ECA EIA-364-27C-2011 TP-27C MECHANICAL SHOCK (SPECIFIED PULSE) TEST PROCEDURE FOR ELECTRICAL CONNECTORS AND SOCKETS.pdf
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1、 EIA STANDARD TP-27C Mechanical Shock (Specified Pulse) Test Procedure for Electrical Connectors and Sockets EIA-364-27C (Revision of EIA-364-27B) June 2011 Electronic Components Industry Association EIA-364-27C ANSI/EIA-364-27C-2011 (R2017) Approved: June 17, 2011 Reaffirmed: February 10, 2017 NOTI
2、CE EIA Engineering Standards and Publications are designed to 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 t
3、he proper product for his particular need. Existence of such Specifications and Publications shall not in any respect preclude any member or nonmember of ECIA from manufacturing or selling products not conforming to such Specifications and Publications, nor shall the existence of such Specifications
4、 and Publications preclude their voluntary use by those other than ECIA members, whether the Specification is to be used either domestically or internationally. Specifications and Publications are adopted by ECIA in accordance with the American National Standards Institute (ANSI) patent policy. By s
5、uch action, ECIA does not assume any liability to any patent owner, nor does it assume any obligation whatever to parties adopting the Specification or Publication. This EIA Specification is considered to have International Standardization implications, but the International Electrotechnical Commiss
6、ion activity has not progressed to the point where a valid comparison between the EIA Specification and the IEC document can be made. This Specification does not purport to address all safety problems associated with its use or all applicable regulatory requirements. It is the responsibility of the
7、user of this Specification to establish appropriate safety and health practices and to determine the applicability of regulatory limitations before its use. (From Standards Proposal No. 5382.03, formulated under the cognizance of the CE-2.0 Committee on EIA National Connector and Sockets Standards)
8、Published by Electronic Components Industry Association 2017 EIA Standards where A is the acceleration amplitude and D is the pulse duration of the ideal pulse; see figure 2. The measured pulse will then be considered a nominal half-sine pulse with a nominal amplitude and duration equal to respectiv
9、e values of the corresponding ideal half-sine pulse. The duration of the measured pulse shall be taken as Dm = D(0.1A)/0.94; where D(0.1A) is the time between points at 0.1A for the faired measured acceleration pulse. EIA-364-27C Page 6 2.1.4.2 The ideal half-sine pulse An ideal half-sine accelerati
10、on pulse is given by the solid curve; see figure 2. The measured acceleration pulse shall lie within the boundaries given by the broken lines. In addition, the actual velocity change of the shock shall be within 10% of the ideal velocity change. The actual velocity change can be determined by direct
11、 measurements, or from the area under the measured acceleration curve. The ideal velocity change is equal to Vi = 2AD/pi. 2.1.4.3 Sawtooth shock pulse The sawtooth pulse shall be as indicated in figure 3. The velocity change of the faired measured pulse shall be within _+10% of the velocity change o
12、f the ideal pulse. 2.1.4.4 The ideal terminal peak sawtooth An ideal terminal peak sawtooth acceleration pulse is given by the solid line; see figure 3. The measured acceleration pulse shall be within the boundaries given by the broken lines. In addition, the actual velocity change of the shock puls
13、e shall be within 10% of the ideal value. The actual velocity change can be determined from direct measurements, or from the area under the measured acceleration curve. The ideal velocity change is equal to Vi = PD/2, where P is the peak value of acceleration, and D is the pulse duration. 3 Test spe
14、cimen 3.1 Description Unless otherwise specified in the referencing document, the test specimen shall be fully wired and mated. 3.2 Preparation The test specimen shall be mounted as specified in the referencing document. If the test specimen is normally mounted on vibration isolator, the isolators s
15、hall be functional during the test. Whenever possible, the test load shall be distributed uniformly on the test platform in order to minimize the effects of unbalanced loads. 4 Test procedure 4.1 Shock application Three shocks in each direction shall be applied along the three mutually perpendicular
16、 axes of the test specimen (18 shocks). The specified test pulse (half-sine or sawtooth pulse) shall be in accordance with figure 2 or 3, respectively, and shall have a duration and peak value in accordance with one of the test conditions shown in table 1. EIA-364-27C Page 7 Table 1 - Test condition
17、 value Test condition Peak acceleration Normal duration (D) (ms) Velocity change (Vi) (m/s : ft/s) (m/s2) (g=s) Sawtooth Half-sine H 294 30 11 2.07 : 6.8 I 294 30 11 1.62 : 5.3 A 490 50 11 3.44 : 11.3 E 490 50 11 2.68 : 8.8 B 735 75 6 2.81 : 9.2 F 735 75 6 2.20 : 7.2 C 980 100 6 3.75 : 12.3 G 980 10
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