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JJF 1535-2015 English PDF

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JJF 1535-2015: Calibration Specification for MEMS Gyroscopes
Status: Valid
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JJF 1535-2015489 Add to Cart 4 days Calibration Specification for MEMS Gyroscopes Valid

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Basic data

Standard ID: JJF 1535-2015 (JJF1535-2015)
Description (Translated English): Calibration Specification for MEMS Gyroscopes
Sector / Industry: Metrology & Measurement Industry Standard
Classification of Chinese Standard: A53
Classification of International Standard: 17.100
Word Count Estimation: 21,249
Date of Issue: 2015-06-15
Date of Implementation: 2015-09-15
Quoted Standard: GB 321-2005; GJB 585A-1998; GJB 2425A-2004; IEEE Std 1431 -2004?
Regulation (derived from): AQSIQ Announcement 2015 No.72
Issuing agency(ies): General Administration of Quality Supervision, Inspection and Quarantine
Summary: This standard specifies the micro-electromechanical (MEMS) gyroscope (hereinafter referred to as MEMS gyroscopes) calibration program and calibration methods for single sensitive axis MEMS gyroscope, more sensitive axis MEMS gyroscope implementation.

JJF 1535-2015: Calibration Specification for MEMS Gyroscopes

---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.
(Micro-electromechanical (MEMS) gyroscope calibration specification) People's Republic of China National Metrology Technical Specifications Micro-electromechanical (MEMS) gyroscope calibration specification Issued on. 2015-06-15 2015-09-15 implementation The State Administration of Quality Supervision, Inspection and Quarantine released Micro-electromechanical (MEMS) gyroscope Calibration Specification MEMSGyroscopes NFP. National Technical Committees Inertial Measurement Technology Main drafting unit. Nanjing University of Technology and Engineering Beijing Great Wall Institute of Measurement and Testing Technology AVIC Participated in the drafting unit. China Electronics Technology Group Corporation 13th Research Institute This specification Inertial Technology commissioned the National Technical Committee responsible for the interpretation of measurement The main drafters of this specification. Qiu Anping (Nanjing University of Science) Shi Qin (Nanjing University of Science) Dong Xueming (Beijing Great Wall Institute of Measurement and Testing Technology AVIC) Drafters participate. Zhu Xinhua (Nanjing University of Science) Stingy Haifeng (China Electronics Technology Group Corporation 13th Research Institute)

table of Contents

Introduction (Ⅱ) 1 Scope (1) 2. References (1) 3 Terms (1) 3.1 MEMS gyroscope (1) 3.2 Bias repeatability Br (1) 3.3 Bias stability Bs (1) 3.4 Bias Temperature sensitivity Bt (1) 3.5 Bias acceleration sensitivity Ba (1) 3.6 angle random walk coefficient (2) 3.7 Bandwidth Bw (2) 4 Overview (2) 5 Metrological characteristics (2) 6 calibration conditions (3) 6.1 Calibration environmental conditions (3) 6.2 calibration equipment (3) 7 calibration items and calibration methods (4) 7.1 calibration items (4) 7.2 Calibration method (5) 8 calibration results expression (11) 9 Recalibration interval (12) Appendix A micro-electromechanical (MEMS) gyroscope main parameters Evaluation of Uncertainty Example (13) Appendix B Calibration Certificate-page format (16)

Introduction

Gyroscope according to most of the specific type has specific calibration specifications or test methods, MEMS gyroscopes for Is a new type of sensor, widely used in various fields of national economy. Based on the actual situation MEMS gyroscope calibration, Referring IEEEStd1431TM-2004 "Coriolis principle vibratory gyroscope IEEE standard specification format means South and test methods "(IEEEStandardSpecificationFormatGuideandTestProcedureforCo- riolisVibratoryGyros) the preparation of this specification. This specification is the first release. Micro-electromechanical (MEMS) gyroscope calibration specification

1 Scope

This specification defines the micro-electromechanical (MEMS) gyroscope (hereinafter referred to as MEMS gyroscopes) and calibration items Calibration method for single sensitive axis MEMS gyroscope, more sensitive axis MEMS gyroscope implementation. 2. References This specification refers to the following documents. GB 321-2005 priority number and priority number system GJB585A-1998 inertial technology terms GJB2425A-2004 fiber optic gyro test methods IEEEStd1431TM-2004 Coriolis principle vibratory gyroscope IEEE standard specification format means South Test Method (IEEEStandardSpecificationFormatGuideandTestProcedureforCori- olisVibratoryGyros) 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

GJB585A-1998, GJB2425A-2004 and established the following terms, definitions and symbols apply to this specification. 3.1 MEMS gyroscope MEMSgyroscopes Coriolis effect principle of microelectronics and micro-mechanical combination of the presence of high frequency vibration quality is rotated based on the base Miniaturization rate gyro. 3.2 Bias repeatability Br biasrepeatability Inside under the same conditions and at predetermined time intervals, a plurality of work cycles MEMS gyroscope bias between Degree of consistency. Repetitive daily and generally include successive repeatability. With a standard deviation of bias or bias of Change Shown, °/h, °/s. 3.3 Bias stability Bs biasstability A duty cycle bias stability of MEMS gyroscopes. With a maximum standard deviation of bias or zero bias Represents the amount of change, °/h, °/s. 3.4 Bias Temperature sensitivity Bt biastemperaturesensitivity With respect to the temperature bias, bias ratio of the amount of change and the amount of change in temperature caused by temperature changes, usually with absolute value Maximum representation, (°/h)/℃, (°/s)/℃. 3.5 Bias acceleration sensitivity Ba or Bg biasg-sensitivity MEMS gyroscope zero acceleration caused by the partial change of degree. The general use to measure the acceleration of gravity, (°/h)/g, (°/s)/g.
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