ARINC-628P6-2002.pdf
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1、 CABIN EQUIPMENT INTERFACES PART 6 FIBER OPTIC CABLE ASSEMBLY GENERAL SPECIFICATION ARINC SPECIFICATION 628P6 PUBLISHED: FEBRUARY 28, 2002 AN DOCUMENT Prepared by AIRLINES ELECTRONIC ENGINEERING COMMITTEE Published by AERONAUTICAL RADIO, INC. 2551 RIVA ROAD, ANNAPOLIS, MARYLAND 21401 This document i
2、s based on material submitted by various participants during the drafting process. Neither AEEC 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
3、or implied, is made in this regard. Any use of or reliance on this document shall constitute an acceptance thereof “as is” and be subject to this disclaimer. -,-,- Copyright 2002 by AERONAUTICAL RADIO, INC. 2551 Riva Road Annapolis, Maryland 21401-7465 USA ARINC SPECIFICATION 628P6 CABIN EQUIPMENT I
4、NTERFACES, PART 6 FIBER OPTIC CABLE ASSEMBLY GENERAL SPECIFICATION Published: February 28, 2002 Prepared by the Airlines Electronic Engineering Committee Specification 628P6Adopted by the Airlines Electronic Engineering Committee:September 5, 2001 Specification 628P6Adopted by the Industry: December
5、 5, 2001 FOREWORD Activities of AERONAUTICAL RADIO, INC. (ARINC) and the Purpose of ARINC Reports and Specifications Aeronautical Radio, Inc. is a corporation in which the United States scheduled airlines are the principal stockholders. Other stockholders include a variety of other air transport com
6、panies, aircraft manufacturers and non-U.S. airlines. Activities of ARINC include the operation of an extensive system of domestic and overseas aeronautical land radio stations, the fulfillment of systems requirements to accomplish ground and airborne compatibility, the allocation and assignment of
7、frequencies to meet those needs, the coordination incident to standard airborne communications and electronics systems and the exchange of technical information. ARINC sponsors the Airlines Electronic Engineering Committee (AEEC), composed of airline technical personnel. The AEEC formulates standard
8、s for electronic equipment and systems for the airlines. The establishment of Equipment Characteristics is a principal function of this Committee. It is desirable to reference certain general ARINC Specifications or Report which are applicable to more than one type of equipment. These general Specif
9、ications and Reports may be considered as supplementary to the Equipment Characteristics in which they are referenced. They are intended to set forth the desires of the airlines pertaining to components and general design, construction and test criteria, in order to insure satisfactory operation and
10、 the necessary interchangeability in airline service. The release of a Specification or Equipment Characteristics should not be construed to obligate ARINC or any airline insofar as the purchase of any components or equipment is concerned. An ARINC Report ( Specification or Characteristic) has a two
11、fold purpose, which is: (1)To indicate to the prospective manufacturers of airline electronic equipment the considered opinion of the airline technical people, coordinated on an industry basis, concerning requisites of new equipment, and (2)To channel new equipment designs in a direction which can r
12、esult in the maximum possible standardization of those physical and electrical characteristics which influence interchangeability of equipment without seriously hampering engineering initiative. ii -,-,- ARINC SPECIFICATION 628 PART 6 TABLE OF CONTENTS ITEMSUBJECTPAGE iii 1.0INTRODUCTION1 1.1Scope1
13、1.2Connector Types1 1.2.1Physical Contact Contact and Fiber (Type A)1 1.2.2Expanded Beam (Type B)1 1.3Fiber/Cable Type1 1.3.1Optical Fiber Physical Parameters1 2.0REFERENCES2 2.1Applicable Documents and Drawings2 2.1.1General2 2.1.2Specification Precedence2 2.1.3Reference Documents2 3.0GENERAL DESIG
14、N PROVISIONS4 3.1Cable Assembly Design Provisions4 3.1.1Service Life4 3.1.2Interchangeability/Intermountability4 3.1.3Workmanship4 3.1.4Identification Provisions4 3.1.4.1Purchaser Required Identification4 3.1.4.2Supplier Required Identification4 3.1.4.3Identification of Individual Fibers4 3.1.4.4Con
15、nector Identification4 3.1.5Cable Assembly Description4 3.1.5.1Pictorial Diagram4 3.1.6Envelope Provisions4 3.1.6.1Connectors4 3.1.6.2Fiber Optic Cable4 3.1.7Weight Provisions4 3.1.8Fungus5 3.2Cable Assembly Performance Provisions5 3.2.1Safety Provisions5 3.2.1.1Fire Resistance5 3.2.1.2Smoke and Tox
16、icity5 3.2.2Optical Performance5 3.2.2.1Launch Conditions5 3.2.2.1.1Intent5 3.2.2.1.2Procedure for LED Based System5 3.2.2.1.2.1Test Equipment Requirements5 3.2.2.1.2.1.1Launch Condition Simulator (see Section 3.2.2.1.2.2.1)5 3.2.2.1.2.1.2Optical Power Detector6 3.2.2.1.2.2Launch System Configuratio
17、n6 3.2.2.1.2.2.1Launch Condition Simulator6 3.2.2.2Golden Cables6 3.2.2.3Insertion Loss6 3.2.2.4Attenuation6 3.2.2.5Transmittance Change6 3.2.2.6Circuit Discontinuities6 3.2.2.7Return Loss6 3.2.2.8Connector Endface Profile6 3.2.3Thermal Tolerance6 3.2.3.1Temperature Rating6 3.2.3.2Temperature Cyclin
18、g7 3.2.3.3Temperature Life7 3.2.3.4Thermal Shock7 3.2.4Mechanical Shock7 3.2.4.1Standard Shock7 3.2.4.2Impact Shock7 3.2.5Vibration7 3.2.5.1Short Term Vibration7 3.2.5.2Long Term Vibration8 3.2.6Pressure Tolerance8 3.2.7Humidity Tolerance8 3.2.8Fluid Immersion8 -,-,- ARINC SPECIFICATION 628 PART 6 T
19、ABLE OF CONTENTS ITEMSUBJECTPAGE iv 3.3Connector Design Provisions8 3.3.1Connector Intermateability Dimensions8 3.3.2Insert Alignment (Type B Connector)8 3.3.3Optical Interface Cleanability8 3.3.3.1Connector Type A8 3.3.3.2Connector Interface Type B8 3.3.4Terminus Removal8 3.3.5Repairability8 3.3.6C
20、onnector Sealing9 3.3.7Shell Design9 3.3.8Screw Threads9 3.3.9Polarization of Connector Shells9 3.3.10Coupling Mechanism9 3.3.11Backshells9 3.3.12Stowage Receptacle9 3.3.13Tools9 3.4Connector Performance Provisions9 3.4.1Terminus Insertion and Removal Forces9 3.4.2Cable Retention9 3.4.3External Bend
21、ing Moment9 3.4.4Engage/Disengage Forces10 3.4.5Maintenance Aging10 3.4.6Strain Relief Twist10 3.4.7Cable Seal Flexing10 3.4.8Mating Durability10 3.4.9Backshell and Accessory Attachment10 3.4.10Sand and Dust10 3.4.11Altitude Immersion10 3.4.12Salt Spray (Corrosion)11 3.5Cable Design Provisions11 3.5
22、.1Cable Construction11 3.5.2Color11 3.5.3Strength Member11 3.5.4Jacket Material11 3.6Cable Performance Provisions11 3.6.1Cable Bend Radius11 3.6.2Durability of Product Identification11 3.6.3Finished Cable Tensile Strength and Elongation11 3.6.4Cable Flexibility11 3.6.5Impact12 3.6.6Accelerated Aging
23、12 3.6.7Cable Bend12 3.6.8Temperature Endurance12 3.6.9Low and High Temperature Cable Bend12 3.6.10Flexure Endurance12 3.6.11Humidity Resistance13 3.6.12Cable Blocking13 3.6.13Cable Freeze13 3.6.14Cable Clamping13 3.6.15Cable-to-Cable Abrasion Resistance13 3.6.16Jacket Tensile Strength and Elongatio
24、n13 4.0QUALITY ASSURANCE PROVISIONS15 4.1General Quality Assurance Provisions15 4.1.1Methods of Examination and Test15 4.1.2Test Conditions15 4.2Qualification Provisions15 4.2.1Assembly Level Qualification15 4.2.2Alternative Qualification Methods15 4.2.3Qualification Test Procedure15 4.2.4Number of
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