TEST REPORT. IEC 62471:2006 Photobiological safety of lamps and lamp systems
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1 TEST REORT IEC 62471:2006 hotobiological safety of lamps and lamp systems Report reference o.... : Compiled by (+ signature)...: Colin Zhang Approved by (+ signature)...: Alice Liu Date of issue...: Testing laboratory...: Bay Area Compliance Laboratories Corp. (Dongguan) Address...: o.69 ulong Village uxinhu Industry Zone Tangxia,Dongguan, China. Testing location...: Same as above Applicant...: Guangzhou Hongli Opto-Electronic Co., Ltd. Address...: o.1, Xianke Yi Road, Huadong Town, Huadu District, Guangzhou, China Standard...: IEC 62471:2006 Test sample(s) received...: Test in period...: rocedure deviation...:.a. on-standard test method...:.a. This test report is for the customer shown above and their specific product only. It may not be duplicated or used in part without prior written consent from Bay Area Compliance Laboratories Corp. (Dongguan). This report must not be used by the customer to claim product certification, approval, or endorsement by VLA, IST, or any agency of the Federal Government. This report is valid only with a valid digital signature. The digital signature may be available only under the Adobe software above version 7.0. Type of test object... : LED Trademark... : one Model/type reference... : Manufacturer : HL-AF-5060H343W-3-S1-T1-HR3 Guangzhou Hongli Opto-Electronic Co., Ltd. o.1, Xianke Yi Road, Huadong Town, Huadu District, Guangzhou, China Rating... : Vdc I F =60mA age 1 of 16
2 Copy of marking plate: /A Test item particulars...: Tested lamp...:led Tested lamp system...:/a Lamp classification group...: Exempt Group Lamp cap...:/a Bulb...:/A Rated of the lamp...:/a Furthermore marking on the lamp...:.a. Seasoning of lamps according E standard...:o seasoning Used measurement instrument...:see appendix B for details Temperature by measurement...:25.3 C Information for safety use...:.a ossible test case verdicts: -test case does not apply to the test object...:(.a.) -test object does meet the requirement...:(ass) -test object does not meet the requirement...:f(ail) General remarks: The test results presented in this report relate only to the object tested. This report shall not be reproduced, except in full, without the written approval of the Issuing testing laboratory. "(See Enclosure #)" refers to additional information appended to the report. "(See appended table)" refers to a table appended to the report. Throughout this report a point is used as the decimal separator. List of test equipment must be kept on file and available for review. ote: This report is based on and replace BACL report O.: RSZ Amendment just alter the Date of issue, no test need. This report consists of 16 pages and following appendices: Appendix A EUT photos Appendix B Test equipment list age 2 of 16
3 IEC Clause Requirement + Test Result - Remark Verdict 4 EXOSURE LIMITS 4.1 General The exposure limits in this standard is not less than 0,01 ms and not more than any 8-hour period and should be used as guides in the control of exposure Detailed spectral data of a light source are generally required only if the luminance of the source exceeds 10 4 cd m -2 >10 4 cd m Hazard exposure limits Actinic UV hazard exposure limit for the skin and eye The exposure limit for effective radiant exposure is 30 J.m -2 within any 8-hour period To protect against injury of the eye or skin from Es= W m -2 ultraviolet radiation exposure produced by a broadband source, the effective integrated spectral irradiance, Es, of the light source shall not exceed the levels defined by: 400 ES t= Eλ(λ,t) s uv (λ) t λ 30 J m t The permissible time for exposure to ultraviolet radiation incident upon the unprotected eye or skin shall be computed by: t max =30/E s t max =30/( )=3.65x10 6 s ear-uv hazard exposure limit for eye For the spectral region 315 nm to 400 nm (UV-A) the total radiant exposure to the eye shall not exceed J.m -2 for exposure times less than 1000s. For exposure times greater than 1000 s (approximately 16 minutes) the UV-A irradiance for the unprotected eye, E UVA, shall not exceed 10 W m -2 The permissible time for exposure to ultraviolet radiation incident upon the unprotected eye for time less than 1000 s, shall be computed by: t max 10000/E UVA s age 3 of 16 E UVA = W m Retinal blue light hazard exposure limit To protect against retinal photochemical injury from chronic blue-light exposure, the integrated spectral radiance of the light source weighted against the blue-light hazard function, B(_), i.e., the blue-light weighted radiance, LB, shall not exceed the levels defined by:
4 IEC Clause Requirement + Test Result - Remark Verdict 700 LB t= Lλ(λ,t) B(λ) t λ J m -2 sr 300 t LB = Lλ B(λ) λ 100 W m -2 sr L B =30W m -2 sr Retinal blue light hazard exposure limit - small source Thus the spectral irradiance at the eye E_, weighted against the blue-light hazard function B(_) shall not exceed the levels defined by: see table EB t= Eλ(λ,t) B(λ) t λ 100 J m t α= rad 700 EB = Eλ B(λ) λ 1 W m Retinal thermal hazard exposure limit To protect against retinal thermal injury, the integrated spectral radiance of the light source, L_, weighted by the burn hazard weighting function R(_) (from Figure 4.2 and Table 4.2), i.e., the burn hazard weighted radiance, shall not exceed the levels defined by: L R =1.9x W m -2 sr Retinal thermal hazard exposure limit weak visual stimulus For an infrared heat lamp or any near-infrared source where a weak visual stimulus is inadequate to activate the aversion response, the near infrared (780 nm to 1400 nm) radiance, LIR, as viewed by the eye for exposure times greater than 10 s shall be limited to: L IR =1.3x W m -2 sr Infrared radiation hazard exposure limits for the eye The avoid thermal injury of the cornea and possible delayed effects upon the lens of the eye (cataractogenesis),ocular exposure to infrared radiation, EIR,over the wavelength range 780 nm to 3000 nm, for times less than 1000 s, shall not exceed: age 4 of 16
5 IEC Clause Requirement + Test Result - Remark Verdict For times greater than 1000 s the limit becomes: E IR =0 W m Thermal hazard exposure limit for the skin Visible and infrared radiant exposure (380 nm to 3000 nm) of the skin shall be limited to: E H = 0 J m -2 5 MEASUREMET OF LAMS AD LAM SYSTEMS 5.1 Measurement conditions Measurement conditions shall be reported as part of the evaluation against the exposure limits and the assignment of risk classification Lamp ageing (seasoning) Seasoning of lamps shall be done as stated in the Appropriate E lamp standard Test environment For specific test conditions, see the appropriate E lamp standard or in absence of such - standards, the appropriate national standards or manufacturer s recommendations Extraneous radiation Careful checks should be made to ensure that extraneous sources of radiation and reflections do not add significantly to the measurement results Lamp operation Operation of the test lamp shall be provided in accordance with: the appropriate E lamp standard, or the manufacturer s recommendation Lamp system operation The power source for operation of the test lamp shall be provided in accordance with: the appropriate E standard, or age 5 of 16
6 IEC Clause Requirement + Test Result - Remark Verdict the manufacturer s recommendation 5.2 Measurement procedure Irradiance measurements Minimum aperture diameter 7mm. Maximum aperture diameter 50 mm. The measurement shall be made in that position of the beam giving the maximum reading. The measurement instrument is adequate calibrated Radiance measurements Standard method The measurements made with an optical system. The instrument shall be calibrated to read in absolute radiant power per unit receiving area and per unit solid angle to acceptance averaged over the field of view of the instrument Alternative method Alternatively to an imaging radiance set-up, an irradiance measurement set-up with a circular field stop placed at the source can be used to perform radiance measurements Measurement of source size The determination of α, the angle subtended by a source, requires the determination of the 50% emission points of the source ulse width measurement for pulsed sources The determination of t, the nominal pulse duration of a source, requires the determination of the time during which the emission is > 50% of its peak value. 5.3 Analysis methods Weighting curve interpolations To standardize interpolated values, use linear interpolation on the log of given values to obtain intermediate points at the wavelength intervals desired Calculations The calculation of source hazard values shall be performed by weighting the spectral scan by the appropriate function and calculating the total weighted energy Measurement uncertainty The quality of all measurement results must be quantified by an analysis of the uncertainty. 6 LAM CLASSIFICATIO age 6 of 16
7 IEC Clause Requirement + Test Result - Remark Verdict For the purposes of this standard it was decided that the values shall be reported as follows: for lamps intended for general lighting service, the hazard values shall be reported as either irradiance or radiance values at a distance which produces an illuminance of 500 lux, but not at a distance less than 200 mm for all other s, including pulsed lamp LED light source:200mm sources, the hazard values shall be reported at a distance of 200 mm 6.1 Continuous wave lamps Exempt Group In the except group are lamps, which does not pose any photobiological hazard. The requirement is met by any lamp that does not pose: an actinic ultraviolet hazard (ES) within 8-hours exposure (30000 s), nor a near-uv hazard (EUVA) within 1000 s, (about 16 min), nor a retinal blue-light hazard (LB) within s (about 2,8 h), nor a retinal thermal hazard (LR) within 10 s, nor an infrared radiation hazard for the eye (EIR) within 1000 s Risk Group 1 (Low-Risk) In this group are lamps, which exceeds the limits for the except group but that does not pose: an actinic ultraviolet hazard (ES) within s, nor a near ultraviolet hazard (EUVA) within 300 s, nor a retinal blue-light hazard (LB) within 100 s, nor a retinal thermal hazard (LR) within 10 s, nor an infrared radiation hazard for the eye (EIR) within 100 s Lamps that emit infrared radiation without a strong visual stimulus and do not pose a near-infrared retinal hazard (LIR), within 100 s are in Risk Group Risk Group 2 (Moderate-Risk) This requirement is met by any lamp that exceeds the limits for Risk Group 1, but that does not pose: an actinic ultraviolet hazard (ES) within 1000 s exposure, nor a near ultraviolet hazard (EUVA) within 100 s, nor a retinal blue-light hazard (LB) within 0,25 s (aversion response), nor a retinal thermal hazard (LR) within 0,25 s (aversion response), nor age 7 of 16
8 IEC Clause Requirement + Test Result - Remark Verdict an infrared radiation hazard for the eye (EIR) within 10 s Lamps that emit infrared radiation without a strong visual stimulus and do not pose a near-infrared retinal hazard (LIR), within 10 s are in Risk Group Risk Group 3 (High-Risk) Lamps which exceed the limits for Risk Group 2 are in Group ulsed lamps ulse lamp criteria shall apply to a single pulse and to any group of pulses within 0,25 s. A pulsed lamp shall be evaluated at the highest nominal energy loading as specified by the manufacturer. The risk group determination of the lamp being tested shall be made as follows: a lamp that exceeds the exposure limit shall be classified as belonging to Risk Group 3 (High- Risk) for single pulsed lamps, a lamp whose weighted radiant exposure or weighted radiance does is below the EL shall be classified as belonging to the Exempt Group for repetitively pulsed lamps, a lamp whose weighted radiant exposure or weighted radiance dose is below the EL, shall be evaluated using the continuous wave risk criteria discussed in clause 6.1, using time averaged values of the pulsed emission age 8 of 16
9 Table 4.1 Spectral weighting function for assessing ultraviolet hazards for skin and eye - Wavelength 1 λ, nm UV hazard function S UV (λ) Wavelength λ, nm UV hazard function S UV (λ) 200 0, * 0, , , , , , , , , , , , , , , , , , , , , * 0, , , * 0, , , , , , , , , * 0, , , , , * 0, , , * 0, , , , * 0, , , , , , , , Wavelengths chosen are representative: other values should be obtained by logarithmic interpolation at intermediate wavelengths. * Emission lines of a mercury discharge spectrum. age 9 of 16
10 Table 4.2 Spectral weighting functions for assessing retinal hazards from broadband optical sources Wavelength Blue-light hazard function Burn hazard function nm B( ) R( ) 300 0, , , , , , , , , , , , , , , , ,01 0, ,013 0, ,025 0, ,05 0, ,10 1, ,20 2, ,40 4, ,80 8, ,90 9, ,95 9, ,98 9, ,00 10, ,00 10, ,97 9, ,94 9, ,90 9, ,80 8, ,70 7,0 - age 10 of 16
11 470 0,62 6, ,55 5, ,45 4, ,40 4, ,22 2, ,16 1, [(450-λ)/50] 1, ,001 1, , [(700-λ)/500] ,025 0, ,05 0, (1150-λ) ,10 0,02 * 1 Wavelengths chosen are representative: other values should be obtained by logarithmic interpolation at intermediate wavelengths. * Emission lines of a mercury discharge spectrum. age 11 of 16
12 Table 5.4 Hazard ame Actinic UV skin & eye Eye UV-A Blue-light small source Summary of the ELs for the surface of the skin or cornea (irradiance based values) Relevant Wavelength equation Range nm E S = E λ S(λ) λ E UVA = E λ λ E B = E λ B(λ) λ Explosure aperture rad(deg) Limiting aperture rad(deg) EL in items of constant irradiance W.m < ,4 (80) 30/t Eye IR E IR = E λ λ > > >1000 1,4 (80) < 0,011 1,4 (80) /t /t 1, /t 0,75 Skin thermal E H = E λ λ < 10 2π sr 20000/t 0, Table 5.5 Summary of the ELs for the retina (radiance based values) - Hazard ame Blue light Retinal thermal Retinal thermal (weak visual stimulus) Relevant equation L B = L λ B(λ) λ L R = L λ R(λ) λ L IR = L λ R(λ) λ Wavelength Range nm Explosure duration Sec 0, < 0,25 0,25 10 Field of view radians 0,011 (t/10) 0,011 0,0011 t 0,1 0,0017 0,011 (t/10) EL in terms of constant radiance W.m -2.sr -1 ) 10 6 /t 10 6 /t 10 6 /t /(α t 0,25 ) 50000/(α t 0,25 ) > 10 0, /α age 12 of 16
13 Table 6.1 Emission limits for risk groups of continuous wave lamps base on Directive(2006/25/EC) Risk Action spectrum Units Symbol Exempt Low risk Mod risk Limit Result Limit Result Limit Result Actinic UV Suv(λ) W.m -2 E S ear UV W.m -2 E UVA Blue light B(λ) W.m - 2.sr -1 L B Blue light,small source Retinal thermal B(λ) W.m -2 E B 1* R(λ) W.m - 2.sr -1 L R 28000/α α= x /α α= /α α= Retinal thermal, Weak visual stimulus** R(λ) W.m - 2.sr -1 L IR 6000/α α= x /α α= /α α= IR radiation Eye W.m -2 E IR * Small source defined as one withα< 0,011 radian. Averaging field of view at s is 0,1 radian. ** Involves evaluation of non-gls source age 13 of 16
14 Appendix I Figure of Spectral distribution Spectral distribution of LED age 14 of 16
15 Appendix A - EUT hotos 1. General view of LED age 15 of 16
16 Appendix B Test equipment list Equipment Description Model o BACL# Manufactur er Last Cal Cal Due UV light leakage spectrum biological systems Standard spectral of safety power UV MS-300 T-08-EE042 EVERFIE UVS-8003 T-08-EE048 EVERFIE radiation-specific 80mm sample integrating sphere SMS-300 T-08-EE055 EVERFIE Radio meter RD-2000 T-08-EE056 EVERFIE high-accuracy digital head photometer HAAS-2000 T-08-EE058 EVERFIE Hygrothermograph WS280 T-08-QA026 /A Steel tape HILOCK-19 T-08-SF100 TAJIMA age 16 of 16
TEST REPORT ...: RSZ China. as above EN 62471:2008. China. Procedure deviation ...: N.A. No.1, China. Copy of. marking plate: None
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