ISA 5 2-1976 Binary Logic Diagrams for Process Operations《工艺操作的二进制逻辑图 原标准号ANSI ISA 5 2-1976 (R1992)》.pdf
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1、Binary Logic Diagramsfor Process OperationsReaffirmed 13 July 1992ISA-5.2-1976 (R1992) Formerly ANSI/ISA-5.2-1976 (R1992)STANDARDISA The Instrumentation,Systems, andAutomation Society TMCopyright g227 1976 by the Instrument Society of America. All rights reserved. Printed in the UnitedStates of Amer
2、ica. No part of this publication may be reproduced, stored in a retrieval system, ortransmitted in any form or by any means (electronic, mechanical, photocopying, recording, orotherwise), without the prior written permission of the publisher.ISA67 Alexander DriveP.O. Box 12277Research Triangle Park,
3、 North Carolina 27709ISA-5.2-1976 (R1992)Binary Logic Diagrams for Process OperationsISBN 0-87664-331-4ISA-5.2-1976 (R 1992) 3PrefaceThis preface is included for informational purposes and is not part of ISA-5.2-1976 (R1992).This Standard has been prepared as a part of the service of ISA toward a go
4、al of uniformity in the field of instrumentation. To be 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
5、, 67 Alexander Drive, P.O. Box 12277, Research Triangle Park, NC 27709, Telephone (919) 549-8411, 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 par
6、ticular, in the preparation of instrumentation 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 Depart
7、ment will endeavor to introduce SI-acceptable metric units in all new and revised standards to the greatest extent possible. The Metric Practice Guide, which has been published by the American Society for Testing and Materials as ANSI designation Z210.1 (ASTM E380-76, IEEE Std. 286-1975), and furthe
8、r revisions, will be the reference guide for definitions, symbols, abbreviation, and conversion factors.It is the Policy of ISA to encourage and welcome the participation of all concerned individuals and interests in the development of ISA Standards. Participation in the ISA Standards making process
9、 by an individual in no way constitutes endorsement by the employer of that individual of ISA or any of the Standards which ISA develops.The system described in this Standard is intended to meet the needs of people who are concerned with the operation of process systems. The guide for the Standard w
10、as American National Standards Institute (ANSI) Standard Y32.14.1973, Graphic Symbols for Logic Diagrams, which the committee attempted to follow so far as practical for the intended users of the ISA Standard.The Committee also referred to National Electric Manufacturers Association Standards ICS 1-
11、102, Graphic Symbols for Logic Diagrams, whose symbols bear resemblance to those of the ANSI Standard, and ICS 1-103, Static Switching Control Devices, which may eventually be supplanted by ICS 1-102. Reference was also made to National Fluid Power Association Recommended Standard T.3.7.68.2, Graphi
12、c Symbols for Fluidic Devices and Circuits. In addition, numerous other industrial standards were reviewed.The following people served on the 1976 SP5.2 Committee:NAME COMPANYGeorge Platt, Chairman Bechtel Power CompanyEdward J. Blahut Procon Incorporated, Pacific OperationsSanford Chalfin Fluor Cor
13、porationLouis Costea Hunt-Wesson Foods, IncorporatedRussell C. Greer Bailey Meter CompanyRoy Lazar Carnation Company4 ISA-5.2-1976 (R 1992)Frank Mehle (deceased) Procon Incorporated, Pacific OperationGary L. Pierce Shell Oil CompanyChuck Simms Fisher Controls CompanyJohn Vance United Process Control
14、 SystemsRobert Woo Los Angeles Department of Water the logic diagram may or may not go so far as to specify the outcome if both the commands were to exist at the same time. In addition, explanatory notes may be added to the diagram to record the logic rationale.Non-logic information may also be adde
15、d, if desired, e.g., reference document identification, tag numbers, terminal markings, etc.In these ways, the diagram may provide the level of detail appropriate, for example, for communication between a designer of pneumatic circuits and a designer of electric circuits, or may provide a broad-view
16、 system-description for a plant manager.10 ISA-5.2-1976 (R 1992)3.3 The existence of a logic signal may correspond physically to either the existence or the non-existence of an instrument signal, depending on the particular type of hardware system and the circuit design philosophy that are selected.
17、* For example, a high-flow alarm may be chosen to be actuated by an electric switch whose contacts open on high flow; on the other hand, the high-flow alarm may be designed to be actuated by an electric switch whose contacts close on high flow. Thus, the high-flow condition may be represented physic
18、ally by the absence of an electric signal or by the presence of the electric signal. The Standard does not attempt to relate the logic signal to an instrument signal of any specific kind.3.4 A logic symbol that is shown in Section 4 with three inputs A, B, and C is typical for the logic function hav
19、ing any number of two or more inputs.3.5 The flow of intelligence is represented by lines that interconnect logic statements. The normal direction of flow is from left to right, or top to bottom. Arrowheads may be added to the flow lines wherever needed for clarity, and shall be added to lines whose
20、 flow is not in a normal direction.3.6 A summary of the status of an operating system may be put in the diagram wherever it is deemed useful as a reference point or landmark in the sequence.3.7 There may be misunderstanding of binary logic statements involving devices that are not recognizable as in
21、herently having only two specific alternative states. For example, if it is stated that a valve is not closed, this could mean either (a) that the valve is open fully, or (b) that the valve is simply not closed, namely, that it may be in any position from almost closed to wide open. To aid accurate
22、communication between writer and reader of the logic diagram, the diagram should be interpreted literally. Therefore, possibility (b) is the correct one.If a valve is an open-close valve, then, to avoid misunderstanding, it is necessary to do one of the following:1) Develop the logic diagram in such
23、 a way that it says exactly what is intended. If the valve is intended to be open, then it should be so stated and not be stated as being not closed.2) Have a separate note specifying that the valve always assumes either the closed or the open position.By contrast, a device such as a motor-driven pu
24、mp is either operating or stopped, barring some special situations. To say that the pump is not operating usually clearly denotes that it has stopped.The following definitions apply to devices that have open, closed, or intermediate positions. The positions stated are nominal to the extent that ther
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