ECA EIA-364-41E-2010 TP-41E Cable Flexing Test Procedure for Electrical Connectors《TP-41E型电连接器电缆弯曲性能的试验步骤》.pdf
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1、 EIA STANDARD TP-41E CABLE FLEXING TEST PROCEDURE FOR ELECTRICAL CONNECTORS (Revision of EIA-364-41D) EIA-364-41E JANUARY 2010 ANSI/EIA-364-41E-2010 Approved: January 14, 2010 EIA-364-41E EIA Standards Electronic Components Association NOTICE EIA Engineering Standards and Publications are designed t
2、o serve the public interest through eliminating misunderstandings between manufacturers and purchasers, facilitating interchangeability and improvement of products, and assisting the purchaser in selecting and obtaining with minimum delay the proper product for his particular need. Existence of such
3、 Standards and Publications shall not in any respect preclude any member or nonmember of EIA from manufacturing or selling products not conforming to such Standards and Publications, nor shall the existence of such Standards and Publications preclude their voluntary use by those other than EIA membe
4、rs, whether the standard is to be used either domestically or internationally. Standards and Publications are adopted by EIA in accordance with the American National Standards Institute (ANSI) patent policy. By such action, EIA does not assume any liability to any patent owner, nor does it assume an
5、y obligation whatever to parties adopting the Standard or Publication. This EIA Standard is considered to have International Standardization implication, but the International Electrotechnical Commission activity has not progressed to the point where a valid comparison between the EIA Standard and t
6、he IEC document can be made. This Standard does not purport to address all safety problems associated with its use or all applicable regulatory requirements. It is the responsibility of the user of this Standard to establish appropriate safety and health practices and to determine the applicability
7、of regulatory limitations before its use. (From Standards Proposal No. 5180 formulated under the cognizance of the CE-2.0 National Connector and Socket Standards Committee) Published by: ELECTRONIC COMPONENTS ASSOCIATION 2010 EIA Standards and Technology Department 2500 Wilson Boulevard Suite 310 Ar
8、lington, VA 22201 PRICE: Please call: Global Engineering Documents, USA and Canada (1-800-854-7179) http:/ All rights reserved Printed in U.S.A. PLEASE ! DONT VIOLATE THE LAW! This document is copyrighted by the EIA and may not be reproduced without permission. Organizations may obtain permission to
9、 reproduce a limited number of copies through entering into a license agreement. For information, contact: Global Engineering Documents 15 Inverness Way East Englewood, CO 80112-5704 or call USA and Canada (1-800-854-7179), International (303-397-7956) i CONTENTS Clause Page 1 Introduction . 1 1.1 S
10、cope . 1 1.2 Potential failure modes . 1 2 Test resources . 1 2.1 Equipment . 1 3 Test specimen 2 3.1 Description 2 3.2 Preparation 2 4 Test procedure . 3 4.1 Test condition I, round jacketed cable 3 4.2 Test condition II, flat cable . 3 4.3 Final measurement 4 5 Details to be specified . 4 6 Test d
11、ocumentation . 5 Figure 1 Circular cable flexing test setup 6 2 Flat cable flexing methods 7 Annex A Previous MIL-STD-1344 designations (Informative) A-1 ii (This page left blank) iii EIA-364-41E Page 1 TEST PROCEDURE No. 41E CABLE FLEXING TEST PROCEDURE FOR ELECTRICAL CONNECTORS (From EIA Standards
12、 Proposal No. 5180, formulated under the cognizance EIA CE-2.0 Committee on National Connector Standards, and previously published in EIA-364-41D.) 1 Introduction 1.1 Scope This standard establishes a method to determine the effectiveness of round jacketed cable to connector strain relief seal, or f
13、lat cable to connector strain relief seal or interface to withstand strain under repeated alternating cable-flexing stresses as experienced in use with molded or mechanical backshell cable strain-relief designs commonly used with electrical connectors. 1.2 Potential failure modes 1.2.1 Damage to the
14、 cable to connector strain relief seal (including molded boots and mechanical strain reliefs) or cable jacket that could allow undesired substances (air, water, etc.) to enter, and to further deteriorate the seal or jacket, ultimately impairing the effectiveness of either or both. 1.2.2 Weakening or
15、 destruction of conductor to contact joint(s) resulting in improper or defective electrical performance. 1.2.3 Intermittent or complete shorting between conductors during and after test. 1.2.4 Evidence of discontinuity between conductors during and after test. 2 Test resources 2.1 Equipment 2.1.1 Te
16、st condition I, round jacketed cable 2.1.1.1 Apparatus capable of applying forces to a molded boot or mechanical strain relief and connector assembly, so as to cause such assembly to be flexed in a plane, through 180 arc, alternately from a position 90 from the vertical on one side to a position 90
17、from the vertical on the other side, at an adjustable frequency of 12 to 14 complete cycles (of 360 total traverse) per minute; see figure 1, unless otherwise specified in the referencing document. EIA-364-41E Page 2 2.1.1.2 Roller (or rolls): Two smooth, cylindrical, equal-diameter steel, fixed pos
18、ition. Diameter of the rollers shall be approximately but not less than 2-1/2 times the maximum outside diameter of the cable jacket for diameters less than 20 millimeters (0.8 inch), unless otherwise specified in the referencing document. For 24 AWG conductors or smaller the roller diameters shall
19、be specified in the referencing document. 2.1.1.3 Equipment for checking the electrical continuity of the conductor-to-contact joints, prior to, during, and subsequent to testing. 2.1.1.4 Equipment, such as magnifiers (approximately 3X) for examining cable-to-plug seal or cable jacket prior to and s
20、ubsequent to testing. 2.1.2 Test condition II, flat cable 2.1.2.1 A fixture capable of gripping the cable 305 millimeters (12 inches) from the connector with uniform tension of 350 Newtons/meter 20 Newtons/meter (2.0 pounds/inch 0.1 pound/inch) of cable width and capable of moving either the cable o
21、r connector through an arc of 140 10; see figure 2, method 2, unless otherwise specified in the referencing document. 2.1.2.2 Equipment capable of monitoring current of 100 milliamperes and to indicate a discontinuity of 1 microsecond or longer interruption of current flow. 3 Test specimen 3.1 Descr
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