TEST REPORT EN : 1996 LUMINAIRES --- SAFETY--- PART 2-2: Particular requirements- Recessed luminaires

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1 Test Report issued under the responsibility of: TEST REORT E : 1996 LUMIAIRES --- SAFETY--- ART 2-2: articular requirements- Recessed luminaires Report reference o...: GTSS Compiled by (+ signature)...: Aaron Zhai Approved by (+ signature)...: Mike Chen Date of issue...: August 28, 2012 Testing laboratory...: Global United Technology Services Co., Ltd. 樬 Address...: 2nd Floor, Block o.2, Laodong Industrial Zone, Xixiang Road Baoan District, Shenzhen, China Testing location...: Same as above Applicant...: Fobsun Electronics Limited Address...: 4F, Building A6, Tianrui Industrial ark, Fuyuan 1st. Rd., Fuyong Town, Bao'an Dist, , Shenzhen, China. Manufactory...: Same as above Address...: Same as above Standard...: E :1996+A1:1997 used in conjunction with E : 2008+A1:2009, E :2006/AC:2010 used in conjunction with E :2008, E 62031:2008 Test procedure...: LVD Scheme rocedure deviation...:.a on-standard test method...:.a. This test report is specially limited to the above client company and product model only. It may not be duplicated without prior written consent of SEM.Test. Type of test object...: FCL9-30W Trademark...: /A Model/type reference...: See page 4 for models list and their declaration of differences Report o.: GTSS age 1 of 50

2 Rating...: V~ 50/60Hz 30W 0.7A max Test item particulars... : LED Downlight Classification of installation and use... : Recessed luminaire Supply Connection... : Directly connected to fixed wiring rotection against electric shock... : Class I ossible test case verdicts: - test case does not apply to the test object... : (ot applicable) - test object does meet the requirement... : (ass) - test object does not meet the requirement... : F (Fail) Testing: Date of receipt of test item...: August 20, 2012 Date(s) of performance of test..: August 20-August 25, 2012 Degree of protection against moisture....: I20 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. Tests performed (name of test and test clause): Model FCL9-30W having max watts of the all models of series is considered as representatives of series to perform all tests under client declared. Heating test (clause12) Tamb = C (requirement in standard unless otherwise specified); Input voltage range: V~ K-type thermocouple used for temperature measurement. The LED was applied to E 62471:2008 declared by client. This test report includes: AEX 1: Components AEX 2: Temperature measurements AEX 3: Screw terminals (part of the luminaire) AEX 4: Screwless terminals (part of the luminaire) AEX 5: ational Differences for (country name) or Group Differences AEX 6: E : 2006; AEX 7:E 62031:2008; AEX 8: hotos Report o.: GTSS age 2 of 50

3 E General product information: The products belong to recessed luminaire, class I equipment, supplied by identical external LED power supply which need to be tested and evaluated with luminaire. Copy of label: For LED Downlight LED Downlight Model: FCL9-30W Input:85-265V~ 50/60Hz 30W 0.7A max Fobsun Electronics Limited Copy of label: For LED OWER SULY Remark: The above label is draft of the artwork for marking plate pending approval by ational Certification Bodies and they shall not be affixed to products prior to such approvals. The marking plate of other models are of the same pattern Report o.: GTSS age 3 of 50

4 E List and different of models: Model o. Ratings Watts FCL3-9W Input:85-265VAC, 50/60Hz 0.7A max,output:28-42v,350 ma 9W FCL3-12W Input:85-265VAC, 50/60Hz 0.7A max,output:28-42v,350 ma 12W FCL4-10W Input:85-265VAC, 50/60Hz 0.7A max,output:28-42v,350 ma 10W FCL4-12W Input:85-265VAC, 50/60Hz 0.7A max,output:28-42v,350 ma 12W FCL4A-10W Input:85-265VAC, 50/60Hz 0.7A max,output:28-42v,350 ma 10W FCL4A-12W Input:85-265VAC, 50/60Hz 0.7A max,output:28-42v,350 ma 12W FCL5-15W Input:85-265VAC, 50/60Hz 0.7A max,output:28-42v,350 ma 15W FCL5-20W Input:85-265VAC, 50/60Hz 0.7A max,output:28-42v,700 ma 20W FCL5-26W Input:85-265VAC, 50/60Hz 0.7A max,output:28-42v,700 ma 26W FCL5-30W Input:85-265VAC, 50/60Hz 0.7A max,output:28-42v,700 ma 30W FCL6-15W Input:85-265VAC, 50/60Hz 0.7A max,output:28-42v,700 ma 15W FCL6-20W Input:85-265VAC, 50/60Hz 0.7A max,output:28-42v,700 ma 20W FCL6-26W Input:85-265VAC, 50/60Hz 0.7A max,output:28-42v,700 ma 26W FCL6-30W Input:85-265VAC, 50/60Hz 0.7A max,output:28-42v,700 ma 30W FCL6A-15W Input:85-265VAC, 50/60Hz 0.7A max,output:28-42v,350 ma 15W FCL6A-20W Input:85-265VAC, 50/60Hz 0.7A max,output:28-42v,700 ma 20W FCL6A-26W Input:85-265VAC, 50/60Hz 0.7A max,output:28-42v,700 ma 26W FCL6A-30W Input:85-265VAC, 50/60Hz 0.7A max,output:28-42v,700 ma 30W FCL8-15W Input:85-265VAC, 50/60Hz 0.7A max,output:28-42v,350 ma 15W FCL8-20W Input:85-265VAC, 50/60Hz 0.7A max,output:28-42v,700 ma 20W FCL8-26W Input:85-265VAC, 50/60Hz 0.7A max,output:28-42v,700 ma 26W FCL8-30W Input:85-265VAC, 50/60Hz 0.7A max,output:28-42v,700 ma 30W FCL9-15W Input:85-265VAC, 50/60Hz 0.7A max,output:28-42v,350 ma 15W FCL9-20W Input:85-265VAC, 50/60Hz 0.7A max,output:28-42v,700 ma 20W FCL9-26W Input:85-265VAC, 50/60Hz 0.7A max,output:28-42v,700 ma 26W FCL9-30W Input:85-265VAC, 50/60Hz 0.7A max,output:28-42v,700 ma 30W Report o.: GTSS age 4 of 50

5 E (0) GEERAL TEST REQUIREMETS 2.2 (0.1) Information for luminaire design considered Standard Yes o 2.2(0.3) More sections applicable Yes o 2.4(2) CLASSIFICATIO 2.4(2.2) Type of protection...: Class I luminaires 2.4(2.3) Degree of protection...: I20 2.4(2.4) Luminaire suitable for direct mounting on normally flammable surfaces...: Luminaire not suitable for direct mounting on normally flammable surfaces...: Luminaire suitable to be covered by insulating material...: Yes o Yes o Yes o 2.4(2.5) Luminaire for normal use...: Yes o Luminaire for rough service...: Yes o 2.5(3) MARKIG 2.5 (3.2) Mandatory markings osition of the marking Format of symbols/text Marking on outside surface of luminaire 2.5 (3.3) Additional information Language of instructions English version checked. Instructions shall be in a language acceptable for the country where the equipment is to be used. 2.5 (3.3.1) Combination luminaires 2.5 (3.3.2) ominal frequency in Hz 50/60Hz 2.5 (3.3.3) Operating temperature 2.5 (3.3.4) Symbol or warning notice 2.5 (3.3.5) Wiring diagram 2.5 (3.3.6) Special conditions 2.5 (3.3.7) Metal halide lamp luminaire warning LED lamp used 2.5 (3.3.8) Limitation for semi-luminaires 2.5 (3.3.9) ower factor and supply current 2.5 (3.3.10) Suitability for use indoors 2.5 (3.3.11) Luminaires with remote control o this devices 2.5 (3.3.12) Clip-mounted luminaire warning 2.5 (3.3.13) Specifications of protective shields 2.5 (3.3.14) Symbol for nature of supply See marking label 2.5 (3.3.15) Rated current of socket outlet o socket outlet Report o.: GTSS age 5 of 50

6 E (3.3.16) Rough service luminaire For normal use 2.5 (3.3.17) Mounting instruction for type Y, type Z and some type X attachments 2.5 (3.3.18) on-ordinary luminaires with VC cable Ordinary luminaire 2.5 (3.3.19) rotective conductor current in instruction if applicable 2.5 (3.3.20) rovided with information if not intended to be mounted within arms reach 2.5 (3.4) Test with water 15s Test with hexane 15s Legible after test Label attached (-) Warning notice, if not suitable for insulating ceiling (4) COSTRUCTIO (4.2) Components replaceable without difficulty (4.3) Wireways smooth and free from sharp edges (4.4) Lampholders Without lampholder used (4.4.1) Integral lampholder (4.4.2) Wiring connection (4.4.3) Lampholder for end-to-end mounting (4.4.4) ositioning - pressure test ()... : - bending test (m)... : (4.4.5) eak pulse voltage o ignitors used (4.4.6) Centre contact o ignitors used (4.4.7) arts in rough service luminaires resistance to tracking For normal use (4.4.8) Lamp connectors o lamp connectors used (4.4.9) Caps and bases correctly used (4.5) Starter holders Starter holder in luminaires other than class II o starter holder used Starter holder class II construction (4.6) Terminal blocks Tails Unsecured blocks (4.7) Terminals and supply connections (4.7.1) Contact to metal parts Live part will not contact to metal parts. (4.7.2) Test 8 mm live conductor Test 8 mm earth conductor (4.7.3) Terminals for supply conductors ( ) Welded connections: Report o.: GTSS age 6 of 50

7 E stranded or solid conductor - spot welding - welding between wires - mechanical test according to electrical test according to ageing test according to and (4.7.4) Terminals other than supply connection (4.7.5) Heat-resistant wiring/sleeves (4.7.6) Multi-pole plug o plug - test at 30 (4.8) Switches: - adequate rating o switch used - adequate fixing - polarized supply - compliance with for electronic switches (4.9) Insulating lining and sleeves (4.9.1) Retainment Method of fixing...: Adequate mechanical, (4.9.2) Insulated linings and sleeves a) & c) Insulation resistance and electric strength b) Ageing test. Temperature ( C)...: (4.10) Insulation of Class II luminaires (4.10.1) (4.10.2) (4.10.3) o contact, mounting surface accessible metal parts wiring of basic insulation Safe installation fixed luminaires Capacitors and switches Interference suppression capacitors according to IEC Assembly gaps: - not coincidental - no straight access with test probe Retainment of insulation: - fixed - unable to be replaced; luminaire inoperative - sleeves retained in position - lining in lampholder Without lampholder (4.11) Electrical connections (4.11.1) (4.11.2) Contact pressure Screws: Report o.: GTSS age 7 of 50

8 E (4.11.3) (4.11.4) (4.11.5) (4.11.6) - self-tapping screws For fixing enclosure - thread-cutting screws - at least two self-tapping screws Screw locking: - spring washer - rivets Material of current-carrying parts o contact to wood Electro-mechanical contact systems Without wood used (4.12) Mechanical connections and glands (4.12.1) (4.12.2) (4.12.4) (4.12.5) Screws not made of soft metal Screws of insulating material Metallic screw Torque test: torque (m); part...: 0.4m Screws with diameter < 3 mm screwed into metal Locked connections: - fixed arms; torque (m)...: - lampholder; torque (m)... : - push-button switches; torque 0,8 m... : Screwed glands; force ()... : o screw glands (4.13) Mechanical strength (4.13.1) (4.13.3) (4.13.4) Impact tests: - fragile parts; energy (m)... : o fragile parts - other parts; energy (m)... : 0,35 m 1) live parts 2) linings 3) protection 4) covers Straight test finger Rough service luminaires - I54 or higher a) fixed b) hand-held c) delivered with a stand Report o.: GTSS age 8 of 50

9 E (4.13.6) d) for temporary installations and suitable for mounting on a stand Tumbling barrel (4.14) Suspensions and adjusting devices (4.14.1) (4.14.2) (4.14.3) (4.14.4) (4.14.5) (4.14.6) Mechanical load: A) four times the weight 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 Load to flexible cables Mass (kg)...: Stress in conductors (/mm²)...: Semi-luminaires mass (kg)...: Semi-luminaires bending moment (m)...: Adjusting devices: - flexing test; number of cycles...: - strands broken - electric strength test afterwards Telescopic tubes: cords not fixed to tube; no strain on conductors Guide pulleys Strain on socket-outlets (4.15) Flammable materials: (4.15.2) - glow-wire test 650 C See clause spacing 30 mm - screen withstanding test of o screen - screen dimensions - no fiercely burning material - thermal protection - electronic circuits exempted Luminaires made of thermoplastic material with lamp control gear a) construction b) temperature sensing control Report o.: GTSS age 9 of 50

10 E c) surface temperature (4.16) Luminaires for mounting on normally flammable surfaces (4.16.1) (4.16.2) (4.16.3) o lamp control gear Electronic lamp control gear Lamp control gear spacing: - spacing 35 mm - spacing 10 mm Thermal protection: - in lamp control gear - external - fixed position - temperature marked lamp control gear Ballast/transformer with a marked value equial to or below 130 "F" curve measured (4.17) Drain holes o drain holes Clearance at least 5 mm (4.18) Resistance to corrosion: (4.18.1) (4.18.2) (4.18.3) - rust-resistance - season cracking in copper - corrosion of aluminium (4.19) Ignitors compatible with ballast o ignitors used (4.20) Rough service vibration (4.21) rotective shield: (4.21.1) (4.21.2) (4.21.3) (4.21.4) Shield fitted articles from a shattering lamp not impair safety o direct path Impact test on shield Glow-wire test on lamp compartment (4.22) Attachments to lamps (4.23) Semi-luminaires comply class II (4.24) UV radiation, metal halide lamps (4.25) o sharp point or edges (4.26) Short-circuit protection: Report o.: GTSS age 10 of 50

11 E (4.26.1) (4.26.2) (4.26.3) Uninsulated accessible SELV parts Short-circuit test Test chain according to Figure (11) CREEAGE DISTACES AD CLEARACES Working voltage (V) : 265V Voltage form Sinusoidal on-sinusoidal TI < 600 > 600 Rated pulse voltage (kv).: (1) Current-carrying parts of different polarity: cr (mm); cl (mm) : L-: Cr/Cl=3.2mm; Different polarity of fuse: Cr/Cl=3.2mm CY1: Cr/Cl=7.3mm; U2, U3, T1 Cr/Cl=7.3mm (2) Current-carrying parts and accessible parts: cr (mm); cl (mm)...: rimary live parts and Secondary live parts: Cr>8.0mm, Cl>8.0mm (3) arts becoming live due to breakdown of basic insulation and metal parts: cr (mm); cl (mm).: (4) Outer surface of cable where it is clamped and metal parts: cr (mm); cl (mm)...: (5) ot used (6) Current-carrying parts and supporting surface: cr (mm); cl (mm)...: Cr>8.0mm, Cl>8.0mm 2.8 (7) ROVISIO FOR EARTHIG 2.8 (7.2.1 Accessible metal parts ) Metal parts in contact with supporting surface Resistance < 0,5 Ω 0.1 Ω Self-tapping screws used Thread-forming screws Thread-forming screw used in a grove Earth makes contact first 2.8 (7.2.2 Earth continuity in joints etc ) 2.8 (7.2.4) Locking of clamping means Compliance with (7.2.5) Earth terminal integral part of connector socket 2.8 (7.) Earth terminal adjacent to mains terminals 2.8 (7.2.7) Electrolytic corrosion of the earth terminal 2.8 (7.2.8) Material of earth terminal Contact surface bare metal Report o.: GTSS age 11 of 50

12 E (7.) 2.8 (7.2.11) Class II luminaire for looping-in Double or reinforced insulation to functional earth Earthing core coloured green-yellow 2.9 (14) SCREW TERMIALS Separately approved; component list (see Annex 1) art of the luminaire (see Annex 3) 2.9 (15) SCREWLESS TERMIALS AD ELECTRICAL COECTIOS Separately approved; component list (see Annex 1) art of the luminaire (see Annex 4) (5) EXTERAL AD ITERAL WIRIG (5.2) Supply connection and external wiring Means of connection : Connecting cord (5.2.1) (5.2.2) Type of cable.: RVV ominal cross-sectional area (mm²)..: 3*0.75mm2 Cables equal to IEC or IEC Type of attachment, X, Y or Z X (5.2.3) Type Z not connected to screws (5.2.5) Cable entries: (5.) - suitable for introduction - adequate degree of protection Cable entries through rigid material have rounded (5.2.7) (5.2.8) (5.2.9) (5.) (5..1) edges Insulating bushings: - suitably fixed - material in bushings - material not likely to deteriorate - tubes or guards made of insulating material Locking of screwed bushings 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 Report o.: GTSS age 12 of 50

13 E (5..2) (5..3) (5.2.11) (5.2.12) (5.2.13) (5.2.14) (5.2.16) (5.2.17) (5.2.18) Glands not used as anchorage Labyrinth type anchorages Adequate cord anchorage for type Y and type Z attachment Tests: - impossible to push cable; unsafe - pull test: 25 times; pull ()...: 60 - torque test: torque (m)...: displacement 2 mm no movement of conductors - no damage of cable or cord External wiring passing into luminaire Looping-in terminals Wire ends not tinned Wire ends tinned: no cold flow Mains plug same protection Class III luminaire plug Appliance inlets (IEC 60320) Appliance couplers of class II type o standardized interconnecting cables properly assembled Used plug in accordance with - IEC other standard (5.3) Internal wiring (5.3.1) ( ) ( ) ( ) ( ) ( ) Internal wiring of suitable size and type 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 Adequate cross-sectional area and insulation thickness Double or reinforced insulation for class II Conductors without insulation SELV current-carrying parts Report o.: GTSS age 13 of 50

14 E ( ) (5.3.2) (5.3.3) (5.3.4) (5.3.5) (5.3.6) (5.3.7) Insulation thickness other than VC or rubber Sharp edges etc. o moving parts of switches etc. Joints, raising/lowering devices Telescopic tubes etc. o twisting over 360 Insulating bushings: - suitable fixed - material in bushings - material not likely to deteriorate - cables with protective sheath Joints and junctions effectively insulated Strain on internal wiring Wire carriers Wire ends not tinned Wire ends tinned: no cold flow 2.11 (8) ROTECTIO AGAIST ELECTRIC SHOCK 2.11 Live parts not accessible (8.2.1) Basic insulated parts not used on the outer surface without appropriate protection Basic insulated parts not accessible with standard Recessed luminaire test finger on portable and adjustable luminaires Basic insulated parts not accessible with Ø 50 mm probe from outside, within arms reach, on wallmounted luminaires Lamp 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 LED lamp used Insulation lacquer not reliable Double-ended high pressure discharge lamp Relevant warning according to fitted to the luminaire 2.11 ortable luminaire adjusted in most unfavourable Recessed luminaire (8.2.2) position 2.11 Class II luminaire: (8.2.3) - 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 o glass protective shields supplementary insulation Class I luminaire with BC lampholder without BC lampholder Report o.: GTSS age 14 of 50

15 E (8.2.4) 2.11 (8.2.5) 2.11 (8.) 2.11 (8.2.7) ortable luminaire: - protection independent of supporting surface - terminal block completely covered Compliance with the standard test finger or relevant probe Covers reliably secured Discharging of capacitors 0,5 μf 0.1uF ortable plug connected luminaire with capacitor Other plug connected luminaire with capacitor Discharge device on or within capacitor Discharge device mounted separately 2.12 (12) EDURACE TEST AD THERMAL TEST 2.12 (12.3) Endurance test: - mounting-position...: Similar supporting surface as for the normal operation. - test temperature ( C)...: 35 C - total duration (h)...: supply voltage: Un factor; calculated voltage (V): 280.9V - lamp used...: LED 2.12 After endurance test: (12.3.2) - 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) 2.12 (12.5) Thermal test (abnormal operation) After short-circuit for secondary output of transformer, Input power and current are reduced immediately (1) Thermal test (failed lamp control gear condition): 2.12 Through wiring or looping-in wiring loaded by a (1.1) current of (A)...: - case of abnormal conditions...: - electronic lamp control gear - measured winding temperature ( C): at 1,1 Un.: - measured mounting surface temperature ( C) at 1,1 Un...: - calculated mounting surface temperature ( C)..: 2.12 (1.2) - 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 2.12 (12.7) Thermal test (failed lamp control gear in plastic luminaires): Report o.: GTSS age 15 of 50

16 E (12.7.1) 2.12 ( ) 2.12 ( ) 2.12 ( ) 2.12 (12.7.2) Luminaire without temperature sensing control Luminaire with fluorescent lamp 70W Test method or Annex V...: 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 V: - case of abnormal conditions - 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: - part tested; temperature ( C)...: - part tested; temperature ( C)...: Luminaire with discharge lamp, fluorescent lamp > 70W, transformer > 10 VA - case of abnormal conditions - 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: - part tested; temperature ( C)...: - part tested; temperature ( C)...: 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: - part tested; temperature ( C)...: - part tested; temperature ( C)...: 2.13 (9) RESISTACE TO DUST, SOLID OBJECTS AD MOISTURE 2.13 (9.2) Tests for ingress of dust, solid objects and moisture: - classification according to I...: I20 - mounting position during test...: - fixing screws tightened; torque (m)...: - tests according to clauses...: Report o.: GTSS age 16 of 50

17 E 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 where it could become a hazard d) i) For luminaires without drain holes no water entry 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 2.13 (9.3) Humidity test 48 h 30 C, 93% 2.14 (10) ISULATIO RESISTACE AD ELECTRIC STREGTH 2.14 Insulation resistance test (10.2.1) Cable or cord covered by metal foil or replaced by a metal rod of mm Ø...: Insulation resistance (MΩ) 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...: Other than SELV: - between live parts of different polarity...: >2 MΩ - between live parts and mounting surface...: >4 MΩ - between live parts and metal parts...: >4 MΩ - between live parts of different polarity through action of a switch...: 2.14 Electric strength test (10.2.2) Dummy lamp Luminaires with ignitors after 24 h test Luminaires with manual ignitors Test voltage (V): 265 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...: Other than SELV: - between live parts of different polarity...: 1530Vac - between live parts and mounting surface...: 3056Vac - between live parts and metal parts...: 3056Vac Report o.: GTSS age 17 of 50

18 E between live parts of different polarity through action of a switch...: 2.14 (10.3) Leakage current (ma)...: (13) RESISTACE TO HEAT, FIRE AD TRACKIG 2.15 (13.2.1) Ball-pressure test: - part tested; temperature ( C)...: lastic enclosure of LED power supply:75 C - part tested; temperature ( C)...: Bobbin of T1 and T2:125 C - part tested; temperature ( C)...: Connector for output terminal and LED Downlight input terminal:125 C - part tested; temperature ( C)...: CB of LED power supply and LED module:125 C 2.15 (13.3.1) 2.15 (13.3.2) 2.15 (13.4.1) eedle flame test (10 s): - part tested...: CB - part tested...: Bobbin of T1 and T2 - part tested...: Connector for output terminal and LED Downlight input terminal Glow-wire test (650 C): - part tested...: Enclosure of LED power supply - part tested...: Connector for output terminal and LED Downlight input terminal: CB of LED module Tracking test: part tested...: Report o.: GTSS age 18 of 50

19 E Annex 1 Components list object/part o. manufacturer/ trademark type/model technical data standard mark(s) of conformity LED OWER SULY lastic enclosure of LED power supply Connector for output tetminal and LED Downlight input terminal FUSE-link AC input cord DC output cord CHAGYOU Sabic Innovative lastics US LLC Various Dongguan Better Electronic Shenzhen Goldcome Shenzhen Goldcome CA036W 940(f1) Various H03VVH2-F H03VVH2-F Internal lead wire Various Various Transformer(T1) Fobsun Electronics Limited V~ 50/60Hz 30W, SEC:28-42VDC, 0.7A C, V-0, 120 C, V-1, minimum 60C 932 T1.25AL, 300VAC FB-AR /500VAC, 3*0.75mm2 300/500VAC, 3*0.75mm2 80, VW-1, 20AWG Class B - rimary winding Various Various olyurethane, 155 -Triple wire FURUKAWA ELECTRIC LTD - Bobbin CHAG CHU LASTICS CO LTD CO E E E E Tested with appliance -- UL E UL E & 2 E 60227/ E 60227A/ E E 60227/ E 60227A/ E UL- E E E E VDE VDE VDE UL Tested with appliance -- UL TEX-E UL E T375J V-0; 130 C -- UL E Insulation tape Various Various VW-1, 130C minimum -Varnish Various Various VW-1, 130C minimum UL 510 UL- UL UL Report o.: GTSS age 19 of 50

20 E Annex 1 Components list object/part o. manufacturer/ trademark type/model technical data standard mark(s) of conformity Optocoupler Everlight EL817 Int. Cr / Ext. Cr E VDE (U2, U3) Electronics Co., / Dti.: Ltd. 6,0 / 7,6/ 0,4 mm; 110C X2 capacitor (CX1,CX2) Shenzhen Surong capacitor Co., Ltd Y-cap. (CY1, CY2, CY3) JYA-AY Co., Ltd. J Alt. Shenzhen Surong capacitor Co., Ltd L1 ShenZhen ChengJian Technology Co,Ltd L2 ShenZhen ChengJian Technology Co,Ltd T2 ShenZhen ChengJian Technology Co,Ltd Varistor (ZV1) Shantou High-ew Technology CB of LED module and LED power supply LED module Heat shrinkable tubing (for wrapped internal lead wire) MK62 0.1µF, 275 VAC, 40/110/56/C, X2 250VAC; 2200pF; 25/125/21/C MX/MK 2200 f, 275 VAC, 40/110/56/C, X2 S-E CLASS B CY-T uH, CY-T mH, 10D561K CLASS B CLASS B AC V, 25A, 85C, 56K, Various Various V-0; 130 C minimum Fobsun Electronics Limited Shenzhen Woer Heat-shrinkable Material Co., Ltd. Guangzhou Kaiheng ew Material Co., Ltd. FCL9 RSFR-H CCT: K, K, K, K typical CRI: > Vac, 125 C K-102 (+) 600Vac, 125 C Various Various 600Vac, 125 C E : 2005 E : 2005 E E : 2005 E : E E E VDE VDE VDE Tested with appliance Tested with appliance Tested with appliance VDE UL -- Tested with appliance -- UL (E203950) -- UL (E321827) -- UL Report o.: GTSS age 20 of 50

21 E AEX 2: temperature measurements, thermal tests of Section 12 Type reference...: FCL9-30W Lamp used...: LED modules Lamp control gear used...: LED power supply Mounting position of luminaire...: As normal Supply wattage (W)...: 30W Supply current (A)...: 0.7A Calculated power factor...: Table: measured temperatures corrected for ta = 25 C: - abnormal operating mode...: - test 1: rated voltage...: - test 2: 1,06 times rated voltage or 1,05 times 265VX1.06=280.9V 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...: temperature ( C) of part Clause 12.4 normal Clause 12.5 abnormal test 1 limit Ambient 26.7 ower cord 36.3 Y-cap (CY2) 40.7 X-cap (CX2) 45.6 Winding of T Winding of L X-cap (CX1) 49.7 ZV1 body 46.6 CB near DB Winding of L CB near Q Winding of T Core T Y-cap (CY1) 64.6 Optocoupler U Optocoupler U CB near D E-cap E Ref Report o.: GTSS age 21 of 50

22 E Winding of L CB near U Output wire 40.1 Enclosure of LED power supply inside near T Enclosure of LED power supply outside near T Mounting surface 54.3 LED module metal Enclosure 37.8 CB of LED module Ref Ref CB near T Ambient 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 External wiring o soft metal (14.4.5) Corrosion (14.4.6) 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 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 Report o.: GTSS age 22 of 50

23 E (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 ) withstand the mechanical, electrical and thermal stresses occurring in normal use ( ) 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 (15.5.2) ermanent connections: pull-off test (20 ) (15.6) 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 10th alt. 25th cycle (4 samples)...: After ageing, voltage drop (mv) after 50th alt. 100th cycle (4 samples)...: (15.7) Terminals external wiring Terminal size and rating (15.8.1) ull test spring-type terminals or welded connections (4 samples); pull ()...: ull test pin or tab terminals (4 samples); pull ()...: (15.9) 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 Report o.: GTSS age 23 of 50

24 E voltage drop (mv) Continued ageing: voltage drop after 50th alt. 100th cycle Max. allowed voltage drop (mv)... terminal voltage drop (mv) AEX 5 ational Differences for (country name) or Group Differences CEELEC COMMO MODIFICATIOS (E) 2.5 (3) MARKIG 2.5 Adequate warning on the package ( ) (4) COSTRUCTIO Electro-mechanical contact systems (4.11.6) (5) EXTERAL AD ITERAL WIRIG Connecting leads (5.2.1) - without a means for connection to the supply - terminal block specified - relevant information provided - compliance with 4.6, 4.7.1, 4.7.2, , 11.2, 12 and 13.2 of art 1 Cables equal to HD21 S2 or HD22 S2 (5.2.2) 2.12 (12) EDURACE TEST AD THERMAL TEST 2.12 ( c) Thermal test (normal operation) ZB AEX ZB, SECIAL ATIOAL CODITIOS (E) (3.3) DK: power supply cord with label IT: warning label on Class 0 luminaire (4.5.1) DK: socket-outlets (5.2.1) CY, DK, FI, SE, GB: type of plug ZC AEX ZC, ATIOAL DEVIATIOS (E) (4 & 5) FR: Shuttered socket-outlets 10/16A (13.3) FR: Glow-wire test 850 C alt. 750 C for luminaires in premises open to public or 960 C for luminaires in emergency exits (13.3) GB: Requirements according to United Kingdom Building Regulation Australia SECIAL ATIOAL CODITIOS Variations to IEC :2003 for application in Australia and ew Zealand Report o.: GTSS age 24 of 50

25 E Add the following references: AS/ZS 3000, Electrical installations (known as the Australian/ew Zealand Wiring Rules) AS 3112, Approval and test specification lugs and socketoutlets AS/ZS 3131, Approval and test specification lugs and socket-outlets for use in installation wiring systems AS/ZS , Fire hazard testing of electrotechnical products, art 707:Methods of test for the determination of the flammability of solid electrical insulating materials when exposed to an igniting source AS/ZS , Luminaires, art 2: articular requirements (all parts) AS/ZS , Fire hazard testing, art : Glowing/hot wire based test methods glow-wire apparatus and common test procedure AS/ZS (Int), Installation couplers, art 1: General requirements Add a new second paragraph: In Australia, the supply voltage is 230 V/400 V +10% - 6% and for testing according to this Standard, the rated voltage shall be 240 V/415 V Amend clause to read: Material which does not comply with the glow-wire test requirements of ; and material which can be easily ignited by spark, flame or hot surface when in contact with atmospheric oxygen and which can sustain a fire or explosion. 1.2 Add a OTE after the clause: OTE Includes plug-in night lights (which are intended to provide a source of low level illuminance in areas not normally illuminated at night).articular requirements for plug-in night lights is proposed to be covered in IEC 2.2 Addition:Class 0 Luminaires are not allowed in Australia and ew Zealand Addition:In Australia, luminaires with non-detachable flexible cables or cords which are intended to be connected to the supply via a socket-outlet and which are not fitted with a plug are not permitted. 3.3 Addition:Instructions and other texts required by this Standard shall be written in English Addition:To avoid potential unsafe lamp failure, the luminaire should be switched off at least once a week. oted Rated voltage V~ 110/220V~ Class I (LED lamp) with class I external power supply the power cord is not fitted with a plug and intended to be direct connected to the supply English used Indoor and outdoor use: (a) Suitability for use "indoors" including the related ambient temperature. (b) Suitability for outdoors temporary use. (c) Suitability for outdoors permanent use Report o.: GTSS age 25 of 50

26 E Addition:G5 lampholders are assessed for access to live parts during lamp replacements and with the lamp removed Addition:Table Guidance on when to use the symbol or warning notice: Surface mounted luminaires suitable for direct mounting on normally flammable surfaces: o symbol Surface mounted luminaires not suitable for direct mounting on normally flammable surfaces (suitable only for mounting on non-flammable surfaces): Apply the Mounting Warning symbol Recessed luminaires suitable for mounting in/on normally flammable surfaces when thermally insulating material may cover the luminaire: o symbol Recessed luminaires not suitable for mounting in/on normally flammable surfaces when thermally insulating material may cover the luminaries: Apply the o Insulation symbol Recessed luminaires not suitable for mounting in/on normally flammable surfaces yet otherwise complies.: Apply the Mounting Warning symbol and the o Insulation symbol Add a new third paragraph: ortable luminaires with non detachable cables or cords shall be fitted with plugs complying with AS/ZS The plug portion of the luminaire with integral pins shall comply with Appendix J of AS/ZS Also see note under Clause Recessed luminaires Delete clause and replace with the following: -- Flexible cables or cords used as a means of connection to the supply, when supplied by the luminaire manufacturer, shall be at least equal in their mechanical and electrical properties to those specified in table 5.1, and shall be capable of withstanding, without deterioration, the highest temperature to which they may be exposed under normal conditions of use. Materials other than polyvinyl chloride and rubber are suitable if the above requirements are met. RVV, 3G 0.75mm², VDE approved For supply voltages greater than 250 V, higher voltage grade cables and cords than those given in the above table may be necessary. To provide adequate mechanical strength, the nominal cross-sectional area of the conductors shall be not less than: mm² for ordinary luminaires; - 1 mm² for other luminaires Installation couplers complying with AS/ZS 3131 or AS/ZS (Int) are an acceptable alternative in Australia and ew Zealand. 3G 0.75 mm² o such couplers used Report o.: GTSS age 26 of 50

27 E Addition: OTE 2: For testing G5 lampholders, see Clause Addition: For Class I portable luminaires and luminaires for wall mounting within arm s reach (see Clause of AS/ZS 3000), terminal blocks shall be completely covered and it shall not be possible to touch basic insulation unless opened for replacement of lamps or replaceable control gear Add the following OTE to Table 12.1: OTE: Luminaire manufacturers are advised to consider maximum ambient air temperature of a component such as starting device, electronic ballast or converter etc. Component performance specifications advise manufacturers to mark or supply life data as maximum ambient air temperature based on 50,000 hrs. This t-lifetime is often marked as ta and is the temperature of the air in the vicinity of the component and is not related to the luminaire ta. Luminaire manufacturers are advised to measure air temperature in the vicinity of such components, within the luminaire, as even those complying with their tc point measurements can still fail prematurely if t-lifetime is exceeded. Consideration is being given to including this value in the above table in future editions. 1 Change the title to read: 1 Thermal test (failed lamp controlgear conditions) 13.3 Replace:Enclosure for auxiliary equipment including transformers, ballasts, capacitors, electrode connections, automatic switching apparatus and similar devices shall be of metal-clad type or totally enclosed in suitable material which will effectively prevent the spread of fire. OTE 1 A suitable material is one which conforms to glow wire test at a temperature of 850 C. arts of insulating material retaining current-carrying parts, SELV parts in position, and external parts of insulating material providing protection against electric shock shall be resistant to flame and ignition. For materials other than ceramic, compliance is checked by the tests of and and as appropriate arts of insulating material retaining current-carrying parts in position shall withstand the following tests: arts are subjected to a test using a nickelchromium glow-wire heated to 750 C arts of insulating material which do not retain live parts in position, but which provide protection against electric shock, and parts of insulating material retaining SELV, parts in position shall withstand the following test: o such device CB of LED power supply, T1 and T2 bobbin:750 C, no flame,o drops Report o.: GTSS age 27 of 50

28 E arts are subjected to a test using a nickelchromium glow-wire heated to 650 C During the application of the glow-wire tests of Clauses and , the height and duration of the flames are measured. parts that withstand the glow-wire test but which flame during the application of the glow-wire, the surrounding parts are subjected to the needle-flame test, in accordance with AS/ZS , for the measured duration of the flame or 30 s, whichever is the least, if they are positioned within a distance equal to the height of the flame, and they are likely to be impinged upon by the flame. However, parts shielded by a separate barrier that meets the needle-flame test are not tested. The needle-flame test is not carried out on parts that are made of material classified as FV-0 or FV-1 according to AS/ZS The sample of material submitted to the test of AS/ZS shall be no thicker than the relevant part. Connector for output tetminal and LED Downlight input terminal, CB of LED module, enclosure of LED power supply: 650 C, no flame,o drops o flames During the glowwire test Report o.: GTSS age 28 of 50

29 E AEX 6 4(4) General requirements Compliance of independent controlgear enclosure with E Independent SELV controlgear comply with Annex I 6(6) Classification Independent controlgear... Yes o Built-in controlgear... Yes o Integral controlgear... Yes o SELV-equivalent or isolating controlgear... Yes o Auto-wound controlgear.... Yes o Independent SELV controlgear... Yes o 7 MARKIG 7.1 (7.1) Mandatory markings: - mark of origin See copy of marking label - model number, type reference..: See copy of marking label - symbol for independent controlgear, if applicable - correlation between interchangeable parts and controlgear marked - rated supply voltage (V)....: See copy of marking label -supply frequency(hz) 50/60Hz - earthing symbol - wiring diagram - value of tc - symbol for declared temperature Constant voltage type : Yes o - rated supply voltage (V)....: See copy of marking label Constant current type....: Yes o - rated output current (A)....: 700mA - rated maximum output voltage (V)...: 42VDC - indication if for LED modules only 7.2 (7.1) - information to be provided, if applicable - declaration on protection against accidental contact - cross-section of conductors (mm²) : - number, type and wattage of lamp(s) Report o.: GTSS age 29 of 50

30 E directly mains-connected windings SELV-equivalent controlgear - (7.2) Marking durable and legible Rubbing 15 s water, 15 s petroleum; marking legible 8(10) ROTECTIO AGAIST ACCIDETAL COTACT WITH LIVE ARTS - (10.1) - (A2) - (A2) - (A3) - (10.1) - (10.2) 8.1 (-) 8.2 (-) Controlgear protected against accidental contact with live parts The current flowing between the part concerned and earth is measured and does not exceed 0,7 ma (peak) or 2 ma d.c. : For frequencies above 1 khz, the current does not exceed 0,7 ma (peak) multiplied by the value of the frequency in kilohertz or 70 ma (peak)..: The voltage between the part concerned and any accessible part is measured and does not exceed 34 V (peak).: Lacquer or enamel not used for protection or insulation Adequate mechanical strength on parts providing protection Capacitors > 0,5 μf: voltage after 1 min (V): < 50 V: SELV-equivalent controlgear accessible parts are insulated from live parts by double or reinforced insulation according 8.6 and 13.1 in IEC Exposed terminals of SELV or SELV-equivalent controlgear are allowed if: - the rated or maximum output voltage does not exceeding 25 V r.m.s. - the no-load output voltage does not exceed 30 V r.m.s. or 33 2 V peak Insulated terminals if rated output voltage >25 V One capacitor Y1 or two capacitors Y2 of the same values used in series between SELV or SELV-equivalent output and primary circuits - Capacitor complying with IEC Other components bridging the separating transformer complying with IEC 60065, clause V/2000ohm=9.6mA 8V o such material used for protection or insulation 0.1uF Independent SELV controlgear 9(8) TERMIALS Screw terminals shall comply with section 14 of IEC (14) Screw Terminals Separately approved; component list Report o.: GTSS age 30 of 50

31 E art of the luminaire (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 (14.4.6) 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 Screwless terminals shall comply with section 15 of IEC (15) Screwless Terminals Separately approved; component list art of the luminaire (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) Report o.: GTSS age 31 of 50

32 E ( ) ull test pin or tab terminals (4, 4 samples) Insertion force not exceeding 50 (15.5.2) ermanent connections: pull-off test (20 ) (15.6) 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 10th alt. 25th cycle (4 samples) : After ageing, voltage drop (mv) after 50th alt. 100th cycle (4 samples) : (15.7) Terminals external wiring (15.8.1) Terminal size and rating ull test spring-type terminals or weded connections (4 samples); pull () : ull test pin or tab terminals (4 samples); pull () : (15.9) Contact resistance test (For welded connection of lampholder to wires) 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) Report o.: GTSS age 32 of 50

33 E (9) ROVISIOS FOR ROTECTIVE EARTHIG External metal parts connected to the earthterminal: - compliance with in IEC Test with a current of 10 A between earthing terminal and each of the accessible metal parts; measured resistance (Ω): < 0,5 Ω..: rotective earth, symbol Terminal complying with clause 8 in art 1 Locked against loosening and not possible to loosen by hand ot possible to loosen clamping means unintentionally on screwless terminals Earthing via means of fixing Earthing terminal only used for the earthing of the control gear All parts of material minimizing the danger of electrolytic corrosion Made of brass or equivalent material Contact surface bare metal Conductors by tracks on printed circuit boards: - a.c. current of 25 A for 1 min between earthing terminal and accessible metal parts - compliance with clause in IEC (11) MOISTURE RESISTACE AD SULATIO Humidity treatment Insulation resistance test (500Vdc, 1min) 25, 95%RH, 48h, no dielectric breakdown 11 (-) 2 MΩ for basic insulation...: See annex I for details. 4 MΩ for double or reinforced insulation...: See annex I for details. Adequate insulation between input and output terminals not bounded together in SELVequivalent controlgear 12 ELECTRIC STREGTH 12(12) Immediately after clause 11 electric strength test for 1 min Working voltage 42 V, test voltage 500 V See circuit and enclosure Working voltage > 42 V 1000 V, test voltage (V): Basic insulation, 2U V See annex I for details. Supplementary insulation, 2U V Report o.: GTSS age 33 of 50

34 E (14.3.1) Double or reinforced insulation, 4U V See annex I for details. o flashover or breakdown Windings in separating transformers in SELVequivalent control gear according to of E (13) THERMAL EDURACE TEST FOR WIDIGS (ot applicable) 14(14) FAULT CODITIOS When operated under fault conditions the controlgear: - (14.1) - (14.2) - (14.3) - does not emit flames or molten material o emit flames, o molten - does not produce flammable gases o produce flammable gases - protection against accidental contact not impaired 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 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) Distances on printed boards provided with coating according to IEC Short-circuit or interruption of semiconductor devices Short-circuit across insulation consisting of lacquer, enamel or textile o thermally protected used (see appended table) (see appended table) - (14.4) Short-circuit across electrolytic capacitors (see appended table) - (14.5) After the tests the insulation resistance with d.c. 500 V (MΩ) are 1 MΩ.: After the tests the accessible parts has not become live During the tests, a five-layer tissue paper, where the test specimen is wrapped, does not ignite Temperature declared thermally protected controlgear fulfil the requirements in Annex C >100 MΩ o thermally protected used 15(15) TRASFORMER HEATIG 15.1 Windings of separating transformer in a SELVequivalent controlgear fulfil the requirements according to 7.1 and 11.2 of IEC Temperatures do not exceed the changed values of the values in column 2 of Table 3 of IEC 60065, in respect to relevant ambient temperature at tc, under normal operation Independent SELV controlgear Report o.: GTSS age 34 of 50

35 E Temperatures do not exceed the changed values of the values in column 3 of Table 3 of IEC 60065, in respect to relevant ambient temperature at tc, under abnormal conditions of Cl. 16 and fault conditions of Cl. 14 Ambient temperature at tc : 16(16) ABORMAL CODITIOS Safety not impaired when the controlgear is operated at any voltage between 90% and 110% of rated voltage 16.1 Control gear which are of the constant voltage output type: a) o LED module inserted b) Double LED modules or equivalent load connected to the output terminals c) Output terminal short-circuited (20 cm and 200 cm or declared length) During and at the end of the tests no defect impairing safety, nor any smoke or flammable gases produced 16.2 Control gear which are of the constant current output type: a) o LED module connected b) Double the LED modules or equivalent load connected in series to the output terminals c) Output terminal short-circuited (20 cm and 200 cm or declared length ) Maximum output voltage not exceeded During and at the end of the tests no defect impairing safety, nor any smoke or flammable gases produced 17(15) COSTRUCTIO (15.1) (15.2) Wood, cotton, silk, paper and similar fibrous material shall not be used as insulation, unless impregnated. rinted circuits are permitted for internal connections complies with clause 14 of IEC Socket-outlet in the output circuit does not accept plugs complying with IEC and IEC ot possible to engage plugs accepted by socketoutlet in the output circuit with socket-outlets complying with IEC and IEC ot such material used as insulation 18(16) CREEAGE DISTACES AD CLEARACES Creepage distances and clearances according to Table 3 and 4, as appropriate (see appended table) rinted boards see clause 14 of E Report o.: GTSS age 35 of 50

36 E Insulating lining of metallic enclosures 19(17) SCREWS, CURRET-CARRYIG ARTS AD COECTIOS Screws, current-carrying parts and mechanical connections, the failure of which might cause the lamp controlgear to become unsafe, shall withstand the mechanical stresses occurring in normal use Screws, Current-Carrying arts and Connections in compliance with E , Clause numbers between parentheses refer to E (4.11) Electrical connections and current-carrying parts (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 (4.11.6) Electro-mechanical contact systems (4.12) Mechanical connections and glands (4.12.1) Mechanical stress Screws not made of soft metal Screws of insulating material Torque test: torque (m); part...: (4.12.2) Screws with diameter < 3 mm screwed into metal (4.12.3) Void (4.12.4) Locked connections: - fixed arms; torque (m)...: - lampholder; torque (m)... : - push-button switches; torque 0,8 m... : (4.12.5) Screwed glands; force ()... : 20(18) RESISTACES TO HEAT, FIRE AD TRACKIG (18.1) arts of insulating material retaining live parts in position, ball-pressure test: 20 (18.2) - part; test temperature ( C)...: rinted boards in accordance with IEC , 4.3 Ball-pressure test in compliance with E , see page (18.3) External parts of insulating material preventing electric shock glow-wire test 650 C Glow-wire test in compliance with E , see page 18 Report o.: GTSS age 36 of 50

37 E (18.4) arts of insulating material retaining live parts in position, needle-flame test 10 s: - flame extinguished within 30 s eedle-flame test in compliance with E , see page 18 - no flaming drops igniting tissue paper 20 (18.5) Tracking test 21(19) RESISTACE TO CORROSIO (19) Rust protection: - test according of E adequate varnish on the outer surface - (20) O-LOAD OUTUT VOLTAGE o load output voltage not differ more than 10 % from rated voltage Annex A Test to establish whether a conductive part is a live part which may cause an electric shock A.2 See clause 8 A.2 in this Test Report A.3 See clause 8 A.3 in this Test Report Annex B articular requirements for thermally protected lamp controlgear B.1 Introductory remark B.2 Scope B.3 Definitions B.3.1 Class Thermally protected lamp controlgear B.3.2 Temperature declared thermally protected lamp controlgear B.3.3 Rated opening temperature B.4 General requirements for thermally protected lamp controlgear B.5 General notes on test B.6 Classification B.6.1 According to the class of protection a) Class thermally protected lamp controlgear, symbol b) Temperature declared thermally protected lamp controlgear symbol B.6.2 According to the type of protection a) Automatic resetting type b) manual resetting type c) non-renewable, non-resetting type Report o.: GTSS age 37 of 50

38 E d) renewable, non-resetting type e) Other type of protective method providing equivalent thermal protection. B.7 Marking B.8 Thermal endurance of windings B.9 Lamp controlgear heating B.9.1 reselection test B.9.2 Class thermally protected lamp controlgear B Transformers B Chokes B.9.3 B.9.4 B.9.5 Temperature declared thermally protected lamp controlgear as specified in E with a rated maximum case temperature of 130. Temperature declared thermally protected lamp controlgear as specified in E with a rated maximum case temperature exceeding 130. Temperature declared thermally protected lamp controlgear as specified in E Annex C articular requirements for electronic lamp controlgear with means of protection against overheating C3 GEERAL REQUIREMETS C3.1 Thermal protection means integral with the controlgear, protected against mechanical damage Renewable only by means of a tool If function depending on polarity, for cordconnected equipment protection means in both leads Thermal links comply with IEC Electrical controls comply with IEC o thermal protection part used C3.2 o risk of fire by breaking (clause C7) C5 CLASSIFICATIO a) automatic resetting type b) manual resetting type c) non-renewable, non-resetting type d) renewable, non-resetting type e) other type of thermal protection; description.: C6 MARKIG C6.1 Symbol for temperature declared thermally protected ballasts C6.2 Declaration of the type of protection provided Report o.: GTSS age 38 of 50

39 E C7 LIMITATIO OF HEATIG C7.1 reselection test Test sample placed for at least 12 h in an oven having temperature (tc - 5) K o operation of the protection device C7.2 Functioning of protection means ormal operation of the sample in a test enclosure according to Annex D at an ambient temperature such that (tc +0; -5) C is obtained o operation of the protection device Introducing of the most onerous test condition determined during test of clause 14 Output of windings connected to the mains supply short-circuited, and other part of the controlgear operated under normal conditions Increasing of the current through the windings continuously until operation of the protection means Continuous measuring of the highest surface temperature Controlgear according to C5 a) or C5 e) operated until stable conditions are achieved Automatic-resetting thermal protectors working 3 times Controlgear according to C5 b) working 6 times Controlgear according to C5 c) and C5) d) working once Highest temperature does not exceed the marked value Any overshoot of 10% over the marked value within 15 min D AEX D REQUIREMETS FOR CARRY OUT THE HEATIG TESTS OF THERMALLY ROTECTED LAM COTROLGEAR Tests in C7 performed in accordance with Annex D, if applicable E AEX E USE OF COSTAT S OTHER THA 4500 I tw TESTS E1 Constant S claimed Claimed test method E2 rocedure A Adequate data provided by the manufacturer The inverse of the slope is greater than or equal to the claimed value of S Compliance with the failure criteria for procedure B E3 rocedure B Claimed value of T1 Claimed value of T2 Report o.: GTSS age 39 of 50

40 E Endurance test carried out at: T1 (7 samples) T2 (7 samples) Duration of test calculated from equation (2) T1 T2 During the test: - o open circuit - o breakdown insulation The claimed constant S is deemed to be verified F AEX F - DRAUGHT-ROOF ECLOSURE Draught-proof enclosure in accordance with the description Dimensions of the enclosure Other design; description H AEX H - TESTS All tests performed in accordance with the advise given in Annex H, if applicable I AEX I - ARTICULAR ADDITIOAL REQUIREMETS FOR IDEEDET SELV D.C. OR A.C. SULIED ELECTROIC COTROLGEAR FOR LED MODULES I.3 Classification I.3.1 Class I Yes o Class II Yes o I.3.2 a) non-inherently short circuit proof controlgear Yes o b) non-inherently open circuit proof controlgear Yes o c) inherently short circuit proof controlgear Yes o d) inherently open circuit proof controlgear Yes o e) fail safe controlgear Yes o f) non-short-circuit proof controlgear Yes o g) non-open-circuit proof controlgear Yes o I.4 Marking Adequate symbols are used I.5 rotection against electric shock I.5.1 o connection between output winding and body o connection between output winding and protective earthing circuit I.5.2 Input and output circuits electrically separated from each other Report o.: GTSS age 40 of 50

41 E I Insulation between input and output winding of the HF-transformer consists of double or reinforced insulation Class II: insulation between input/output and body consists of double or reinforced insulation Class I: insulation between input and body consists of basic and between output and body supplementary insulation I Insulation between input and output winding via the core consists of double or reinforced insulation Insulation between cord and windings of the HFtransformer consists of basic insulation I Serrated tape, additional layer I Class I controlgear for fixed connection provided with basic insulation plus protective screening comply with the following conditions: a) Insulation between the input winding and the protective screen complies with the requirements for basic insulation b) Insulation between the protective screen and the output winding complies with the requirements for basic insulation c) Metal screen consists of a metal foil or of a wire wound screen d) Metal screen so arranged that both edges cannot simultaneously touch a magnetic core e) Metal screen and its lead-out wire have a cross-section sufficient to ensure that an overload device will open the circuit before the screen is destroyed f) Lead-out wire sufficiently fixed to the metal screen I Last turn of each winding of the transformer retained by positive means Impregnated winding Winding held together by means of insulating material I.5.3 Components bridging between input and output circuit I Used capacitors and resistors comply with 8.2 I Used opto-couplers I.6 Heating I.6.1 o excessive temperatures in normal use Used material classified as Class A_ Stated value of ta I.6.2 Upri: 1.06 time supply rated voltage Determined temperature rises in windings: -rimary: 53.3 K - Limit max: 75 K - Secondary: 51.2 K -Limit max: 75 K After the test: - no connections have worked loose Report o.: GTSS age 41 of 50

42 E no reduction of creepage distances and clearances -no flow of sealing compound -no operation of protecting devices -electric strength test between input and output windings o breakdown I.6.3 Cycling test (10 cycles): I heat run at K I moisture treatment 48 h I vibration test 1 h; 1,5 g I After the tests: -insulation resistance -dielectric strength test at 35 % of specified value; test voltage V -Current or the ohmic component does not deviates by more than 30 % I.7 Short-circuit and overload protection I.7.1 I.7.2 I.7.3 I.7.4 After short-circuit of output, Input power and current was reduced. Upri: 1.06 times rated voltage or 0.94 and 1.06 times rated supply voltage -used voltage V Determined temperature rise in windings and on other parts: -test according to Clause _I.7.3_ -rimary winding 71.0_ K -Limit max 125 K -Secondary winding 68.6 K -Limit max 125_ K -External enclosure 51.2_K -Limit max 80 K -Rubber insulation of wiring K -Limit max 60 K -VC insulation of wiring 36.4_K -Limit max 60 K -Supports 50.3_K -Limit max 80 K I.7.5 Fail-safe convertors I Upri: 1.06 times rated supply voltage V: -Isec: 1.5 times rated output current A: -time until steady-state conditions t1 (h) : -time until failure t2 (h): < t1; < 5 h: I During the test: -no flames, molten material, etc. -temperature rise of enclosure < 150 K Report o.: GTSS age 42 of 50

43 E temperature rise of plywood support < 100 K After the test: -electric strength (test voltage; 35 % of specified value); no flashover or breakdown for primary-tosecondary and for primary-to-body -live parts not accessible by test finger through holes of enclosure I.8 Insulation resistance and electric strength I.8.1 Conditioned 48 h between 91 % and 95 % 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 MΩ : Live parts and the body -for reinforced insulation not less than 4 MΩ : Input- and output circuits not less than 5 MΩ : Metal parts of class II controlgear which are separated from live parts by basic insulation only and the body not less than 5 MΩ : Metal foil in contact with the inner and outer surfaces of enclosures of insulating material not less than 2 MΩ : I.8.3 Electric strength test: 1)Between live parts of input circuits and live parts of output circuits : 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 : 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 : o flashover or breakdown occurred I.9 Construction I.9.1 Comply with all requirements I.9.2 The distance between input and output terminals shall not be less than 25 mm : I.10 Components I.10.1 Socket-outlets in the output circuit does not accept plugs complying with IEC and IEC I.10.2 Self-resetting protective devices shall not be used o self-resetting protective unless it is certain that there will be no hazards devices Compliance is checked by connecting the controlgear for 48 h at 1.06 times the rated voltage with the output short-circuited I.11 Creepage distances and clearances Report o.: GTSS age 43 of 50

44 E Insulation between input and output circuits: CY1: Cr/Cl=7.3mm; rimary a)measured values > specified values (mm) : live parts and secondary live parts: Cr=7.3mm, Cl=7.3mm opto-couplers (U2,U3) b)measured values > specified values (mm) : Cr=7.3mm, Cl=7.3mm c)measured values > specified values (mm) : 2.Insulation between adjacent input circuits: measured values > specified values (mm) : 3.Insulation between terminals for external connection: a)measured values > specified values (mm) : b)measured values > specified values (mm): c)measured values > specified values (mm) : 4.Basic or supplementary insulation: a)measured values > specified values (mm) : L-: Cr/Cl=3.2mm; Different polarity of fuse: Cr/Cl=3.2mm b)measured values > specified values (mm) : c)measured values > specified values (mm) : d)measured values > specified values (mm) : e)measured values > specified values (mm) : 5.Reinforced insulation: measured values > specified values (mm) : 6.Distande through insulation: a)measured values > specified values (mm) : b)measured values > specified values (mm): c)measured values > specified values (mm) : d)measured values > specified values (mm) : Between Live parts and plastic enclosure Cr/Cl>8.0mm TABLE 1: tests of fault conditions art Simulated fault Breakdown T2 pin V Unit shutdown immediately, Recoverable, no hazard. o high temperature rise occurred. O T2 pin V output bouncing Recoverable, no hazard. o high temperature rise occurred. O EC3 EC3 U2pin V 281V 281V Unit shutdown immediately, Recoverable, no hazard. o high temperature rise occurred. Unit shutdown immediately, Recoverable, no hazard. o high temperature rise occurred. F1 opened,r13 damaged no hazard. o high temperature rise occurred. O O O Report o.: GTSS age 44 of 50

45 E U2pin3-4 U3pin1-2 U3pin3-4 Q3 ping-s Q3 ping-s Q3 ping-s BDpin1-2 C8 output T2 A to B T2 A to D T2 C to B T2 C to D 281V 281V 281V 281V 281V 281V 281V 281V 281V 281V 281V 281V 281V Unit shutdown immediately, Recoverable, no hazard. o high temperature rise occurred. F1 opened,r13 damaged no hazard. o high temperature rise occurred. Unit shutdown immediately, Recoverable, no hazard. o high temperature rise occurred. Unit shutdown immediately, Recoverable, no hazard. o high temperature rise occurred. F1 opened,r13 Q3 damaged, no hazard. o high temperature rise occurred. F1 opened,r13 Q3 damaged, no hazard. o high temperature rise occurred. F1 opened, no hazard. o high temperature rise occurred. F1 opened, no hazard. o high temperature rise occurred. Unit shutdown immediately, Recoverable, no hazard. o high temperature rise occurred. Unit shutdown immediately, Recoverable, no hazard. o high temperature rise occurred. Unit shutdown immediately, Recoverable, no hazard. o high temperature rise occurred. F1 opened, no hazard. o high temperature rise occurred. F1 opened, no hazard. o high temperature rise occurred. Remark: All testing components above were shorted circuit in turn during test. O O O O O O O O O O O O O Report o.: GTSS age 45 of 50

46 E Clause Requirement + Test Result Remark Verdict AEX 7 GEERAL REQUIREMETS 4.4 Integral modules treated as part of luminaires Yes o defined in clause 0.5 of E Independent modules complies with requirements in E Yes o 5 GEERAL TEST REQUIREMETS 5.5 SELV-operated LED modules comply with Annex I (see Annex B) of E CLASSIFICATIO Built-in module...: Yes o Independent module...: Yes o Integral module...: Yes o For Integral module; ote to in E applies. 7 MARKIG Requirements not applicable to the evaluated product. 8 SCREW TERMIALS Compliance with section 14 of E SCREWLESS TERMIALS Compliance with section 15 of E COECTORS Compliance with IEC ROVISIO FOR ROTECTIVE EARTHIG Requirements not applicable to the evaluated product. 8 (10) ROTECTIO AGAIST ACCIDETAL COTACT WITH LIVE ARTS Requirements not applicable to the evaluated product. 11 MOISTURE RESISTACE AD ISULATIO rotection against moisture and insulation in compliance with Clause 11, E Report o.: GTSS age 46 of 50

47 E Clause Requirement + Test Result Remark Verdict 12 ELECTRIC STREGTH Electric strength in compliance with Clause 12 of E FAULT CODITIOS 13.1 In compliance with IEC (clause numbers between parentheses refer to IEC ) 13.2 Module withstands overpower condition >15 min. Module with automatic protective device or power limiter, test performed 15 min. at limit. During the tests, tissue paper, spread below module, does not ignite. 15 COSTRUCTIO Wood, cotton, silk, paper and similar fibrous material not used as insulation 16 CREEAGE DISTACES AD CLEARACES Creepage and distances and clearances in compliance with E (17) SCREWS, CURRET-CARRYIG ARTS AD COECTIOS Screws, current-carrying parts and connections in compliance with E (18) RESISTACE TO HEAT, FIRE AD TRACKIG Resistance to Heat, Fire and Tracking in compliance with E (clause numbers between parentheses refer to E ) 19 RESISTACE TO CORROSIO Resistance to corrosion in compliance with E A AEX A - TESTS All tests performed in accordance with the advise given in Annex H of IEC , if applicable B AEX B - SELV-operated LED modules SLVE-operated LED modules in compliance with Annex I of E Report o.: GTSS age 47 of 50

48 AEX 8 Type of equipment, model: LED Downlight, FCL9-30W Report o.: GTSS age 48 of 50

49 Report o.: GTSS age 49 of 50

50 Report o.: GTSS age 50 of 50

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