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JJF 1330-2011 English PDF

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JJF 1330-2011: Calibration Specification for Instantaneous Effective Intensity Testers
Status: Valid

JJF 1330: Evolution and historical versions

Standard IDContents [version]USDSTEP2[PDF] delivered inStandard Title (Description)StatusPDF
JJF 1330-2011English399 Add to Cart 3 days [Need to translate] Calibration Specification for Instantaneous Effective Intensity Testers Valid JJF 1330-2011
JJF 1330-1990English199 Add to Cart 2 days [Need to translate] (0.1 to 100 mW laser power secondary standard operating technical specifications) Obsolete JJF 1330-1990

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Basic data

Standard ID JJF 1330-2011 (JJF1330-2011)
Description (Translated English) Calibration Specification for Instantaneous Effective Intensity Testers
Sector / Industry Metrology & Measurement Industry Standard
Classification of Chinese Standard A60
Classification of International Standard 17.180
Word Count Estimation 17,188
Date of Issue 2011-12-28
Date of Implementation 2012-03-28
Quoted Standard JJG 245-2005; JJG 246-2005; JJF 1001-1998
Regulation (derived from) AQSIQ Announcement No. 205 of 2011
Issuing agency(ies) General Administration of Quality Supervision, Inspection and Quarantine
Summary This standard applies to all kinds of effective intensity transient analyzer calibration.

JJF 1330-2011: Calibration Specification for Instantaneous Effective Intensity Testers

---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 Instantaneous Effective Intensity Testers People's Republic of China National Metrology Technical Specifications Transient effective intensity analyzer calibration specification Issued on. 2011-12-28 2012-03-28 implementation The State Administration of Quality Supervision, Inspection and Quarantine released Transient effective intensity analyzer calibration specification Testers This specification by the State Administration of Quality Supervision, Inspection and Quarantine approved on December 28, 2011, and from From March 28, 2012 into effect. Focal point. the National Technical Committee on Optical metrology The main drafting units. China North Industries second ○ five Institute China Testing Technology Research Institute Participated in the drafting. Jiangxi Institute of Measurement and Testing This specification committee commissioned by the National Optical measurement technology is responsible for interpreting The main drafters of this specification. Even accounting for Spring (China North Industries second ○ five Institute) Lizheng Qi (second ○ five Institute of China North Industries) Cao Yuansheng (China Testing Technology Research Institute) Drafters participate. Yuhui Xia (Jiangxi Institute of Measurement and Testing)

table of Contents

1 Scope (1) 2. References (1) 3 Terms (1) 4 Overview (2) 5 Metrological characteristics (2) 5.1 effective light intensity of transient detector responsivity uncertainty (2) 5.2 Transient effective intensity range and measurement uncertainty (2) 5.3 flash duration (3) Time resolution 5.4 (3) 6 calibration conditions (3) Environmental conditions 6.1 (3) 6.2 calibration equipment (3) 7 calibration items and calibration methods (3) 7.1 calibration items (3) 7.2 Calibration method (4) 7.3 effective light intensity of transient analyzer Measurement Uncertainty (5) 8 calibration results (6) 9 Recalibration interval (6) Appendix A transient effective light intensity measuring instrument calibration original record format (7) Appendix B effective light intensity of transient analyzer Measurement Uncertainty (8) Appendix C effective light intensity of transient analyzer calibration certificate within the page format (12) Transient effective intensity analyzer calibration specification

1 Scope

This specification applies to a variety of effective light intensity of transient analyzer calibration. 2. References JJG245-2005 light meter JJG246-2005 luminous intensity standard lamp JJF 1001-1998 generic term measurement 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

3.1 effective light intensity of transient detector responsivity theresponsibilityofinstantaneouseffectiveintensity measurementinstrument Receiving surface of the effective light intensity of transient detector probe, receives illumination signals corresponding to the time 1lx telecommunications No, the symbol R, the unit is lx/V. By the inverse square law can be obtained from the formula (1). E = Il2 (1) Where. E --- standard lamp in a standard detector receiving surface of the standard illuminance produced, lx; I --- standard lamp luminous intensity, cd; Distance l --- standard filament lamp to the detector plane receiving surface, m. At this time, if the optical signal generated by the detector is V, by the formula (2) calculate the effective light intensity of transient detector ring Degree should. R = EV (2) Wherein. R --- transient response of the effective light intensity measuring instrument, lx/V; The instantaneous voltage V --- transient light generated in the receiver, V. 3.2 instantaneous luminous intensity instantaneousintensity The degree of intensity of transient luminous source at a certain time, generally required to give instantaneous luminous intensity distribution curve over time Line, its sign is that I (t), in units of cd. Instantaneous luminous intensity calculation formula (3) as follows. I (t) = V (t) · Rl2 (3) Where. I (t) --- transient light source varies with time instantaneous luminous intensity, cd; V (t) --- the instantaneous source voltage transients generated at the receiver, V.

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