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JJF 1509-2015 English PDF

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JJF 1509-2015: Program of Pattern Evaluation of Pressure Transducer
Status: Valid
Standard IDUSDBUY PDFLead-DaysStandard Title (Description)Status
JJF 1509-20151039 Add to Cart 7 days Program of Pattern Evaluation of Pressure Transducer Valid

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Basic data

Standard ID: JJF 1509-2015 (JJF1509-2015)
Description (Translated English): Program of Pattern Evaluation of Pressure Transducer
Sector / Industry: Metrology & Measurement Industry Standard
Classification of Chinese Standard: A51
Classification of International Standard: 17.1
Word Count Estimation: 45,497
Date of Issue: 2015-01-30
Date of Implementation: 2015-04-30
Quoted Standard: JJG 860-1994; GB/T 2423.5-1995; GB/T 2423.10-2008; GB/T 7665-1995; GB/T 15478-1995; GB/T 17214.3-2000; GB/T 17626.3-2005; GB/T 18806-2002
Regulation (derived from): The State Administration of Quality Supervision, Inspection and Quarantine Announcement 2015 No. 19
Issuing agency(ies): General Administration of Quality Supervision, Inspection and Quarantine
Summary: This Standard applies to (-0.1 ~ 500) MPa resistive strain gauge pressure sensor (static) (hereinafter referred to as the sensor) pattern evaluation.

JJF 1509-2015: Program of Pattern Evaluation of Pressure Transducer

---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
Program of Pattern Evaluation of Pressure Transducer People's Republic of China National Metrology Technical Specifications Resistance strain gauge type pressure sensor evaluation outline Issued on. 2015-01-30 2015-04-30 implementation The State Administration of Quality Supervision, Inspection and Quarantine released Strain gauge pressure sensor Type Evaluation Outline Focal point. the National Technical Committee of pressure measurement The main drafting units. Shandong Institute of Metrology Shaanxi Provincial Institute of Metrology Metrology hospital in Guizhou Province Participated in the drafting. Hao Grid Group Co., Ltd. This outline commissioned the National Technical Committee of pressure measurement shall be interpreted The main drafters of this specification. Ma Kun (Shandong Province Institute of Metrology) Zhang Shuai (Shandong Province Institute of Metrology) Wang Hongyan (Shaanxi Provincial Institute of Metrology) Song Yong (Shandong Province Institute of Metrology) Li Qian (Guizhou Metrology Institute) Drafters participate. Wu Hao (Hao Grid Group Co., Ltd.)

table of Contents

Introduction (Ⅲ) 1 Scope (1) 2. References (1) 3 Terms and Definitions (1) 3.1 thermal hysteresis (1) 3.2 thermal zero offset (1) 3.3 Thermal sensitivity drift (1) 4 Overview (1) 5 legal management requirements (2) 5.1 units of measurement (2) 5.2 accuracy class (2) 5.3 legal metrology marking and identification of measuring instruments (2) 5.4 External structural design requirements (2) Technical data submitted 5.5 (2) 5.6 Experimental Prototype (2) 6 measurement requirements (3) 6.1 Indication error (3) 6.2 repeatability error (3) Hysteresis 6.3 (3) 6.4 Linearity error (3) 7 General technical requirements (3) 7.1 normal operating conditions (3) 7.2 Reference Condition (3) 7.3 Appearance (4) 7.4 Electrical Properties (4) 7.5 Effect of temperature (4) 7.6 Effect of heat (5) 7.7 Zero drift (5) 7.8 external magnetic field (5) 7.9 high-frequency radiation interference (5) 7.10 Vibration (5) 7.11 impact (5) 7.12 overload (5) 7.13 Acceleration working life (5) 7.14 mounting position effects (6) 7.15 static pressure effects (only for differential pressure sensor) (6) 8 pattern evaluation item list (6) Test conditions and test items 9 (7) 9.1 Test conditions (7) 9.2 test points (8) 9.3 Appearance (8) 9.4 Indication error (8) 9.5 repeatability error (10) Hysteresis 9.6 (10) 9.7 linearity error (11) 9.8 Electrical performance (11) 9.9 Effect of temperature (13) 9.10 Effect of heat (15) 9.11 Zero Drift (15) 9.12 external magnetic field (16) 9.13 high-frequency radiation interference (17) 9.14 Vibration test (17) 9.15 Impact test (18) 9.16 overload test (18) 9.17 accelerated working life tests (19) 9.18 mounting position effects (19) 9.19 static pressure effects (only for differential pressure sensor) (20) 10 types of evaluation results determined principle (20) 11 original record format type evaluation (21) A straight Appendix Working pressure sensor (22) Appendix B of the differential pressure sensor to detect additional requirements (24) Appendix C pressure sensor type evaluation original records (25)

Introduction

JJF 1016 "Measuring Instruments type evaluation outline guidelines for the preparation", JJF 1001 "common measurement terms and definitions" JJF 1008 "Pressure measurement terminology and definitions" series together constitute the basic norms of the syllabus revision. The outline of China's national conditions, in GB/T 18806-2002 "total resistance strain pressure sensor Specifications" And JJG860-1994 base "pressure sensor (static)" on the use of GB/T 15478-1995 "pressure Force sensor performance test method ", GB/T 7665-2005" pressure sensor generic term "in part, into Row developed. This outline is compared with the GB/T 18806-2002, in addition to editorial changes, but according to JJG860-1994 renumbered Wrote measurement requirements and the insulation resistance of the sensor, zero drift of the technical requirements, rewrite the test device Pressure on the standard requirements; binding GB/T 18806-2002 and JJG860-1994 refinement and streamlining of the test method. This specification is the first release. Resistance strain gauge type pressure sensor evaluation outline

1 Scope

This type of evaluation outline is applied (-0.1 ~ 500) MPa resistive strain gauge pressure transducer (static) (in Hereinafter referred to as sensors) pattern evaluation. 2. References This outline references the following documents. JJG860-1994 pressure transducer (static) GB/T 2423.5-1995 Environmental testing for electric and electronic products Part 2. Test methods Test Ea. Attack GB/T 2423.10-2008 Environmental testing for electric and electronic products Part 2. Test methods Test Fc. Vibration (sinusoidal) GB/T 7665-2005 pressure sensor generic term GB/T 15478-1995 pressure sensor performance test method GB/T 17214.3-2000 working conditions in industrial process measurement and control devices - Part 3. Mechanical influences GB/T 17626.3-2006 Electromagnetic compatibility - Testing and measurement techniques RFEMS test GB/T 18806-2002 total resistance strain pressure sensor specification For dated references, only the dated edition applies to this specification; undated reference documents Member, the latest edition (including any amendments) applies to this specification.

3 Terms and Definitions

3.1 thermal hysteresis thermalhysteresis A point on the sensor measurement range, when the temperature is gradually rising and gradually falling two ways to approach and reach When a certain temperature, the difference between the maximum value of the sensor output. Note. The thermal hysteresis sensor reflects absorption and release of heat output characteristics change. 3.2 thermal zero offset thermalzeroshif Since the zero indication ambient temperature changes caused by offset. 3.3 Thermal sensitivity drift thermalsensitivityshif Sensitivity due to temperature changes caused by drift.

4 Overview

Can feel the pressure sensor is a signal, and in accordance with certain rules the pressure signal into usable output Electrical device or devices can be used to gauge pressure of gases and liquids, differential and absolute pressure. Working principle of resistance strain pressure sensor is the use of an elastic element, changes in the measured pressure is converted into production
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