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JJF 1213-2008 English PDF

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JJF 1213-2008: Calibration specification for the pulmonary function measuring instrument
Status: Valid

JJF 1213: Evolution and historical versions

Standard IDContents [version]USDSTEP2[PDF] delivered inStandard Title (Description)StatusPDF
JJF 1213-2008English349 Add to Cart 3 days [Need to translate] Calibration specification for the pulmonary function measuring instrument Valid JJF 1213-2008
JJF 1213-1990English199 Add to Cart 2 days [Need to translate] O.T.N.of Helix Primary Standard Obsolete JJF 1213-1990

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Basic data

Standard ID JJF 1213-2008 (JJF1213-2008)
Description (Translated English) Calibration specification for the pulmonary function measuring instrument
Sector / Industry Metrology & Measurement Industry Standard
Classification of Chinese Standard A52
Word Count Estimation 15,149
Date of Issue 2008-09-27
Date of Implementation 2009-01-01
Quoted Standard JJF 1001-1998; JJF 1070-2000; JJF 1059-1999
Regulation (derived from) AQSIQ Announcement No. 112 of 2008
Issuing agency(ies) General Administration of Quality Supervision, Inspection and Quarantine
Summary This standard applies to spirometer calibration.

JJF 1213-2008: Calibration specification for the pulmonary function measuring instrument

---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.
Calibration specification for the pulmonary function measuring instrument People's Republic of China National Metrology Technical Specifications Spirometer calibration specification Posted 2008-09-27 2009-01-01 implementation The State Administration of Quality Supervision, Inspection and Quarantine released Spirometer calibration specification Instrument This specification by the State Administration of Quality Supervision, Inspection and Quarantine approved on September 27, 2008, and from From January 1, 2009 implementation. Focal point. the National Technical Committee stoichiometric physical Drafted by. China Astronaut Research and Training Center China Institute of Metrology China Testing Technology Research Institute This specification stoichiometric commissioned National Technical Committee is responsible for the physical interpretation The main drafters of this specification. Wanghuai Ling (China Astronaut Research and Training Center) Li Chunying (China Institute of Metrology) Zhang from China (China Testing Technology Research Institute) Drafters participate. Lin First (China Astronaut Research and Training Center) Gong Lan (China Testing Technology Research Institute) Ding Junping (China Astronaut Research and Training Center) Yang Yong (China Testing Technology Research Institute)

table of Contents

1 Scope (1) 2. Referenced Documents (1) 3 terminology and units of measurement (1) 3.1 FVC (1) 3.2 FVC (1) 3.3 peak expiratory flow (1) 3.4 The maximum minute ventilation (1) 4 Overview (1) 5 Metrological characteristics (1) 5.1 spirometry technical indicators (1) 5.2 gas analyzer technical indicators (2) 6 calibration conditions and equipment (2) 6.1 environmental conditions (2) 6.2 Calibration Equipment (2) 6.3 standard calibration gas (3) 7 calibration items and calibration methods (3) 7.1 appearance and function check (3) 7.2 FVC (3) 7.3 forced vital capacity (4) 7.4 peak expiratory flow (4) 7.5 The maximum minute ventilation (5) 7.6 Calibration gas analyzer (5) 7.7 gas analyzer measurement repeatability (6) 8 recalibration intervals (6) Appendix A calibration original record format (7) Appendix B calibration certificate (within the page) format (9) Spirometer calibration specification

1 Scope

This standard applies to the spirometer calibration.

2 Citations

JJF 1001-1998 "common measurement terms and definitions" JJF 1071-2000 "National Calibration Specifications writing rules" JJF 1059-1999 "Evaluation and Expression of Uncertainty in Measurement" Standardizationofspirometry, 1994Update, AmericanThoracicSociety.American JournalofRespiratoryandCriticalcareMedicine.1995, Vol152. 1107-1136 Standardizationofspirometry, EuropeanRespiratoryJournal.2005, Vol26. 319-338 When using this specification it should be noted that using the currently valid version of the documents cited.

3 terminology and units of measurement

3.1 FVC (vitalcapactity, abbreviation. VC) Starting point deep inhalation, exhaled from the lungs of the largest gas; or the maximum amount of inhaled deep breath after the unit. L (L). 3.2 FVC (forcedvitalcapactity, abbreviation. FVC) The maximum deep inspiration air can be exhaled breath on exertion, unit. liter (L). 3.3 peak expiratory flow (peakexpiratoryflow, abbreviation. PEF) It refers to the forced expiratory maximum flow rate, unit. liter/second (L/s). 3.4 The maximum minute ventilation (maximalvolunaryventilation, abbreviation. MVV) During repeated respiratory effort, maximum expiratory volume at a given time, unit. liter/minute (L/min).

4 Overview

Spirometer mainly by spirometry, gas analyzers and other components, by a combination thereof can be measured respiratory physiology Most indicators, such as vital capacity, forced vital capacity, maximum minute ventilation, gas detection and breathing bronchodilator test Check function. Spirometer spirometer section can be divided according to the principle of capacity measurement type flow measuring spirometry and lung Meter. Respiratory gas analysis section of the gas analyzer according to the principle can be divided into paramagnetic, electrochemical method and the non-dispersive red Extrajudicial, mass spectrometry and gas chromatography analyzer. Spirometer lung function with a more comprehensive check, give Users with corresponding analysis data for clinical diagnosis and research.

5 Metrological characteristics

5.1 spirometer Technical Specifications Spirometry technical indicators shown in Table 1.

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