ISA RP12 06 01-2003 Recommended Practice for Wiring Methods for Hazardous (Classified) Locations Instrumentation Part 1 Intrinsic Safety《危险(分类)场所仪表接线方法的推荐实施规程 第1部分 内在安全[代替 ISA RP12.pdf
《ISA RP12 06 01-2003 Recommended Practice for Wiring Methods for Hazardous (Classified) Locations Instrumentation Part 1 Intrinsic Safety《危险(分类)场所仪表接线方法的推荐实施规程 第1部分 内在安全[代替 ISA RP12.pdf》由会员分享,可在线阅读,更多相关《ISA RP12 06 01-2003 Recommended Practice for Wiring Methods for Hazardous (Classified) Locations Instrumentation Part 1 Intrinsic Safety《危险(分类)场所仪表接线方法的推荐实施规程 第1部分 内在安全[代替 ISA RP12.pdf(60页珍藏版)》请在麦多课文档分享上搜索。
1、 RECOMMENDED PRACTICE ISA-RP12.06.01-2003 Recommended Practice for Wiring Methods For Hazardous (Classified) Locations Instrumentation Part 1: Intrinsic Safety Approved 16 April 2003 ISA-RP12.06.01-2003 Recommended Practice for Wiring Methods for Hazardous (Classified) Locations Instrumentation Part
2、 1: Intrinsic Safety ISBN: 978-1-55617-865-8 Copyright 2003 by ISA The Instrumentation, Systems, and Automation Society. All rights reserved. Not for resale. Printed in the United States of America. No part of this publication may be reproduced, stored in a retrieval system, or transmitted in any fo
3、rm or by any means (electronic mechanical, photocopying, recording, or otherwise), without the prior written permission of the Publisher. ISA 67 Alexander Drive P.O. Box 12277 Research Triangle Park, North Carolina 27709 3 ISA-RP12.06.01-2003 Copyright 2003 ISA. All rights reserved. Preface This pre
4、face, as well as all footnotes and annexes, is included for information purposes and is not part of ISA-RP12.06.01-2003. This document has been prepared as part of the service of ISAthe Instrumentation, Systems, and Automation Societytoward a goal of uniformity in the field of instrumentation. To be
5、 of real value, this document should not be static but should be subject to periodic review. Toward this end, the Society welcomes all comments and criticisms and asks that they be addressed to the Secretary, Standards and Practices Board; ISA; 67 Alexander Drive; P. O. Box 12277; Research Triangle
6、Park, NC 27709; Telephone (919) 549-8411; Fax (919) 549-8288; E-mail: standardsisa.org. The ISA Standards and Practices Department is aware of the growing need for attention to the metric system of units in general, and the International System of Units (SI) in particular, in the preparation of inst
7、rumentation standards. The Department is further aware of the benefits to USA users of ISA standards of incorporating suitable references to the SI (and the metric system) in their business and professional dealings with other countries. Toward this end, this Department will endeavor to introduce SI
8、-acceptable metric units in all new and revised standards, recommended practices, and technical reports to the greatest extent possible. Standard for Use of the International System of Units (SI): The Modern Metric System, published by the American Society for Testing or b) apply to the use of porta
9、ble equipment, except as shown on the control drawing. 3 Definitions For purposes of this recommended practice, the following definitions apply: 3.1 approved: acceptable to the authority having jurisdiction (for additional information, see NEC Article 100). 3.2 associated apparatus: Associated Appar
10、atus: Apparatus in which the circuits are not necessarily intrinsically safe themselves, but that affect the energy in the intrinsically safe circuits and are relied on to maintain intrinsic safety. Associated apparatus may be either of the following: ISA-RP12.06.01-2003 10 Copyright 2003 ISA. All r
11、ights reserved. 1. Electrical apparatus that has an alternative-type protection for use in the appropriate hazardous (classified) location, or 2. Electrical apparatus not so protected that shall not be used within a hazardous (classified) location. FPN No. 1: Associated apparatus has identified intr
12、insically safe connections for intrinsically safe apparatus and also may have connections for nonintrinsically safe apparatus. FPN No. 2: An example of associated apparatus is an intrinsic safety barrier, which is a network designed to limit the energy (voltage and current) available to the protecte
13、d circuit in the hazardous (classified) location, under specified fault conditions. 3.3 authority having jurisdiction (AHJ): the organization, office, or individual responsible for approving equipment, materials, an installation, or a procedure. 3.4 channel: an ungrounded conductor in a grounded int
14、rinsically safe circuit, or a conductor and its reference in a galvanically isolated intrinsically safe circuit. 3.5 control drawing: Control Drawing: A drawing or other document provided by the manufacturer of the intrinsically safe or associated apparatus, or of the nonincendive field wiring appar
15、atus or associated nonincendive field wiring apparatus, that details the allowed interconnections between the intrinsically safe and associated apparatus or between the nonincendive field wiring apparatus or associated nonincendive field wiring apparatus. 3.6 corrective maintenance: any maintenance
16、activity that is not normal in the operation of equipment and requires access to the equipments interior. Such activities are expected to be performed by qualified personnel who are aware of the hazards involved. Such activities typically include locating causes of faulty performance, replacement of
17、 defective components (see 6.2.1), adjustment of internal controls, and the like. Corrective maintenance is referred to simply as maintenance in clause 6. 3.7 different intrinsically safe circuits: Different Intrinsically Safe Circuits: Intrinsically safe circuits in which the possible interconnecti
18、ons have not been evaluated and identified as intrinsically safe. 3.8 entity evaluation: a method used to determine acceptable combinations of intrinsically safe apparatus and connected associated apparatus that have not been investigated in such combination. 11 ISA-RP12.06.01-2003 Copyright 2003 IS
19、A. All rights reserved. 3.8.1 Entity parameters for intrinsically safe apparatus: C i : Total equivalent internal capacitance of the apparatus that is considered as appearing across the connection facilities of the apparatus. Iior I max : Maximum current (peak a.c. or d.c.) that can be applied to th
20、e connection facilities of the intrinsically safe apparatus circuits without invalidating intrinsic safety. The maximum input current may be different for different terminals. L i : Total equivalent internal inductance of the apparatus that is considered as appearing across the connection facilities
21、 of the apparatus. Li/Ri: The maximum value of ratio of inductance to resistance that is considered as appearing across the terminals of the intrinsically safe apparatus. Pi: Maximum power in an external intrinsically safe circuit that can be applied to the connection facilities of the apparatus. Th
22、e maximum input power may be different for different terminals. Uior Vmax : Maximum voltage (peak a.c. or d.c.) that can be applied to the connection facilities of the apparatus without invalidating the type of protection. The maximum input voltage may be different for different terminals. 3.8.2 Ent
23、ity parameters for associated apparatus: Coor Ca : Maximum capacitance in an intrinsically safe circuit that can be connected to the connection facilities of the apparatus. Io. or I sc : Maximum current (peak a.c. or d.c.) in an intrinsically safe circuit that can be taken from the connection facili
24、ties of the apparatus. Loor L a : Maximum inductance in an intrinsically safe circuit that can be connected to the connection facilities of the apparatus. Lo/Roor La/Ra: The maximum value of ratio of inductance to resistance that may be connected to the intrinsically safe circuit of the associated a
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