APPLICATION FOR LOW VOLTAGE DIRECTIVE On Behalf of. : Shenzhen Qinhan Lighting Co.,Ltd

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1 age 1 of 55 Report o. R S-1 ALICATIO FOR LOW VOLTAGE DIRECTIVE On Behalf of Shenzhen Qinhan Lighting Co.,Ltd LED Flood Light Model: QH-FLXH01-50W, QH-FLXH02-100W, QH-FLXH03-150W, QH-FLXH04-200W, QH-FLXH06-300W, QH-FLXH08-400W repared For : Shenzhen Qinhan Lighting Co.,Ltd 5/F, Building B, Ideemonto Industrial ark, Shutianpu Community, Gongming Town, Guangming ew District, Shenzhen City, Guangdong, China repared By : Shenzhen Anbotek Compliance Laboratory Limited 1/F., Building 1, SEC Industrial ark, o Qianhai Road, anshan District, Shenzhen, Guangdong, China Tel: Fax: (86) (86) Date of Test: Sep. 13, 2016 to Sep. 23, 2016 Date of Report: Sep. 23, 2016 Report umber: R S-1

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3 age 3 of 55 Report o. R S-1 Test item particulars Classification of installation and use.....: Supply connection.... : rotection class. : Degree of protection. : Fixed luminaire for floodlighting ower cord I I65 Test case verdicts Test case does not apply to the test object...: Test item does meet the requirement...: Test item does not meet the requirement.: (.A.) (ass) F(ail) Testing Date of receipt of test item...: Sep. 13, 2016 Date(s) of performance of test : Sep. 13, 2016 to Sep. 23, 2016 General remarks This report shall not be reproduced except in full without the written approval of the testing laboratory. The test results presented in this report relate only to the item tested. Clause numbers between brackets refer to clauses in E "(see remark #)" refers to a remark appended to the report. "(see Annex #)" refers to an annex appended to the report. Throughout this report a comma is used as the decimal separator. According to the EU directives which have been aligned with EU LF (new legislative framework), both of manufacturer and importer s name and address shall be affixed on the product or, where that is not possible, on its packaging or in a document accompanying the product before the product is placed on the EU market. Copy of marking plate Formed as following: LED Flood Light Model o.: QH-FLXH08-400W Rating: V~, 50/60Hz, 400W I65 Manfuacturer: Shenzhen Qinhan Lighting Co.,Ltd Address: 5/F, Building B, Ideemonto Industrial ark, Shutianpu Community, Gongming Town, Guangming ew District, Shenzhen City, Guangdong, China Importer: XXX Address: XXX Location: Sticking on the enclosure. (Size: height of CE mark at least 5mm, height of WEEE mark at least 7mm, height of letters and numerals at least 2mm.)

4 age 4 of 55 Report o. R S-1 Attachment Model o: QH-FLXH01-50W QH-FLXH02-100W QH-FLXH03-150W QH-FLXH04-200W QH-FLXH06-300W QH-FLXH08-400W Rating power 50W 100W 150W 200W 300W 400W General product information 1. The lamp is for indoor and outdoor use, the degree of protection is I The lamp can operate at universal position.

5 age 5 of 55 Report o. R S-1 E (0) GEERAL TEST REQUIREMETS 5.2 (0.1) Information for luminaire design considered... : Yes o 5.2 (0.3) More sections applicable... : Yes o 5.4 (2) CLASSIFICATIO 5.4 (2.2) Type of protection... : Class I 5.4 (2.3) Degree of protection... : I (2.4) Luminaire suitable for direct mounting on normally flammable surfaces... : Yes o 5.4 (2.5) Luminaire for normal use... : Yes o Luminaire for rough service... : Yes o 5.5 (3) MARKIG 5.5 (3.2) Mandatory markings osition of the marking Format of symbols/text 5.5 (3.3) Additional information Language of instructions 5.5 (3.3.1) Combination luminaires 5.5 (3.3.2) ominal frequency in Hz 50/60Hz 5.5 (3.3.3) Operating temperature 5.5 (3.3.4) Symbol or warning notice 5.5 (3.3.5) Wiring diagram 5.5 (3.3.6) Special conditions 5.5 (3.3.7) Metal halide lamp luminaire warning 5.5 (3.3.8) Limitation for semi-luminaires 5.5 (3.3.9) ower factor and supply current 5.5 (3.3.10) Suitability for use indoors 5.5 (3.3.11) Luminaires with remote control 5.5 (3.3.12) Clip-mounted luminaire warning 5.5 (3.3.13) Specifications of protective shields 5.5 (3.3.14) Symbol for nature of supply 5.5 (3.3.15) Rated current of socket outlet

6 age 6 of 55 Report o. R S-1 E (3.3.16) Rough service luminaire 5.5 (3.3.17) Mounting instruction for type Y, type Z and some type X attachments type Y 5.5 (3.3.18) on-ordinary luminaires with VC cable 5.5 (3.3.19) rotective conductor current in instruction if applicable 5.5 (3.3.20) rovided with information if not intended to be mounted within arm s reach 5.5 (3.3.21) on replaceable and non-user replaceable light sources information provided Cautionary symbol 5.5 (3.3.22) Controllable luminaires, insulation 5.5 (3.4) Test with water Test with hexane Legible after test Label attached 5.5 (-) Additional necessary marking Operation position Weight and dimensions Maximum protected area Range of mounting heights Suitability for indoor use 5.6 (4) COSTRUCTIO (-) At least Ix3 I (-) Lampholder brackets (-) Adjusting means (-) Controlling components (-) Fixing device Wind force test (-) Locking system (-) Vibration resistance (-) Glass cover 5.6 (4.2) Components replaceable without difficulty

7 age 7 of 55 Report o. R S-1 E (4.3) Wireways smooth and free from sharp edges 5.6 (4.4) Lampholders 5.6 (4.4.1) Integral lampholder 5.6 (4.4.2) Wiring connection 5.6 (4.4.3) Lampholder for end-to-end mounting 5.6 (4.4.4) ositioning - pressure test ()...: After test the lampholder comply with relevant standard sheets and show no damage After test on single-capped lampholder the lampholder have not moved from its position and show no permanent deformation - bending test (m)... : After test the lampholder have not moved from its position and show no permanent deformation 5.6 (4.4.5) eak pulse voltage 5.6 (4.4.6) Centre contact 5.6 (4.4.7) arts in rough service luminaires resistant to tracking 5.6 (4.4.8) Lamp connectors 5.6 (4.4.9) Caps and bases correctly used 5.6 (4.4.10) Light source for lampholder or connection according IEC not connected another way 5.6 (4.5) Starter holders Starter holder in luminaires other than class II Starter holder class II construction 5.6 (4.6) Terminal blocks Tails Unsecured blocks 5.6 (4.7) Terminals and supply connections 5.6 (4.7.1) Contact to metal parts 5.6 (4.7.2) Test 8 mm live conductor Test 8 mm earth conductor 5.6 (4.7.3) Terminals for supply conductors 5.6 ( ) Welded connections: - stranded or solid conductor

8 age 8 of 55 Report o. R S-1 E spot welding - welding between wires - Type Z attachment - mechanical test according to electrical test according to heat test according to and (4.7.4) Terminals other than supply connection 5.6 (4.7.5) Heat-resistant wiring/sleeves 5.6 (4.7.6) Multi-pole plug - test at (4.8) Switches: - adequate rating - adequate fixing - polarized supply - compliance with IEC for electronic switches 5.6 (4.9) Insulating lining and sleeves 5.6 (4.9.1) Retainment Method of fixing... : 5.6 (4.9.2) Insulated linings and sleeves Resistant to a temperature > 20 C to the wire temperature or a) & c) Insulation resistance and electric strength b) Ageing test. Temperature (C)... : 5.6 (4.10) Double or reinforced insulation 5.6 (4.10.1) o contact, mounting surface accessible metal parts wiring of basic insulation Safe installation fixed luminaires Capacitors and switches Interference suppression capacitors according to IEC (4.10.2) Assembly gaps: - not coincidental - no straight access with test probe 5.6 (4.10.3) Retainment of insulation:

9 age 9 of 55 Report o. R S-1 E fixed - unable to be replaced; luminaire inoperative - sleeves retained in position - lining in lampholder 5.6 (4.11) Electrical connections and current-carrying parts 5.6 (4.11.1) Contact pressure 5.6 (4.11.2) Screws: - self-tapping screws - thread-cutting screws 5.6 (4.11.3) Screw locking: - spring washer - rivets 5.6 (4.11.4) Material of current-carrying parts 5.6 (4.11.5) o contact to wood or mounting surface 5.6 (4.11.6) Electro-mechanical contact systems 5.6 (4.12) Screws and connections (mechanical) and glands 5.6 (4.12.1) Screws not made of soft metal Screws of insulating material Torque test: torque (m); part... : Screw for fixing stents:8,0m Torque test: torque (m); part... : Torque test: torque (m); part... : Screw for fixing lamp cover:0,5m Screw for fixing LED driver:1,2m Torque test: torque (m); part... : Screw for fixing CB:0,5m 5.6 (4.12.2) Screws with diameter < 3 mm screwed into metal 5.6 (4.12.4) Locked connections: - fixed arms; torque (m)... : - lampholder; torque (m)... : - push-button switches; torque 0,8 m... : 5.6 (4.12.5) Screwed glands; force (m)... : 5.6 (4.13) Mechanical strength 5.6 (4.13.1) Impact tests: - fragile parts; energy (m)... : Glass cover: 0,5m - other parts; energy (m)... : Metal enclosure; 0,7m;

10 age 10 of 55 Report o. R S-1 E ) live parts 2) linings 3) protection 4) covers 5.6 (4.13.3) Straight test finger 5.6 (4.13.4) Rough service luminaires - I54 or higher a) fixed b) hand-held c) delivered with a stand d) for temporary installations and suitable for mounting on a stand 5.6 (4.13.6) Tumbling barrel 5.6 (4.14) Suspensions, fixings and means of adjusting 5.6 (4.14.1) Mechanical load: A) four times the weight 4x4.574Kg=18.296Kg B) torque 2,5 m C) bracket arm; bending moment (m)... : D) load track-mounted luminaires E) clip-mounted luminaires, glass-shelve. Thickness (mm)... : Metal rod. diameter (mm)... : Fixed luminaire or independent control gear without fixing devices 5.6 (4.14.2) Load to flexible cables Mass (kg)... : Stress in conductors (/mm²)... : Mass (kg) of semi-luminaire... : Bending moment (m) of semi-luminaire... : 5.6 (4.14.3) Adjusting devices: - flexing test; number of cycles... : - strands broken... : - electric strength test afterwards

11 age 11 of 55 Report o. R S-1 E (4.14.4) Telescopic tubes: cords not fixed to tube; no strain on conductors 5.6 (4.14.5) Guide pulleys 5.6 (4.14.6) Strain on socket-outlets 5.6 (4.15) Flammable materials: - glow-wire test 650C... : See Test Table 4.15 (13.3.2) - spacing 30 mm - screen withstanding test of screen dimensions - no fiercely burning material - thermal protection - electronic circuits exempted 5.6 (4.15.2) Luminaires made of thermoplastic material with lamp control gear a) construction b) temperature sensing control c) surface temperature 5.6 (4.16) Luminaires for mounting on normally flammable surfaces o lamp control gear... : (compliance with Section 12) 5.6 (4.16.1) Lamp control gear spacing: - spacing 35 mm - spacing 10 mm 5.6 (4.16.2) Thermal protection: - in lamp control gear - external - fixed position - temperature marked lamp control gear 5.6 (4.16.3) Design to satisfy the test of 12.6 (see clause 12.6) 5.6 (4.17) Drain holes Clearance at least 5 mm 5.6 (4.18) Resistance to corrosion: 5.6 (4.18.1) - rust-resistance 5.6 (4.18.2) - season cracking in copper 5.6 (4.18.3) - corrosion of aluminium

12 age 12 of 55 Report o. R S-1 E (4.19) Igniters compatible with ballast 5.6 (4.20) Rough service vibration 5.6 (4.21) rotective shield: 5.6 (4.21.1) Shield fitted if tungsten halogen lamps or metal halide lamps Shield of glass if tungsten halogen lamps 5.6 (4.21.2) articles from a shattering lamp not impair safety 5.6 (4.21.3) o direct path 5.6 (4.21.4) Impact test on shield Glow-wire test on lamp compartment... : See Test Table 4.15 (13.3.2) 5.6 (4.22) Attachments to lamps 5.6 (4.23) Semi-luminaires comply Class II 5.6 (4.24.1) o excessive UV radiation if tungsten halogen lamps and metal halide lamps (Annex ) 5.6 (4.24.2) Retinal blue light hazard Luminaires with E thr a) Fixed luminaires - distance x m, borderline between RG1 and RG2.. : - marking and instruction according b) ortable and handheld luminaires - marking according if RG1 exceeded at 200 mm according to IEC/TR ortable luminaires for children IEC and Mains socket outlet nightlights IEC not exceed RG1 at 200 mm according to IEC/ (4.25) Mechanical hazard o sharp point or edges 5.6 (4.26) Short-circuit protection: 5.6 (4.26.1) Adequate means of uninsulated accessible SELV parts 5.6 (4.26.2) Short-circuit test with test chain according Test chain not melt through Test sample not exceed values of Table 12.1 and (4.27) Terminal blocks with integrated screwless earthing contacts

13 age 13 of 55 Report o. R S-1 E Test according Annex V ull test of terminal fixing (20 ) After test, resistance < 0, ull test of mechanical connection (50 ) After test, resistance < 0,05 Voltage drop test, resistance < 0, (4.28) Fixing of thermal sensing control ot plug-in or easily replaceable type Reliably kept in position o adhesive fixing if UV radiations from a lamp can degrade the fixing ot outside the luminaire enclosure Test of adhesive fixing: Max. temperature on adhesive material ( C)... : 100 cycles between t min and t max Temperature sensing control still in position 5.6 (4.29) Luminaires with non-replaceable light source ot possible to replace light source Live part not accessible after parts have been opened by hand or tools 5.6 (4.30) Luminaires with non-user replaceable light source If protective cover provide protection against electric shock and marked with caution, electric shock risk symbol: Minimum two fixing means 5.6 (4.31) Insulation between circuits Circuits insulated from LV supply fulfil requirements according Controllable luminaires requiring same level of insulation for all components, the insulation between control terminals and LV supply fulfil requirements according (4.31.1) SELV circuits Used SELV source Voltage ELV Insulating of SELV circuits from LV supply

14 age 14 of 55 Report o. R S-1 E Insulating of SELV circuits from other non SELV circuits Insulating of SELV circuits from FELV Insulating of SELV circuits from other SELV circuits SELV circuits insulated from accessible parts according Table X.1 lugs not able to enter socket-outlets of other voltage systems Socket outlets does not admit plugs of other voltage systems lugs and socket-outlets does not have protective conductor contact 5.6 (4.31.2) FELV circuits Used FELV source Voltage ELV Insulating of FELV circuits from LV supply FELV circuits insulated from accessible parts according Table X.1 lugs not able to enter socket-outlets of other voltage systems Socket outlets does not admit plugs of other voltage systems Socket-outlets does not have protective conductor contact 5.6 (4.31.3) Other circuits Other circuits insulated from accessible parts according Table X.1 Class II construction with equipotential bonding for protection against indirect contacts with live parts: - conductive parts are connected together - test according of above - conductive part not cause an electric shock in case of an insulation fault - equipotential bonding in master/slave applications - master luminaire provided with terminal for accessible conductive parts of slave luminaires - slave luminaire constructed as class I 5.6 (4.32) Overvoltage protective devices

15 age 15 of 55 Report o. R S-1 E Comply with IEC External to control gear and connected to earth: - only in fixed luminaires - only connected to protective earth 5.7 (11) CREEAGE DISTACES AD CLEARACES 5.7 (11.2) Creepage distances and clearances... : See Table 4.7 (11.2) Working voltage (V)... : V Rated pulse voltage (kv)... : -- Voltage form... : Sinusoidal on-sinusoidal TI... : < 600 > 600 Impulse withstand category (ormal category II) (Category III Annex U) Category II Category III 5.8 (7) ROVISIO FOR EARTHIG 5.8 ( ) 5.8 ( ) Accessible metal parts Metal parts in contact with supporting surface Resistance < 0,5... : Self-tapping screws used Thread-forming screws Thread-forming screw used in a grove Earth makes contact first Terminal blocks with integrated screwless earthing contacts tested according Annex V Built-in control gear Earth continuity in joints, etc. 4.8 (7.2.4) Locking of clamping means Compliance with Terminal blocks with integrated screwless earthing contacts tested according Annex V 5.8 (7.2.5) Earth terminal integral part of connector socket 5.8 (7.2.6) Earth terminal adjacent to mains terminals

16 age 16 of 55 Report o. R S-1 E (7.2.7) Electrolytic corrosion of the earth terminal 5.8 (7.2.8) Material of earth terminal Contact surface bare metal 5.8 (7.2.10) Class II luminaire for looping-in Double or reinforced insulation to functional earth 5.8 (7.2.11) Earthing core coloured green-yellow Length of earth conductor 5.9 (14) SCREW TERMIALS Separately approved; component list...: (see Annex 1) art of the luminaire...: (see Annex 3) 5.9 (15) SCREWLESS TERMIALS AD ELECTRICAL COECTIOS Separately approved; component list... : (see Annex 1) art of the luminaire... : (see Annex 4) 5.10 (5) EXTERAL AD ITERAL WIRIG 5.10 (5.2) Supply connection and external wiring 5.10 (5.2.1) Means of connection... : Supply cords Outdoor luminaire has not VC insulated external wiring if not class III or SELV 25 V a.c./60 V d.c. or protected from outdoor environment 5.10 (5.2.2) Type of cable... : 3 x0.824mm² ominal cross-sectional area (mm²)... : Cables equal to IEC or IEC (5.2.3) Type of attachment, X, Y or Z Type Y 5.10 (5.2.5) Type Z not connected to screws 5.10 (5.2.6) Cable entries: - suitable for introduction - adequate degree of protection 5.10 (5.2.7) Cable entries through rigid material have rounded edges 5.10 (5.2.8) Insulating bushings: - suitably fixed

17 age 17 of 55 Report o. R S-1 E material in bushings - material not likely to deteriorate - tubes or guards made of insulating material 5.10 (5.2.9) Locking of screwed bushings 5.10 (5.2.10) 5.10 ( ) 5.10 ( ) 5.10 ( ) 5.10 (5.2.11) Cord anchorage: - covering protected from abrasion - clear how to be effective - no mechanical or thermal stress - no tying of cables into knots etc. - insulating material or lining Cord anchorage for type X attachment: a) at least one part fixed b) types of cable c) no damaging of the cable d) whole cable can be mounted e) no touching of clamping screws f) metal screw not directly on cable g) replacement without special tool Glands not used as anchorage Labyrinth type anchorages Adequate cord anchorage for type Y and type Z attachment Tests: Type Y - impossible to push cable; unsafe - pull test: 25 times; pull ()... : 60 - torque test: torque (m)... : 0,35m - displacement 2 mm - no movement of conductors - no damage of cable or cord External wiring passing into luminaire

18 age 18 of 55 Report o. R S-1 E (5.2.12) 5.10 (5.2.13) 5.10 (5.2.14) 5.10 (5.2.16) 5.10 (5.2.17) 1.10 (5.2.18) Looping-in terminals Wire ends not tinned Wire ends tinned: no cold flow Mains plug same protection Class III luminaire plug o unsafe compatibility Appliance inlets (IEC 60320) Installation couplers (IEC 61535) Other appliance inlet or connector Relevant IEC standard o standardized interconnecting cables properly assembled Used plug in accordance with - IEC other standard 5.10 (5.3) Internal wiring 5.10 (5.3.1) Internal wiring of suitable size and type 5.10 ( ) 5.10 ( ) Through wiring - not delivered/ mounting instruction - factory assembled - socket outlet loaded (A)... : - temperatures... : (see Annex 2) Green-yellow for earth only Internal wiring connected directly to fixed wiring Cross-sectional area (mm²)... : Insulation thickness Extra insulation added where necessary Internal wiring connected to fixed wiring via internal current-limiting device

19 age 19 of 55 Report o. R S-1 E ( ) 5.10 ( ) 5.10 ( ) 5.10 ( ) Adequate cross-sectional area and insulation thickness Double or reinforced insulation for class II Conductors without insulation SELV current-carrying parts Insulation thickness other than VC or rubber 5.10 (5.3.2) Sharp edges etc. o moving parts of switches etc. Joints, raising/lowering devices Telescopic tubes etc. o twisting over (5.3.3) Insulating bushings: - suitable fixed - material in bushings - material not likely to deteriorate - cables with protective sheath 5.10 (5.3.4) Joints and junctions effectively insulated 5.10 (5.3.5) Strain on internal wiring 5.10 (5.3.6) Wire carriers 5.10 (5.3.7) Wire ends not tinned Wire ends tinned: no cold flow

20 age 20 of 55 Report o. R S-1 E (8) ROTECTIO AGAIST ELECTRIC SHOCK 5.11 (8.2.1) Live parts not accessible Basic insulated parts not used on the outer surface without appropriate protection Basic insulated parts not accessible with standard test finger on portable, settable and adjustable luminaires Basic insulated parts not accessible with Ø 50 mm probe from outside, other types of luminaires Lampholder and starterholders in portable and adjustable luminaires comply with double or reinforced insulation requirements Basic insulation only accessible under lamp or starter replacement rotection in any position Double-ended tungsten filament lamp Insulation lacquer not reliable Double-ended high pressure discharge lamp Relevant warning according to fitted to the luminaire 5.11 (8.2.2) ortable luminaire adjusted in most unfavourable position 5.11 (8.2.3.a) 5.11 (8.2.3.b) 5.11 (8.2.3.c) Class II luminaire: - basic insulated metal parts not accessible during starter or lamp replacement - basic insulation not accessible other than during starter or lamp replacement - glass protective shields not used as supplementary insulation BC lampholder of metal in class I luminaires shall be earthed SELV circuits with exposed current carrying parts: Ordinary luminaire: - touch current... : - no-load voltage... : Other than ordinary luminaire:

21 age 21 of 55 Report o. R S-1 E nominal voltage... : 5.11 (8.2.4) ortable luminaire have protection independent of supporting surface 5.11 (8.2.5) Compliance with the standard test finger or relevant probe 5.11 (8.2.6) Covers reliably secured 5.11 (8.2.7) Discharging of capacitors 0,5 F ortable plug connected luminaire with capacitor Other plug connected luminaire with capacitor Discharge device on or within capacitor Discharge device mounted separately 5.12 (12) EDURACE TEST AD THERMAL TEST 5.12 (12.3) Endurance test: 5.12 (12.3.2) - mounting-position... : As in normal use - test temperature (C)... : 35 - total duration (h)... : supply voltage: Un factor; calculated voltage (V)... : 1,1x277V=304.7V - lamp used... : After endurance test: - no part unserviceable - luminaire not unsafe - no damage to track system - marking legible - no cracks, deformation etc (12.4) Thermal test (normal operation) (see Annex 2) (-) Temperature reduction 5.12 (12.5) Thermal test (abnormal operation) (see Annex 2) 5.12 (12.6) Thermal test (failed lamp control gear condition): 5.12 (12.6.1) Through wiring or looping-in wiring loaded by a current of (A)... : - case of abnormal conditions... : - electronic lamp control gear

22 age 22 of 55 Report o. R S-1 E (12.6.2) - measured winding temperature (C): at 1,1 Un... : - measured mounting surface temperature (C) at 1,1 Un... : - calculated mounting surface temperature (C)... : - track-mounted luminaires Temperature sensing control - case of abnormal conditions... : - thermal link - manual reset cut-out - auto reset cut-out - measured mounting surface temperature (C)... : - track-mounted luminaires 5.12 (12.7) Thermal test (failed lamp control gear in plastic luminaires): 5.12 (12.7.1) 5.12 ( ) Luminaire without temperature sensing control Luminaire with fluorescent lamp 70W Test method or Annex W... : Test according to : - case of abnormal conditions... : - Ballast failure at supply voltage (V)... : - Components retained in place after the test - Test with standard test finger after the test Test according to Annex W: - case of abnormal conditions... : 5.12 ( ) - measured winding temperature (C): at 1,1 Un... : - measured temperature of fixing point/exposed part (C): at 1,1 Un... : - calculated temperature of fixing point/exposed part (C)... : Ball-pressure test... : See Table 4.15 (13.2.1) Luminaire with discharge lamp, fluorescent lamp > 70W, transformer > 10 VA - case of abnormal conditions... :

23 age 23 of 55 Report o. R S-1 E ( ) 5.12 (12.7.2) - measured winding temperature (C): at 1,1 Un... : - measured temperature of fixing point/exposed part (C): at 1,1 Un... : - calculated temperature of fixing point/exposed part (C)... : Ball-pressure test... : See Table 4.15 (13.2.1) Luminaire with short circuit proof transformers 10 VA - case of abnormal conditions... : - Components retained in place after the test - Test with standard test finger after the test Luminaire with temperature sensing control - thermal link... : Yes o - manual reset cut-out... : Yes o - auto reset cut-out... : Yes o - case of abnormal conditions... : - highest measured temperature of fixing point/ exposed part (C):... : Ball-pressure test:... : See Table 4.15 (13.2.1) 5.13 (9) RESISTACE TO DUST, SOLID OBJECTS AD MOISTURE 5.13 (9.2) Tests for ingress of dust, solid objects and moisture: - classification according to I... : I65 - mounting position during test... : As in normal use - fixing screws tightened; torque (m)... : -- - tests according to clauses... : Clause electric strength test afterwards a) no deposit in dust-proof luminaire b) no talcum in dust-tight luminaire c) no trace of water on current-carrying parts or SELV parts or where it could become a hazard d) i) For luminaires without drain holes no water entry

24 age 24 of 55 Report o. R S-1 E d) ii) For luminaires with drain holes no hazardous water entry e) no water in watertight luminaire f) no contact with live parts (I 2X) f) no entry into enclosure (I 3X and I 4X) f) no contact with live parts (I3X and I4X) g) no trace of water on part of lamp requiring protection from splashing water h) no damage of protective shield or glass envelope 5.13 (9.3) Humidity test 48 h 25C; 93% R.H (10) ISULATIO RESISTACE AD ELECTRIC STREGTH 5.14 (10.2.1) Insulation resistance test Cable or cord covered by metal foil or replaced by a metal rod of mm Ø... : Insulation resistance (M): SELV - between current-carrying parts of different polarity : - between current-carrying parts and mounting surface... : - between current-carrying parts and metal parts of the luminaire... : - between the outer surface of a flexible cord or cable where it is clamped in a cord anchorage and accessible metal parts... : - Insulation bushings as described in Section 5... : Other than SELV - between live parts of different polarity... : 100M - between live parts and mounting surface... : 100M - between live parts and metal parts... : 100M - between live parts of different polarity through action of a switch... : - between the outer surface of a flexible cord or cable where it is clamped in a cord anchorage and accessible metal parts... : - Insulation bushings as described in Section 5...:

25 age 25 of 55 Report o. R S-1 E (10.2.2) Electric strength test Dummy lamp Luminaires with ignitors after 24 h test Luminaires with manual ignitors Test voltage (V): SELV - between current-carrying parts of different polarity : - between current-carrying parts and mounting surface... : - between current-carrying parts and metal parts of the luminaire... : - between the outer surface of a flexible cord or cable where it is clamped in a cord anchorage and accessible metal parts... : - Insulation bushings as described in Section 5... : Other than SELV - between live parts of different polarity... : - between live parts and mounting surface... : - between live parts and metal parts... : - between live parts of different polarity through action of a switch... : - between the outer surface of a flexible cord or cable where it is clamped in a cord anchorage and accessible metal parts... : - Insulation bushings as described in Section 5... : 5.14 (10.3) Touch current or protective conductor current (ma). : 0.23mA 5.15 (13) RESISTACE TO HEAT, FIRE AD TRACKIG 5.15 (13.2.1) 5.15 (13.3.1) 5.15 (13.3.2) 5.15 (13.4.1) Ball-pressure test...: See Test Table 4.15 (13.2.1) eedle-flame test (10 s)...: See Test Table 4.15 (13.3.1) Glow-wire test (650C)...: See Test Table 4.15 (13.3.2) roof tracking test (IEC 60112)...:

26 age 26 of 55 Report o. R S-1 E ZB AEX ZB, SECIAL ATIOAL CODITIOS (3.3) DK: power supply cord with label IT: warning label on Class 0 luminaire (4.5.1) DK: socket-outlets (4.5.1) FR: socket-outlets (5.2.1) CY, DK, FI, SE, GB: type of plug ZC AEX ZC, ATIOAL DEVIATIOS (4 & 5) FR: Shuttered socket-outlets 10/16A (13.3) FR: Glow-wire test 850 alt. 750 for luminaires in premises open to public or 960 for luminaires in emergency exits (13.3) GB: Requirements according to United Kingdom Building Regulation 5.7 (11.2) TABLE: Clearance and creepage distance measurements Class of luminaire... : Class I Class II Class III Impulse withstand category... : Category II Category III Clearance (cl) and creepage distance (cr) at/of/between: Insulation type U peak (V) U r.m.s. (V) Required cl (mm) Measured cl (mm) Required cr (mm) Measured cr (mm) Current-carrying parts of different polarity: Current-carrying parts and accessible parts: Current-carrying parts and supporting surface: S ,7 >3.0 2,8 >3.0 S ,7 >3.0 2,8 >3.0 R ,4 >6.0 5,1 >6.0 Supplementary information: B Basic; S Supplementary; R Reinforced

27 age 27 of 55 Report o. R S-1 E (13.2.1) TABLE: Ball ressure Test of Thermoplastics Allowed impression diameter (mm)... : 2mm Object/ art o./ Material Manufacturer/ trademark Test temperature (C) Terminal ,6 Lamp cover ,2 Supplementary information:-- Impression diameter (mm) 5.15 (13.3.1) Object/ art o./ Material TABLE: eedle-flame test (IEC ) Manufacturer/ trademark Duration of application of test flame (ta); (s) Ignition of specified layer Yes/o Duration of burning (tb) (s) Terminal o 0 Lamp cover o 0 Supplementary information:-- Verdict 5.15 (13.3.2) TABLE: Glow-wire test (IEC ) Glow wire temperature... : 650 C Object/ art o./ Material Manufacturer/ trademark Duration of application of test flame (ta); (s) Ignition of specified layer Yes/o Duration of burning (tb) (s) Lamp cover o 0 Verdict Any flame or glowing of the sample extinguished within 30 s of withdrawing the glow-wire, and any burning or molten drop did not ignite the underlying parts (Yes/o)... : Supplementary information: Yes

28 age 28 of 55 Report o. R S-1 E AEX 1: Components object/part o. manufacturer/ trademark type/model technical data mark(s) of conformity Supply cords DOGGUA EVER UITED ELECTRIC WIRE & CABLE CO LTD SJTW 3X0.824mm²;105 E Internal wiring IZIG ELECTRIC CO LTD 1332 Min.24AWG, 200 LED driver Output wire CB of LED module MEA WELL ETERRISES CO.,LTD DOGGUA EVER UITED ELECTRIC WIRE & CABLE CO LTD SHEZHE YUGU SCIECE AD CLG A Input : V~ (277V~ for north America only);50/60hz; Tc:90 ;Ta:50 UL E CE SJTW 3X0.824mm²;105 E MK-D V-0,130 UL 796 TECHOLOGY CO LTD LED hilips 3030SMD IF: 20mA; Vf: 2,7-3,3V; view angle 120 CCT: 7000K-8000K Terminal Lamp cover Cixi Kaifeng Electronic Co., Ltd. CHAG CHU CHEMICAL (ZHAGZHOU) CO LTD Tested with appliance KF10H 400, 500V, T100 VDE V-0; 75 C UL E AEX 2 TABLE: Temperature measurements, thermal tests of Section 12 Type reference...: Lamp used...: Lamp control gear used...: Mounting position of luminaire...: As in normal use Supply wattage (W)...: Supply current (A)...: Calculated power factor...: Table: measured temperatures corrected for ta = 25 C: - abnormal operating mode...: - test 1: rated voltage...: 277V

29 age 29 of 55 Report o. R S-1 E test 2: 1,06 times rated voltage or 1,05 times rated wattage...: - test 3: Load on wiring to socket-outlet, 1,06 times voltage or 1,05 times wattage...: - test 4: 1,1 times rated voltage or 1,05 times rated wattage...: Through wiring or looping-in wiring loaded by a current of A during the test...: A:1,06x277V=293.6V Temperature measurements, (C) art Ambient Clause 12.4 normal Clause 12.5 abnormal test 2 B test 3 limit test 4 limit Supply cord Internal wire Tc of LED driver Tc of LED driver Reflective surface Ref Supplementary information: both voltages were tests, max. value recorded.

30 age 30 of 55 Report o. R S-1 E AEX 3 Screw terminals (part of the luminaire) (14) SCREW TERMIALS (14.2) Type of terminal... : Rated current (A)... : ( ) One or more conductors ( ) Special preparation ( ) Terminal size Cross-sectional area (mm²)... : (14.3.3) Conductor space (mm)... : (14.4) Mechanical tests (14.4.1) Minimum distance (14.4.2) Cannot slip out (14.4.3) Special preparation (14.4.4) ominal diameter of thread (metric ISO thread)... : External wiring o soft metal (14.4.5) Corrosion (14.1.6) ominal diameter of thread (mm)... : Torque (m)... : (14.4.7) Between metal surfaces Lug terminal Mantle terminal ull test; pull ()... : (14.4.8) Without undue damage

31 age 31 of 55 Report o. R S-1 E AEX 4 Screwless terminals (part of the luminaire) (15) SCREWLESS TERMIALS (15.2) Type of terminal... : Rated current (A)... : (15.3.1) Material (15.3.2) Clamping (15.3.3) Stop (15.3.4) Unprepared conductors (15.3.5) ressure on insulating material (15.3.6) Clear connection method (15.3.7) Clamping independently (15.3.8) Fixed in position ( ) Conductor size Type of conductor (15.5.1) Terminals internal wiring ( ) ull test spring-type terminals (4, 4 samples)... : ( ) ull test pin or tab terminals (4, 4 samples)... : Insertion force not exceeding 50 ( ) ermanent connections: pull-off test (20 ) (15.5.2) Electrical tests Voltage drop (mv) after 1 h (4 samples)... : Voltage drop of two inseparable joints umber of cycles: Voltage drop (mv) after 10th alt. 25th cycle (4 samples)... : Voltage drop (mv) after 50th alt. 100th cycle (4 samples)... : After ageing, voltage drop (mv) after 25th alt. 25th cycle (4 samples)... : After ageing, voltage drop (mv) after 50th alt. 100th cycle (4 samples)... : (15.6) Terminals external wiring Terminal size and rating ( ) ull test spring-type terminals or welded connections (4 samples); pull ()... :

32 age 32 of 55 Report o. R S-1 E ull test pin or tab terminals (4 samples); pull ()... : ( ) TABLE: Contact resistance test Voltage drop (mv) after 1 h terminal voltage drop (mv) Voltage drop of two inseparable joints Voltage drop after 10th alt. 25th cycle Max. allowed voltage drop (mv)... : terminal voltage drop (mv) Voltage drop after 50th alt. 100th cycle Max. allowed voltage drop (mv)... : terminal voltage drop (mv) Continued ageing: voltage drop after 10th alt. 25th cycle Max. allowed voltage drop (mv)... : terminal voltage drop (mv) Continued ageing: voltage drop after 50th alt. 100th cycle Max. allowed voltage drop (mv)... : terminal voltage drop (mv) Supplementary information:--

33 age 33 of 55 Report o. R S-1 E GEERAL REQUIREMETS 4.4 Integral modules tested assembled in the luminaire 4.5 Independent modules complies with requirements in IEC GEERAL TEST REQUIREMETS 5.5 SELV-operated LED modules comply with Annex I of IEC see Annex 1) General conditions for tests in Annex A (see Annex A) 6 CLASSIFICATIO Modules are classified, according to the method of installation, as: Built-in module Yes o independent module Yes o integral module Yes o For Integral module; ote to in IEC applies. 7 MARKIG 7.1 Requirements not applicable to the evaluated product. 8 TERMIALS Requirements not applicable to the evaluated product. 9 (9) ROVISIOS FOR ROTECTIVE EARTHIG Requirements not applicable to the evaluated product. 10 (10) ROTECTIO AGAIST ACCIDETAL COTACT WITH LIVE ARTS Requirements not applicable to the evaluated product. 11 (11) MOISTURE RESISTACE AD ISULATIO After storage 48 h at 91-95% relative humidity and C measuring of insulation resistance with d.c. 500 V (M ): For basic insulation 2 M 100 MΩ For double or reinforced insulation 4 M Between primary and secondary circuits in controlgear providing SELV, values in Annex L in IEC (12) ELECTRIC STREGTH Immediately after the measurement of the insulation resistance Basic insulation for SELV, test voltage 500 V Working voltage 50 V, test voltage 500 V

34 age 34 of 55 Report o. R S-1 E Working voltage > 50 V 1000 V, test voltage (V): Basic insulation, 2U V Supplementary insulation, 2U V Double or reinforced insulation, 4U V o flashover or breakdown Solid or thin sheet insulation for double or reinforced insulation fulfil the requirements in Annex in IEC (14) FAULT CODITIOS - (14) When operated under fault conditions the controlgear: - does not emit flames or molten material - does not produce flammable gases - protection against accidental not impared Thermally protected controlgear does not exceed the marked temperature value Fault conditions: capacitors, resistors or inductors without proof of compliance with relevant specifications have been short-circuited or disconnected - (14.1) Short-circuit of creepage distances and clearances if less than specified in clause 16 in art 1 (except between live parts and accessible metal parts) Creepage distances on printed boards less than specified in clause 16 in art 1 provided with coating according to IEC (see appended table) (see appended table) - (14.2) Short-circuit or interruption of semiconductor devices (see appended table) - (14.3) Short-circuit across insulation consisting of lacquer, enamel or textile (see appended table) - (14.4) Short-circuit across electrolytic capacitors (see appended table) - (14.5) After the tests has been carried out on three samples: The insulation resistance 1 M 100M o flammable gases o accessible parts have become live During the tests, a five-layer tissue paper, where the test specimen is wrapped, does not ignite - (14.6) Relevant fault condition tests with high-power supply 13.2 Overpower condition Module withstands overpower condition >15 min. Module with automatic protective device or power limiter, test performed 15 min. at limit.

35 age 35 of 55 Report o. R S-1 E o fire, smoke or flammable gas is produced Molten material does not ignite tissue paper, spread below the module 15 COSTRUCTIO Wood, cotton, silk, paper and similar fibrous material shall not be used as insulation 16 (16) CREEAGE DISTACES AD CLEARACES The requirements of E , Section 1.7, apply. 17 (17) SCREWS, CURRET-CARRYIG ARTS AD COECTIOS Cl. 17 refer to Cl. 17 of IEC which refer to Cl and 4.12 of IEC (clause numbers between parentheses refer to IEC ) (4.11) Electrical connections (4.11.1) Contact pressure (4.11.2) Screws: - self-tapping screws - thread-cutting screws - at least two self-tapping screws (4.11.3) Screw locking: - spring washer - rivets (4.11.4) Material of current-carrying parts (4.11.5) o contact to wood (4.12) Mechanical connections and glands (4.12.1) Mechanical stress Screws not made of soft metal Screws of insulating material Torque test: part; torque (m) Torque test: part; torque (m) Torque test: part; torque (m) (4.12.2) Screw diameter < 3mm screwed into metal (4.12.3) Void (4.12.4) Locked connections (4.12.5) Screwed glands: force () 18 (18) RESISTACE TO HEAT, FIRE AD TRACKIG

36 age 36 of 55 Report o. R S-1 E (18.1) Ball-pressure tes - (18.3) Glow-wire test (650 C) - (18.4) eedle-flame test (10 s) - (18.5) roof tracking test 19 (19) RESISTACE TO CORROSIO - test according of IEC adequate varnish on the outer surface 20 IFORMATIO FOR LUMIAIRE DESIG Information in Annex D (informative) 21 HEAT MAAGEMET 21.1 General Exchangeability is safeguarded by cap or base 21.2 Heat-conducting foil and paste Heat-conducting foil delivered with the module if necessary 22 HOTOBIOLOGICAL SAFETY 22.1 UV radiation Luminous radiation not exceed 2Mw/klm 22.2 Blue light hazard Assessed according to IEC TR Infrared radiation Requirements for infrared radiation when required A AEX A TESTS All tests performed in accordance with the advice given in Annex H of IEC , if applicable AEX 1 SELV-operated LED modules Requirements not applicable to the evaluated product. 13 TABLE: tests of fault conditions art Simulated fault Hazard

37 age 37 of 55 Report o. R S-1 E 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 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 ultraviolet radiation exposure produced by a broadband source, the effective integrated spectral irradiance, E S, of the light source shall not exceed the levels defined by: The permissible time for exposure to ultraviolet radiation incident upon the unprotected eye or skin shall be computed by: 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 1000 s. 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: 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(λ), i.e., the blue-light weighted radiance, L B, shall not exceed the levels defined by:

38 age 38 of 55 Report o. R S-1 E for t 10 4 s for t > 10 4 s Retinal blue light hazard exposure limit - small source Thus the spectral irradiance at the eye E λ, weighted against the blue-light hazard function B(λ) shall not exceed the levels defined by: see table 4.2 for t 100 s for t > 100 s Retinal thermal hazard exposure limit To protect against retinal thermal injury, the integrated spectral radiance of the light source, L λ, weighted by the burn hazard weighting function R( λ ) (from Figure 4.2 and Table 4.2), i.e., the burn hazard weighted radiance, shall not exceed the levels defined by: (10 μs t 10 s) 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, L IR, as viewed by the eye for exposure times greater than 10 s shall be limited to: t > 10 s 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, E IR, over the wavelength range 780 nm to 3000 nm, for times less than 1000 s, shall not exceed: t 1000 s For times greater than 1000 s the limit becomes:

39 age 39 of 55 Report o. R S-1 E t > 1000 s Thermal hazard exposure limit for the skin Visible and infrared radiant exposure (380 nm to 3000 nm) of the skin shall be limited to: 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 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 Lamp system operation The power source for operation of the test lamp shall be provided in accordance with: the appropriate IEC standard, or the manufacturer s recommendation 5.2 Measurement procedure Irradiance measurements Minimum aperture diameter 7mm. Maximum aperture diameter 50 mm.

40 age 40 of 55 Report o. R S-1 E 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 Δt, 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 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

41 age 41 of 55 Report o. R S-1 E 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 6.1 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 S ) 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 S ) 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) 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 S ) 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

42 age 42 of 55 Report o. R S-1 E 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

43 age 43 of 55 Report o. R S-1 E Table 4.1 Spectral weighting function for assessing ultraviolet hazards for skin and eye Wavelength 1 λ, nm UV hazard function SUV(λ) Wavelength λ, nm UV hazard function SUV(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.

44 age 44 of 55 Report o. R S-1 E Table 4.2 Spectral weighting functions for assessing retinal hazards from broadband optical sources Wavelength nm Blue-light hazard function B (λ) Burn hazard function R (λ) 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 8,0

45 age 45 of 55 Report o. R S-1 E Table 4.2 Spectral weighting functions for assessing retinal hazards from broadband optical sources 465 0,70 7, ,62 6, ,55 5, ,45 4, ,40 4, ,22 2, ,16 1, [(450-λ)/50] 1, ,001 1, [(700-λ)/500] , , ,02(1150-λ) ,02 Table 5.4 Summary of the ELs for the surface of the skin or cornea (irradiance based values) Hazard ame Actinic UV skin & eye Relevant equation E S = E λ S(λ) λ Wavelength range nm Eye UV-A E UVA = E λ λ Blue-light small source E B = E λ B(λ) λ Exposure duration sec Limiting aperture rad (deg) EL in terms 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) 10000/t /t 1, /t 0,75 Skin thermal E H = E λ λ < 10 2π sr 20000/t 0,75 100

46 age 46 of 55 Report o. R S-1 E Table 5.5 Summary of the ELs for the retina (radiance based values) Hazard ame Relevant equation Wavelength range nm Blue light L B = L λ B(λ) λ Retinal thermal L R = L λ R(λ) λ 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 /(α t 0,25 ) 50000/(α t 0,25 ) L IR = L λ R(λ) λ > 10 0, /α

47 age 47 of 55 Report o. R S-1 Attachment II: Attached report of E Clause Requirement + Test Result Remark Verdict Table 6.1 Emission limits for risk groups of continuous wave lamps Risk Action spectrum Symbol Units Emission Measurement Exempt Low risk Mod risk Limit Result Limit Result Limit Result Actinic UV S UV (λ) E s W m -2 0,001 0 ear UV E UVA W m -2 0,33 0,04766 Blue light B(λ) L B W m -2 sr , Blue light, small source Retinal thermal Retinal thermal, weak visual stimulus** B(λ) E B W m -2 0,01* 0, ,0 400 R(λ) L R W m -2 sr /α /α 71000/α R(λ) L IR W m -2 sr ,0017 α 0, /α 0,011 α 0,1 IR radiation, eye E IR W m , * Small source defined as one with α < 0,011 radian. Averaging field of view at s is 0,1 radian. ** Involves evaluation of non-gls source

48 age 48 of 41 Report o. R S-1 Appendix I: Attached report of E Clause Requirement Test Result - Remark Verdict 4.2 ALICATIO OF LIMITS (Test summary) Specific absorption rate (SAR) a) CISR 15 clause Disturbance voltage mains terminals 20 khz 30 MHz b) CISR 15 clause 4.4 Radiated electromagnetic disturbances 100 khz 30 MHz c) CISR 15 clause Radiated electromagnetic disturbances 30 MHz 300 MHz *) See separate Test Report for measurements of a), b) and c) above Test Report with Ref. o.: R E Only measurement of d) below. See measurement results below. *) *) *) In this case this test report does not show compliance with IEC Induced current density d) Induced current density 20 khz 10 MHz See measurement results below 4.2.d IDUCED CURRET DESITY ower supply system utilised: Voltage... : V~ Frequency... : 50/60Hz Environmental conditions: Temperature... : 25 C Humidity... : 52% R.H. EuT operation mode: ormal operation Other operation: 4.2.d MEASUREMET RESULTS Measuring with Van der Hoofden test head Location of EuT Measuring distance Result (F) Limit (F) Verdict Front of EuT 30 cm 0,14 0,85

49 age 49 of 41 Report o. R S-1 Appendix I: Attached report of E Clause Requirement Test Result - Remark Verdict Rear of EuT 30 cm 0,20 0,85 Side of EuT 30 cm 0,24 0,85

50 hoto documentation age 50 of 55 Report o. R S-1 hoto 1 Outside view hoto 2 Outside view

51 hoto documentation age 51 of 55 Report o. R S-1 hoto 3 Outside view hoto 4 Bottom view

52 hoto documentation age 52 of 55 Report o. R S-1 hoto 5 Interior view hoto 6 Interior view

53 hoto documentation age 53 of 55 Report o. R S-1 hoto 7 Interior view hoto 8 Bottom view

54 hoto documentation age 54 of 55 Report o. R S-1 hoto 9 Interior view hoto 10 Interior view

55 hoto documentation age 55 of 55 Report o. R S-1 hoto 11 Interior view hoto 12 Interior view

Shenzhen BST Technology Co., Ltd. LEDz Shine LVD REPORT. 98 Cormorant,Jakkalsfontein,Darling 7345,South Africa

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