Page 3 of 34 Report No Part I

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5 age 3 of 34 Report No art I List of Attachments (including a total number of pages in each attachment): Besides of the tests according to : A1 +A2, the following tests are also performed: 1. Thermal test, see annex art II: test report for hotobiological safety of lamps and lamp systems according to IEC 62471:2006 and EN 62471: hoto document. Summary of testing: Tests performed (name of test and test clause): All tests were performed on the model BASIC-FLAT AC-G V as representative, partial tests were performed on other models. Testing location: TÜV Rheinland / CCIC(Ningbo) Co., Ltd. 3F, Building C13, R&D ark, No.32 Lane 299 Guanghua Road, National Hi-Tech Zone, Ningbo ,.R. China Summary of compliance with National Differences: List of countries addressed EU= EU GROU DIFFERENCES The product fulfils the requirements of EN 62031:2008 +A1:2013 +A2: 2014

6 age 4 of 34 Report No art I Copy of marking plate: The artwork below may be only a draft. The use of certification marks on a product must be authorized by the respective NCBs that own these marks. Note: Other models have the similar marking labels, only model name and rating are different.

7 age 5 of 34 Report No art I Test item particulars...: -- Classification of installation and use...: Built-in Supply Connection...: Terminal...: -- ossible test case verdicts: - test case does not apply to the test object...: - test object does meet the requirement...: (ass) - test object does not meet the requirement...: F (Fail) Testing...: Date of receipt of test item...: Date (s) of performance of tests...: to General remarks: "(See Enclosure #)" refers to additional information appended to the report. "(See appended table)" refers to a table appended to the report. Throughout this report a comma / point is used as the decimal separator. Clause numbers between brackets refer to clauses in IEC Manufacturer s Declaration per sub-clause of IECEE 02: The application for obtaining a CB Test Certificate includes more than one factory location and a declaration from the Manufacturer stating that the sample(s) submitted for evaluation is (are) representative of the products from each factory has been provided... : Yes Not applicable When differences exist; they shall be identified in the General product information section. Name and address of factory (ies)... : DELTA ELECTRONICS (WUHU) LTD. No.138, Jiuhua North Road, LongShan Street, Economic-technical Development Area, Wuhu City, Anhui, China

8 age 6 of 34 Report No art I General product information: roduct: Built-in LED module Rating: AC V, 50/60 Hz Model difference: 1. Models BASIC-FLAT AC-G V, BASIC-FLAT AC-G V and BASIC-FLAT AC- G V are the same except for model name and CCT. 2. Models BASIC-FLAT AC-G V, BASIC-FLAT AC-G V and BASIC-FLAT AC-G V are the same except for model name and CCT. 3. Models BASIC-FLAT AC-G V, BASIC-FLAT AC-G V and BASIC-FLAT AC-G V are the same except for model name and CCT. Model list: No. Model No. ower (W) Tc LED quantity CCT BASIC-FLAT AC-G V 14,1 85C 11 pcs 3000K BASIC-FLAT AC-G V 14,1 85C 11 pcs 4000K BASIC-FLAT AC-G V 14,1 85C 11 pcs 6500K BASIC-FLAT AC-G V 19,3 95C 22 pcs 3000K BASIC-FLAT AC-G V 19,3 95C 22 pcs 4000K BASIC-FLAT AC-G V 19,3 95C 22 pcs 6500K BASIC-FLAT AC-G V 24,9 95C 22 pcs 3000K BASIC-FLAT AC-G V 24,9 95C 22 pcs 4000K BASIC-FLAT AC-G V 24,9 95C 22 pcs 6500K

9 age 7 of 34 Report No art I 4 GENERAL REQUIREMENTS 4.4 Integral modules tested assembled in the luminaire 4.5 Independent modules complies with requirements in IEC Built-in 5 GENERAL TEST REQUIREMENTS 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 CLASSIFICATION Built-in module... : Yes No Independent module... : Yes No Integral module... : Yes No For Integral module; Note to in IEC applies. 7 MARKING 7.1 Mandatory markings for built-in or independent modules a) mark of origin See marking label. b) model number, type reference See marking label. c1) constant voltage module; rated supply voltage and supply frequency c2) constant current module; rated supply current and supply frequency See marking label. d) nominal power See marking label. e) indication of connections, wiring diagram f) value of t c and place on the module See marking label. g) Ethr if required Low risk group for all models, no such label requirement. h) symbol for built-in modules i) heat transfer temperature t d j) power for heat-conduction d k) working voltage for insulation 7.2 Location of marking - marking of a), b), c) and f) on the modules

10 age 8 of 34 Report No art I - marking of d), e), g), h), i) and j) on the modules or data sheet - marking of k) in manufactures literature - integral modules a) to g) in literature 7.3 Durable and legibility of marking - marking of a), b), c) and f) legible after test with water - marking of d) to j) inspection of compliance 8 TERMINALS Screw terminals according section 14 of IEC : Separately approved; component list (see Annex 2) art of the luminaire (see Annex 3) Screwless terminals according section 15 of IEC : Separately approved; component list (see Annex 2) art of the luminaire (see Annex 4) Connectors according IEC : Separately approved; component list (see Annex 2) 9 (9) ROVISION FOR ROTECTIVE EARTHING - (9.1) rovisions for protective earthing Terminal complying with clause 8 Locked against loosening and not possible to loosen by hand Not 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 - (9.2) rovision for functional earthing Comply with clause 8 and (9.3) Earth contact via the track on the printed board

11 age 9 of 34 Report No art I Test with a current of 25 A between earthing terminal and each of the accessible metal parts; measured resistance () at 10 A according of IEC : < 0,5... : - (9.4) Earthing of built-in lamp controlgear Earth by means of fixing to earthed metal of luminaire in compliance of 7.2 of IEC Earthing terminal only for earthing the built-in controlgear - (9.5) Earthing via independent controlgear - (9.5.1) Earth connection to other equipment Looping or through connection, conductor min. 1,5 mm² and of copper or equivalent rotective earthing wires in line with and clause 7 - (9.5.2) Earthing of the lamp compartments powered via the independent lamp controlgear Test with a current of 25 A between input and output earth terminals; measured resistance () between earthing terminal and each of the accessible metal parts at 10 A according of IEC : < 0,5... : Output earthing terminal marked as in 7.1 t) of IEC (10) ROTECTION AGAINST ACCIDENTAL CONTACT WITH LIVE ARTS - (10.1) Controlgear protected against accidental contact with live parts - (A2) The current flowing between the part concerned and earth is measured and does not exceed 0,7 ma (peak) or 2 ma d.c.... : - (A2) 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)... : - (A3) The voltage between the part concerned and any accessible part is measured and does not exceed 34 V (peak)... : - (10.1) Lacquer or enamel not used for protection or insulation Adequate mechanical strength on parts providing protection - (10.2) Capacitors > 0,5 F: voltage after 1 min (V): < 50 V... : Built-in module, evaluated in end-use product.

12 age 10 of 34 Report No art I - (10.3) Controlgear providing SELV Accessible conductive parts are insulated from live parts by double or reinforced insulation in SELV controlgear No connection between output circuit and the body or protective earthing circuit No possibility of connection between output circuit and the body or protective earthing circuit through other conductive parts SELV outputs separated by at least basic insulation ELV conductive parts insulated as live parts Tests according Annex L of IEC (10.4) Accessible conductive parts in SELV circuits Output voltage under load 25 V r.m.s. or 60 V d.c. If output voltage > 25 V r.m.s. or > 60 V d.c.; No load output 35 V peak or 60 V d.c and touch current does not exceed 0,7 ma (peak) or 2 ma d.c.... : One conductive part is insulated if output voltage or current exceeding the values above and withstand test voltage 500 V Double or reinforced insulation bridged by appropriate and at least two resistors or two Y2 capacitors or one Y1 capacitor Y1 or Y2 capacitors comply with IEC Resistors comply with test (a) in 14.1 of IEC (11) MOISTURE RESISTANCE AND INSULATION 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... : For double or reinforced insulation 4 M... : Between primary and secondary circuits in controlgear providing SELV, values in Annex L in IEC Between L and N after fuse disconnected: Min. 500 M.

13 age 11 of 34 Report No art I 12 (12) ELECTRIC STRENGTH Immediately after clause 11 electric strength test for 1 min Basic insulation for SELV, test voltage 500 V Working voltage 50 V, test voltage 500 V Working voltage > 50 V 1000 V, test voltage (V): Basic insulation, 2U V Supplementary insulation, 2U V Double or reinforced insulation, 4U V No flashover or breakdown Solid or thin sheet insulation for double or reinforced insulation fulfil the requirements in Annex N in IEC Between L and N after fuse disconnected: 1480 V for 1 min. 13 (14) FAULT CONDITIONS - (14) When operated under fault conditions the controlgear: - does not emit flames or molten material - does not 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 - (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:

14 age 12 of 34 Report No art I The insulation resistance 1 M... : Min. 500 M. No flammable gases No 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. No fire, smoke or flammable gas is produced Molten material does not ignite tissue paper, spread below the module 15 CONSTRUCTION Wood, cotton, silk, paper and similar fibrous material not used as insulation 16 (16) CREEAGE DISTANCES AND CLEARANCES - (16) Creepage and distances and clearances in compliance with IEC Insulating lining of metallic enclosures Basic insulation on printed boards tested according to clause 14 Distances subjected to both sinusoidal voltage as non-sinusoidal pulses not less than value in Table 16 Creepage distances not less than minimum clearance 16 (-) Conductive accessible parts in compliance with applicable parts of IEC (see appended table) 17 (17) SCREWS, CURRENT-CARRYING ARTS AND CONNECTIONS 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

15 age 13 of 34 Report No art I - thread-cutting screws (4.11.3) Screw locking: - spring washer - rivets (4.11.4) Material of current-carrying parts (4.11.5) No contact to wood or mounting surface (4.11.6) Electro-mechanical contact systems (4.12) Mechanical connections and glands (4.12.1) Screws not made of soft metal Screws of insulating material Torque test: torque (Nm); part...: Torque test: torque (Nm); part...: Torque test: torque (Nm); part...: (4.12.2) Screws with diameter < 3 mm screwed into metal (4.12.4) Locked connections: - fixed arms; torque (Nm)...: - lampholder; torque (Nm)...: - push-button switches; torque 0,8 Nm...: (4.12.5) Screwed glands; force (Nm)...: 18 (18) RESISTANCE TO HEAT, FIRE AND TRACKING - (18.1) Ball-pressure test...: See Test Table 18 (18.1) - (18.3) Glow-wire test (650C)...: See Test Table 18 (18.3) - (18.4) Needle-flame test (10 s)...: See Test Table 18 (18.4) - (18.5) roof tracking test...: See Test Table 18 (18.5) 19 (19) RESISTANCE TO CORROSION - test according of IEC adequate varnish on the outer surface 20 INFORMATION FOR LUMINAIRE DESIGN Information in Annex D (informative)

16 age 14 of 34 Report No art I 21 HEAT MANAGEMENT 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 Low risk group: Lb: 6852 W m-2 sr Infrared radiation Requirements for infrared radiation when required A ANNEX A - TESTS All tests performed in accordance with the advice given in Annex H of IEC , if applicable 13 (14) TABLE: tests of fault conditions art Simulated fault Hazard For model BASIC-FLAT AC-G V D1 in 1-4 Short circuit: AC V Test result: Unit shutdown immediately, Fuse opened immediately, no flame, no flammable gas, no molten parts. U1 in 1-3 Short circuit: AC V Test result: Unit shutdown immediately, LED damaged, no flame, no flammable gas, no molten parts. U1 in 1-4 Short circuit: AC V Test result: Unit shutdown immediately, recoverable after fault removed, no flame, no flammable gas, no molten parts. Output Short circuit: AC V Test result: Unit shutdown immediately, recoverable after fault removed, no flame, no flammable gas, no molten parts. For model BASIC-FLAT AC-G V YES/NO YES/NO YES/NO YES/NO

17 age 15 of 34 Report No art I D1 in 1-4 Short circuit: AC V Test result: Unit shutdown immediately, Fuse opened immediately, no flame, no flammable gas, no molten parts. U1 in 1-3 Short circuit: AC V Test result: Unit shutdown immediately, LED damaged, no flame, no flammable gas, no molten parts. U1 in 1-4 Short circuit: AC V Test result: Unit shutdown immediately, recoverable after fault removed, no flame, no flammable gas, no molten parts. Output Short circuit: AC V Test result: Unit shutdown immediately, recoverable after fault removed, no flame, no flammable gas, no molten parts. For model BASIC-FLAT AC-G V D1 in 1-4 Short circuit: AC V Test result: Unit shutdown immediately, Fuse opened immediately, no flame, no flammable gas, no molten parts. U1 in 1-3 Short circuit: AC V Test result: Unit shutdown immediately, LED damaged, no flame, no flammable gas, no molten parts. U1 in 1-4 Short circuit: AC V Test result: Unit shutdown immediately, recoverable after fault removed, no flame, no flammable gas, no molten parts. Output Short circuit: AC V Test result: Unit shutdown immediately, recoverable after fault removed, no flame, no flammable gas, no molten parts. YES/NO YES/NO YES/NO YES/NO YES/NO YES/NO YES/NO YES/NO

18 age 16 of 34 Report No art I 16 (16) TABLES: Creepage distances and clearances Table 3 Minimum distances (mm) for a.c. (50/60 Hz) sinusoidal voltages RMS working voltage (V) not exceeding Creepage distances Required basic insulation, TI 600 0,6 0,8 1, ,5 Measured (Between L and N before fuse for model BASIC-FLAT AC-G V) Measured (Between L and N before fuse for model BASIC-FLAT AC-G V) Measured (Between L and N before fuse for model BASIC-FLAT AC-G V) Measured (Between Fuse terminal for model BASIC-FLAT AC-G V) Measured (Between Fuse terminal for model BASIC-FLAT AC-G V) Measured (Between Fuse terminal for model BASIC-FLAT AC-G V) , , , , , , Required basic insulation, TI < 600 1,2 1,6 2, Measured Required supplementary insulation TI 600-0,8 1, ,5 Measured Required supplementary insulation TI < 600-1,6 2, Measured Required reinforced insulation - 3, Measured Clearances

19 age 17 of 34 Report No art I Required basic insulation 0,2 0,8 1, ,5 Measured (Between L and N before fuse for model BASIC-FLAT AC-G V) Measured (Between L and N before fuse for model BASIC-FLAT AC-G V) Measured (Between L and N before fuse for model BASIC-FLAT AC-G V) Measured (Between Fuse terminal for model BASIC-FLAT AC-G V) Measured (Between Fuse terminal for model BASIC-FLAT AC-G V) Measured (Between Fuse terminal for model BASIC-FLAT AC-G V) , , , , , , Required supplementary insulation - 0,8 1, ,5 Measured Required reinforced insulation - 1, Measured Table 4 Minimum distances (mm) for non-sinusoidal pulse voltages Rated pulse voltage (peak kv) 2,0 2,5 3,0 4,0 5,0 6,0 8,0 Required clearances 1,0 1, ,5 8 Measured Rated pulse voltage (peak kv) Required clearances Measured Rated pulse voltage (peak kv) Required clearances Measured

20 age 18 of 34 Report No art I 18 (18.1) TABLE: Ball ressure Test of Thermoplastics Allowed impression diameter (mm)... : 2 mm Object/ art No./ Material Manufacturer/ trademark Test temperature (C) lastic material of Terminal WAGO 125 0,6 CB Supplementary information: Chang Chun lastics Co., Ltd. DONGGUAN KEEN RICH ELECTRONIC LTD CO 125 0, ,6 Impression diameter (mm) 18 (18.3) TABLE: Glow-wire test Glow wire temperature... : 650 C Object/ art No./ Material lastic material of Terminal Manufacturer/ trademark Duration of application of test flame (ta); (s) Ignition of specified layer Yes/No Duration of burning (tb) (s) Verdict WAGO 30 No 0 SWITCHLAB INC 30 No 0 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/No)... : Supplementary information: No 18 (18.4) TABLE: Needle-flame test Object/ art No./ Material lastic material of Terminal CB Supplementary information: Manufacturer/ trademark Duration of application of test flame (ta); (s) Ignition of specified layer Yes/No Duration of burning (tb) (s) Verdict WAGO 10 No 0 SWITCHLAB INC 10 No 0 Chang Chun lastics Co., Ltd. DONGGUAN KEEN RICH ELECTRONIC LTD CO 10 No 0 10 No 0 18 (18.5) TABLE: roof tracking test

21 age 19 of 34 Report No art I Test voltage TI... : 600 V Object/ art No./ Material CB Supplementary information: Manufacturer/ trademark Chang Chun lastics Co., Ltd. DONGGUAN KEEN RICH ELECTRONIC LTD CO Withstand 50 drops without failure on three places or on three specimens Verdict No flame No flame No flame No flame No flame No flame

22 age 20 of 34 Report No art I ANNEX 1 SELV-operated LED modules Cl. 5.5 refer to ANNEX I of IEC which refer to ANNEX L of IEC (clause numbers between parentheses refer to ANNEX L of IEC ) (L.3) Classification Class I Yes No Class II Yes No Class III Yes No non-inherently short circuit proof controlgear Yes No inherently short circuit proof controlgear Yes No fail safe controlgear Yes No non-short-circuit proof controlgear Yes No (L.4) Marking Adequate symbols are used (L.5) rotection against electric shock Comply with 9.2 of IEC (L.6) Heating No excessive temperatures in normal use Value if capacitor tc marked... : Winding insulation classified as Class... : Comply with tests of clause 14 of IEC with adjustments (L.7) Short-circuit and overload protection Comply with tests of clause 15 of IEC with adjustments (L.8) Insulation resistance and electric strength (L.8.1) Conditioned 48 h between 91 % and 95 % (L.8.2) Insulation resistance Between input- and output circuits not less than 5 M... : Between metal parts of class II convertors which are separated from live parts by basic insulation only and the body not less than 5 M... : Between metal foil in contact with the inner and outer surfaces of enclosures of insulating material not less than 2 M... : (L.8.3) Electric strength

23 age 21 of 34 Report No art I 1) Between live parts of input circuits and live parts of output circuits... : 2) Over basic or supplementary insulation between: a) live parts having 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... : f) each input circuit and all other input circuits... : 3) Over reinforced insulation between the body and live parts... : (L.9) Construction (L.9.1) Transformer comply with of IEC and 19 of IEC HF transformer comply with 19 of IEC (L.10) Components rotective devices comply with of IEC (L.11) Creepage distances and clearances 1. Insulation between input and output circuits, basic insulation: a) measured values > specified values (mm)... : b) measured values > specified values (mm)... : c) measured values > specified values (mm)... : 2. Insulation between input and output circuits, double or reinforced insulation: a) measured values > specified values (mm)... : b) measured values > specified values (mm)... : c) measured values > specified values (mm)... : 3. Insulation between adjacent output circuits - measured values > specified values (mm)... : 4. Insulation between terminals for external connection: - measured values > specified values (mm)... : 5. Basic or supplementary insulation: a) measured values > specified values (mm)... : b) measured values > specified values (mm)... :

24 age 22 of 34 Report No art I c) measured values > specified values (mm)... : d) measured values > specified values (mm)... : e) measured values > specified values (mm)... : 6. Reinforced insulation or insulation: Between body and output circuit: measured values > specified values (mm)... : Between body and output circuit if provision against transient voltages: measured values > specified values (mm)... : 7. Distance through insulation: a) measured values > specified values (mm)... : b) measured values > specified values (mm)... : c) measured values > specified values (mm)... :

25 age 23 of 34 Report No art I ANNEX 2 TABLE: Critical components information -- Object / part No. Code Manufacturer/ trademark Terminal (CN1) B SWITCHLAB INC MWX E Alternative D WAGO CONTACT S.A. Fuse (F1) for model with 14,1W Fuse resistor (F1) for the other models B B CONQUER ELECTRONICS CO., LTD FUTABA ELECTRIC CO., LTD. TVR (Z1) B THINKING ELECTRONIC INDUSTRIAL CO LTD Alternative D THINKING ELECTRONIC IND. CO.,LTD Alternative D THINKING ELECTRONIC IND. CO.,LTD CB B, C Chang Chun lastics Co., Ltd. Alternative D DONGGUAN KEEN RICH ELECTRONIC LTD CO LED chip C Seoul semicondcutor Co., Ltd Type / model Technical data Standard oles, A+GF, V-0 Mark(s) of conformity 1) 250Vac, 9A, EN TUV SUD No. B MST1A250V 1000mA, 250V IEC IEC RW01J20R0 A520UL -- Tested with appliance VDE W, 20ohms -- UL E Tested with appliance TVR V IEC IEC IEC TVR07471KS RDY TVR07431KS RDY CC V 430V CEM-3, V-0, 130 C, TI: 600V 87 V-0, 130 C, TI: 600V SAW8C72A If: Max. 60 ma, Vf: Max. 24,5V, 3000K, 4000K, 6500K IEC/EN IEC/EN IEC/EN IEC/EN IEC/EN IEC/EN VDE VDE VDE UL E Tested with appliance -- UL E Tested with appliance -- Tested with appliance

26 age 24 of 34 Report No art I Supplementary information: 1) rovided evidence ensures the agreed level of compliance. See OD-CB2039. The codes above have the following meaning: A B C D - The component is replaceable with another one, also certified, with equivalent characteristics - The component is replaceable if authorised by the test house - Integrated component tested together with the appliance - Alternative component

27 age 25 of 34 Report No art I ANNEX 3 Screw terminals (part of the luminaire) (14) SCREW TERMINALS (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) Nominal diameter of thread (metric ISO thread)...: M External wiring No soft metal (14.4.5) Corrosion (14.4.6) Nominal diameter of thread (mm)...: Torque (Nm)...: (14.4.7) Between metal surfaces Lug terminal Mantle terminal ull test; pull (N)...: (14.4.8) Without undue damage

28 age 26 of 34 Report No art I ANNEX 4 Screwless terminals (part of the luminaire) (15) SCREWLESS TERMINALS (15.2) Type of terminal... : Non-permanent terminal Rated current (A)... : Tested with appliance. (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 0,25mm 2 0,75mm 2 Type of conductor Rigid and flexible. (15.5.1) Terminals internal wiring ( ) ull test spring-type terminals (4 N, 4 samples)... : ( ) ull test pin or tab terminals (4 N, 4 samples)... : Insertion force not exceeding 50 N ( ) ermanent connections: pull-off test (20 N) (15.5.2) Electrical tests Voltage drop (mv) after 1 h (4 samples)... : Max. 0,81 mv Voltage drop of two inseparable joints Number of cycles: 25 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)... : Max. 1,24 mv (15.6) Terminals external wiring Terminal size and rating

29 age 27 of 34 Report No art I ( ) ull test spring-type terminals or welded connections (4 samples); pull (N)... : ull test pin or tab terminals (4 samples); pull (N)... : ( ) 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:

30 age 28 of 34 Report No art I Annex 5 Thermal test Type reference... : BASIC-FLAT AC-G V Test condition Normal operation test voltage... : 254,4 V Supply wattage (W)... : 14,6 W Supply current (A)... : 0,06 A Mounting position... : According instruction Frequency (Hz)... : 50 Hz Table: measured temperatures corrected for ta = 25C: temperature (C/K) of part Test value Result Input wire 34,7C -- Ref. Terminal 40,7C -- Ref. Varistor (Z1) 46,9C -- 85C CB near D1 53,6C C Tc point 60,8C -- 85C limit Type reference... : BASIC-FLAT AC-G V Test condition Normal operation test voltage... : 254,4 V Supply wattage (W)... : 19,2 W Supply current (A)... : 0,08 A Mounting position... : According instruction. Frequency (Hz)... : 50 Hz Table: measured temperatures corrected for ta = 25C: temperature (C/K) of part Test value Result Input wire 39,7C -- Ref. Terminal 44,0C -- Ref. Varistor (Z1) 52,0C -- 85C CB near D1 64,8C C Tc point 79,6C -- 95C limit Type reference... : BASIC-FLAT AC-G V Test condition Normal operation test voltage... : 254,4 V

31 age 29 of 34 Report No art I Supply wattage (W)... : 27,0 W Supply current (A)... : 0,11 A Mounting position... : According instruction. Frequency (Hz)... : 50 Hz Table: measured temperatures corrected for ta = 25C: temperature (C/K) of part Test value Result limit Input wire 46,0C -- Ref. Terminal 49,5C -- Ref. Varistor (Z1) 65,6C -- 85C CB near D1 81,1C C Tc point 90,4C -- 95C

32 age 30 of 34 Report No art I Figure 1: Overall view 1 for models BASIC-FLAT AC-G V, BASIC-FLAT AC-G V BASIC-FLAT AC-G V Figure 2: Overall view 2

33 age 31 of 34 Report No art I Figure 3: Models BASIC-FLAT AC-G V, BASIC-FLAT AC-G V BASIC-FLAT AC- G V from left to right Figure 4: BASIC-FLAT AC-G V without heatsink

34 age 32 of 34 Report No art I Figure 5: BASIC-FLAT AC-G V without heatsink In final product, mylar sheet used under fuse resistor Figure 6: BASIC-FLAT AC-G V without heatsink

35 age 33 of 34 Report No art I Figure 7: BASIC-FLAT AC-G V without heatsink In final product, mylar sheet used under fuse resistor Figure 8: BASIC-FLAT AC-G V without heatsink

36 age 34 of 34 Report No art I Figure 9: BASIC-FLAT AC-G V without heatsink

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