ITU-T K 82-2010 Characteristics and ratings of solid-state self-restoring overcurrent protectors for the protection of telecommunications installations (Study Group 5)《用于保护通讯设备的固态自.pdf
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1、 International Telecommunication Union ITU-T K.82TELECOMMUNICATION STANDARDIZATION SECTOR OF ITU (05/2010) SERIES K: PROTECTION AGAINST INTERFERENCE Characteristics and ratings of solid-state, self-restoring overcurrent protectors for the protection of telecommunications installations Recommendation
2、 ITU-T K.82 Rec. ITU-T K.82 (05/2010) i Recommendation ITU-T K.82 Characteristics and ratings of solid-state, self-restoring overcurrent protectors for the protection of telecommunications installations Summary Recommendation ITU-T K.82 defines the basic requirements and parameters of solid-state, s
3、elf-restoring overcurrent protectors (OCPs) for the protection of telecommunication installations (for example, exchange equipment, access equipment, telecommunication lines and subscriber or customer equipment). This Recommendation should be used for the harmonization of existing or future specific
4、ations issued by solid-state, self-restoring overcurrent protector manufacturers, telecommunication equipment manufacturers, administrations or network operators. History Edition Recommendation Approval Study Group 1.0 ITU-T K.82 2010-05-29 5 Keywords CPTC, ECL, overcurrent protection, PPTC, PTC, se
5、lf-restoring, surge protective component, surge protective device, thermistor. ii Rec. ITU-T K.82 (05/2010) FOREWORD The International Telecommunication Union (ITU) is the United Nations specialized agency in the field of telecommunications, information and communication technologies (ICTs). The ITU
6、 Telecommunication Standardization Sector (ITU-T) is a permanent organ of ITU. ITU-T is responsible for studying technical, operating and tariff questions and issuing Recommendations on them with a view to standardizing telecommunications on a worldwide basis. The World Telecommunication Standardiza
7、tion Assembly (WTSA), which meets every four years, establishes the topics for study by the ITU-T study groups which, in turn, produce Recommendations on these topics. The approval of ITU-T Recommendations is covered by the procedure laid down in WTSA Resolution 1. In some areas of information techn
8、ology which fall within ITU-Ts purview, the necessary standards are prepared on a collaborative basis with ISO and IEC. NOTE In this Recommendation, the expression “Administration“ is used for conciseness to indicate both a telecommunication administration and a recognized operating agency. Complian
9、ce with this Recommendation is voluntary. However, the Recommendation may contain certain mandatory provisions (to ensure, e.g., interoperability or applicability) and compliance with the Recommendation is achieved when all of these mandatory provisions are met. The words “shall“ or some other oblig
10、atory language such as “must“ and the negative equivalents are used to express requirements. The use of such words does not suggest that compliance with the Recommendation is required of any party. INTELLECTUAL PROPERTY RIGHTS ITU draws attention to the possibility that the practice or implementatio
11、n of this Recommendation may involve the use of a claimed Intellectual Property Right. ITU takes no position concerning the evidence, validity or applicability of claimed Intellectual Property Rights, whether asserted by ITU members or others outside of the Recommendation development process. As of
12、the date of approval of this Recommendation, ITU had not received notice of intellectual property, protected by patents, which may be required to implement this Recommendation. However, implementers are cautioned that this may not represent the latest information and are therefore strongly urged to
13、consult the TSB patent database at http:/www.itu.int/ITU-T/ipr/. ITU 2010 All rights reserved. No part of this publication may be reproduced, by any means whatsoever, without the prior written permission of ITU. Rec. ITU-T K.82 (05/2010) iii CONTENTS Page 1 Scope 1 2 References. 1 3 Definitions 3 3.
14、1 Terms defined elsewhere 3 3.2 Terms defined in this Recommendation . 3 4 Abbreviations, acronyms and symbols . 4 5 Storage conditions 5 6 Electrical requirements . 5 6.1 resistance, R 5 6.2 hold current, Ih5 6.3 trip current, It5 6.4 time-to-trip, ttrip. 6 6.5 resistance 1 h after tripping, R1for
15、polymer PTC thermistors . 7 6.6 reset voltage, Vresetfor ECL 7 6.7 impulse resistance, Rimpfor ceramic PTC thermistors . 8 6.8 Impulse voltage withstand 8 6.9 AC power fault . 8 6.10 Impulse endurance test (life test) 9 6.11 AC endurance test (PTC thermistor) (life test) . 9 7 Test methods . 9 7.1 r
16、esistance, R 10 7.2 hold current, Ih10 7.3 trip current, It10 7.4 time-to-trip, ttrip. 11 7.5 resistance 1 h after tripping, R1, for polymer PTC thermistor 12 7.6 reset voltage, Vresetfor ECL 12 7.7 impulse resistance, Rimpat Vimpfor ceramic PTC thermistors 12 7.8 Impulse voltage withstand 13 7.9 AC
17、 power fault tests . 14 7.10 Impulse endurance test (life test) 14 7.11 AC endurance test (life test) . 14 8 Environment tests . 14 8.1 Robustness of terminations . 14 8.2 Solderability . 15 8.3 Resistance to soldering heat . 16 8.4 Vibration . 16 8.5 Bump 16 iv Rec. ITU-T K.82 (05/2010) Page 8.6 Ra
18、pid changes of temperature 17 8.7 Climatic sequence . 17 8.8 Damp heat, steady state 17 8.9 Fire hazard 17 8.10 Solvent resistance of marking 18 8.11 Component solvent resistance 18 9 Informative characteristics 18 9.1 Hold current variation with temperature 18 9.2 Trip-time variation with fault cur
19、rent value for PTC thermistor OCPs . 18 9.3 Resistance recovery after a trip event for PPTC thermistor OCPs . 19 10 Identification . 19 10.1 Marking 19 10.2 Documentation . 20 11 Ordering information 20 Bibliography. 21 Rec. ITU-T K.82 (05/2010) v Introduction Unlike fuses and heat coils, self-resto
20、ring overcurrent protectors (OCPs) automatically reset after the end of the overcurrent condition without the need for manual intervention, generally after power is removed at the end of the overcurrent. All the OCPs covered are solid-state. Having no moving parts, these OCPs are at least four times
21、 more reliable than thermal circuit breakers and six times more reliable than mechanical disk switches. The current reducing action is for the normally low (untripped) OCP resistance to transition to a very high tripped resistance value, which greatly reduces the circuit current flow. The positive t
22、emperature coefficient (PTC) thermistor OCPs transition is caused by the component body reaching a critical temperature. The body temperature rise is caused by the i2R heating of the overcurrent flowing through the component. Being thermally operated, PTC thermistor OCPs generally do not operate for
23、 short duration lightning currents, but will operate for AC overcurrents caused by power faults. Electronic current limiter (ECL) OCPs operate on a preset current threshold level and will reduce both AC and lightning overcurrents. Under lightning surge conditions, both OCP types assist in the coordi
24、nation function. Many of the performance tests and values can be applied to the three types of OCP technology. Some tests are specific to OCP used in SPDs (surge protective devices) or in equipment connected to an SPD and others to OCPs used in equipment. Differences between technologies mean that s
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