ISA 37 8-1982 Specifications and Tests for Strain Gage Force Transducers《应变计式测力传感器的规范和试验 原标准号ISA-S37 8-1982 (R1995)》.pdf
《ISA 37 8-1982 Specifications and Tests for Strain Gage Force Transducers《应变计式测力传感器的规范和试验 原标准号ISA-S37 8-1982 (R1995)》.pdf》由会员分享,可在线阅读,更多相关《ISA 37 8-1982 Specifications and Tests for Strain Gage Force Transducers《应变计式测力传感器的规范和试验 原标准号ISA-S37 8-1982 (R1995)》.pdf(34页珍藏版)》请在麦多课文档分享上搜索。
1、Specifications and Tests for Strain Gage ForceTransducersReaffirmed 29 September 1995ISA37.81982 (R1995)Formerly ISAS37.81982 (R1995)STANDARDISA The Instrumentation,Systems, andAutomation Society TMCopyright 1982 by the Instrument Society of America. All rights reserved. Printed in the UnitedStates
2、of America. 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 Triangl
3、e Park, North Carolina 27709ISA-37.8-1982 (R1995) Specifications and Tests for Strain Gage Force TransducersISBN 0-87664-381-0ISA-S37.8-1982 (R1995) 3PrefaceThis preface, as well as all footnotes and annexes, is included for informational purposes and is not part of ISA-37.8-1982 (R1995).This Standa
4、rd has been prepared as a part of the service of ISA, the international society for measurement and control, toward a goal 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 wel
5、comes 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 Park, NC 27709; Telephone: (919) 549-8411; Fax: (919) 549-8288; E-mail: standardsisa.org.The ISA Standards and Practices Depar
6、tment 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 instrumentation standards, recommended practices, and technical reports. The Department is further aware of the benefits to USA u
7、sers of ISA Standards of incorporating suitable references to the SI (and the metric system) in their business and professional dealings with other countries. Towards this end, this Department will endeavor to introduce SI and acceptable metric units in all new and revised standards to the greatest
8、extent possible. The Metric Practice Guide, which has been published by the Institute of Electrical and Electronics Engineers as ANSI/IEEE Std. 268-1992, and future revisions, will be the reference guide for definitions, symbols, abbreviations, and conversion factors.It is the policy of ISA to encou
9、rage and welcome the participation of all concerned individuals and interests in the development of ISA standards, recommended practices, and technical reports. Participation in the ISA standards making process by an individual in no way constitutes endorsement by the employer of that individual, of
10、 the ISA, or of any of the standards which ISA develops.This Standard is intended as a guide for technical personnel at user facilities as well as by manufacturers technical and sales personnel whose duties include specifying, calibrating, testing, or showing performance characteristics of strain-ga
11、ge linear accelerometers. By basing users specifications as well as technical advertising and reference literature on this Standard, or by referencing portions thereof, as applicable, a clear understanding of the users needs or of the transducers performance capabilities, and of the methods used for
12、 evaluating or proving performance, will be provided. Adhering to the specification outline, terminology and procedures shown will not only result in simple, but also complete specifications; it will also reduce design time, procurement lead time, and labor, as well as material costs. Of major impor
13、tance will be the reduction of qualification tests resulting from use of a commonly accepted test procedure and uniform data presentation.The development of this Standard was initiated as the result of a survey conducted in December 1960. A total of 240 questionnaires was sent out to transducer user
14、s and manufacturers. A strong majority indicated in their replies a need for transducer standardization. As strain-gage force transducers were one of the types shown to be most in need of standardization, a Subcommittee, SP37.8, was formed. To provide a coordinated document, this committee was compo
15、sed of representatives from government, user and manufacturer categories. This Standard was then processed over several mail-review and revision cycles until a consensus of reviewers was reached.4 ISA-S37.8-1982 (R1995)The following individuals served on the 1975 SP37.8 committee:NAME COMPANYJ. J. E
16、lengo, Jr. Chairman Revere Corporation of AmericaP. F. Fuselier Lawrence Radiation LaboratoryR. E. Gorton Pratt bonded or unbonded, wire or foil; Semiconductor; bonded or unbondedd) Location of Strain-Gage Mounted directly on force sensing element or mounted on auxiliary member activated by force se
17、nsing element12 ISA-S37.8-1982 (R1995)e) Number of Active Strain-Gage Bridge Arms (elements)f) One, Two-arm active, Four-arm bridgeg) Number of Strain-Gage Bridges h) Mounting Surface Requirements4.1.3 Basic electrical design characteristicsThe following electrical design characteristics shall be li
18、sted. They are applicable at “ambient conditions“ as specified in 4.2.4.1.3.1 Excitation* Expressed as “_ volts dc“ or “_ volts rms at _ Hz,“ or, expressed as “_ mA dc“ or “_ mA rms at _ Hz.“ Preferred values of voltage 5, 10, 15, 20, and 28 volts.4.1.3.2 Maximum excitation* Expressed as “ _ volts d
19、c“ or “_ volts rms at _ Hz,“ or, expressed as “_ mA dc“ or “_ mA rms at _ Hz,“ and defined as the maximum value of excitation voltage that will not permanently damage the transducer.4.1.3.3 Input impedance* Expressed as “_ _ ohms at _ _ Hz“ and “_C (F).“ If impedance is resistive, specify “dc.“ NOTE
20、 Output terminals are to be open-circuited for this measurement.4.1.3.4 Output impedance* Expressed as “ _ _ ohms at _ _ Hz“ and “_ C(F) .“ If impedance is resistive, specify “dc.“ NOTE If input terminals are to be short-circuited for this measurement, so specify.4.1.3.5 Electrical connectionsWhethe
21、r the electrical termination is by means of a connector or a cable, the pin designation or wire color code shall conform to the following:*Defined in ISA-S37.1ISA-S37.8-1982 (R1995) 13:NOTES1. The output polarities indicated on the above wiring diagram apply when an increasing force (compression or
22、tension) is applied to the transducer. For universal force transducers, the indicated polarities apply when the tension force is applied to the transducer; a compression force will produce a negative output.2. For shielded transducers, pins 5, 7, and 9 shall be shield terminals for 4, 6, and 8 wire
23、systems, respectively.3. Type connection: Solder or weld.4.1.3.6 Insulation resistance Expressed as “_ megohms at _ volts dc at _ C(F) between all terminals or leads connected in parallel, and the transducer case.“4.1.4 Supplemental electrical design characteristicsListing of the following design ch
24、aracteristics is optional.4.1.4.1 Shunt calibration resistor(s) Expressed as “_ _ ohms for _ % _% of full scale output at _C(F).“NOTE The terminals across which the resistor(s) is (are) to be placed shall be specified if the resistor(s) is (are) listed.12 34W= WHITER=REDW-R = WHITE-REDW-G = WHITE-GR
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