SAE AS 5675-2012 Characterization and Requirements for New Aerospace Fiber Optic Cable Assemblies - Jumpers End Face Geometry Link Loss Measurement and Inspection《新型航空航天光缆装配特性和要求 跳.pdf
《SAE AS 5675-2012 Characterization and Requirements for New Aerospace Fiber Optic Cable Assemblies - Jumpers End Face Geometry Link Loss Measurement and Inspection《新型航空航天光缆装配特性和要求 跳.pdf》由会员分享,可在线阅读,更多相关《SAE AS 5675-2012 Characterization and Requirements for New Aerospace Fiber Optic Cable Assemblies - Jumpers End Face Geometry Link Loss Measurement and Inspection《新型航空航天光缆装配特性和要求 跳.pdf(59页珍藏版)》请在麦多课文档分享上搜索。
1、_SAE Technical Standards Board Rules provide that: “This report is published by SAE to advance the state of technical and engineering sciences. The use of this report is entirely voluntary, and its applicability and suitability for any particular use, including any patent infringement arising theref
2、rom, is the sole responsibility of the user.” SAE reviews each technical report at least every five years at which time it may be reaffirmed, revised, or cancelled. SAE invites your written comments and suggestions. Copyright 2012 SAE International All rights reserved. No part of this publication ma
3、y be reproduced, stored in a retrieval system or transmitted, in any form or by any means, electronic, mechanical, photocopying, recording, or otherwise, without the prior written permission of SAE. TO PLACE A DOCUMENT ORDER: Tel: 877-606-7323 (inside USA and Canada) Tel: +1 724-776-4970 (outside US
4、A) Fax: 724-776-0790 Email: CustomerServicesae.org SAE WEB ADDRESS: http:/www.sae.orgSAE values your input. To provide feedback on this Technical Report, please visit http:/www.sae.org/technical/standards/AS5675AEROSPACESTANDARDAS5675 Issued 2012-05 Characterization and Requirements for New Aerospac
5、e Fiber Optic Cable Assemblies -Jumpers, End Face Geometry, Link Loss Measurement, and InspectionRATIONALEAerospace end users have identified a need for beginning of life, fiber optic jumper, end face inspection and link loss measurement criteria for aerospace fiber optic cable harness assemblies.TA
6、BLE OF CONTENTS 1. GENERAL . 41.1 Purpose . 41.2 Scope 41.3 Cleaning 41.4 Applicable Documents 41.4.1 SAE Publications . 41.4.2 ANSI Publications . 41.4.3 ARINC Publications 41.4.4 IEC Publications 51.4.5 IPC-ASSOCIATION CONNECTING ELECTRONICS INDUSTRIES . 51.4.6 TIA Publications 51.4.7 U.S. Governm
7、ent Publications 51.4.8 Other Publications . 62. INSPECTION 62.1 Intent . 62.2 Apparatus 62.2.1 Hardware Classification 62.2.2 Validation/Verification Artifact . 62.3 Definition For Inspecting End Faces . 62.3.1 Zones 72.4 Definition of End Face Anomalies . 82.5 Inspection Procedure 83. INSERTION LO
8、SS / LINK LOSS TEST PROCEDURES . 93.1 Intent . 93.2 Required Equipment Conventional Insertion Loss testing . 93.2.1 Optical Power Meter (OPM) 93.2.2 Stabilized Light Source (SLS) . 93.2.3 Aerospace Measurement Quality Jumper (AMQJ) . 103.3 Launch Condition Requirements 103.3.1 Launch Condition Metho
9、ds . 10SAE AS5675 Page 2 of 59 3.4 AMQJ 103.4.1 AMQJ Maintenance and Verification 103.4.2 AMQJ Guided Probes . 113.4.3 Non-AMQJ Standalone Probes. 113.5 Measurements 123.5.1 Test Method 153.5.2 Assembly Link Loss (Attenuation) Measurements . 304. RETURN LOSS TEST PROCEDURES 464.1 Intent . 464.2 Meth
10、ods 464.3 Required Equipment . 464.4 Return Loss Measurements 475. OPTICAL CONNECTOR END FACE SPECIFICATIONS 485.1 Intent . 485.2 Objective . 485.3 End Face Geometry Measurement . 485.3.1 Importance of End Face Geometry . 485.3.2 Fiber Optic Connector End Face Geometry Measurement 495.3.3 Interferom
11、etric Microscope Types 515.3.4 Measurement Techniques and Methodologies . 515.3.5 Termini End Face Configurations . 535.3.6 Interferometry Type for Configurations . 545.4 End Face Geometry Specification 545.4.1 Key Parameter Definitions 545.4.2 Spherical Geometry Connector Requirement . 555.4.3 Flat
12、 Geometry Connector Requirement 58APPENDIX A INFORMATIVE REFERENCES 59FIGURE 1 VISUAL ACCEPTANCE CRITERIA FOR SINGLE MODE FIBER OPTIC END FACE 7FIGURE 2 VISUAL ACCEPTANCE CRITERIA FOR MULTI-MODE FIBER OPTIC END FACE 7FIGURE 3 DISPOSITION FLOW CHART 8FIGURE 4 EXAMPLE OF FIBER OPTIC AMQJ PROBE . 11FIG
13、URE 5 EXAMPLE OF FIBER OPTIC NON-AMQJ PROBE . 12FIGURE 6 CONFIGURATION 1 SETUP CONNECTOR IL OF SINGLE WAY CABLE ASSEMBLIES . 17FIGURE 7 CONFIGURATION 2 SETUP CONNECTOR IL OF SINGLE WAY CABLE ASSEMBLIES . 18FIGURE 8 CONFIGURATION 3 SETUP FOR INSERTION LOSS (IL) OF MULTI-CHANNEL CABLE ASSEMBLY . 19FIG
14、URE 9 CONFIGURATION 3 SETUP CONNECTOR IL OF MULTI-CHANNEL SIDE OFBREAKOUT ASSEMBLIES USING TEST PROBE CABLE . 21FIGURE 10 CONFIGURATION 4 SETUP CONNECTOR IL OF SINGLE-CHANNEL SIDES OFBREAKOUT ASSEMBLIES 23FIGURE 11 CONFIGURATION 5 SETUP CONNECTOR IL OF MULTI-CHANNEL ASSEMBLIES (UNLIKE CONNECTOR ENDS
15、) . 25FIGURE 12 CONFIGURATION 5 SETUP CONNECTOR IL OF MULTI-CHANNEL ASSEMBLIES USING TEST PROBE CABLE (UNLIKE CONNECTOR ENDS) 27FIGURE 13 CONFIGURATION 6 SETUP CONNECTOR IL OF MULTI-CHANNEL ASSEMBLIES (LIKE CONNECTOR ENDS) . 29FIGURE 14 CONFIGURATION 1 SETUP ASSEMBLY LINK LOSS OF SINGLE WAY CABLE AS
16、SEMBLY. 31FIGURE 15 CONFIGURATION 2 SETUP ASSEMBLY LINK LOSS OF SINGLE WAY CABLE ASSEMBLIESWITH UN-MATEABLE CONNECTORS . 32FIGURE 16 CONFIGURATION 3 SETUP ASSEMBLY LOSS OF BREAKOUT ASSEMBLY . 33FIGURE 17 CONFIGURATION 3 SETUP CONNECTOR LINK LOSS OF MULTI-CHANNEL ASSEMBLIESUSING TEST PROBE CABLE (UNL
17、IKE CONNECTOR ENDS) 35FIGURE 18 CONFIGURATION 3 SETUP ASSEMBLY LINK LOSS OF BREAKOUT ASSEMBLIES . 37SAE AS5675 Page 3 of 59 FIGURE 19 CONFIGURATION 3 SETUP CONNECTOR LINK LOSS OF MULTI-CHANNEL ASSEMBLIESUSING TEST PROBE CABLE (UNLIKE CONNECTOR ENDS) 39FIGURE 20 SETUP ASSEMBLY LINK LOSS OF MULTI-CHAN
18、NEL ASSEMBLIES (UNLIKE CONNECTORS) 41FIGURE 21 SETUP ASSEMBLY LINK LOSS OF MULTI-CHANNEL ASSEMBLIES (UNLIKE CONNECTORS) USING TEST PROBE CABLES 43FIGURE 22 SETUP LINK LOSS OF MULTI-CHANNEL ASSEMBLIES (UNLIKE CONNECTORS) . 45 FIGURE 23 SETUP: INSERTION LOSS / RETURN LOSS TEST SET . 46FIGURE 24 OPTICA
19、L PATH FOR INTERFEROMETER . 50FIGURE 25 WHITE LIGHT INTERFEROMETRY 51FIGURE 26 MEASUREMENT AREAS . 52FIGURE 27 SCHEMATIC OF KEY MEASUREMENT PARAMETERS 53FIGURE 28 TERMINI END FACE CONFIGURATIONS 54FIGURE 29 FIBER HEIGHT COORDINATE SYSTEM DEFINITION 55FIGURE 30 TYPICAL INTERFEROGRAM AND TOPOGRAPHICAL
20、 MAP OF SPHERICAL END FACE 56FIGURE 31 TYPICAL INTERFEROGRAM OF FLAT END FACE . 58FIGURE 32 EXAMPLE OF A VISUAL INSPECTION HIGH AND LOW RESOLUTION CALIBRATION ARTIFACT 59TABLE 1 INSPECTION ZONES FOR OPTICAL FIBER END FACES 7TABLE 2 ALLOWABLE DEFECTS FOR FIBER END FACES 9TABLE 3 CABLE INSERTION LOSS
21、ASSEMBLY CONFIGURATIONS . 13TABLE 4 CABLE LINK LOSS ASSEMBLY CONFIGURATIONS 14TABLE 5 INDUSTRY METHOD CROSS REFERENCE 14TABLE 6 RETURN LOSS INSTRUMENTS . 47TABLE 7 MEASUREMENT AREA DEFINITIONS . 52TABLE 8 PREFERRED MEASUREMENT TYPES 54TABLE 9 PC TERMINUS END FACE GEOMETRY REQUIREMENTS 56TABLE 10 APC
22、 TERMINUS END FACE GEOMETRY REQUIREMENTS 57TABLE 11 SPHERICAL NON-CONTACT TERMINUS END FACE GEOMETRY REQUIREMENTS . 57TABLE 12 FLAT NON-CONTACT TERMINUS END FACE GEOMETRY REQUIREMENTS 58SAE AS5675 Page 4 of 59 1. GENERAL 1.1 Purpose This document is intended to address inspection and testing of fibe
23、r optic cable assemblies at beginning of life (BOL). It is understood that the equipment described in this document is intended for use in a fabrication environment. The purpose is to develop aerospace fiber optic standards for quality and testing of; Jumpers, measurement quality, for aerospace test
24、ing (AMQJs) End face geometry, examination of termination quality Link Loss measurement definition Inspection, end face finish, acceptability, cleanliness 1.2 Scope To create a standard that instructs both supplier and user in the testing and characterization of initial build fiber optic cable assem
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