BS PD IEC TR 62778-2014 Application of IEC 62471 for the assessment of blue light hazard to light sources and luminaires《IEC 62471在光源和照明蓝光危害评价方面的应用》.pdf
《BS PD IEC TR 62778-2014 Application of IEC 62471 for the assessment of blue light hazard to light sources and luminaires《IEC 62471在光源和照明蓝光危害评价方面的应用》.pdf》由会员分享,可在线阅读,更多相关《BS PD IEC TR 62778-2014 Application of IEC 62471 for the assessment of blue light hazard to light sources and luminaires《IEC 62471在光源和照明蓝光危害评价方面的应用》.pdf(42页珍藏版)》请在麦多课文档分享上搜索。
1、BSI Standards Publication Application of IEC 62471 for the assessment of blue light hazard to light sources and luminaires PD IEC/TR 62778:2014 Incorporating corrigendum July 2014PD IEC/TR 62778:2014 National foreword This Published Document is the UK implementation of IEC/TR 62778:2014, incorporati
2、ng corrigendum July 2014. It supersedes PD IEC/TR 62778:2012, which is withdrawn. The UK participation in its preparation was entrusted by Technical Committee CPL/34, Lamps and Related Equipment, to Subcommittee CPL/34/1, Electric lamps. A list of organizations represented on this subcommittee can b
3、e obtained on request to its secretary. This publication does not purport to include all the necessary provisions of a contract. Users are responsible for its correct application. The British Standards Institution 2014. Published by BSI Standards Limited 2014 ISBN 978 0 580 87760 5 ICS 29.140.01 Com
4、pliance with a British Standard cannot confer immunity from legal obligations. This Published Document was published under the authority of the Standards Policy and Strategy Committee on 31 July 2014. Amendments/corrigenda issued since publication Date Text affected 31 August 2014 Implementation of
5、IEC corrigendum July 2014: Formulas D.1 and D.2 amended PUBLISHED DOCUMENT IEC TR 62778 Edition 2.0 2014-06 TECHNICAL REPORT Application of IEC 62471 for the assessment of blue light hazard to light sources and luminaires INTERNATIONAL ELECTROTECHNICAL COMMISSION W ICS 29.140 PRICE CODE ISBN 978-2-8
6、322-1615-6 Registered trademark of the International Electrotechnical Commission Warning! Make sure that you obtained this publication from an authorized distributor. colour inside PD IEC/TR 62778:2014 2 IEC TR 62778:2014 IEC 2014 CONTENTS FOREWORD . 4 1 Scope 6 2 Normative references 6 3 Terms and
7、definitions 6 4 General . 11 5 Spectrum, colour temperature, and blue light hazard . 12 5.1 Calculation of blue light hazard quantities and photometric quantities from emission spectra . 12 5.2 Luminance and illuminance regimes that give rise to t maxvalues below 100 s 15 6 LED packages, LED modules
8、, lamps and luminaires 17 7 Measurement information flow . 18 7.1 Basic flow . 18 7.2 Conditions for the radiance measurement . 20 7.3 Special cases (I): Replacement by a lamp or LED module of another type 22 7.4 Special cases (II): Arrays and clusters of primary light sources . 22 8 Risk group clas
9、sification 22 Annex A (informative) Geometrical relations between radiance, irradiance and radiant intensity 23 Annex B (informative) Distance dependence of t maxfor a certain light source . 25 Annex C (informative) Summary of recommendations to assist the consistent application of IEC 62471 for the
10、 assessment of blue light hazard to light sources and luminaires . 27 C.1 General . 27 C.2 Situation of RG0 or RG1 classification not requiring radiance or irradiance measurement 27 C.2.1 Boundary conditions 27 C.2.2 True luminance values giving risk group not greater than RG1 27 C.2.3 Illuminance v
11、alues giving risk group not greater than RG1 . 28 C.3 Situation for the classification of light sources larger than 2,2 mm and luminaires using these light sources 29 C.4 Situation for the classification of light sources smaller than 2,2 mm and luminaires using these light sources 30 C.5 Situation f
12、or the classification of light sources that pose practical difficulties in measurements at 200 mm . 30 Annex D (informative) Detailed assessment of arrays and clusters of primary light sources, comprised of LED packages . 31 D.1 General . 31 D.2 Approach 31 D.2.1 Step by step assessment . 31 D.2.2 T
13、ype of arrays and additional steps . 32 D.2.3 Complete flowchart 34 D.3 Derivation of the formula for average radiance of the full array . 35 Bibliography 37 Figure 1 Blue light hazard efficacy of luminous radiation, K B,v , for a range of light sources from different technologies, and for a few typ
14、ical daylight spectra 13 PD IEC/TR 62778:2014IEC TR 62778:2014 IEC 2014 3 Figure 2 Comparison between the curves involved in calculating K B,v(the photopic eye sensitivity curve and the blue light spectral weighting function) and the CIE 1931 Y and Z curves involved in calculating the CIE 1931 x, y
15、colour coordinates 14 Figure 3 Correlation plot between the quantity (1 x y)/y, calculated from the CIE 1931 x, y colour coordinates, and the value of K B,v , for all the spectra analysed to generate Figure 1 . 15 Figure 4 Estimate of the luminance level where L B= 10 000 W/(m 2 . sr), border betwee
16、n RG1 (t max 100 s) and RG2 (t max100 s) and RG2 (t max 100 s) in the small source regime, as a function of CCT 16 Figure 6 Relation of illuminance E, distance d and intensity I . 20 Figure 7 Flow chart from the primary light source (in blue) to the luminaire based on this light source (in amber) .
17、21 Figure A.1 Schematic image of the situation considered in Annex A . 23 Figure B.1 General appearance of t maxas a function of viewing distance d, for any light source with homogeneous luminance L and diameter D 26 Figure C.1 Luminance values from Table C.1 in relation to the RG1/RG2 border as fun
18、ction of correlated colour temperature 28 Figure C.2 Illuminance values from Table C.2 in relation to the RG1/RG2 border as function of correlated colour temperature 29 Figure D.1 Examples of secondary lenses with identical light distribution and alignment 32 Figure D.2 Examples of LED arrays with b
19、are LED packages . 33 Figure D.3 Evaluation whether one or more LED elements fall in 11 mrad field of view at distance d 1. 33 Figure D.4 Complete flowchart of the detailed assessment of arrays and clusters of primary light sources . 35 Table 1 Correlation between exposure time and risk group 10 Tab
20、le C.1 Luminance values giving risk group not greater than RG1 28 Table C.2 Illuminance values giving risk group not greater than RG1 . 29 Table D.1 Applicability of steps 1 to 6 31 PD IEC/TR 62778:2014 4 IEC TR 62778:2014 IEC 2014 INTERNATIONAL ELECTROTECHNICAL COMMISSION _ APPLICATION OF IEC 62471
21、 FOR THE ASSESSMENT OF BLUE LIGHT HAZARD TO LIGHT SOURCES AND LUMINAIRES FOREWORD 1) The International Electrotechnical Commission (IEC) is a worldwide organization for standardization comprising all national electrotechnical committees (IEC National Committees). The object of IEC is to promote inte
22、rnational co-operation on all questions concerning standardization in the electrical and electronic fields. To this end and in addition to other activities, IEC publishes International Standards, Technical Specifications, Technical Reports, Publicly Available Specifications (PAS) and Guides (hereaft
23、er referred to as “IEC Publication(s)”). Their preparation is entrusted to technical committees; any IEC National Committee interested in the subject dealt with may participate in this preparatory work. International, governmental and non- governmental organizations liaising with the IEC also partic
24、ipate in this preparation. IEC collaborates closely with the International Organization for Standardization (ISO) in accordance with conditions determined by agreement between the two organizations. 2) The formal decisions or agreements of IEC on technical matters express, as nearly as possible, an
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