLIS, MARYLAND 21401-7435 ELECTROMAGNETIC COMPATIBILITY (EMC) RECOMMENDED PRACTICE ARINC REPORT 831 PUBLISHED: May 29, 2009 This document is published information as defined by 15 CFR Section 734.7 of the Export
2、 Administration Regulations (EAR). As publicly available technology under 15 CFR 74.3(b)(3), it is not subject to the EAR and does not have an ECCN. It may be exported without an export license. DISCLAIMER THIS DOCUMENT IS BASED ON MATERIAL SUBMITTED BY VARIOUS PARTICIPANTS DURING THE DRAFTING PROCE
3、SS. NEITHER AEEC, AMC, FSEMC NOR ARINC HAS MADE ANY DETERMINATION WHETHER THESE MATERIALS COULD BE SUBJECT TO VALID CLAIMS OF PATENT, COPYRIGHT OR OTHER PROPRIETARY RIGHTS BY THIRD PARTIES, AND NO REPRESENTATION OR WARRANTY, EXPRESS OR IMPLIED, IS MADE IN THIS REGARD. ARINC INDUSTRY ACTIVITIES USES
4、REASONABLE EFFORTS TO DEVELOP AND MAINTAIN THESE DOCUMENTS. HOWEVER, NO CERTIFICATION OR WARRANTY IS MADE AS TO THE TECHNICAL ACCURACY OR SUFFICIENCY OF THE DOCUMENTS, THE ADEQUACY, MERCHANTABILITY, FITNESS FOR INTENDED PURPOSE OR SAFETY OF ANY PRODUCTS, COMPONENTS, OR SYSTEMS DESIGNED, TESTED, RATE
5、D, INSTALLED OR OPERATED IN ACCORDANCE WITH ANY ASPECT OF THIS DOCUMENT OR THE ABSENCE OF RISK OR HAZARD ASSOCIATED WITH SUCH PRODUCTS, COMPONENTS, OR SYSTEMS. THE USER OF THIS DOCUMENT ACKNOWLEDGES THAT IT SHALL BE SOLELY RESPONSIBLE FOR ANY LOSS, CLAIM OR DAMAGE THAT IT MAY INCUR IN CONNECTION WIT
6、H ITS USE OF OR RELIANCE ON THIS DOCUMENT, AND SHALL HOLD ARINC, AEEC, AMC, FSEMC AND ANY PARTY THAT PARTICIPATED IN THE DRAFTING OF THE DOCUMENT HARMLESS AGAINST ANY CLAIM ARISING FROM ITS USE OF THE STANDARD. THE USE IN THIS DOCUMENT OF ANY TERM, SUCH AS SHALL OR MUST, IS NOT INTENDED TO AFFECT TH
7、E STATUS OF THIS DOCUMENT AS A VOLUNTARY STANDARD OR IN ANY WAY TO MODIFY THE ABOVE DISCLAIMER. NOTHING HEREIN SHALL BE DEEMED TO REQUIRE ANY PROVIDER OF EQUIPMENT TO INCORPORATE ANY ELEMENT OF THIS STANDARD IN ITS PRODUCT. HOWEVER, VENDORS WHICH REPRESENT THAT THEIR PRODUCTS ARE COMPLIANT WITH THIS
8、 STANDARD SHALL BE DEEMED ALSO TO HAVE REPRESENTED THAT THEIR PRODUCTS CONTAIN OR CONFORM TO THE FEATURES THAT ARE DESCRIBED AS MUST OR SHALL IN THE STANDARD. ANY USE OF OR RELIANCE ON THIS DOCUMENT SHALL CONSTITUTE AN ACCEPTANCE THEREOF “AS IS” AND BE SUBJECT TO THIS DISCLAIMER. 2009 BY AERONAUTICA
9、L RADIO, INC. 2551 RIVA ROAD ANNAPOLIS, MARYLAND 21401-7435 USA Prepared by the AEEC Specification 831 Adopted by the AEEC Executive Committee March 31, 2009 A description of the changes introduced by each supplement is included at the end of this document. ARINC REPORT 831 ELECTROMAGNETIC COMPATIBI
10、LITY (EMC) RECOMMENDED PRACTICE Published: May 29, 2009ii FOREWORD Aeronautical Radio, Inc., the AEEC, and ARINC Standards ARINC organizes aviation industry committees and participates in related industry activities that benefit aviation at large by providing technical leadership and guidance. These
11、 activities directly support aviation industry goals: promote safety, efficiency, regularity, and cost-effectiveness in aircraft operations. ARINC Industry Activities organizes and provides the secretariat for international aviation organizations (AEEC, AMC, FSEMC) which coordinate the work of aviat
12、ion industry technical professionals and lead the development of technical standards for airborne electronic equipment, aircraft maintenance equipment and practices and flight simulator equipment and used in commercial, military, and business aviation. The AEEC, AMC, and FSEMC develop consensus-base
13、d, voluntary standards that are published by ARINC and are known as ARINC Standards. The use of ARINC Standards results in substantial benefits to the aviation industry by allowing avionics interchangeability and commonality and reducing avionics cost by promoting competition. There are three classe
14、s of ARINC Standards: a) ARINC Characteristics Define the form, fit, function, and interfaces of avionics and other airline electronic equipment. ARINC Characteristics indicate to prospective manufacturers of airline electronic equipment the considered and coordinated opinion of the airline technica
15、l community concerning the requisites of new equipment including standardized physical and electrical characteristics to foster interchangeability and competition. b) ARINC Specifications Are principally used to define either the physical packaging or mounting of avionics equipment, data communicati
16、on standards, or a high-level computer language. c) ARINC Reports Provide guidelines or general information found by the airlines to be good practices, often related to avionics maintenance and support. The release of an ARINC Standard does not obligate any organization or ARINC to purchase equipmen
17、t so described, nor does it establish or indicate recognition or the existence of an operational requirement for such equipment, nor does it constitute endorsement of any manufacturers product designed or built to meet the ARINC Standard. In order to facilitate the continuous product improvement of
18、this ARINC Standard, two items are included in the back of this volume: An Errata Report solicits any corrections to the text or diagrams in this ARINC Standard. An ARINC IA Project Initiation/Modification (APIM) form solicits any recommendations for addition of substantive material to this volume w
19、hich would be the subject of a new Supplement. ARINC REPORT 831 TABLE OF CONTENTS 1.0 .1 INTRODUCTION1.1 .1 Purpose of this Document1.2 .1 Target Manufacturers and Equipment1.3 1 Scope1.4 .1 Other Design Considerations1.5 1 Organization of this Document1.6 .2 Related Documents1.6.1 .2 RTCA and EUROC
20、AE Documents2.0 3 SOURCES AND VICTIMS OF INTERFERENCE2.1 3 Categories of Devices2.1.1 .3 Intentional Emitters2.1.2 .3 Unintentional Emitters2.1.3 3 Victims2.1.4 .3 “Emission Tables”2.1.5 .5 Identification of the Environment3.0 .6 IDENTIFICATION OF COUPLING PATHS3.1 6 Types of Coupling3.1.1 .6 Common
21、 Impedance Coupling3.1.2 6 Capacitive Coupling3.1.3 6 Inductive Coupling3.1.4 .6 Electromagnetic Coupling3.2 7 Methods to Analyze the Coupling3.2.1 7 Current Analysis3.2.2 8 Switched Current Analysis4.0 10 DECOUPLING MEASURES4.1 10 List of Measures4.1.1 .10 General Advice4.1.2 .10 Cabling Inside and
22、 Outside the LRU4.1.3 .12 Grounding/Bonding4.1.4 .13 Shielding4.1.5 .15 Filtering4.1.6 .16 Different Types of Filters4.2 .17 Application of Exemplary Measures/Solutions for Exemplary Problems4.2.1 17 Solutions for Coupling by Common Grounds or Common Power Source (Common Impedance Coupling)4.2.2 21
23、Solutions to Minimize Crosstalk4.2.3 21 Solutions to Minimize Wire-to-Circuitry Coupling4.2.4 .21 Solutions to Minimize Circuitry-to-Circuitry Field Coupling4.2.5 .22 Zone Concept4.2.6 .24 Selection of an Appropriate Frequency4.2.7 .26 Shielding Efficiency of Casings with Apertures (see Appendix E 3
24、)4.3 .32 Array of Sources, Victims and Measures5.0 .34 DETAILED EXAMPLES INSULATED GATE BIPOLAR TRANSISTORS (IGBTS)/DESIGN MEANS AND APPLICATIONS5.1 .34 Keeping the Loop Small in Power Frequency Converters5.1.1 34 Findings in EMC Test (see RTCA DO-160)5.1.2 .34 Root Cause5.1.3 .35 Sub-Optimal Soluti
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