TEST REPORT PPP 11023A:2011 Rev. 00 TUV SUD Test report for T8/T5 LED tube Lamp

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1 age 1 of 26 Report Reference No.: TEST REORT 11023A:2011 Rev. 00 TUV SUD Test report for T8/T5 LED tube Lamp Report reference No.... : Date of issue... : roject handler... : Testing laboratory... : Address... : Testing location... : Client... : Alin Hung TÜV SÜD Asia Ltd. Taiwan Branch 7F., No. 37, Sec. 2, Zhongyang S., Rd., Beitou District, Taipei City, 11270, Taiwan as above Client number... : Address... : Contact person... Standard... : TRF originated by.... : Copyright blank test report... : ShenZhen Ruizi Light Electricity Technology Co., Ltd. 6F, Building A, No.8 East of Shangxue Technology Zone Bantian Street Community, Longgang District Shenzhen EOLE'S REUBLIC OF CHINA LV Jun Cal This TUV SUD test report _11023A:2011 is based on the following standards: IEC 62560: 2011 EN : 2006 EN : 2008 EN 62471:2008 IEC :2009 draft IEC Annex C Also taken into consideration of the followings: ETF5/ETF11/OSM/LUM DSH 0744 EK LVD ADCO Recommendation: TUV SUD roduct Service GmbH, Mr. Jay Chen This test report was prepared by TUV SUD roduct Service GmbH. TUV SUD Group takes no responsibility for and will not assume liability for damages resulting from the reader s interpretation of the reproduced material due to its placement and context. Test procedure... : Non-standard test method... : National deviations... : Bauart Mark TÜV Mark, EU-Directive, without certification Number of pages (Report)... : 26 Number of pages (Attachments)... : 36 Compiled by... : Alin Hung Approved by...: Jay Chen (+ signature) (+ signature) Test Report TUV 11023A:2011 Rev.0

2 age 2 of 26 Report Reference No.: Test sample...: Type of test object... : Trademark... : Model and/or type reference... : LED Tube ERVAN L05G600MM, L05G900MM, L05G1200MM, L05G1500MM, L06G600MM, L06G900MM, L06G1200MM-216, L06G1200MM-264, L06G1500MM, L06F1200MM Rating(s)... : Vac, Hz, 11 W for L05G600MM; 15W for L06G600MM; 20W for L05G900MM, L05G1200MM, L06G900MM, L06G1200MM-216, and L06G1200MM-264; 24W for L05G1500MM, L06G1500MM, and L06F1200MM Manufacturer... : Manufacturer number... : Address... : Sub-contractors/ tests (clause)... : Name... : Order description... : Same as applicant Same as applicant Same as applicant Complete test according to TRF artial test according to manufacturer's specifications reliminary test Spot check Date of order... : Date of receipt of test item... : Date(s) of performance of test... : ~ Test item particulars: 1. Marking test 10. Electric strength test 2. Adjusting device test 11. Heating test 3. Access to live part 12. Ball pressure test 4. Voltage discharge test 13. Glow wire test 5. Interchangeability and dimensions 14. Needle flame test 6. Torque test for lamp cap 15. Extreme Electrical Conditions Test For Non-Dimmable Lamp 7. rotection against electric shock 16. Fault conditions test 8. Humidity treatment test 17. Overpower conditoin test 9. Insulation resistance test Attachments: Enclosure 1: Test report for EN 62471:2008. (13 pages) Enclosure 2: Test report for IEC :2009. (4 pages) Enclosure 3: hotographs of the items tested. (19 pages) Test Report TUV 11023A:2011 Rev.0

3 age 3 of 26 Report Reference No.: General remarks: "(see remark #)" refers to a remark appended to the report. "(see appended table)" refers to a table appended to the report. Throughout this report a comma is used as the decimal separator. 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 testing laboratory. Summary of testing: Tested on models L06G1500MM and L06F1200MM to represent all models. deviation(s) found no deviations found If additional information is necessary, please provide Model difference: Model No. Tube Size (X*A)mm LED QTY (CS) Input Current A Driver Output Voltage (V)DC Driver Output current (A) Rated Wattage (W) L05G600MM 26* L05G900MM 26* L05G1200MM 26* L05G1500MM 26* L06G600MM 26* L06G900MM 26* L06G1200MM * L06G1200MM * L06G1500MM 26* L06F1200MM 30* Test Report TUV 11023A:2011 Rev.0

4 age 4 of 26 Report Reference No.: Copy of marking plate: Representative marking label icture of the product See Enclosure 3 Characteristic data (not shown on the marking plate) Marking in installation manual - For lamps with a weight significantly higher than that of the lamps for which they are a replacement, attention should be drawn to the fact that the increased weight may reduce the mechanical stability of certain luminaires and lampholders and may impair contact making and lamp retention. - The light distribution of the luminaire will be changed when replacing a fluorescent lamp with a LED tube. This can have influences for sufficient illumination of working places. - This LED lamp is for replacement of the conventional fluorescent lamp with mangnetic ballast only. - No any constructive change of the luminaire is permitted, except the exchange of the starter in the luminaire by short-circuited or fused starter contacts. - The warranty of the original luminaire might be void after replacing fluorescent lamp with LED tube. - Not suitable for dimming. Characteristic data Factory (only if certification is provided) ShenZhen Ruizi Light Electricity Technology Co., Ltd. (Factory ID: 77278) 6F, Building A, No.8 East of Shangxue Technology Zone Bantian Street Community, Longgang District Shenzhen EOLE'S REUBLIC OF CHINA Test Report TUV 11023A:2011 Rev.0

5 age 5 of 26 Report Reference No.: urpose of the product (Description of intended use) The products are LED tubular lamps with G13 cap, intended to replace the conventional fluorescent lamp with mangnetic ballast only. ossible test case verdicts: - test case does not apply to the test object... : N(.A.) / not included in the order - test object does meet the requirement... : (ass) - test object does not meet the requirement... : F(ail) ossible suffixes to the verdicts: - suffix for detailed information for the - C(omment) li t - suffix for important information for factory inspection...: - M(anufacturing) Test Report TUV 11023A:2011 Rev.0

6 age 6 of 26 Report Reference No.: Clause Requirement Test Measuring result Remark Verdict 1 Scope Double-capped LED lamps with caps G5 and G Double-capped LED lamps 13, intended for replacing fluorescent lamps with with caps G 13 the same caps 2 MARKING Marking shall be in compliance with IEC (clause numbers between parentheses refer to IEC 62560) 2.1 (5.1) Lamps shall be clearly and durably marked with the following mandatory markings: a) Mark of origin ERVAN b) Rated voltage/voltage range (V) VAC c) Rated wattage (W) 11W, 15 W, 20 W, 24 W d) Rated frequency (Hz) Hz 2.2 (5.2) Additional markings on the lamp or immediate lamp wrapping or container or in installation instructions: a) rated current b) For lamps with a weight significantly higher than that of the lamps for which they are a replacement, attention should be drawn to the fact that the increased weight may reduce the mechanical stability of certain luminaires and lampholders and may impair contact making and lamp retention. c) Special conditions or restrictions observed for lamp operation; operation in dimming circuits d) Not suitable for dimming ; symbol used e) For eye protection warning if other than Exempt Risk Group. (EK ) See separate test report of EN and IEC TR (C.3) The LED lamp must be accompanied by an installation instruction describing all necessary steps for the exchange of the fluorescent lamp against a double-capped LED lamp. (Clause numbers between parentheses refer to draft IEC Annex C) The manual or installation instruction shall include the followings precautions: Test Report TUV 11023A:2011 Rev.0

7 age 7 of 26 Report Reference No.: Clause Requirement Test Measuring result Remark Verdict a) For lamps with a weight significantly higher than that of the lamps for which they are a replacement, attention should be drawn to the fact that the increased weight may reduce the mechanical stability of certain luminaires and lampholders and may impair contact making and lamp retention. b) This LED lamp is for replacement of the conventional fluorescent lamp with magnetic ballast only c) No any constructive change of the luminaire is permitted, except the exchange of the starter in the luminaire by short-circuited or fused starter contacts d) The light distribution of the luminaire will be changed when replacing a fluorescent lamp with a LED tube. This can have influences to the illumination of working places. e) The warranty of the original luminaire might be void after replacing fluorescent lamp with LED tube The manual shall be written in the country's English language where the lamp is sold 2.4 (5.3) a) resence and legibility of the marking by visual inspection b) The durability of the marking is checked by rubbing lightly with water and hexane for 15 s c) Availability of information by visual inspection 3 INTERCHANGEABILITY Interchangability shall be in compliance with draft IEC Annex C (clause numbers between parentheses refer to draft IEC Annex C) 3.1 (C.4.1) Cap interchangeability Interchangeability shall be ensured by the use of caps in accordance with IEC Compliance of the combination of cap and bulb is checked by the use of qauqes G5 lamp cap: Cap dimensions Test Report TUV 11023A:2011 Rev.0

8 age 8 of 26 Report Reference No.: Clause Requirement Test Measuring result Remark Verdict 3.2 (C.4.2) Mass Cap dimensions to be checked by the gauges and G13 lamp cap: Cap dimensions Cap dimensions to be checked by the gauges and The entire mass of a LED lamp should not exceed: 200 g for a G5-capped lamp... : 3.3 (C.4.3) Dimensions 500 g for a G13-capped lamp... : 444 g for L05G1500MM; The LED lamps shall have the dimensions of the corresponding lamps of IEC g for L06G1500MM; 500 g for L06F1200MM 4 ROTECTION AGAINST ACCIDENTAL CONTACT WITH LIVE ARTS 4.1 rotection against accidental contact with live parts shall be in compliance with IEC (clause numbers between parentheses refer to IEC 62560) 4.1 (7) Lamps shall be so constructed that no internal metal parts or live parts are accessible, when the lamps is installed in a prescribed lampholder. Compliance is checked by means of the standard test finger with force of 10 N External metal parts shall be so designed that live parts are not accessible (test of Cl. 8) 4.2 rotection against accidental contact with live parts shall be in compliance with EN (numbers in parentheses refer to the clause number in EN ). Recommendation) 4.2 (8.1) The pin(s) or contacts of the cap protected against accidental contact with live parts Current measured according to IEC 60990, figure 4 and clause 7.1: max. 0,7 ma (peak) or 2,0 ma d.c., for f 1000 Hz max. 70 ma... : Voltage at 50 k (V): max. 34 V (peak)... : (LVD ADCO ma for L06G1500MM; ma for L06F1200MM 16 V for L06G1500MM; 14.8 V for L06F1200MM 4.3 (8.2.7) Capacitors > 0,5 F: voltage after 1 s (V): < 34 V. : 0 V 4.3 rotection against accidental contact with live parts shall be in compliance with EN (clause numbers between parentheses refer to EN ) Test Report TUV 11023A:2011 Rev.0

9 age 9 of 26 Report Reference No.: Clause Requirement Test Measuring result Remark Verdict 4.4 (8.2) One capacitor Y1 or two capacitors Y2 of the same Y1 capacitor used values used in series between SELV or SELVequivalent output and primary circuits - Capacitor complying with IEC Other components bridging the separating transformer complying with IEC 60065, clause rotection against accidental contact with live parts shall be in compliance with draft IEC Annex C (clause numbers between parentheses refer to draft IEC Annex C) 4.5 (C.5) The insulation between the metal shell of the cap No metal shell and the pin(s) or contacts by measurement with a 500 V d.c. 2 M... : The insulation between the pin(s) or contacts of one cap and the pin(s) or contacts of the other cap by measurement with a 500 V d.c. 2 M... : 20 M 5 INSULATION RESISTANCE AND ELECTRIC STRENGTH AFTER HUMIDITY TREATMENT Insulation resistance and electric strength after humidity treatment for lamp shall be in compliance with IEC (clause numbers between parentheses refer to IEC 62560) 5.1 (8.1) Insulation resistance and electric strength shall be adequate between live parts of the lamp and accessible parts of the lamp 5.2 (8.2) After storage 48 h at a 91~95 % relative humidity and at 20~30 C Insulation resistance with 500 V d.c., required 4 M. 5.3 (8.3) Immediately after the insulation resistance test, electric strength test for 1 min. Test voltage (V): -- SELV: - between current-carrying parts of different polarity, basic insulation... : - between current-carrying parts and mounting, basic insulation surface... : - between current-carrying parts and metal parts of the luminaire, basic insulation... : Other than SELV: - between live parts of different polarity, basic insulation... : 1480 Vac Test Report TUV 11023A:2011 Rev.0

10 age 10 of 26 Report Reference No.: Clause Requirement Test Measuring result Remark Verdict - between live parts and mounting surface, double or reinforced insulaiton... : - between live parts and metal parts, double or reinforced insulaiton... : - between live parts of different polarity through action of a switch, double or reinforced insulaiton : No flashover or breakdown 3650 Vac Insulation resistance and electric strength after humidity treatment for SELVoperated LED modules shall be in compliance with EN (clause numbers between parentheses refer to EN ) 5.4 (I.8) Insulation resistance and electric strength 5.4 (I.8.1) Conditioned 48 h between 91 % and 95 % 5.4 (I.8.2) Adequate insulation (500 V d.c. for 1 min) between: Live parts and the body -for basic insulation not less than 2 M... : Live parts and the body -for reinforced insulation not less than 4 M... : 10 M 20 M Input- and output circuits not less than 5 M... : 20 M Metal parts of class II controlgear which are separated from live parts by basic insulation only and the body not less than 5 M... : Metal foil in contact with the inner and outer surfaces of enclosures of insulating material not less than 2 M... : 10 M 5.5 (I.8.3) Electric strength test: 1) Between live parts of input circuits and live parts of output circuits... : 3650 Vac 2) Over basic or supplementary insulation between: a) live parts which are or may become of different polarity... : b) live parts and body if intended to be connected to protective earth... : c) accessible metal parts and a metal rod of the same diameter as the flexible cable or cord... : 1480 Vac d) live parts and an intermediate metal part... : e) intermediate metal parts and the body... : 3) Over reinforced insulation between the body and live parts... : No flashover or breakdown occurred 3650 Vac Test Report TUV 11023A:2011 Rev.0

11 age 11 of 26 Report Reference No.: Clause Requirement Test Measuring result Remark Verdict 6 MECHANICAL REUIREMENTS FOR CAS Mechanical reuirements for caps shall be in compliance with draft IEC Annex C (clause numbers between parentheses refer to draft IEC Annex C) 6.1 (C.7.1) Construction and assembly (C.7.1.1) Caps shall be so constructed and assembled to the bulbs that they remain attached during and after operation Compliance is checked by the following tests: Unused lamps Torque test to the pins 0,5 Nm for G5 caps 1,0 Nm for G13 or R17d caps The caps remain firmly attached to the bulb No rotational movement between component parts of the cap exceeding an angular displacement of 6º (C.7.1.2) Lamps after heat treatment a) Heating test for a period of h ± 50 h Test temperature... : 120 C b) G13 capped lamps with a nominal wattage greater than 40 W Test temperature... : Torque test after heating treatment 0,3 Nm for G5 caps 0,6 Nm for G13 or R17d caps The caps remain firmly attached to the bulb No rotational movement between component parts of the cap exceeding an angular displacement of 6º 7 TEMERATURE Temperature shall be in compliance with draft IEC Annex C (clause numbers between parentheses refer to draft IEC Annex C) 7.1 (C.4.4) The LED lamps shall not cause temperature higher than the corresponding lamp of IEC Test Report TUV 11023A:2011 Rev.0

12 age 12 of 26 Report Reference No.: Clause Requirement Test Measuring result Remark Verdict The LED lamp under test shall consist of a complete unit. Before measuring the temperature of the lamp under test, a reference fluorescent lamp with the same dimensions is operated with a reference control gear at a rated voltage. The temperature of that lamp is measured. Under the same conditions, the LED lamp under test is operated and its temperature measured. The LED lamp temperature shall not be higher in any position than that of the reference lamp. 7.2 Cap temperature rise Cap temperature shall be in compliance with EN (clause numbers between parentheses refer to EN 61195) Cap temperature rise dose not exceed 95 K...: 22.4 K for L06G1500MM; 22.5 K for L06F1200MM 8 FAULT CONDITIONS Fault conditions shall be in compliance with IEC (clause numbers between parentheses refer to IEC 62560) 8.1 (13.1) Lamps shall not impair safety when operated under fault conditions, which may occur during the intended use 8.2 (13.2) Extreme electrical conditions (dimmable lamps) 8.3 (13.3) Extreme electrical conditions (non-dimmable lamps) 8.4 (13.4) Short-circuit across capacitors (see appended table) 8.5 (13.5) Fault conditions across electronic components (see appended table) 8.6 (13.6) No fire, or produce flammable gases or smoke and live parts shall not become accessible To check if gases liberated from component parts are flammable or not, a test with a high-frequency spark generator is made. To check if accessible parts have become live, a test in according with cl. 7 is made Insulation resistance requirements of 8.1 or Electrical strength test in 1000Vdc Fault conditions shall be in compliance with draft IEC Annex C (clause numbers between parentheses refer to draft IEC Annex C) Test Report TUV 11023A:2011 Rev.0

13 age 13 of 26 Report Reference No.: Clause Requirement Test Measuring result Remark Verdict 8.7 (C.6) LED lamps shall be tested with an electronic control gear. rotective circuits of the electronic control gear, if existing, shall be disabled. The LED tube shut down immediately, no hazard. 9 CREEAGE DISTANCES AND CLEARANCES 9 (14) Creepage distances and clearances shall be in compliance with IEC (clause numbers between parentheses refer to IEC 62560) Creepage distances and clearances according to Table 3 and 4, as appropriate rinted boards see clause 14 of IEC/EN Insulating lining of metallic enclosures (see appended table) 10 SCREWS, CURRENT-CARRYING ARTS AND CONNECTIONS Screws, current-carrying parts and connections shall be in compliance with EN (clause numbers between parentheses refer to EN ) 10 (4.11) Electrical connections: 10 (4.11.1) Contact pressure 10 (4.11.2) Screws: - self-tapping screws - thread-cutting screws - at least two self-tapping screws 10 (4.11.3) Screw locking: - spring washer - rivets 10 (4.11.4) Material of current-carrying parts 10 (4.11.5) No contact to wood 10 (4.12) Mechanical connections and glands: 10 (4.12.1) Mechanical stress Screws not made of soft metal Screws of insulating material Torque test: part; torque (Nm)... : Securing screw of cap; 0.4 Nm Torque test: part; torque (Nm)... : Torque test: part; torque (Nm)... : 10 (4.12.2) Screw diameter < 3 mm screwed into metal 10 (4.12.4) Locked connections 10 (4.12.5) Screwed glands: force (N)... : 11 RESISTANCE TO HEAT Test Report TUV 11023A:2011 Rev.0

14 age 14 of 26 Report Reference No.: Clause Requirement Test Measuring result Remark Verdict Resistance to heat shall be in compliance with IEC (clause numbers between parentheses refer to IEC 62560) 11 (11) External parts of insulating material providing protection against electric shock, and parts of insulating material retaining live parts in position, ball pressure test: art tested; temperature ( C); diameter of Bobbin of transformer T1; impression ( 2 mm)...: 125 C; 0.4 mm art tested; temperature ( C); diameter of CB of LED driver; 125 C; impression ( 2 mm)...: 0.5 mm art tested; temperature ( C); diameter of Enclosure of cap; 125 C; impression ( 2 mm)...: 0.84 mm art tested; temperature ( C); diameter of Lens; 85 C; 0.61 mm impression ( 2 mm)...: art tested; temperature ( C); diameter of Bobbin of line filter GM1; impression ( 2 mm)...: 125 C; 0.95 mm art tested; temperature ( C); diameter of Base plate of starter; 125 C; impression ( 2 mm)...: 0.4 mm 12 RESISTANCE TO FLAME AND IGNITION Resistance to flame and ignition shall be in compliance with IEC (clause numbers between parentheses refer to IEC 62560) 12 (12) arts of insulating material retaining live parts in position and external parts of insulating material providing protection against electric shock, glowwire test 650 C art tested; temperature ( C)...: Lens; 650 C art tested; temperature ( C).....: Enclosure for LED driver; 650 C art tested; temperature ( C)...: Enclosure of starter; 650 C No visible flame and no sustained glowing Flames and glowing, extinguish within 30 s No ignition of the tissue paper 13 ELECTROMAGNETIC COMATIBILITY REQUIREMENTS Shall meet the requirement of radio disturbance See separate test report charactrisstics (EN 55015) In compliance with the EMC immunity requirements See separate test report (EN 61547) Test Report TUV 11023A:2011 Rev.0

15 age 15 of 26 Report Reference No.: Clause Requirement Test Measuring result Remark Verdict Meet the limits for harmonic current emissions See separate test report (EN ) Comply the limitation of voltage changes, See separate test report fluctuations and flickers in public low-voltage supply systems (EN ) 14 HOTOBIOLOGICAL SAFETY REQUIREMENTS Optical safety to be tested with IEC/EN All of the requirements, including marking provided by IEC TR shall be applied (DSH 0744) EN 62471:2008 See separate test report IEC :2009 See separate test report Test Report TUV 11023A:2011 Rev.0

16 age 16 of 26 Report Reference No.: Clause Requirement Test Measuring result Remark Verdict 8 TABLE: tests of fault conditions art Simulated fault Hazard Model L06G1500MM BD Short-circuited; fuse current: 0.107A 0A. Fuse(F1) opened, no hazard. YES/NO C2 Short-circuited; fuse current: 0.107A 0A. Fuse(F1) opened, no hazard. YES/NO Q1, Short-circuited; fuse current: 0.107A 0A. Fuse(F1) opened, Q1 damaged, no YES/NO in D-G hazard. Q1, Short-circuited; fuse current: 0.107A 0A. Fuse(F1) opened, Q1 damaged, no YES/NO in D-S hazard. Q1, Short-circuited; fuse current: 0.107A 0.005A. unit shut down, no hazard. YES/NO in S-G R29 Short-circuited; fuse current: 0.107A 0A. Q1 damaged, no hazard. YES/NO U2, Short-circuited; fuse current: 0.107A 0.005A. Fuse(F1) opened, U2 damaged, no YES/NO in 3-8 hazard. U3, Short-circuited; fuse current: 0.107A 0.005A. Unit shut down, no hazard. YES/NO in 1-2 U3, Short-circuited; fuse current: 0.107A 0.005A. Unit shut down, no hazard. YES/NO in 3-4 T1, Short-circuited; fuse current: 0.107A 0.005A. Unit shut down, no hazard. YES/NO in 1-3 T1, Short-circuited; fuse current: 0.107A 0.005A. Unit shut down, no hazard. YES/NO in 1-5 T1, Short-circuited; fuse current: 0.107A 0A. Fuse(F1) opened, Q1 damaged, no YES/NO in 6-7 hazard. T1, Short-circuited; fuse current: 0.107A 0.005A. Unit shut down, no hazard. YES/NO in D3 Short-circuited; fuse current: 0.107A 0A. Fuse(F1) opened, Q1 damaged, no hazard. YES/NO Model L06F1200MM BR1 Short-circuited; fuse current: 0.098A 0A. Fuse(F1) opened, no hazard. YES/NO C2 Short-circuited; fuse current: 0.098A 0A. Fuse(F1) opened, no hazard. YES/NO Q1, Short-circuited; fuse current: 0.098A 0A. Fuse(F1) opened, Q1 damaged, no YES/NO in D-G hazard. Q1, Short-circuited; fuse current: 0.098A 0A. Fuse(F1) opened, Q1 damaged, no YES/NO in D-S hazard. Q1, Short-circuited; fuse current: 0.098A 0.005A. unit shut down, no hazard. YES/NO in S-G R15 Short-circuited; fuse current: 0.098A 0A. Q1 damaged, Fuse(F1) opened, no YES/NO hazard. U2, Short-circuited; fuse current: 0.098A 0.005A. Unit shut down, no hazard YES/NO in 1-2 U2, Short-circuited; fuse current: 0.098A 0.005A. Unit shut down, no hazard. YES/NO in 3-4 D8 Short-circuited; fuse current: 0.098A 0.005A. Unit shut down, no hazard. YES/NO C8 Short-circuited; fuse current: 0.098A 0.005A. Unit shut down, no hazard. YES/NO T1, Short-circuited; fuse current: 0.098A 0.005A. Unit shut down, no hazard. YES/NO in 1-2 T1, in 3-4 Short-circuited; fuse current: 0.098A 0.005A. Unit shut down, no hazard. YES/NO Test Report TUV 11023A:2011 Rev.0

17 age 17 of 26 Report Reference No.: Clause Requirement Test Measuring result Remark Verdict 9 CREEAGE DISTANCES AND CLEARANCES Minimum distances for a.c. (50/60 Hz) sinusoidal voltages For Model L06G1500MM (representative model for L05G series and L06G series) RMS working voltage (V) not exceeding minimum distances between live parts of different polarity. Specify the value measured. 2 minimum distances between live parts and accessible parts which are permanently fixed to the lamp control gear, including screws or devices for fixing covers or fixing the lamp control gear to its support. Specify the value measured. 3 minimum distances for ballasts declared protected against accidental contact between live parts and the outer accessible surface of insulating parts - required creepage distances (mm), Basic insulation TI required creepage distances (mm), Basic insulation TI < required creepage distances (mm), Supplementary insulation TI 600 9,9 mm (Betwee n L and N); 10,4 mm (Betwee n pins of fuse) 1,7 mm (Betwe en trace of LED board and heatsin k) 6,6 mm (Betwee n trace of L&N and heatsink ) 8,0 mm (Betwee n the traces of primary circuit and seconda ry circuit); 8,0 mm (Betwee n primary pin and seconda ry pin of CY1); 7,0 mm (Betwee n primary pin and seconda ry pin of U3) 0,6 0,8 1, ,5 1,2 1,6 2, ,8 1, ,5 Test Report TUV 11023A:2011 Rev.0

18 age 18 of 26 Report Reference No.: Clause Requirement Test Measuring result Remark Verdict - required creepage distances (mm), Supplementary insulation TI < required creepage distances (mm), Reinforced insulation 1 minimum distances between live parts of different polarity. Specify the value measured. 2 minimum distances between live parts and accessible parts which are permanently fixed to the lamp control gear, including screws or devices for fixing covers or fixing the lamp control gear to its support. Specify the value measured. - 1,6 2, , ,9 mm (Betwee n L and N); 10,4 mm (Betwee n pins of fuse) 1,7 mm (Betwe en trace of LED board and heatsin k) 8,0 mm (Betwee n the traces of primary circuit and seconda ry circuit); 8,0 mm (Betwee n primary pin and seconda ry pin of CY1); 7,0 mm (Betwee n primary pin and seconda ry pin of U3 Test Report TUV 11023A:2011 Rev.0

19 age 19 of 26 Report Reference No.: Clause Requirement Test Measuring result Remark Verdict 3 minimum distances for ballasts declared protected against accidental contact between live parts and the outer accessible surface of insulating parts - required clearance distances (mm), Basic insulation - required clearance distances (mm), Supplementary insulation - required clearance distances (mm), Reinforced insulation 8,0 mm (Betwee n the traces of primary circuit and seconda ry circuit); 8,0 mm (Betwee n primary pin and seconda ry pin of CY1); 7,0 mm (Betwee n primary pin and seconda ry pin of U3 0,2 0,8 1, ,5-0,8 1, ,5-1, Test Report TUV 11023A:2011 Rev.0

20 age 20 of 26 Report Reference No.: Clause Requirement Test Measuring result Remark Verdict 9 CREEAGE DISTANCES AND CLEARANCES Minimum distances for a.c. (50/60 Hz) sinusoidal voltages For Model L06F1200MM RMS working voltage (V) not exceeding minimum distances between live parts of different polarity. Specify the value measured. 2 minimum distances between live parts and accessible parts which are permanently fixed to the lamp control gear, including screws or devices for fixing covers or fixing the lamp control gear to its support. Specify the value measured. 3 minimum distances for ballasts declared protected against accidental contact between live parts and the outer accessible surface of insulating parts - required creepage distances (mm), Basic insulation TI required creepage distances (mm), Basic insulation TI < 600 5,0 mm (Betwee n L and N); 3.0 mm (Betwee n pins of fuse) 4,5 mm (Betwe en trace of LED board and heatsin k) 11,5 mm (Betwee n trace of L&N and heatsink ) 5,6 mm (Betwee n the traces of primary circuit and seconda ry circuit); 7,1 mm (Betwee n primary pin and seconda ry pin of CY1); 7,2 mm (Betwee n primary pin and seconda ry pin of U2) 0,6 0,8 1, ,5 1,2 1,6 2, Test Report TUV 11023A:2011 Rev.0

21 age 21 of 26 Report Reference No.: Clause Requirement Test Measuring result Remark Verdict - required creepage distances (mm), Supplementary insulation TI required creepage distances (mm), Supplementary insulation TI < required creepage distances (mm), Reinforced insulation 1 minimum distances between live parts of different polarity. Specify the value measured. 2 minimum distances between live parts and accessible parts which are permanently fixed to the lamp control gear, including screws or devices for fixing covers or fixing the lamp control gear to its support. Specify the value measured. 3 minimum distances for ballasts declared protected against accidental contact between live parts and the outer accessible surface of insulating parts - required clearance distances (mm), Basic insulation - required clearance distances (mm), Supplementary insulation - 0,8 1, ,5-1,6 2, , ,0 mm (Betwee n L and N); 3.0 mm (Betwee n pins of fuse) 3,0 mm (Betwe en trace of LED board and heatsin k) 11,5 mm (Betwee n trace of L&N and heatsink ) 5,6 mm (Betwee n the traces of primary circuit and seconda ry circuit); 7,1 mm (Betwee n primary pin and seconda ry pin of CY1); 7,2 mm (Betwee n primary pin and seconda ry pin of U3) 0,2 0,8 1, ,5-0,8 1, ,5 Test Report TUV 11023A:2011 Rev.0

22 age 22 of 26 Report Reference No.: Clause Requirement Test Measuring result Remark Verdict - required clearance distances (mm), Reinforced insulation - 1, Test Report TUV 11023A:2011 Rev.0

23 age 23 of 26 Report Reference No.: Clause Requirement Test Measuring result Remark Verdict object/part No. Transparent cover Cap enclosure Enclosure for LED driver CB lamp panel for L06F1200MM CB lamp panel for L05G,L06G CB for LED driver manufacturer/ trademark Teijin olycarbonate Singapore te Ltd Sabic Innovative lastics Japan L L C Teijin olycarbonate Singapore te Ltd. Dongguan He Tong Electronics Co., Ltd. type/model technical data standard mark(s) of conformity 1 ) C, Rated V-0, -- LN-1250G 105 C, UL min. 1,2 mm thick C, Rated V-0, -- C C, UL min. 1,5 mm thick LN-1250G C, Rated V-0, 80 C, min. 0.4 mm thick. -- UL CEM1 V-0, 130 C -- UL Chin-oon Industrial Co., Ltd. MA4 V-0, 130 C -- UL Dongguan He Tong Electronics Co., Ltd. CEM1 V-0, 130 C -- UL LED driver for L05G600MM, L05G900MM, L05G1200MM, L05G1500MM, L06G600MM, L06G900MM, L06G1200MM-264, L06G1200MM-216, L06G1500MM Dongguan - Fuse(F1) Hongda Electronic 31TC T1 A, 250 V IEC VDE Co., Ltd. - Varistor(RV1) - Bridge Diode(BD) - Transistor (Q1) Brightking (Shenzhen) Co., Ltd Everlight OTOCOULER Electronics Co., (U3) Ltd. - X-Capacitors (C1) (X2 type) Tenta Electric Industrial Co., Ltd. Tai Shan City - Y- Capacitors Juhong (Y1,Y2) (Y1 type) Electronics Ltd. - Line Filter (GM1) - - Bobbin Yubo Electrnic Dian Zi Ke Ji Co.,.Ltd. Chang Chun lastics Co., Ltd. 05D471K EL817V MEX JB-series Min.300 Vac, 85 C Min. 0.6A, Min. 600V Min. 0.6A, Min. 600V Di = 0.5mm, int. dcr. = 6.0mm, ext. dcr. = 7.7 mm 100 C Max.0.1 uf, 100 C. Min.275 Vac. Max.1000pF, 85 C. Min.400 Vac. IEC , IEC , IEC VDE EN IEC IEC UU9.8W 30 mh, 130 C. -- VDE VDE VDE Tested with appliance T375J V-0, 150 C.min. -- UL Test Report TUV 11023A:2011 Rev.0

24 age 24 of 26 Report Reference No.: Clause Requirement Test Measuring result Remark Verdict object/part No. - - Tape manufacturer/ trademark Suzhou Mailaduona Electric Material Co., Ltd. type/model technical data standard mark(s) of conformity 1 ) thickness 0,48 mm JY312(#) 130 C -- UL -- Winding Rating 130 C -- UL - Line Filter (L1,L2) - Transformer (T1) -- Bobbin Yubo Electrnic Dian Zi Ke Ji Co., Ltd. Shenzhen Trust Technology Co.,Ltd Chang Chun lastics Co., Ltd. XYY-L XYY-EC T375J 1 mh, 130 C -- Tested with appliance Class B henolic, V-0, 150 degree C -- UL -- Winding of T Rating 130 C -- UL -- Triple insulation wire -- Insulation Tape Dah Jin Technology Co., Ltd. TLW-B 130 C -- Jingjiang Yahua Z 130 C -- UL ressure Sensitive Glue Co., Ltd. LED Driver for model L06F1200MM Shenzhen Lanson - Fuse(F1) Electronics Co., Ltd. 3K T2 A, 250 V IEC VDE - Varistor(RV1) - Bridge diode(br1) - Transistor (Q1) Hongzhi Enterprises Ltd Everlight OTOCOULER Electronics Co., (U2) Ltd HEL-07D471K EL817V - Alternative Sharp Corporation C817 -Y-Capacitors (CY1) (Y1 type) Shantou High-New Technology Dev. Zone Songtian Enterprise Co., Ltd. CD-series Min.300 Vac, 85 C Min. 0.6A, Min. 600V Min. 0.6A, Min. 600V Di = 0.5mm, int. dcr. = 6.0mm, ext. dcr. = 7.7 mm 100 C Di>0.4mm, int dcr=7.6 mm, ext dcr=7.6mm, 125 C. Max.2200pF, 125 C. Min.400 Vac. IEC , IEC , IEC VDE VDE EN EN IEC/EN X-Capacitors Shenzhen Su MK/MX Max.0.1 uf, 100 C. IEC/EN VDE VDE VDE VDE Test Report TUV 11023A:2011 Rev.0

25 age 25 of 26 Report Reference No.: Clause Requirement Test Measuring result Remark Verdict object/part No. (CX1,CX2) (X2 type) - Line Filter (LF2) -- Bobbin -- Insulation Tape manufacturer/ trademark Rong Capacitors Co., Ltd. Shenzhen Zhidayue Electronics Co.,Ltd. Chang Chun lastics Co Ltd type/model technical data standard mark(s) of conformity 1 ) Min.280 Vac. EE12-40mH 40 mh, 130 C. -- T375J V-0, 150 C.min. thickness 0,48 mm Tested with appliance -- UL Jingjiang Yahua Z 130 C -- UL ressure Sensitive Glue Co Ltd -- Winding Various Various Rating 130 C -- UL - Line Filter (LF1) -- Bobbin -- Triple insulation wire Guangzhou Oema Electronics Science & Technology CO.,LTD Chang Chun lastics Co Ltd Dah Jin Technology Co., Ltd. T6X3X2C 0.11 mh, 130 C. -- T375J V-0, 150 C.min. thickness 0,48 mm Tested with appliance -- UL TLW-B 130 C -- VDE -- Winding Rating 130 C -- UL - Line Filter (L1) -- Bobbin Shenzhen Zhidayue Electronics Co., Ltd. Chang Chun lastics Co., Ltd. LH0912-2mH 2 mh, 130 C -- T375J V-0, 150 C.min. thickness 0,48 mm Tested with appliance -- UL - - Winding Various Various Rating 130 C -- UL - Transformer (T1) -- Bobbin Guangzhou Oema Electronics Science & Technology Co., Ltd. Chang Chun lastics Co., Ltd. EDR2510 Class B T375J henolic, V-0, 150 degree C -- UL -- Winding of T1 Various Various Rating 130 C -- UL -- Triple insulation wire -- Tube Dah Jin Technology Co., Ltd. Shenzhen Woer Heat-Shrinkable Material Co., Ltd. TLW-B 130 C -- VDE WF 600V,200 C -- UL -- Insulation Jingjiang Yahua Z 130 C -- UL Test Report TUV 11023A:2011 Rev.0

26 age 26 of 26 Report Reference No.: Clause Requirement Test Measuring result Remark Verdict object/part No. Tape Internal wire (sleeved by tubing) manufacturer/ trademark ressure Sensitive Glue Co., Ltd. Various type/model technical data standard mark(s) of conformity 1 ) Various Tubing Various Various LED (for L06F1200MM) LED (for L05G series and L06G series) Everlight Everlight - alternate Everlight - alternate Everlight - alternate Everlight Base plate of fuse starter Enclosure of fuse starter Jiangyanshi Huiming Lighting&Electrica l Factory Jiangyanshi Huiming Lighting&Electrica l Factory VW-1, min.26awg,300v, min.80 C VW-1, 600 V, 125 C VF: max V 45-21UJC/ /T IF: 30 ma, R8 5000K-6000K VF: max. 3.6 V 67-21/LK2C- BX50702C6CB2/2 IF: 30 ma, T 2700K-3500K VF: max. 3.6 V 67-21/LK2C- BX50702C6CB2/2 IF: 30 ma, T 4000K-5000K VF: max. 3.6 V 67-21/LK2C- BX50702C6CB2/2 IF: 30 ma, T 5000K-6000K VF: max. 3.6 V 67-21/LK2C- BX50702C6CB2/2 IF: 30 ma, T 6000K-8000K -- UL -- UL EN EN EN EN EN FS-U-S FS-U-F Tested with appliance Tested with appliance Tested with appliance Tested with appliance Tested with appliance Tested with appliance Tested with appliance Test Report TUV 11023A:2011 Rev.0

27 Enclosure 1 Test report for EN 62471:2008 Summary of testing: All tests passed according to EN 62471:2008 The test sample was configured for continuous emission and powered by 240 Vac The LED output power was measured under normal conditions noted in details of measurement procedure and measurement results Measurement results: L06G1500MM: See pages 9 (CCT: 2700K-3500K) L06G1500MM: See pages 10 (CCT: 4000K-5000K) L06G1500MM: See pages 11 (CCT: 5000K-6000K) L06G1500MM: See pages 12 (CCT: 6000K-8000K) L06F1200MM: See pages 13 (CCT: 5000K-6000K) Test item particulars: Tested lamp... : continuous wave lamps pulsed lamps Tested lamp system... : Lamp classification group... : exempt risk 1 risk 2 risk 3 Lamp cap... : G13 Bulb... : LED Rated of the lamp... : 240 Vac Furthermore marking on the lamp... : Seasoning of lamps according IEC standard... : Aging 1h Used measurement instrument... : According to standard instruments of EN 62471:2008 Temperature by measurement... : 25 C Information for safety use... : Exempt group General product information: All series models was complied with the requirements of Exempt group LED roduct according to EN 62471:2008 age 1 of 13

28 Enclosure 1 EN Clause Requirement + Test Result Remark Verdict 4 EXOSURE LIMITS Contents of the whole Clause 4 of IEC 62471:2006 moved into a new informative Annex ZB Limits of the Artificial Optical Radiation Directive (2006/25/EC) have been applied instead of those fixed in IEC 62471: General First paragraph deleted 5 MEASUREMENT OF LAMS AND 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 IEC lamp standard Test environment For specific test conditions, see the appropriate IEC 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 IEC lamp standard, or the manufacturer s recommendation Test condition: Input voltage: 240 Vac, Measuring distance: 50 cm for L06G1500MM, K 59 cm for L06G1500MM, K 40cm for L06G1500MM, K 61 cm for L06G1500MM, K 72 cm for L06F1200MM, K Lamp system operation The power source for operation of the test lamp shall be provided in accordance with: age 2 of 13

29 Enclosure 1 the appropriate IEC standard, or 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, 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. see table 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 age 3 of 13

30 Enclosure 1 The quality of all measurement results must be quantified by an analysis of the uncertainty. 6 LAM CLASSIFICATION 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 light sources, including pulsed lamp sources, the hazard values shall be reported at a distance of 200 mm see table Continuous wave lamps Except 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 (E eff ) within 8-hours exposure (30000 s), nor a near-uv hazard (E UVA ) within 1000 s, (about 16 min), nor a retinal blue-light hazard (L B ) within s (about 2,8 h), nor a retinal thermal hazard (L R ) within 10 s, nor an infrared radiation hazard for the eye (E IR ) 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 (E eff ) within s, nor a near ultraviolet hazard (E UVA ) within 300 s, nor a retinal blue-light hazard (L B ) within 100 s, nor a retinal thermal hazard (L R ) within 10 s, nor an infrared radiation hazard for the eye (E IR ) within 100 s Lamps that emit infrared radiation without a strong visual stimulus and do not pose a near-infrared retinal hazard (L IR ), within 100 s are in Risk Group Risk Group 2 (Moderate-Risk) age 4 of 13

31 Enclosure 1 This requirement is met by any lamp that exceeds the limits for Risk Group 1, but that does not pose: an actinic ultraviolet hazard (E eff ) within 1000 s exposure, nor a near ultraviolet hazard (E UVA ) within 100 s, nor a retinal blue-light hazard (L B ) within 0,25 s (aversion response), nor a retinal thermal hazard (L R ) within 0,25 s (aversion response), nor an infrared radiation hazard for the eye (E IR ) within 10 s Lamps that emit infrared radiation without a strong visual stimulus and do not pose a near-infrared retinal hazard (L IR ), 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 5 of 13

32 Enclosure 1 EN Clause Requirement + Test Result Remark Verdict Table 4.1 Spectral weighting function for assessing ultraviolet hazards for skin and eye - age 6 of 13

33 Enclosure 1 EN Clause Requirement + Test Result Remark Verdict Table 4.2 Spectral weighting functions for assessing retinal hazards from broadband optical sources - Wavelength nm Blue-light hazard function B ( ) Burn hazard function R ( ) 300 <380 0, ,01 0, ,013 0, ,025 0, ,05 0, , , , , , ,95 9, ,98 9, ,97 9, ,94 9, , , , ,62 6, ,55 5, ,45 4, ,32 3, ,22 2, ,16 1, , < ,02(450- ) 1 600< 700 0, < ,002(700- ) 1050< ,2 1150< , ,02(1150- ) 1200< ,02 age 7 of 13

34 Enclosure 4 EN Clause Requirement + Test Result Remark Verdict Table 5.4 Summary of the ELs for the surface of the skin or cornea (irradiance based values) - Hazard Name Actinic UV skin & eye Relevant equation Wavelength range nm Exposure duration sec Limiting aperture rad (deg) EL in terms of constant irradiance W m -2 E eff = E S( ) < ,4 (80) 30/t Eye UV-A E UVA = E < ,4 (80) 10000/t Blue-light small source E B = E B( ) > < 0, /t 0,01 Eye IR E IR = E > ,4 (80) 18000/t 0, Skin thermal E skin = E < 10 2 sr 20000/t 0,75 Table 5.5 Summary of the ELs for the retina (radiance based values) - Hazard Name Relevant equation Wavelength range nm Blue light L B = L B( ) Retinal thermal L R = L R( ) Retinal thermal (weak visual stimulus) Exposure 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 /( t 0,25 ) 50000/( t 0,25 ) L IR = L R( ) > 10 0, / age 8 of 13

35 Enclosure 1 EN Clause Requirement + Test Result Remark Verdict Table 6.1 Emission limits for risk groups of continuous wave lamps (based on EU Directive 2006/25/EC) Risk Model no.... : L06G1500MM (CCT: K) - Action spectrum Symbol Units Emission Measurement Exempt Low risk Mod risk Limit Result Limit Result Limit Result Actinic UV S UV ( ) E eff W m -2 0, Near UV E UVA W m -2 0, Blue light B( ) L B W m -2 sr Blue light, small source B( ) E B W m -2 0,01* - 1,0 400 Retinal thermal R( ) L R W m -2 sr / 71000/ Retinal thermal, weak visual stimulus** R( ) L IR W m -2 sr ,0017 0, / 0,011 0,1 IR radiation, eye E IR W m * Small source defined as one with < 0,011 radian. Averaging field of view at s is 0,1 radian. ** Involves evaluation of non-gls source NOTE The action functions: see Table 4.1 and Table 4.2 The applicable aperture diameters: see The limitations for the angular subtenses: see The related measurement condition and the range of acceptance angles: see Table age 9 of 13

36 Enclosure 1 EN Clause Requirement + Test Result Remark Verdict Table 6.1 Emission limits for risk groups of continuous wave lamps (based on EU Directive 2006/25/EC) Model no.... : L06G1500MM (CCT: K) - Risk Emission Measurement Action Symbol Units Exempt Low risk Mod risk spectrum Limit Result Limit Result Limit Result Actinic UV S UV ( ) E eff W m -2 0, Near UV E UVA W m -2 0, Blue light B( ) L B W m -2 sr Blue light, small source B( ) E B W m -2 0,01* - 1,0 400 Retinal thermal R( ) L R W m -2 sr / 71000/ Retinal thermal, weak 0,0017 0,011 R( ) L IR W m -2 sr -1 visual stimulus** 6000/ - 0,011 0,1 IR radiation, eye E IR W m * Small source defined as one with < 0,011 radian. Averaging field of view at s is 0,1 radian. ** Involves evaluation of non-gls source NOTE The action functions: see Table 4.1 and Table 4.2 The applicable aperture diameters: see The limitations for the angular subtenses: see The related measurement condition and the range of acceptance angles: see Table 5.5 age 10 of 13

37 Enclosure 1 EN Clause Requirement + Test Result Remark Verdict Table 6.1 Emission limits for risk groups of continuous wave lamps (based on EU Directive 2006/25/EC) Model no.... : L06G1500MM (CCT: K) - Risk Emission Measurement Action Symbol Units Exempt Low risk Mod risk spectrum Limit Result Limit Result Limit Result Actinic UV S UV ( ) E eff W m -2 0, Near UV E UVA W m -2 0, Blue light B( ) L B W m -2 sr Blue light, small source B( ) E B W m -2 0,01* - 1,0 400 Retinal thermal R( ) L R W m -2 sr / 71000/ Retinal thermal, weak 0,0017 0,011 R( ) L IR W m -2 sr -1 visual stimulus** 6000/ - 0,011 0,1 IR radiation, eye E IR W m * Small source defined as one with < 0,011 radian. Averaging field of view at s is 0,1 radian. ** Involves evaluation of non-gls source NOTE The action functions: see Table 4.1 and Table 4.2 The applicable aperture diameters: see The limitations for the angular subtenses: see The related measurement condition and the range of acceptance angles: see Table 5.5 age 11 of 13

38 Enclosure 1 EN Clause Requirement + Test Result Remark Verdict Table 6.1 Emission limits for risk groups of continuous wave lamps (based on EU Directive 2006/25/EC) Model no.... : L06G1500MM (CCT: K) - Risk Emission Measurement Action Symbol Units Exempt Low risk Mod risk spectrum Limit Result Limit Result Limit Result Actinic UV S UV ( ) E eff W m -2 0, Near UV E UVA W m -2 0, Blue light B( ) L B W m -2 sr Blue light, small source B( ) E B W m -2 0,01* - 1,0 400 Retinal thermal R( ) L R W m -2 sr / 71000/ Retinal thermal, weak 0,0017 0,011 R( ) L IR W m -2 sr -1 visual stimulus** 6000/ - 0,011 0,1 IR radiation, eye E IR W m * Small source defined as one with < 0,011 radian. Averaging field of view at s is 0,1 radian. ** Involves evaluation of non-gls source NOTE The action functions: see Table 4.1 and Table 4.2 The applicable aperture diameters: see The limitations for the angular subtenses: see The related measurement condition and the range of acceptance angles: see Table 5.5 age 12 of 13

39 Enclosure 1 EN Clause Requirement + Test Result Remark Verdict Table 6.1 Emission limits for risk groups of continuous wave lamps (based on EU Directive 2006/25/EC) Model no.... : L06F1200MM (CCT: K) - Risk Emission Measurement Action Symbol Units Exempt Low risk Mod risk spectrum Limit Result Limit Result Limit Result Actinic UV S UV ( ) E eff W m -2 0, Near UV E UVA W m -2 0, Blue light B( ) L B W m -2 sr Blue light, small source B( ) E B W m -2 0,01* - 1,0 400 Retinal thermal R( ) L R W m -2 sr / 71000/ Retinal thermal, weak 0,0017 0,011 R( ) L IR W m -2 sr -1 visual stimulus** 6000/ - 0,011 0,1 IR radiation, eye E IR W m * Small source defined as one with < 0,011 radian. Averaging field of view at s is 0,1 radian. ** Involves evaluation of non-gls source NOTE The action functions: see Table 4.1 and Table 4.2 The applicable aperture diameters: see The limitations for the angular subtenses: see The related measurement condition and the range of acceptance angles: see Table 5.5 age 13 of 13

40 Enclosure 2 Test report for IEC :2009 IEC Clause Requirement + Test Result - Remark Verdict 4 RISK GROUS ALIED FOR OTICAL RADIATION SAFETY ASSESSMENTS 4.1 Basis for optical radiation safety classification Exempt Group (RG 0) Exempt group Risk Group 1 (RG 1) Risk Group 2 (RG 2) Risk Group 3 (RG 3) 4.2 Assessment Criteria General Lighting Service (GLS) Other Applications 4.3 Application-related issues Near-infrared sources Application likely to result in chronic and lengthy exposures of the eye for periods greater than 1000s and the daily averaged irradiance is expected to be at least 100 Wm oint sources Incoherent optical radiation source appears as a nearly monochromatic point source IEC Standard used Application-related vertical standards Vertical standard used 5 GUIDELINES FOR LAM AND LAM SYSTEM MANUFACTURERS ON HOW TO ALY IEC Limit values General Exempt group Limits provided in irradiance/radiant exposure Spectral range 200nm to 400nm or 1400nm to 3000nm Lamp employed with additional integrated or attached modifying or projection optics Limits provided in (time integrated) radiance rinciple of conversation of radiance used Assessment of single lamp or LED is directly transferable to the lamp system or luminaire 5.2 Guidelines for lamp/led manufacturers age 1 of 4

41 Enclosure 2 IEC Clause Requirement + Test Result - Remark Verdict General Exempt group Measurement conditions Spectral range 200nm to 400nm or 1400nm to 3000nm Source radiance in the case of spatially averaged radiance or time-integrated radiance Angle of acceptance Application-specific requirements used when the use of a product is known and unambiguous (See sub-clause 4.2 and 4.3) Multi-purpose lamps or non-application specific requirements. Measurements made at a distance of 200mm Risk group and values for single lamps and components appear in the user manual User Information The user information includes the Risk Group classification of a lamp that can be used for risk group classification of a lamp system Information is given on Risk Group classification for intended use (See sub-clause 4.2 and 4.3). Reclassification may be necessary if the lamp is used in other applications. In the 200nm to 400nm or 1400nm to 3000nm range, where the classification is based on irradiance or radiant exposure, the assessment of a single lamp cannot be automatically transferred to the final lamp system. 5.3 Guidelines for lamp system/luminaire manufacturers Exempt group General Exempt group Sources for general lighting service (GLS) Hazard value reported as irradiance or spatially averaged radiance at a distance which produces an illuminance of 500 lux Exempt Group classification with respect to skin hazard User warning for skin access longer than 1hr where the illuminance is likely to exceed 500 lux GLS-classification of the lamp directly transferable to the lamp system/luminaire if classification based on radiance or time-integrated radiance and where irradiance-dependant hazards can be neglected age 2 of 4

42 Enclosure 2 IEC Clause Requirement + Test Result - Remark Verdict Multi-purpose lamps Classification based on the most restrictive radiance or time-integrated radiance criteria Classification based on irradiance or radiant exposure Radiance to irradiance considered Determination of the hazard distance 5.4 Labelling Hazard distances provided for risk group assigned and to all risk groups below the assigned Hazard Spectral Region Exempt group Risk Group Labelling location CAUTION / WARNING label text 5.5 Other information provisions User information provided for lamps and lamp systems in excess of Exempt Risk Group a) Lamp or lamp system is in excess of the Exempt Group and the viewer-related risk is dependent upon how the users install and use the product b) Most restrictive optical radiation hazard and other optical radiation hazards in excess of Exempt Group (see Table 1) c) Exposure hazard values (EHVs) and the hazard distances with optional graphical presentation of distant-dependent EHV d) Hazard distances (HD) for all relevant viewer-related risk groups below the assigned one (see Tables 1 and 2) e) Adequate instructions for proper assembly, installation, maintenance and safe use, including clear warnings concerning precautions to avoid possible exposure to hazardous optical radiation Exempt group age 3 of 4

43 Enclosure 2 IEC Clause Requirement + Test Result - Remark Verdict f) Advice on safe operating procedures and warnings concerning reasonably foreseeable malpractices, malfunctions and hazardous failure modes. Where maintenance procedures are detailed, they, wherever possible, include explicit instructions on safe procedures to be followed g) Reproduction of the labelling required in 5.4 and an explanation of its meaning shown in Table 2 h) Information on what type of user controls may be considered Multiple hazard spectral region labelling 6 Allocation of Safety Measures 6.1 General Filters or enclosures employed Exempt group Safety information provided to user with description of user controls Restricted access areas 6.2 Maximum acceptable viewer related risk Application-specific conditions or foreseeable access Minimum distance and maximum exposure duration Exempt group Unintentional short term Intermittent, occasional (or possible) short term Intentional (or likely) long-term Risk Group of the lamp system Risk Group assessed under application specific conditions viewer related risk Additional assessment required by applicationrelated vertical standard Safety measures for servicing and maintenance personnel age 4 of 4

44 Enclosure 3 roject Manager:Jay Chen age 1 of 19 hotos Model no. L05G600MM Model no. L05G600MM

45 Enclosure 3 roject Manager:Jay Chen age 2 of 19 hotos Model no. L05G900MM Model no. L05G900MM

46 Enclosure 3 roject Manager:Jay Chen age 3 of 19 hotos Model no. L05G1200MM Model no. L05G1200MM

47 Enclosure 3 roject Manager:Jay Chen age 4 of 19 hotos Model no. L05G1500MM Model no. L05G1500MM

48 Enclosure 3 roject Manager:Jay Chen age 5 of 19 hotos Model no. L05G series Model no. L05G series

49 Enclosure 3 roject Manager:Jay Chen age 6 of 19 hotos Model no. L05G series Model no. L05G series

50 Enclosure 3 roject Manager:Jay Chen age 7 of 19 hotos Model no. L06G600MM Model no. L06G600MM

51 Enclosure 3 roject Manager:Jay Chen age 8 of 19 hotos Model no. L06G900MM Model no. L06G900MM

52 Enclosure 3 roject Manager:Jay Chen age 9 of 19 hotos Model no. L06G1200MM Model no. L06G1200MM

53 Enclosure 3 roject Manager:Jay Chen age 10 of 19 hotos Model no. L06G1500MM Model no. L06G1500MM

54 Enclosure 3 roject Manager:Jay Chen age 11 of 19 hotos Model no. L06G series Model no. L06G series

55 Enclosure 3 roject Manager:Jay Chen age 12 of 19 hotos Model no. L06G series Model no. LED driver board for L05G series and L06G series

56 Enclosure 3 roject Manager:Jay Chen age 13 of 19 hotos Model no. LED driver board for L05G series and L06G series Model no. L06F1200MM

57 Enclosure 3 roject Manager:Jay Chen age 14 of 19 hotos Model no. L06F1200MM Model no. L06F1200MM

58 Enclosure 3 roject Manager:Jay Chen age 15 of 19 hotos Model no. L06F1200MM Model no. L06F1200MM

59 Enclosure 3 roject Manager:Jay Chen age 16 of 19 hotos Model no. L06F1200MM Model no. LED driver board for L06F1200MM

60 Enclosure 3 roject Manager:Jay Chen age 17 of 19 hotos Model no. LED driver board for L06F1200MM Model no. LED driver board for L06F1200MM

61 Enclosure 3 roject Manager:Jay Chen age 18 of 19 hotos Model no. LED driver board for L06F1200MM Model no. Fuse starter

62 Enclosure 3 roject Manager:Jay Chen age 19 of 19 hotos Model no. Fuse starter

TEST REPORT IEC and/or EN Photobiological safety of lamps and lamp systems

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